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under any circumstances
Country or territory where the image was reported

Reported Location (52)

Year the image is reported to have been taken

Year (21)

Classification groups of key explosive munitions used in conflicts

Munition Category (8)

The impact or effect the munition is intended to have

Functional use (10)

The specific model of munition pictured

Tentative Model (353)

Search

The external organisation that documented the munition

Research Organisation (6)

Colour of the munition pictured

Base Colour (12)

Colour of all, or some, of the markings on the munition

Marking Colour (11)

Language or script of the marking on a munition

Marking Script (10)

Condition of the munition pictured

Condition (6)

Key features defining the operation mechanisms of a projectile

Mechanical Feature (10)

Whether a munition is guided or unguided

Guidance (2)

Where the munition is launched from and what it targets

Domain (7)

Anti-Personnel (Mine)
The type of fins visible on the munition

Fins Characteristic (6)

The nominal diameter of a projectile. For most modern munitions, this is expressed in millimetres (e.g. 82 mm mortar projectile), but older artillery gun projectiles may be described in inches.

Calibre (76)

Weight class of the aerial bomb pictured

Weight Class (14)

1–12 of 12
OSMP2455
Analyst Note:
This image shows an Iranian M18A1 anti-personnel landmine, an Iranian copy of the American M18A1 ‘Claymore’ design. Iran has produced their own copy of the M18A1 since at least 2004. According to Iranian sources, it contains 600 spherical, steel pre-formed fragments that are 6 mm in diameter. These mines are designed to propel these steel balls in an arc forward of the munition upon detonation. (ARES)
OSMP2284
Analyst Note:
This image shows a U.S. Area Denial Artillery Munition (ADAM), an anti-personnel scatterable landmine which is dispensed from the rear of M692 and M731 155 mm artillery gun projectiles. Each projectile contains 36 ADAM submunitions. The submunition can deploy up to seven tripwires out to 20 ft (6.1 m). Any movement of a tripwire or movement of the ADAM body will result in a small kill mechanism being ejected to a height of a 6–8 ft (1.8 m–2.4 m) prior to detonating. Each munition contains a small amount of depleted uranium. The ADAM was previously designated as either the M67 or M72, with the only difference being the self-destruct time delay. (ARES)
OSMP2276
Analyst Note:
Highlighted is a Russian POM-2 scatterable mine, a bounding, high explosive, anti-personnel munition. Upon impact, the POM-2 deploys six legs for stabilisation and four pressure- and pull-sensitive tripwires of 9.5 m (31.17 ft) in length. These terminate in a ‘Y’-shaped fashion with plastic weights. Upon release, nylon stabiliser ribbons are deployed to help ensure the submunition lands upright, working in conjunction with the stabilising legs. These can be seen in the foreground of this image. Originally designed to be dispensed by rockets, helicopters, and fixed wing aircraft, the war in Ukraine has seen the POM-2 modified for deployment via UAV. (ARES)
OSMP2275
Analyst Note:
This image depicts a Russian PFM-1 or PFM-1S submunition. These are small anti-personnel scatterable landmines constructed using a plastic (low-density polythene) body and a liquid high explosive fill. They are fitted with a pressure fuze, and may be green, white, sand (tan), or brown (as seen here) in colour. The PFM-1S incorporates a nominal self-destruct with a delay of approximately 40 hours, although they may remain active for far longer and are known to randomly self-destruct weeks after deployment. They weigh approximately 70 g (2.47 oz) and are typically dispensed from 250 kg (551 lb) and 500 kg (1,102 lb) class dispensers by the hundreds. The war in Ukraine has seen them dispensed from UAVs. (ARES)