Showing posts with label Ukraine. Show all posts
Showing posts with label Ukraine. Show all posts

Sunday, March 22, 2026

Russo-Ukrainian War: The M14 Battle Rifle

Source: General Staff of the Armed Forces of Ukraine

     A soldier from the 169th. Territorial Defense Battalion, 120th. Territorial Defense Brigade (TDB) trains with a M14 battle rifle sometime in 2025. M14 rifles first appeared in the hands of Ukraine's TDB units in 2022 and they came from Estonian and Latvian stocks of which Estonia provided up to 35,000 rifles. The M14 was accepted for U.S. Army service in 1957 with production commencing in 1959. The M14 was phased out of U.S. Army service starting in 1964 and by 1967, it was wholly replaced by the M16 assault rifle as the Army's main infantry weapon. Today, variants of the M14 are in limited use by some U.S. forces and the rifle remains in active service within the military forces over over twenty countries.

     The M14 is chambered for the 7.62x51mm cartridge and uses a gas-operated, rotating bolt action. The total length of the M14 is 3.7 feet with an empty weight of 9.2 pounds. The M14 is fed from a 20-round box magazine and with a full magazine, the M14 has a weight of 10.7 pounds. If need be, the M14 has guides for stripper clips, allowing the magazine to be reloaded without detaching it. 

     Stock, the M14 uses a rear mounted aperture sight and a barleycorn front sight. Also known as a pyramid sight, it consists of a triangular shaped sight rather than the more common post sight. Using the standard sights, the effective range is a little over 450 meters when firing the M80 ball cartridge. The maximum range of the M14 is 2.1 miles. Here, the M14 is fitted with a M1A SOCOM 16-style scope mount and the scope itself appears to be made by Athlon Optics but this isn't able to be confirmed with any certainty. The M14 has a rate of fire between 700 to 750 rounds per minute.

     Attached to the front of the weapon is a M1A Harris bipod while on the end of the scope is a micro-prism anti-reflection device (ARD). The purpose of the ARD is to cut down on sun glare as well as hide light reflection off the scope glass. The sling is not M14 issue as the operator has it looped around the stock's neck rather than connected to a metal loop on the underside of the buttstock (which could also be missing, hence how he has it secured). The soldier has also made a cheek pad by putting strips of material along the top of the buttstock and wrapping it with silver duct tape. Finally, the camouflage paint applied to the M14 is not standard and is one that has appeared on Ukrainian weapons on occasion. It is variation of “snake” style custom weapon camouflage patterns.

     As a note, the 169th. Territorial Defense Battalion has been renamed the 2nd. Territorial Defense Battalion and has a new unit patch. It is still part of the 120th. TDB.

Wednesday, January 14, 2026

Russo-Ukrainian War: The InterProInvest "Malyuk" Assault Rifle

Source: inukraine.official on Instagram

     A screen capture from a smartphone video showing a Ukrainian soldier armed with a InterProInvest (IPI) “Malyuk” bullpup rifle. The “Malyuk” (“Baby”) is a development of the Kalashnikov AK-74 assault rifle but is also derived from a previous Ukrainian bullpup rifle, the “Vepr” (“Boar”). The “Vepr”, designed between 2001 and 2003, ended up being a victim of circumstances and did not enter service. Interestingly, the “Malyuk” rifle's development commenced in 2005 with the first prototypes appearing in 2008. It would no be until 2015 that IPI received any sort of feedback from the Ukrainian government following tests. Unlike the “Vepr”, the “Malyuk” actually achieved official adoption by the Ukrainian Ministry of Defense in 2019 and production continues through the Krasyliv Assembly Manufacturing Plant. As a note, the “Malyuk” is sometimes referred to as the “Vulkan” or “Vulkan-M”.

     As mentioned above, the “Malyuk” is a derivative of the AK-74 and it uses the AK-74's standard barrel (to include the mount and muzzle brake), bolt and bolt carrier, and uses much the same action which is a gas-operated, long-stroke piston, closed rotating bolt design. While the action is the same, the “Malyuk” uses its own gas tube (so it is not interchangeable with a AK-74) and removes the integral cocking handle from the bolt carrier (but otherwise, it remains as the AK-74). Instead, the “Malyuk” has a forward, sleeve mounted polymer charging handle. The handle can be mounted to accommodate left or right handed operators but the change requires disassembly of the rifle. To save weight, the “Malyuk” uses as much polymer components as possible and to enhance strength, some of the polymer parts have metal reinforcements embedded in them. The pistol grip is hollow while the top cover has multiple venting holes within it as further weight reduction measures. The buttpad can swivel and inside, there is a compartment for the standard AK-74 cleaning kit.

     The “Malyuk” can be chambered for one of three cartridges: 5.45x39mm, 5.56x45mm NATO, and 7.62x39mm. In the photograph, and based on the magazine design, the soldier is using a 5.56x45mm NATO configured “Malyuk”. The rifle can use 10-, 30-, or 45-round box magazines and if chambered for the Russian rounds, the “Malyuk” can use the same magazines as the AK-74. The maximum rate of fire is between 660 to 700 rounds per minute with an effective range in the region of 500 meters. Out of the box, the “Malyuk” is fitted with iron sights but does feature a Picatinny rail to allow for the mounting of optics. The soldier in the image appears to have a Aimpoint Comp™ M4s red dot reflex sight fitted with flip-up lens covers and he is also using a IPI produced suppressor. Also, attached to the rifle's right front side is a flashlight. The rifle's empty weight is 8.4 pounds.

Monday, January 12, 2026

Russo-Ukrainian War: The 9K310 Igla-1 MANPADS

Source: General Staff of the Armed Forces of Ukraine

     A soldier belonging to Tactical Group Druzhkivka poses with a 9K310 Igla-1 (NATO reporting name SA-16 Gimlet) MANPADS (Man Portable Air Defense System) surface-to-air (SAM) missile launcher. The word “Igla” in Russian means “needle”. Tactical Group Druzhkivka is a Territorial Defense Force unit that operates in and around Druzhkivka, Donetsk Oblast where MANPADS such as the Igla-1 are useful against UAVs and drones.

     The Igla-1, which first entered service in 1981, is actually a simplified version of the 9K38 Igla (NATO reporting name SA-18 Grouse) which appeared in service in 1983. The reason for this is that development of the 9K38 was taking longer than expected  and so it was decided to push a less complex system into the field to more quickly replace the aging 9K32 Strela-2 (SA-7 Grail) and 9K34 Strela-3 (SA-14 Gremlin) MANPADS.

     That this is a 9K310 Igla-1 is denoted by the 9M313 fire-and-forget missile protruding from the 9P322 fiber-glass launch tube with its distinctive aerospike mounted on a tripod attached to the nose. The later 9K38 replaced this with a longer aerospike attached directly to the missile's seeker head. The aerospike is used to reduce drag during flight. 

     The warhead has a weight of 2.6 pounds of which .9 of a pound accounts for the HE-FRAG (High-Explosive Fragmentation) payload. The missile has two fuzes, one that will detonate the warhead on a direct impact while the second will set off the warhead from a grazing hit on the target. The missile will also attempt to strike the fuselage of the target and to add to the lethality, there is a second charge that will set off any remaining solid fuel for the motor. The seeker head contains two detectors. The first is a cooled mid-wave infrared (MWIR) indium antimonide (InSb) detector for target detection and the second is a uncooled short wavelength infrared (SWIR) lead sulfide (PbS) detector which is used to identify decoy infrared flares. Onboard logic circuits evaluate what the detectors are registering and determine if it is the intended target or flares being deployed to confuse the missile. The missile is also resistant to the U.S. built AN/ALQ-144 series of infrared countermeasure devices.

     The solid fuel rocket motor can push the 9M313 missile to a maximum speed of Mach 1.9 while the missile has a operational range of 3.1 miles with a flight ceiling of 11,000 feet. The missile rolls as it flies, imparting stability and the single set of control surfaces is operated by electrically powered pistons, the energy received from a gas turbine within the missile that is fed by a gas generator. This same gas generator can shunt exhaust over the control surfaces if needed when the airspeed is too low for effective steering. The missile's reaction time is between 5 to 10 seconds and it is capable of engaging an oncoming target with an approach speed of 1,017 feet per second or a retreating target with an egress speed of 853 feet per second.

     The bulbous object the operator's left hand is holding contains a thermal battery but more importantly, it contains liquid nitrogen coolant that keeps the MWIR InSb detector in the seeker head at optimal temperature prior to launch. The Igla-1 can be fitted with the 1L14 IFF (Identification Friend or Foe) to reduce the chance of friendly fire. The 9P519 grip stock, which also contains the 9B328 power supply unit, is detachable and can be detached from a spent launch tube and attached to a fresh one to launch another missile as long as the power supply has enough charge.

Thursday, January 1, 2026

Russo-Ukrainian War: The M1A1 AIM Main Battle Tank

Source: General Staff of the Armed Forces of Ukraine

     The impact on tank protection due to the nature of drone warfare in the Russo-Ukrainian War is fully displayed here by a M1A1 Abrams MBT (Main Battle Tank) belonging to the 425th. Assault Regiment “Skelya”. On the turret front, lower front glacis, turret sides, and hull sides are blocks of Kontakt-1 ERA (Explosive Reactive Armor). The blocks are arranged in bolt-on metal frames which are then secured to the turret, hull, and in the case of the sides, to the standard M1A1 side skirt panels. The next layer of protection comes from the rubber panels that hang down almost to the ground on the sides and front of the tank. Another strip of rubber paneling is seen underneath the rearmost frame of ERA on the turret side. Cheap to make and fix to tanks and other armored vehicles, the panels provide a small measure of defense against HEAT (High Explosive Anti-Tank) munitions and older anti-tank rockets. The third layer of defense, meant for drones specifically, is the collapsible metal frame seen over the tank. Shown deployed, the frame supports fishing netting (not fitted here) that serves to impede or defeat an FPV drone from striking the tank. Of interest, along the turret sides, there is framing for netting in front of the ERA. Framing for netting can also be seen on the rear of the tank's hull. As a note, the round object on the left front of the turret is a spare road wheel and the tank sports its original Australian Army three-tone camouflage pattern.

     The M1A1 seen here is former Australian Army. In 2006, the Australian Army purchased 59 M1A1 AIM (Abrams Integrated Management) tanks and replaced the Leopard AS1 then in service by 2007. In June 2022, Australia committed to a purchase of a large number of armored vehicles from the U.S. which included 75 modernized M1A2 tanks. On October 17, 2024, Australia announced it was providing Ukraine with a donation of 49 of its M1A1 tanks and by December 2025, all of them have been delivered. Of this total, it is not known how many are operational as a October 16, 2024 ABC Australia report by Andrew Greene stated some would have required repair and that those tanks may simply be sent to Ukraine for parts rather than be restored to operational readiness.

     It should be noted that the Australian M1A1 AIM, as well as the U.S. provided M1A1 SA tanks, do not feature the high-density depleted uranium (DU) mesh within the composite armor that makes up the tank's defense. The U.S. still restricts the export of M1 series tanks with DU mesh. Instead, the DU is replaced with either tungsten or titanium. This means the M1A1 AIM and M1A1 SA are more vulnerable to kinetic penetrator munitions in comparison to U.S. operated M1 series tanks.

     Power for the 61-ton M1A1 comes from a Avco Lycoming (Honeywell) AGT-1500 air-cooled gas turbine engine that develops 1,500 gross horsepower. This is paired to a Allison X1100-3B hydrokinetic, automatic transmission with a 6 speed gearbox (4 forward, 2 reverse). Steering is via hydrostatic T-bar. The maximum road speed is 41.5 miles per hour with a road cruising range of 289 miles. This relatively low range is due to the high fuel consumption of the engine despite the 505 gallons of onboard fuel carried. The engine is multi-fuel and for maximum efficiency, JP-8 fuel should be used. However, the AGT-1500 can run on standard diesel, gasoline, or even kerosene though performance will be impacted.

     The main weapon is the M256 120mm gun with the stabilized gun mount providing 20 degrees of elevation and 10 degrees of depression. The turret provides the gun with 360 degrees of traverse. A full turret traverse can be accomplished in 9 seconds while the maximum gun elevation can be achieved in under 1 second. Gun laying is electrohydraulic with a manual backup system. Gun loading is manual with a maximum fire rate of 6 rounds per minute. Firing is assisted using a mostly automatic digital ballistic computer. A total of 40 rounds are carried for the M256. As for ammunition, the M256 can fire any NATO compatible 120x570mm round. The M829A1 APFSDS (Armor-Piercing Fin-Stabilized Discarding Sabot) is able to drill through 650mm of RHA (Rolled Homogeneous Armor) at a 60 degree slope out to a range of 1.2 miles. The M830A1 HEAT-MP-T (High-Explosive Anti-Tank Multipurpose Tracer) has a maximum range of 1.6 miles and features a proximity fuse that is set prior to firing. The aluminum sabot is lighter than that fired by the M829A1, hence the longer range. In addition, the round is usable against armored targets, slow moving aerial targets (such as helicopters), hardened targets (bunkers and buildings), and light armored vehicles. Finally, the M908 HE-OR-T (High-Explosive Obstacle Reduction Tracer) is primarily utilized against hardened targets such as concrete blockhouses and buildings. The round is derived from the M830A1, replacing the sabot and fusing with a hard steel nose that allows the round to punch through concrete before detonating. Other munitions include the M1028 canister round filled with 1,100 tungsten balls (maximum effective range of 500 meters) and the M831 TP-T (Target Practice Tracer) round.

     Secondary armament consists of a coaxial M240 7.62mm machine-gun which is provided with 10,000 rounds of ammunition while the loader is also provided with a M240 outside his hatch on the turret along with 1,400 rounds of ammunition. The commander is provided with a M2 .50 caliber heavy machine-gun on the turret top along with a total of 900 rounds for the weapon. It can be operated from within the turret. Finally, there is provision for a 5.56mm M16A1 rifle with 210 rounds. In the photograph, the M2 is fitted but the loader's M240 is missing from the shielded gun mount.

     For protection, the M1A1 uses welded RHA steel armor on the turret and hull. The front of the turret and hull add composite armor arrays consisting of ceramic blocks set within resin between layers of RHA armor. The exact composition remains classified and neither has the specific protection capability of the M1A1 been released. What follows is a Soviet estimate as provided in Steven Zaloga's M1 Abrams vs. T-72 Ural: Operation Desert Storm 1991. From the front, the turret and hull provides 600mm of protection against APFSDS rounds and 700mm of protection against HEAT munitions. This estimate is based on the standard armor configuration that includes the DU mesh. Other protective features include two smoke grenade launchers (one on each side of the turret, with a total of 24 grenades), automatic Halon fire detection/extinguishing system, ammunition blowout panels (which shunt ammunition explosion forces outside the turret), two manually operated Halon extinguishers, overpressure NBC (Nuclear Biological Chemical) system, M13A1 gas/particulate filter, M43A1 chemical agent detector, AN/VDR radiac nuclear agent detector, and 1 ½ quart of ABC M11 decontamination fluid dispenser.

     For other systems and equipment, the gunner is provided with a primary and auxiliary sight, azimuth indicator, elevation quadrant, and a M1A1 quadrant which assist in direct and indirect fire. There is also a integrated Hughes (Raytheon) built thermal imaging subsystem (TIS). The driver has three periscopes and one night vision periscope while the commander has six periscopes and his own weapon sight. The loader only has a single periscope. For communications, the M1A1 has either a AN/VRC-12 or AN/VRC-64 radio system. To permit infantry working with the tank to talk with the crew, there is a external interphone box at the rear of the tank which connects to the crew's own internal AN/VIC-1 interphone network (which has four stations, one for each crew member).

Monday, December 29, 2025

Russo-Ukrainian War: The DevDroid Droid NW 40 UGV

Source: @drone_wars_ on Instagram

     The Russo-Ukrainian War is seeing more and more the usage of UGVs (Unmanned Ground Vehicles) by not only the Ukrainian military but the Russian Federation as well. The majority are used for logistical missions and even casualty evacuation while some UGVs are utilized on area denial operations (by laying mines), support of aerial UAV (Unmanned Aerial Vehicles) sorties (as relay transmitters and/or electronic warfare platforms), and as seen here, equipped with weapons to support units in the field. The particular model pictured is what looks to be a prototype Droid NW 40, designed by the Ukrainian company DevDroid. That this is not the production Droid NW 40 is because the chassis is that of the Droid TW 12.7, another UGV offered by DevDroid which is equipped with a Browning M2 .50 caliber heavy machine-gun. Here, the armament system for the Droid NW 40 has been fitted for testing purposes.

     The Droid NW 40 is billed as a reconnaissance-strike UGV designed to engage light armored targets, soft-skin vehicles (meaning unarmored), infantry, defensive positions, and battlefield reconnaissance. To engage such target types, the Droid NW 40 is fitted with either the Ukrainian produced AGL-53 or the U.S. military's Mk.19 automatic grenade launcher. The latter have been in use by Ukrainian troops, having been supplied by Canada and the United States. Both fire the NATO standard 40x53mm grenade. In the photograph, the weapon is the AGL-53. For some of the grenade types available, see the link below about the Repkon Defence RDS-40 which lists out some of the more common munitions.

     The Droid NW 40 platform allows for a maximum firing range of .9 of a mile (1.5 kilometers). A total of 48 rounds of ammunition is carried in a can to the left of the weapon. Specific performance data on the AGL-53 isn't known but likely is similar to the Mk.19 with a 300 to 400 round per minute rate of fire. With no ability for the Droid NW 40 to be reloaded with ammunition without the UGV returning to its support base, the operator can fire single-shot or fire in very brief bursts. The combat module mounting permits a total of 270 degrees of traverse, maximum elevation of 65 degrees, and a maximum depression of 5 degrees. The combat module can rotate and elevate/depress 100 degrees every second. The operator manually aims and fires the grenade launcher or aiming can be conducted by entering coordinates. In the latter mode, the aiming tabulations will be calculated so that the grenade launcher can be aimed in order to strike the designated target.

     Power comes from an electric motor though DevDroid does not provide a maximum speed for the Droid NW 40 in their literature. The Droid TW 12.7 has a top speed of 4.3 miles per hour so the Droid NW 40 is likely in the same range. The Droid NW 40 has a maximum operational range of 31 miles on roads and off-road, the maximum range drops to 25 miles. Endurance-wise, the onboard batteries permit 120 hours of power assuming the Droid NW 40 is stationary (for example, as a static gun position) but if active in the battlefield, then the endurance is reduced to 12 hours.

     Operator vision comes from the optic suite seen below the barrel of the AGL-53. Besides the daylight cameras, there is a thermal imager that permits the Droid NW 40 to engage enemy targets at night as well as in low visibility conditions such as smoke, dust, and fog. Linkage to the Droid NW 40 can be accomplished using radio communication products such as Wi-Fi and Sine Link modules (from Sine Engineering). If required (or desired), the Droid NW 40 can be upgraded to utilize Starlink, LTE, or a Mesh network.

     As a note, the production Droid NW 40 uses the same tracks and drive train along with the middle section as the Droid TW 12.7. However, the battery compartments and other component covers situated on the sides of the UGV are longer and boxier than on the Droid TW 12.7 as the Droid NW 40 has a longer range and endurance.

For further information on the 40x53mm grenade types, visit:

https://photosofmilitaryhistory.blogspot.com/2025/02/russo-ukrainian-war-repkon-defence-rds.html

Wednesday, December 17, 2025

Russo-Ukrainian War: The Baikal MP-155 Shotgun

Source: Anatolii Stepanov (Reuters)

     A soldier of the 49th. Assault Battalion Carpathian Sich “Oleg Kutsyn” on patrol somewhere in Kostiantynivka, Donetsk Oblast on December 7, 2025. The vehicle in the background appears to be a Ukrainian Nissan Titan Warrior that was knocked out and subsequently stripped of usable parts.

     The soldier is outfitted for anti-drone duty as evidenced by his shotgun armament. From appearances, the shotgun is a Baikal MP-155 semi-automatic 12-gauge shotgun. The MP-155, developed and built by the Russian Izhevsk Mechanical Plant, has been in production since at least 2014 and remains so to this day. A gas-operated weapon, the MP-155 holds four rounds in a tube magazine and has a weight of 7.7 pounds. An interesting feature of the MP-155 is that there is an interrupter which allows the operator to disengage the magazine feed to permit the hand loading of a round. This is useful when the need to fire a different type of shell from what is already loaded is required. It also means there is no need to fully empty the magazine in order to change ammunition. Other features include a field changeable barrel (meaning, a gunsmith is not required to effect the change) and the ability to mount optics or post sights. Out of the box, aiming is done using the perforated sighting bar that runs along the top of the MP-155.

Wednesday, December 10, 2025

Russo-Ukrainian War: The RC Direction Chaklun-K Drone

Source: Oksana Parafeniuk (for The Washington Post)

     A soldier of Special Purpose UAV Unit “Typhoon” with what looks to be a early Chaklun-K drone (or possibly a prototype). The unit, formed in May 2024, falls under the National Guard of Ukraine and is garrisoned in Kyiv. The current commander is Mykhailo “Michael” Kmityuk. Several types of drones are operated allowing the unit to undertake short and long range missions against Russian targets and elements of “Typhoon” have seen combat in some of the hotter sections of the front to include the Pokrovske and Kupyansk battle zones. Chaklun, which means sorcerer or magician, is a series of long-range reconnaissance and strike drones designed and produced by the Ukrainian company RC Direction. The Chaklun was approved for service on October 16, 2024.

     It should be mentioned that the assumption this is a early Chaklun-K drone is because it lacks refinements seen in the current Chaklun-K design. This might not be surprising as the “Typhoon” unit often field trials drones and provides evaluation data and feedback to the drone designers for improvements. That said, the Chaklun-K is used for strike missions against ground and aerial targets. RC Direction designates the drone configured for ground attack as the Chaklun-K(A) while the drone set up for air-to-air combat is the Chaklun-K(M).

     The Chaklun-K is primarily constructed of phenoplast-polystyrene. This is a composite synthetic resin which is inexpensive and easy to use via injection molding manufacturing processes. As a consequence, production is rapid. In addition, the material offers a very low radar cross-section that helps the Chaklun-K avoid detection. The electric engine is mounted in the rear driving a 3-bladed pusher propeller and the cruise speed is 50 miles per hour with a stall speed of 37 miles per hour. The Chaklun-K(A) has a maximum speed of 75 miles per hour with an operational altitude (not the maximum altitude) of 300 meters as it is designed for ground attack. The Chaklun-K(M), on the other hand, utilizes a high performance engine that pushes the drone to a top speed of 109 miles per hour with an operational altitude of 4,000 meters. This allows it to better engage enemy drones. The Chaklun-K uses a secure linkage to the operator's controller out to a range of 17 miles even if the airspace is being actively jammed.

     The current Chaklun-K has a single hardpoint on each wing which provides for a total warload of 4.4 pounds. Publicity photographs show each hardpoint carrying two 3D printed bombs. Although not stated, it is possible that the Chaklun-K can be fitted with an internal explosive payload in place of external ordnance. As the Chaklun-K is heavier (9.5 pounds) compared to the reconnaissance Chaklun (6.2 pounds), the Chaklun-K only has an endurance of 1 hour when flying at cruise speed. The Chaklun-K(A), when being sent against static targets, can be preprogrammed with telemetry which allows the drone to fly the mission fully autonomously. If required, an operator can assume control.

     The Chaklun-K can be hand launched in some circumstances but the usual method is via a launch rail and the green cord ending in a metal ring seen on the underside of the drone in the photograph is connected to a rear-facing hook. This cord is in turn connected to the launcher.

     So far, Chaklun-K drones have flown over 2,000 missions against Russian targets and the Chaklun-K(M) plays a large role as part of Ukraine's air defense arsenal.

Saturday, December 6, 2025

Russo-Ukrainian War: The 35D6M Radar Complex


     A screen capture from an informational video produced and released by the Ukrainian Air Force's 138th. Radio-Technical Brigade “Dnieper Ukraine” shows one of the brigade's 35D6M radar stations. The contrast between the base green paint on the radar complex and the brown of the fall/winter terrain emphasizes that this is a information production and not a shot of the complex in actual active deployment. Had it been, the 35D6M would have been easily spotted by Russian reconnaissance UAVs and targeted for destruction. The 35D6M is a modernization of the Soviet 19Zh6 (NATO reporting name Tin Shield) medium-range, 3D air defense radar which entered service in the early 1980s. The modernization program was undertaken by the Iskra Research & Production Complex, a part of Ukroboronprom, with the first 35D6M being delivered in the spring of 2021.

     According to Ukroboronprom, the modernization program updated the antenna apparatus, saw the installation of improved system and operating software, and the fashioning of a cabin that includes a total rework of the radar operator's stations and the fitting of a HVAC system. The complete details of the modernization isn't specified in articles, likely for operational security. Iskra took 19Zh6 radar complexes and completely took them apart. After the complete disassembly, all components were inspected and those parts that were to be re-used were refurbished before being reassembled with the updated parts as outlined above. It was said that the modernization of a single 19Zh6 into a 35D6M was not a quick process. The result is, again according to Ukroboronprom, a complex that has increased operational range, improved target data and trajectory acquisition, reduced maintenance requirements, and the extension of the complex's service life. As the various articles leave out the exact performance capability of the 35D6M, what follows are the specifications of the 19Zh6 radar.

     As mentioned, the 19Zh6 is a medium-range, 3D radar. The 3D (3 dimensions) means the radar provides the usual range and azimuth coordinates but adds the elevation coordinates and with all three, target tracking is far more precise. The radar itself uses a frequency-controlled, phased array antenna and it operates in the E- and F-band frequencies (2,850 to 3,200 MHz). Four transmitters generate overlapping wave patterns which improves altitude calculations. Pulse power is 3.2 kW as an average but can run as high as 350 kW. The Russian Wikipedia mentions the 35D6M as having a target detection range of 29 miles at low altitude and 108 miles at medium or high altitudes. There was no source provided with which to verify the data. Speaking of low altitude, the 19Zh6 and the 35D6M are optimized for low altitude target detection as the radar is resistant to active and passive jamming but is also able to filter out strong ground reflection (more often called clutter) from terrain, buildings, and other stationary objects. Finally, the radar is able to work effectively in all weather conditions. The radar antenna spins either at 5-6 revolutions per minute (rpm) or 10 to 12 rpm. The complex features BITE (Build-In Test Equipment) which permits rapid fault detection. The exact crew size for the entire complex isn't known but is likely between 7 to 10 men which would include at most 5 radar operators/technicians, at least two tractor drivers, and the remainder being mechanics to maintain the equipment. From the halt, it takes a trained crew 1 hour to bring the radar into action.

     The full 35D6M complex includes a 6BP power plant which houses two DGM 4-60-T0230-TS/400 diesel generators along with a PSTS-100 converter. The power plant sits inside a KP10 box body which is set on a MAZ-5224V 2-axle trailer chassis. The unit provides the power to the radar and its associated systems. The radar system and the 6II cabin sit on a MAZ-938 series 2-axle semi-trailer which has a maximum load capacity of 13.5 tons. The radar array is mounted on a 40V6M tower mast. The vehicle hitched to the MAZ-938 is a KrAZ-255V tractor. Besides the KrAZ-255V, the KrAZ-260V can also be utilized as a tow vehicle for both the semi-trailer and the 6BP.

Saturday, November 22, 2025

Russo-Ukrainian War: The Polaris MVRS 700 UTV

Source: @inukraine.official on Instagram

    In early March 2024, Russian Federation forces launched an attack near Lyman, Donetsk Oblast. The initial assault included tanks and IFVs (Infantry Fighting Vehicles) and in the way was the Ukrainian 60th. Mechanized Brigade. In short order, the assault's first push was repulsed but the Russian forces were not done and a second assault was launched...with “golf carts”. The “golf carts” were Aodes Desertcross 1000-3 utility task vehicles (UTVs). Crammed with soldiers, the unarmored UTVs were quickly destroyed. Russia has purchased over 2,000 of the Desertcross UTV from China to issue to troops in Ukraine. The first confirmed appearance of them in Ukraine occurred in November 2023. Initially, they were utilized for rear-area tasks but in was not long before they were used in direct attacks on Ukrainian lines with the expected catastrophic results.

    Ukrainian forces also make use of UTVs to fulfill logistical, medical, and fast reaction roles. The advantages of UTVs are a smaller size, a quieter engine, and high speed. This makes them more difficult to both see and hear, even from reconnaissance drones, while the high speed enables the UTVs to move through terrain quickly. Of course, the main disadvantage is UTVs lack any sort of armor, leaving the driver and any passengers completely vulnerable to enemy fire. For logistical tasks, UTVs are used to resupply troops with ammunition, rations, etc. as well as transport soldiers to and from the front during rotations. Casualties can be evacuated to the rear using UTVs. The Ukrainians also use UTVs as as fast reaction units. For example, the 93rd. Mechanized Brigade “Kholodnyi Yar” uses UTVs fitted with Stugna-P ATGMs (Anti-Tank Guided Missiles). UTVs used in this role are like “fire brigades”, rapidly moving to sections of the front to engage enemy armor. As the Stugna-P has a maximum range of 3.4 miles (in daytime) and 1.9 miles (at night), these units have a measure of stand-off distance from the direct front lines though they remain vulnerable to FPVs and artillery fire. The screen capture here is from a Ukrainian soldier's smartphone video and shows one of the UTVs used by Ukrainian forces: the Polaris MVRS 700.

    The .8-ton MVRS 700 (Multiple Vehicle Reentry System) is powered by a Polaris 2-cylinder, liquid-cooled, 4-stroke engine with electronic fuel injection (EFI). The engine develops 45 horsepower (683cc) and is paired to a Polaris Variable Transmission with a 3-speed gearbox (2 forward, 1 reverse). This gives the MVRS 700 a top road speed of 42 miles per hour. Fuel capacity is 13 gallons and depending on how the UTV is driven, range can vary between 55 to 80 miles.

    The front rack of the MVRS 700 can carry up to 100 pounds while the rear box bed (which can be tipped) can hold 1,000 pounds. The maximum capacity of the MVRS 700 is 1,600 pounds. A trailer hitch on the rear of the UTV can tow up to 1,750 pounds. Run-flat Goodyear Tracker Mud Runner tires ensure limited mobility is retained after damage. In the front is a self-recovery winch with a 2-ton capacity.

Wednesday, November 19, 2025

Russo-Ukrainian War: The KPS-53AV Gun/Bomb Sight

Source: @qnesko007 on Instagram

     A screen capture from a video, taken from the weapon systems officer's (WSO or “Wizzo”) forward view from his cockpit, located in the nose of a Mil Mi-24D gunship (NATO reporting name Hind-D). Directly in front of him is the KPS-53AV gun/bomb sight system which takes up a good portion of his available cockpit space.

     The KPS-53AV is used by the WSO to aim the Yakushev-Borzov YakB-12.7 4-barrel rotary heavy machine gun mounted in a USPU-24 chin turret. In fact, the end of the YakB-12.7 can be seen just above the sight. The toggle on the left front side of the sight reads “ВКЛ СЧИСЛЕНИЕ” which translates as “On Counting” while the red triggers on either side of the unit have “ОГОНЬ” on them which means “Fire”. The angled KS-53 sight glass is in the center. The knobbed grip on the left side of the sight is used to traverse the chin turret (60 degrees to either side of the centerline) with the entire KPS-53AV swiveling to allow the WSO to track targets. On the right side, the other grip controls the elevation and depression of the YakB-12.7 (20 degrees and 40 degrees respectively). The KPS-53AV is stabilized and includes a VSB-24 analog ballistic calculator. Linked to a air pressure sensor and a angle-of-attack sensor mounted in a boom on the exterior of the helicopter (not visible in this screen capture), the calculator takes the data from the sensors and combines them with the ballistics of the YakB-12.7 to provide aiming correction. The KPS-53AV also has a range finder that can determine target distance but the WSO must manually input the size of the intended target. Built into the KPS-53AV is a PAU-457-2M gun camera which records engagements. The camera uses 16mm film and has a 8 frame per second shoot rate. The KPS-53AV is also used by the WSO to deliver unguided bombs. While the pilot has some control over the helicopter's weapons (and has his own sights), only the WSO can accurately conduct bombing runs. The pilot doesn't have a bomb sight though he can jettison the bombs in the cases of emergencies.

     The YakB-12.7 in the Mi-24D is provided with 1,470 rounds of ammunition and unlike most rotary weapons, the YakB-12.7 is purely gas operated and does not need an external motor to drive the barrels. The maximum rate of fire is between 4,000 to 5,000 rounds per minute so with such a ravenous consumption, the WSO will typically fire short bursts in order to conserve ammunition.

     To the left of the KPS-53AV is a radar altimeter which measures the height (altitude) of the helicopter above the ground immediately below it. A look at the reading and at the time of the screen capture, the helicopter was flying a little over 21 feet off the ground. To the right is the screen for a GPS. 

Saturday, November 15, 2025

Russo-Ukrainian War: The Wild Hornets Sting Loitering Munition

Source: Reddit

     A constant in the skies of Ukraine are waves of Russian drones destined for mostly civilian targets with additional targets being military or infrastructure such as power plants. On a daily basis, an average of 180 to 200 or more drones are launched against Ukraine. Typically, these are HESA Shahed 136 drones purchased from Iran, the Russian produced version called the Geran-2, and decoy lookalikes designated as the Gerbera. The Shahed 136 carries a 110 pound warhead, the Geran-2 either a 115 pound or 200 pound warhead, while the Gerbera can carry a 22 pound warhead if fitted with one. Monthly totals average about 5,000 drones. In some individual attacks, the drone count can rise to as many as 600 in order to overwhelm Ukrainian air defenses and ensure successful strikes. While these defenses are managing a kill score of 87 to 89 percent, the sheer volume means drones get through. While ammunition for machine-guns and small caliber cannon is relatively inexpensive and plentiful, usage of air defense missiles is far more costly and replenishment of expended munitions is not a guaranty. To this end, designers of the Wild Hornets Charitable Fund have created an inexpensive loitering munition designed specifically to engage and destroy large Russian drones such as the Geran-2. It is called the “Zhalo”, meaning “Sting”.

     The Sting was developed sometime in 2024 with the first knowledge of the drone appearing in the media in October 2024. The Sting is a “hit-to-kill” weapon and as that suggests, it knocks down Russian drones by flying right into them. Because of this expendability, the Sting is built as cheaply as possible and as simply as possible to permit production in volume. It is estimated that a single Sting has a price tag of $2,500USD. Compare this to the estimated $30,000 to $80,000 for a single Geran-2 drone. In addition, consider that even old missiles such as the Vympel R-73 (NATO reporting name AA-11 Archer) have costs into the tens of thousands of dollars while FIM-92 Stinger missiles can have a cost of $480,000USD or more in price. Thus, it can be seen that the Sting is a very cost effective means to destroy drones.

     The Sting's body, wings, and rotor pylons are built using 3-D printers (made by Bambu Labs and Elegoo). This can be seen in wings where the sunlight shows the lattice structures within the wings which provide rigidity while keeping the weight down. Although the photograph angle makes the Sting look large, it is not and though no specific height has been given, it is under 2 feet tall and easily held in a single hand. It is a quadcopter, using four electric motors. The reported top speed of the Sting is 196 miles per hour, more than adequate to catch the Shahed and Geran-2 which top out at 115 miles per hour. The Sting does have an explosive warhead but how large it is has not been disclosed. Given range is 16 miles up to a ceiling of 10,000 feet. The Sting is a FPV (First Person View) munition and is flown using a hand-held controller and  VR goggles, the latter using a Hornet Vision digital video link. The pilot's view comes from a Odd Systems designed and built Kurbas 640 Alpha thermal imaging camera fixed to the Sting's body. The Wild Hornets Charitable Fund provide night pilot training with the Sting and the basics can be learned in a three day course.

     A typical Sting mission profile begins when incoming Russian drones are detected and estimates made on their heading. Air defense units will mobilize and rapid reaction groups will move towards the flight path of the drones. At this time, Sting equipped units will set up the drones which can take up to 15 minutes to do. Next, radar confirmation is required to ensure accurate location of Russian drones and once received and within range, the pilot launches the Sting. The Sting takes off vertically and can do so from any flat surface. Once airborne, it transitions to level flight. The radar operator relays telemetry data to the pilot who guides the Sting towards the target. Once close, the Sting's thermal camera can provide visual target confirmation and it is up to the pilot to successfully fly the Sting into the drone, effecting detonation of the warhead and obtain the shoot-down. Typically, a Sting pilot has around 10 minutes from launch to locate and effect the attack on the drone before the drone flies out of range of the Sting. With effective guidance, the average kill time can be as low as 10 to 15 seconds which means that in a “target rich” environment, pilots can fly more than one intercept mission in optimal conditions.

     The Sting appears to have entered troop trials around May 2025 and by August 2025, was in more widespread usage. By October 2025, it is reported that the Sting has been responsible for downing over 1,000 Russian drones. Currently, 100 Sting drones are built and assembled per day with the goal to ramp up production capability and capacity so that 600 to 800 Sting drones can be completed per day.

Wednesday, November 12, 2025

Russo-Ukrainian War: The BTS-4M Armored Recovery Vehicle

Source: Sofiia Gatilova (Reuters)

     Rolling through a Ukrainian town in Kharkiv Oblast in March 2025 is a upgraded BTS-4 armored recovery vehicle (ARV). The BTS-4 is the successor to the earlier BTS-2 that entered service in 1955 and utilized T-54 chassis. The BTS-4, on the other hand, used the chassis of the T-55, T-54, and even older T-44 medium tanks (the latter being surplus). The primary difference between the BTS-2 and the BTS-4 is that the BTS-4 added a large snorkel for deep wading. When not in use, the snorkel folds rearwards, laying across the back of the vehicle. The nomenclature of the BTS-4 is actually more granular when it was used in Soviet Army service. The BTS-4 used T-44 chassis, the BTS-4A utilized T-54 chassis, the BTS-4B used pre-production T-54-1 and T-54-2 tank chassis, the BTS-4M used T-55 chassis, and the BTS-4V series utilized T-62 chassis. Externally, they look much alike and the only real way to tell the difference without looking inside the vehicle is by the separation distance between the bogie wheels or other very minor differences. Typically, in Ukrainian Army service, the granular designation isn't always used. In 2020-2021, the Lviv Armored Plant (a part of Ukroboronprom) conducted an upgrade to BTS-4 vehicles in service with the Ukrainian Army.

     The 32-ton BTS-4 (assuming a BTS-4M) is powered by a V-54 diesel engine that develops 520 horsepower. This permits a top road speed of 31 miles per hour though speeds when towing a vehicle are lower with the tow speed being based on the weight of the tank or armored vehicle being towed. Enough onboard fuel is carried to permit a maximum operational range of 310 miles (unloaded). The Ukrainian BTS-4 upgrade increases the weight to 38 tons and replaces the V-54 engine with a more powerful one that develops 580 horsepower but because of the added weight, the maximum speed is reduced to 24 miles per hour. Additional fuel capacity is added in the form of two external fuel drums on the rear but how much additional range this provides isn't stated. The crew of the Ukrainian BTS-4 is three men as opposed to the standard two-man crew of the regular BTS-4.

     Because the BTS-4 is based on the T-55 tank, it shares the same cast steel armor profile. The front hull supports 100mm thick armor though with a 60 degree slope angle on the upper glacis and a 55 degree slope on the lower glacis, the effective armor thickness is higher. The hull sides support 80mm thick armor (without much angling) while the rear has between 20mm to 45mm of armor. The hull roof has 15mm thick armor and the hull bottom has 20mm of armor.

     As befitting a recovery vehicle, the Lviv Armored Plant upgrade swaps out the original BTS-4's 3-ton capacity crane with a new hydraulic driven crane capable of lifting up to 12 tons. The crane is fitted to the left side of the vehicle, the mounting point/turntable situated near the driver's hatch. When not in use, the crane is swung directly backwards along the top of the hull. On the hull front is a dozer blade which is used to clear obstacles, debris, or even dig out a defensive position. The primary winch, with block and tackle, is capable of pulling up to 100 tons. Total cable length is 656 feet. There is also a smaller, secondary winch that also has the same cable length. In the rear of the BTS-4 is a spade that can be deployed to stabilize the vehicle when conducting recovery tasks with the winch. Situated towards the center of the vehicle is a open cargo platform which is used for spare parts, tool boxes, supplies, and other equipment. There are also multiple storage boxes carried on the hull exterior as well as a unditching beam stored just above the rear spade. To assist in field repairs, there is a arc welding apparatus (including a generator) carried on the BTS-4 as standard equipment. From the Lviv Armored Plant, the upgraded BTS-4 includes the snorkel but in the photograph here, it has been removed. In Ukrainian service, the BTS-4 serves as a more economical supplement to the BREM-1 ARV which is derived from the T-72 chassis.

     To date, the Ukrainian Army has lost 19 BTS-4 vehicles with 14 destroyed, 4 damaged, and 1 captured by Russian forces. The Russians, which also utilize the BTS-4, have lost 27 to date with 18 being destroyed, 4 damaged, 4 abandoned, and 1 captured by Ukrainian forces. The Russians have also lost a single, more modern BTS-4V.

Sunday, November 9, 2025

Russo-Ukrainian War: The 2A65 Msta-B 152mm Howitzer

Source: Alexey Konovalov/TASS

     In a well-prepared position, a Russian crew of a 2A65 Msta-B 152mm howitzer ready a round for firing. Named after the Msta River that flows through Novgorod and Tver Oblasts in Russia, the 2A65 first entered service in 1987. The “B” stands for “buksiruemyi” which translates to “towed”. In 2024, the International Institute for Strategic Studies estimated that Russian artillery units had a approximate total of 400 2A65 howitzers. To date, the Russians have lost 131 documented Msta-B howitzers with 78 being destroyed, 17 suffering damage, one abandoned, and the remainder having falling into Ukrainian hands.

     Speaking of damaged, the 2A65 in the photograph has clearly endured its fair share. It is missing the left gun shield and the remaining shield is peppered with what could be shrapnel damage which has caused rust to start. The wheels have been removed and what one sees beneath the gun shield is the pneumatic drum brake system for the right wheel. Finally, the howitzer is missing the spring-operated rammer. This is the reason the soldier behind the loader wields a stout stick which he will use to ram the projectile and powder charge into the breech.

     The caliber of the 2A65 is, specifically, 152.4mm and with the muzzle brake, the barrel is 26.8 feet long. The combat weight of the 2A65 is 7.5 tons. The howitzer uses a split trail carriage (here, almost buried in fine grain dirt) and the mounting permits a maximum elevation of 70 degrees to a maximum depression of 3.5 degrees. Traverse is limited to 28 degrees without moving the entire howitzer. All adjustments to gun direction are manual. Just visible on the front of the howitzer is a circular hydraulic firing jack which is lowered to add stabilization to the howitzer, augmenting the spade on each end of the trailing arms. With a full crew of 11 men, a Msta-B can achieve a 5 to 6 round a minute rate of fire. Usually, the tow vehicle is a KrAZ-260 or Ural 4320 6x6 truck though any vehicle with a tow hitch and capable of hauling the Msta-B can be utilized.

     While the Msta-B can fire any legacy 152mm projectile used by older howitzers, it primarily fires more modern munitions. The main projectile is the OF45 HE (High-Explosive) round and with a maximum charge, it can be fired out to a range of 15.3 miles. Speaking of charges, the gunner can select from three types depending on the engagement range. They are: OF73 (short range), OF58 (standard charge), and OF72 (maximum charge). For additional range, the base-bleed OF61 projectile can be utilized and this achieves a maximum range of 18 miles. Other munitions include the OF23 which contains 42 HEAT (High-Explosive Anti-Tank) submunitions which can penetrate 100mm of conventional (not rolled homogeneous) armor, the HS30 EW (Electronic Warfare) round which creates interference, and the 2K25 Krasnopol base-bleed, fin-stabilized, semi-automatic, laser-guided munition. The latter, however, requires forward observers to effectively use the round (by “painting” targets with lasers) and the effective firing range is 12 miles. A panoramic sight is used for indirect fire while a second sight is used if the Msta-B has to engage in direct fire.

     The Ukrainian Army also utilizes the Msta-B with some 70 noted as being in service in the 2024 “The Military Balance” report issued by the International Institute for Strategic Studies. Of these, to date, 8 have been lost with 3 destroyed, 2 damaged, 2 abandoned, and one captured by Russian Forces.

Monday, October 27, 2025

Russo-Ukrainian War: The Protector UGV

Source: Ukrainian Armor

     The Ukrainian Army has been facing a severe shortage of recruits which is leaving the available manpower of units sharply decreased. Without replacements for losses, the Ukrainian Army has not been able to conduct more strategic counterattacks to Russian advances and so must contend with only local actions. Another constant problem is resupplying troops along the front lines as well as evacuating casualties. Typically, this is done using a single SUV or pickup truck with a 2-3 man crew. However, it means running a gauntlet of drone infested skies which has become known to Ukrainian troops and drone operators as the “Kill Zone” where anything that is perceived as an enemy is subjected to FPV drone strikes. As a consequence, the risk is high for those tasked with conducting these missions. As a solution, in September 2024, Ukrainian Armor debuted its Protector UGV (Unmanned Ground Vehicle) at the MSPO International Defense Industry Exhibition held in Kielce, Poland. On June 27, 2025, the Ministry of Defense of Ukraine formally accepted the Protector for service and to date, the Protector is the largest UGV in use by the Ukrainian Army.

     The 4.4-ton Protector looks to be based on Ukrainian Armor's Novator 4x4 APC (Armored Personnel Carrier), at least in the external appearance. It is fitted with a 3-litre diesel engine that develops 190 horsepower and on roads, the Protector can achieve a maximum speed of 28 miles per hour.  The Protector features all-wheel drive to enhance off-road mobility. As befitting a cargo carrier, the Protector has a payload capacity of 1,543 pounds and has been shown to be capable of towing a trailer with 6,000 pounds of cargo onboard.

     The operator's view comes from a day/night optical suite fitted onto a centrally mounted mast and in more built-up terrain, the maximum control range is around 4 miles but in open terrain, control range can be anywhere between 7.5 miles to a maximum of 9 miles. The operator has three independent links to the Protector via an external antenna on the UGV which allows the operator to switch control frequencies if electronic jamming is impacting signal transmissions. Although this operational distance seems relatively short ranged, it does allow the Protector to navigate through portions of the “Kill Zone” though in some sectors of the front, the “Kill Zone” can be as much as 19 miles wide. Besides the electronics which control the vehicle, the Protector is also fitted with the ICOMWare situational awareness system. Connected to a secured mesh network, the ICOMWare system permits real-time communication and information sharing. With it, the Protector can transmit feeds to any unit connected to the network. As a redundant control mechanism, the Protector is fitted with a Stalink terminal. Enough fuel is carried to provide the Protector with a maximum operational range of 249 miles.

     The Protector is encased in STANAG 4569 Level 1 armor. This means it is capable of defeating up to the 7.62x51mm NATO ball round (the 147-grain M80 cartridge) at 30 meters. It can also withstand being hit by 155mm shell fragments from a range of 100 meters. Assuming the armor protection extends to the underside, the Protector can shrug off hand grenade explosions, small anti-personnel explosives, and some artillery dispersed fragmentation submunitions. In addition, the Protector is fitted with run-flat tires, allowing the UGV to retain mobility after receiving damage to the tire(s).

     The Protector UGV has been shown in at least four variants in Ukrainian Armor literature. One is fitted with a RWS (Remote Weapon Station) fitted with a 14.5mm KPV heavy machine-gun and designed as a infantry support vehicle while a second retains the RWS but adds mast-mounted EW (Electronic Warfare) equipment. A third variant is a tank destroyer, fitted with two ATGM (Anti-Tank Guided Missiles) while the fourth variant is a engineering vehicle with a front mounted dozer blade, RWS, and what appears to be lane marker dispensers. To date, none of these variants have been accepted for service.

Photograph via Ukrainian Armor.

Monday, October 20, 2025

Russo-Ukrainian War: The M114A1 155mm Howitzer

Source: Anatolii Stepanov (Reuters)

     Artillery units of the Ukrainian Army are fielding two artillery pieces whose service debut occured during World War Two. The first is the M101A1 105mm howitzer which first entered service with the U.S. Army in 1941. Lithuania, Portugal, and Slovenia have provided Ukraine with a combined total of 43 M101A1 howitzers between 2022 and 2024. The second is shown in action here in service with the 152nd. Jäger Brigade, the M114A1 155mm howitzer. The M114A1 first saw service with the U.S. Army in 1942 and despite the age, 21 countries still use the M114A1 with Turkey and Greece maintaining the largest stocks. In fact, the M114A1 shown in the photograph is a former Hellenic Army weapon. In early 2024, Greece and the Czech Republic entered into an agreement where the Czech Republic would purchase 70 M114A1 howitzers which were surplus to the Hellenic Army's needs. Upon completion of the sale, Greece will deliver the M114A1s to Ukraine. From appearances, this sale has completed but how many of the purchase have been delivered to date is not known.

     Captured by the cameraman in full recoil, the M114A1's barrel is 12.5 feet long and it uses a slow-cone, interrupted screw breech. This means that it takes two actions on the part of the gunner to open the breech rather then one action for a steep-cone type. The combat weight of the M114A1 is 5.6 tons and requires a crew of 11 men though operating the howitzer can be done with less crew if necessary. The M1A2 carriage is a split trail style and the gun mount permits a maximum barrel elevation of 63 degrees and in the right conditions, a maximum gun depression of 2 degrees. Traverse is limited to 25 degrees to the left and right of center. Elevation, depression, and traverse is all affected manually using cranks. Any additional traverse requires the entire howitzer to be repositioned. The only recoil reduction comes from the hydro-pneumatic mechanism as the M114A1 does not use a muzzle brake. The crew is provided with a minimal gun shield that offers a limited defense against some small arms fire and shell fragments.

     Despite the breech type, a trained crew can run 4 rounds through the M114A1 during burst firing. A sustained fire rate is 1 round every minute but not exceeding 40 rounds per hour. As a comparison, the M777 155mm howitzer, which entered U.S. Army service in 2005 and is in use by some Ukrainian artillery units, can maintain a sustained fire rate of between 2 to 4 rounds every minute and a burst fire of no more than 16 rounds in 2 minutes. Sighting is done using a M12 panoramic telescope.

     It is not known if the Ukrainian M114A1 howitzers will be firing RAP (Rocket Assisted Projectiles) munitions (on the assumption the venerable howitzer is not designed to withstand the breech pressures) and it certainly is not compatible with the M982 Excalibur guided projectile. It is unlikely that extended-range projectiles using base-bleed would be fired from the M114A1 and instead, would be reserved for more modern systems such as the M777. This, then, leaves the M107 HE (High-Explosive) projectile as the most likely ammunition to be issued to and used by M114A1 crews. The M107 has a weight of 90 pounds of which 15 pounds is composed of TNT. The ammunition is two-part, consisting of the M107 projectile and the propelling charge. The maximum charge, the M4A1, contains a base charge and four incremental charges. This collection of propellent powder weighs just under 14 pounds. Using the M4A1 charge, the M114A1 can fire the M107 shell out to a maximum range of 9.2 miles. As another comparison, the M777 can fire the same M107 shell to a maximum range of 13 miles. Against hard targets, a M107 shell fired from the M114A1 can penetrate a maximum of 488mm of concrete at a meet angle of 0 degrees at a range of 2.8 miles.

     To date, no Ukrainian M114A1 has been lost in action. The photograph was taken on October 15, 2025, the crew firing on Russian positions near Pokrovsk, Donetsk Oblast.

Sunday, October 19, 2025

Russo-Ukrainian War: The FN MAG General-Purpose Machine Gun

Source: @inukraine.official on Instagram

     Somewhere above Ukrainian held territory, a Mil Mi-8 (NATO reporting name Hip) helicopter of the Ukrainian Army Aviation branch prepares to engage a Russian Geran-2 loitering munition. The Mi-8 has two door gun positions. The first is seen here, situated on the left side of the fuselage, behind the cockpit. A second position is in the rear of the fuselage, firing out from a opening in the right hand clamshell cargo door. Normally, the 7.62mm PK machine-gun would have been the standard defensive weapon but here, the gunner has elected to use a 7.62x51mm FN MAG machine-gun. Countries that have sent FN MAG machine-guns to Ukraine include Belgium, Canada, France, Luxembourg, and the Netherlands. The gunner's FN MAG looks to have been one provided to Ukraine by France. The FN MAG, the original developed and built by the Belgian arms manufacturer FN Herstal, entered service in 1958 and today, it is deployed by dozens of countries. Several countries license build the FN MAG and they are the United Kingdom (as the L7A1), Canada (as the C6), Indonesia (as the SM2), Sweden (as the Kulspruta 58), and the United States (as the M240).

     The FN MAG is, as mentioned, chambered for the 7.62x51mm NATO cartridge, and it uses a gas operated, long-stroke bolt action which fires from an open bolt. The rate of fire varies from 650 rounds per minute up to 1,000 rounds per minute. This variance is created by the gunner adjusting the gas valve which permits him to accommodate various cartridge loadings, to overcome barrel fouling, and modify the rate of fire to suit the target being engaged. The empty weight of the FN MAG is 26 pounds though this particular FN MAG uses a polymer plastic buttstock that lightens the mass to a small degree. The FN MAG feeds from the left, ammunition being held in either the M13 disintegrating link belt or the non-disintegrating DM1 belt. Each belt holds 50 rounds and belts can be connected to create longer ones. A quick-change barrel allows for rapid switching in case of barrel failure or to allow a barrel to cool after prolonged sustained fire. When firing from a bipod, the effective range of the FN MAG is .5 of a mile (800 meters) but if using a tripod, the effective range increases to 1.1 miles. The maximum range of the round is 2.1 miles.

     The regular sights of the FN MAG consists of a front blade sight and a rear mounted folding leaf sight with both an aperture and a notch. As this example of the FN MAG is fitted with a Picatinny rail, the gunner has added what looks to be a Thermion 2 thermal imager rifle scope made by the Lithuanian based company Pulsar. The Thermion 2 series is offered in two objective lens sizes: F35 and F50. The Thermion 2 uses a AMOLED (Active-Matrix Organic Light-Emitting Diode) display with a magnification ranging between 2.5X up to 12X depending on the model. Other features of the Thermion 2 scope series include Wi-Fi for connecting to smartphones (the thermal imager can be operated from a compatible smartphone), reticle style customization, color options for the reticle and display, photograph and video recording (16 GB of internal memory storage), and IPX7 (Level 7) waterproofing. This means the scope can be fully submerged in water up to a depth of 3.2 feet for no longer than 30 minutes without permanent damage. Detection range is between .8 of a mile up to 1.1 miles for the larger model. The FN MAG has a brass catcher bag fitted to collect ejected empty cartridges so that they do not roll around the floor of the compartment, causing a slip hazard for the crew. 

     As it turned out, the gunner was able to successfully engage the Geran-2, shooting it down where the drone crashed into a copse of trees before exploding when its warhead detonated.

Monday, October 13, 2025

Russo-Ukrainian War: The M-84A4 Sniper


Source: @global_tanks on Instagram

     Sometime in 2024, Croatia provided the Ukrainian Army with thirty former Croatian Army M-84A4 Sniper (“Snayper” in Ukrainian) main battle tanks. One of these tanks is shown here, operated by the 141st. Mechanized Brigade. The M-84 is a Yugoslavian variant of the Soviet export model of the T-72A, designated the T-72M. Produced between 1979 and 1983 by the Croatian company Đuro Đaković Grupa d.d., some 680 tanks rolled off the lines. Ever since, the tanks have undergone modernization over the decades while in Croatian and also Serbian service. The M-84A4 Sniper is the final variant of the M-84A series and by 2008, the entirety of the Croatian Army's tanks were brought up to the M-84A4 standard. The type remains the mainstay of Croatian Army tank units and this is because the next modernization program, designated the M-84D, is extensive and costly. To date, only two M-84D tanks have been built.

     The 42-ton M-84A4 is powered by a V-46TK 12-cylinder, liquid-cooled, supercharged, multi-fuel diesel engine that develops 1,000 horsepower. According to Đuro Đaković's promotional material, an optional “power pack” 1,000 horsepower engine is available and some believe this to be of German manufacture. The V-46TK is paired with a hydromechanical transmission featuring a 8-speed gearbox (7 forward, 1 reverse). Maximum road speed is 42 miles per hour. A 330 gallon fuel capacity gives the M-84A4 a total operational range between 310 to 434 miles.

     The main armament of the M-84A4 is a turret-mounted 2A46 125mm smoothbore gun. The 2A46 sits within a 2-plane stabilizer with the mount providing 13.5 degrees of elevation and 6 degrees of depression. The turret gives a full 360 degree traverse. The original SUV-M-84 fire control system (FCS) is replaced by a more modern EFCS-3 FCS which is equipped with a DBR-84 ballistic computer. The gunner is provided with a DNNS-2 day/night sight and a laser rangefinder. Like all T-72 based tanks, the M-84A4 uses a automatic loader with 22 ready rounds of ammunition within the carousel situated beneath the turret basket. A further 20 rounds are stored throughout the tank's interior.

     The 2A46 can fire a wide array of 125mm rounds. A typical APFSDS (Armor-Piercing, Fin-Stabilized, Discarding Sabot) round may be the 3BM26 which can penetrate 410mm of rolled homogeneous armor (RHA) at a 0 degree angle at 1.2 miles. At a 60 degree, slope, the penetration is 200mm of RHA. The 3BK21B HEAT (High-Explosive Anti-Tank) can go through 260mm of RHA at a 60 degree slope to a range of 1.9 miles. The 3OF28 HE (High-Explosive) round contains 11 pounds of explosive and can be fired out to a range of 2.5 miles. The M-84A4 is not outfitted as standard to fire tube-launched ATGMs (Anti-Tank Guided Missiles) such as the 9K119 Refleks (NATO reporting name AT-11 Sniper) and 9K120 Svir (a variant of the Refleks) or the older 9K112 Kobra (NATO reporting name AT-8 Songster).

     Secondary armament of the M-84A4 consists of a co-axial 7.62mm PKT which is provided with 2,000 rounds of ammunition. Maximum range (not effective) is 1.1 miles with a rate of fire of 250 rounds per minute. The commander is provided with a 12.7mm NSV mounted heavy machine-gun outside his cupola on the turret top. A total of 360 rounds are carried for the NSV with the mounting providing for an elevation of 75 degrees and a maximum depression of 5 degrees.

     To protect the 3-man crew (commander, driver, and gunner), the armor profile of the M-84A4 is much the same as the tank it is based on, the T-72A. The front hull supports 205mm of actual composite alloy armor but with an approximate slope of 68 degrees, the effective armor thickness is much higher. The turret is heavily protected with what the Soviet's called K-Combination. This is a laminate armor using hardened steel on the exterior turret shell behind which is a cavity containing a silicate (sand or granite), RHA steel, and ceramics. From the front, the turret has an effective 410mm to 500mm of armor thickness against APFSDS ammunition and between 500mm to 560mm of effective armor against HEAT rounds. The M-84A4 does not come with explosive reactive armor (ERA) as standard. Additional defensive equipment include an automatic fire extinguishing system, 12 smoke grenade launchers on the turret front for creating smoke screens, and a NBC (Nuclear Biological Chemical) system using filters and overpressure to seal the crew compartments.

     Other equipment utilized on the M-84A4 includes a meteorological sensor (positioned right behind the gun on the turret top) and a Racal produced Jaguar V communication suite. The latter replaced the older, more conventional FM and UHF receivers. The Jaguar V uses UHF only receivers that feature the ability to hop across narrow or wide band frequencies to resist jamming. A TELDIX navigation system, DNKS-2 day/night commander's periscope, TNPO-168V driver's periscope, and a TNPA-65 auxiliary periscope round out the main equipment installations.

     The Ukrainian M-84A4 shown here presents the breadth of add-on defenses Ukrainian units place on their tanks to give a measure of survival against enemy anti-tank weapons, FPV drones, and UAVs. As the M-84A4 does not come with ERA, Kontakt-1 blocks have been fitted to the upper and lower front hull and on the turret. Next, a complete metal frame cage supporting wire fencing has been secured to the turret. The open front of the cage is protected with weighted chains to foul drone propellers or the drone itself. Hanging down from the front of the tank are metal or rubber panels to provide a measure of defense against FPV drones looking to strike the thinner lower hull armor below the ERA blocks. Slat armor panels are secured along the tank's sides which have some effectiveness against HEAT munitions. Finally, the rear of the tank's upper deck is surrounded by what appear to be civilian radio antennas which, again, offer some defense against FPV drones or as a deterrent to attacks, forcing the FPV operator to try a more difficult vector to try to strike the tank.

Monday, October 6, 2025

Russo-Ukrainian War: The Avtomat Kalashnikova 47


     Somewhere within Ukraine, a soldier of the 93rd. Mechanized Brigade “Kholodnyi Yar” trains with his Avtomat Kalashnikova 47 (AK-47) assault rifle. Development of the AK-47 commenced in 1945 with the first prototypes trialed starting in 1947 and in 1949, the AK-47 was officially accepted for service in the Soviet Army. Production of the AK-47 began in 1948 and it remains in production to this day. Over 100 million AK-47 rifles, of all variants, have been built and the AK-47 has seen combat around the world in just about every conflict...large or small.

     The AK-47 shown here appears to be a Maschinenpistole MPi-K, the designation of the AK-47 in the military of the former Deutsche Demokratische Republik (DDR; better known as East Germany). This observation is based solely on the shape of the safety lever and the dust cover as the rest of the rifle has been modified. That such a weapon would be in the hands of a Ukrainian soldier is because Germany provided the Ukrainian Army with a small number of AK-47 rifles (73 in all) and it is a possibility these were former DDR weapons that had been kept around in storage.

     Now, the MPi-K utilized plastic handguards, pistol grips, and stocks which were prone to cracking and given the relative age of these weapons, there is a good chance that the reason this soldier's AK-47 has a replacement stock and handguards is because the rifles had been received from Germany with broken hardware which needed replacement.

     The stock looks to be a Czech manufactured FAB Defense GLR-16 CP fixed telescopic stock with adjustable cheek piece. By fixed, it means the stock cannot fold to shorten the length of the weapon. Made of black polymer plastic, the stock's cheek piece can be fully removed if not needed. The original handguards have been replaced with what appears to be a TDI Arms LHV47S handguard set which includes upper and lower handguards equipped with Picatinny (and Weaver compatible) rails. Like the stock, the handguards are high-density polymer materials for strength as well as heat resistance. On the bottom rail of the lower handguard is a folding front pistol grip.

     The typical AK-47 is chambered for the 7.62x39mm cartridge and the rounds are fed into the AK-47 via a 20-, 30-, or 50-round box magazine. A 30-round magazine is in use here. In addition, a 40- or 75-round drum magazine can be used. The action consists of a gas-operated, long-stroke piston, closed rotating bolt. Cyclic rate of fire is a maximum of 600 rounds per minute with a practical rate of fire being 40 rounds per minute if using semi-automatic fire. Burst fire is around 100 rounds per minute. Sighting is done using iron sights that are adjustable between 100 to 800 meters. Effective range is 350 meters. Without a magazine, the AK-47 weights 7.7 pounds though this soldier's modified weapon is probably lighter. Length, with the regular stock, is 2.9 feet and without a stock, the length is 2.1 feet long.

Saturday, September 27, 2025

Russo-Ukrainian War: Artillerisystem 08 Archer 155mm SPH

Source: General Staff of the Armed Forces of Ukraine

     One of the more unique artillery systems in use by Ukrainian Army artillery units is shown here, the Artillerisystem 08. Better known simply as the Archer, this vehicle is in service with one of the four artillery battalions of the 43rd. Artillery Regiment “Hetman Taras Triasylo”. Sweden, as part of the country's military aid to Ukraine, has provided 8 Archer systems and in September 2025, pledged another 18 systems. Of the eight, one was damaged by a Russian drone attack on March 3, 2024 with a second destroyed on August 4, 2025. Designed by the Swedish company Bofors between 1995 and 2009, the Archer entered production in 2010, being built by BAE Systems AB. To date, only 48 Archer systems have rolled off the line with over twice that on purchase orders from the Latvian Land Forces, Swedish Army, and Ukrainian Army.

     The basis of the 34-ton Archer is the Volvo A30D articulated 6x6 vehicle chassis which is used in the civilian construction industry (usually as a dump truck). Power comes from a Volvo D9BACE3 inline-6, intercooled diesel engine with a turbocharger that develops 340 horsepower. This is mated to a Volvo PT1560 automatic planetary transmission with a 8-speed gearbox (6 forward, 2 reverse). Three Volvo AH64 axles feature transversal differential locks with full floating axle shafts. The driver can select 6x4 or 6x6 drive on the fly. The maximum road speed is 43 miles per hour while the top reverse speed is 8 miles per hour. 105 gallons of diesel fuel provide for a maximum operational range of 400 miles.

     Situated on the very back of the chassis is the heart of the Archer, a turret mounted Fälthaubits 77 (FH77) L/52 155mm howitzer. The turret is able to traverse a total of 170 degrees and elevate the gun to a maximum of 70 degrees. Total depression is 1 degree. Housed within the turret is a fully automatic gun loading system and electronic fuze setter. Total onboard ammunition is 21 shells with a total of 126 modular propellant charges. The shells have their own magazine while the propellant charges are in a separate magazine of 18 rows which contain 6 full charges and 1 half-charge. Once all of the ammunition is expended, it takes the crew 10 minutes to reload assuming they have the Archer-specific reloading device that moves ammunition from the accompanying munitions carrier into the magazines.

     The turret itself is unmanned and instead, the gunner operates it from the cab. A FCS (Fire Control System) utilizing NABK (NATO Armament Ballistic Kernel) software generates ballistic tables for any ammunition being used along with both tabular and graphical firing tables. The FCS also automates bringing the howitzer onto target, positioning the turret without manual guidance. This is assisted by a SAGEM Sigma 30 inertial navigation system (INS). The howitzer has several fire modes to include burst fire (3 rounds every 20 seconds), sustained fire (54 rounds every 35 minutes), bombardment (21 rounds in 3 minutes), and MRSI (Multiple Rounds Simultaneous Impact). With MRSI, the FCS calculates the trajectory then handles the firing of 4 to 6 rounds so that all rounds impact on the target at the same time. The Archer is compatible with any NATO standard 155mm projectile with standard HE (High-Explosive) shells having a range of around 19 miles, extended range HE shells reaching out to 25 miles, and M982 Excalibur guided shells can attain a range of 31 miles. If need be, the Archer can engage in direct fire, out to a range of 1.2 miles. Shell speed upon exiting the barrel is measured by a Weibel MVRS-700SC muzzle velocity radar. From the halt, the Archer can be ready to fire in under 30 seconds. Stability during fire missions is provided by two rear-mounted stabilizers. Likewise, the Archer can be ready to move to a new position, also in under 30 seconds.

     For local defense, a Vapenstation 01 RCWS (Remote Controlled Weapon Station) can be fitted to the cab roof. The Vapenstation 01 is the Swedish designation for the M151 Protector RCWS which can be fitted either with a Browning M2 12.7mm heavy machine-gun or a Mk.19 40mm automatic grenade launcher (among other weapon fits). While the Vapenstation 01 is not seen in the photograph, there are some Ukrainian Archers which use it.

     The Archer's cab (holding the 4 man crew) is protected by STANAG 4569 Level 3 steel armor which provides proof against 7.62x51mm AP (Armor-Piercing) ammunition at 30 meters as well as 155mm shell fragments from 60 meters. Below the cab, the Archer supports STANAG 4569 Level 2b mine protection which permits the Archer to survive the blast from a mine packed with at most 13 pounds of explosive. Air filters and a crew cab overpressure system provides NBC defense (Nuclear, Biological, Chemical). In the photograph, the Archer is covered by a Saab Barracuda MCS (Mobile Camouflage System) which consists of fitted panels which is a multi-spectral camouflage. It features a high UV reflectance, patterns that match NIR (Near IR) reflections of the surrounding environment, SWIR (Short-Wave IR) management by adjusting spectral reflections of the environment, TIR (Thermal IR) reduction (utilizing convection, reflection, radiation, and insulation), as well as providing protection against SAR (Synthetic Aperture Radar) systems.

Sunday, September 21, 2025

Russo-Ukrainian War: The Corsair ATGM

Source: Deccan Herald

     A Ukrainian anti-tank team on the practice range with a “Корсар” (“Corsair”) anti-tank guided missile system. In some publications, the entire system is designated the RK-3 “Корсар” based on the nomenclature of the missiles. Speaking of such, the 107mm missile leaving the tube is a РК–3ОФ (RK-3OF) HE-FRAG (High-Explosive Fragmentation) munition, one of three missile types the Корсар is able to fire. The other two are the РК–3К (RK-3K) tandem-warhead AT (Anti-Tank) missile and РК–3И (RK-3I) inert warhead practice missile. The Корсар isn't a new system with State Design Bureau “Luch” out of Kyiv, Ukraine having commenced development in 2013. After trials, the first 50 examples of the Корсар were delivered to the Ukrainian Army in 2017. In 2018, testing with the Корсар was done using a thermal imaging camera and the final version, shown in this photograph, was accepted for service in 2020.

     The Корсар is designed to be lightweight portable missile system to facilitate not only lessen the burden of infantrymen who have to “hump” the Корсар around the battlefield but also to utilize the missile system on armored vehicles without adding unnecessary weight to the overall vehicle. The SPU-3 tripod, with the thermal imager, weighs 26 pounds while the PN-KU guidance system with the launch rail weighs 18 pounds. The average missile weight is 34 pounds. The typical Корсар crew is 2 men. The Корсар breaks down into four components: the SPU-3, the thermal imager, the PN-KU, and the launch rail. These components can be carried in nylon/water resistant backpacks while the PN-KU and thermal sight are carried in a plastic, impact resistant dry box carry case.

     The Корсар's missiles utilize SALG (Semi-Automatic Laser Guidance). SALG works by “painting” the target with a laser beam but the missile's seeker doesn't “ride” the beam towards the target. Instead, it picks up the reflected laser energy and aligns itself towards the strongest reflection. SALG is not as robust as true laser beam guidance and targets using HR (Highly Reflective) paint can affect the laser's energy reflection strength while smoke can also interfere with the laser. In addition, laser warning systems can pick up SALG laser designators. The PN-KU does utilize a low power laser to reduce the detectability by laser warning systems. Where SALG excels is in low cost, the ability to lock onto other types of laser designators (manufacturer agnostic), and the ability for the Корсар system to shift positions after launch. The latter is important given the launch signature of the Корсар which would betray the anti-tank team's location and that the operator needs to keep the target “painted” until the the missile hits. The ability to move to another location and reacquire the target without the missile instantly going out of control during the few seconds the guidance stops, even if only a few feet from the initial launch point, can increase team survivability against retaliatory fire. In regards to the backblast, injury would result to anyone within a 30 degree cone from the rear of the launch tube, out to a distance of 32 feet.

     The RK-3OF is meant to engage emplacements, soft targets, buildings, and bunkers out to a range of 1.5 miles. The thermal imager permits night engagements out to a range of 1 mile in addition to aiding in target identification. The missile is also equipped with a shock core which is a shaped charge that lets it more easily penetrate hardened fortifications made from concrete and other similar materials. The missile can also drill through 50mm of RHA (Rolled Homogeneous Armor) which makes the Корсар lethal to many IFVs (Infantry Fighting Vehicles), APCs (Armored Personnel Carriers), and IMVs (Infantry Mobility Vehicles). However, against tanks, the RK-3OF would struggle. As such, the RK-3K missile would be used to engage tanks as the missile can penetrate 550mm of RHA armor after ERA (Explosive Reactive Armor).