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David's Sling vs Iron Dome

David's Sling vs Iron Dome at a glance — range 300 vs 70 km, speed 9,261 vs 2,717 km/h.

Specifications
David's Sling Iron Dome
Origin 🇮🇱 Israel🇺🇸 United States 🇮🇱 Israel
Category Surface-to-Air Surface-to-Air
Type Medium to long range surface-to-air/anti-ballistic missile C-RAM and Short Range Air Defence System
Manufacturer Rafael Advanced Defense Systems Rafael Advanced Defense Systems
Service year 2017 2011
Number produced -- units -- units
Estimated unit price $0.7 million $0.2 million
Range 300.0 km 70.0 km
Maximum speed Mach 7.6 Mach 2.2
Weight -- kg 90 kg
Warhead -- kg 11.0 kg
Length NA 3.00 m
Diameter -- mm 160 mm
Guidance AESA MMW 3D Radar, Dual Electro-optical FPA CCD + IIR Seeker Electro-optic sensors
Warhead type Kinetic Hit-to-kill Proximity fuze
Performance Radar Chart

Detailed Comparison

Israel’s multi-tiered air defense network relies on distinct platforms engineered for specific threat vectors. Iron Dome addresses the lower tier, intercepting short-range, unguided munitions, while David's Sling occupies the middle tier, targeting tactical ballistic missiles, cruise missiles, and heavy rockets.

Development and Design

Rafael Advanced Defense Systems initiated Iron Dome in 2005 to intercept unguided rockets from Gaza and southern Lebanon. The system achieved operational status in 2011. David’s Sling emerged from a 2006 requirement to replace the MIM-23 Hawk and augment the Patriot PAC-2. Developed jointly by Rafael and Raytheon, it utilizes technology derived from air-to-air missile programs and entered service in 2017. Both programs rely heavily on United States production funding.

Performance and Capabilities

The interceptors possess vastly different kinematic profiles:

  • Tamir (Iron Dome): Weighs 90 kg, reaches Mach 2.2, and intercepts targets up to 70 km away using an 11.0 kg proximity-fuzed warhead.
  • Stunner (David’s Sling): A two-stage interceptor reaching Mach 7.6 with a 300 km range. It utilizes a three-pulse solid-fuel motor for terminal maneuverability and destroys targets via kinetic hit-to-kill impact rather than blast fragmentation.

Guidance and Technology

Tamir relies on ground-based EL/M-2084 AESA radar to calculate intercept trajectories, switching to a basic electro-optical sensor for the terminal phase. Stunner employs an asymmetrical "dolphin nose" assembly housing an AESA millimeter-wave radar and a combined CCD/imaging infrared (IIR) seeker. This dual-modal approach allows Stunner to discriminate between actual warheads and decoys. Stunner also integrates a three-way datalink for mid-course retargeting and electronic counter-countermeasures (ECCM) to resist jamming.

Deployment and Combat Record

Iron Dome has intercepted thousands of rudimentary rockets during conflicts in 2012, 2014, 2021, and 2024. While it maintains an interception rate of roughly 90 percent against unguided rockets, combat data from 2024 and 2025 exposes structural vulnerabilities to high-volume saturation strikes and an interception rate of just 20-30 percent against ballistic targets. Iron Dome exports include the United States, Azerbaijan, and a naval variant (C-Dome) currently active on Israeli Sa'ar 6-class corvettes.

David’s Sling targets lower-volume, high-velocity threats. Combat intercepts include Syrian OTR-21 Tochka missiles (2018), Badr-3 heavy rockets (2023), and Iranian ballistic missiles (2024-2025). The system suffered a severe operational security breach in 2018 when a Stunner interceptor failed to detonate, landed intact in Syria, and was reportedly transferred to Russia. Export success remains narrow, with Finland contracted as the first foreign operator.

Conclusion

Iron Dome and David’s Sling solve different tactical problems. Iron Dome holds the edge in asymmetric warfare; its low cost per intercept makes it the only viable defense against high-volume, unguided rocket barrages. However, against peer or near-peer adversaries employing maneuvering cruise missiles and tactical ballistic missiles, David’s Sling is the absolute superior system. Stunner’s Mach 7.6 speed, hit-to-kill mechanics, and dual-seeker decoy discrimination provide the necessary kinematics and guidance to defeat complex, high-energy threats that easily penetrate Iron Dome’s limited engagement envelope.

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Frequently Asked Questions

Which has longer range, the David's Sling or Iron Dome?
The David's Sling has a longer range at 300 km compared to the Iron Dome's 70 km.
Which is faster, the David's Sling or Iron Dome?
The David's Sling is faster with a maximum speed of Mach 7.6 compared to the Iron Dome's Mach 2.2.
Which has a larger warhead, the David's Sling or Iron Dome?
The Iron Dome carries a larger warhead at 11 kg compared to the David's Sling's 0 kg.
Which is heavier, the David's Sling or Iron Dome?
The Iron Dome is heavier at 90 kg compared to the David's Sling's 0 kg.
Which is longer, the David's Sling or Iron Dome?
The Iron Dome is longer at 3.00 meters compared to the David's Sling's 0.00 meters.
What guidance systems do the David's Sling and Iron Dome use?
The David's Sling uses AESA MMW 3D Radar, Dual Electro-optical FPA CCD + IIR Seeker guidance while the Iron Dome uses Electro-optic sensors guidance.
Which entered service first, the David's Sling or Iron Dome?
The Iron Dome entered service first in 2011, 6 years before the David's Sling which entered service in 2017.