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| Attribute | HAKUTO-R Series 2 Resilience (SMBC × HAKUTO-R Venture Moon) Trust: Agency-primary Last verified Remove × | ||
|---|---|---|---|
| Operator | SpaceX | ispace | JAXA |
| Prime contractor | SpaceX | ispace | Mitsubishi Electric |
| Status | In development | Lost | Landed |
| Customer | NASA-HLS | private | JAXA |
| Launch date | 2027 (NET — Artemis III) | 2025-01-15 | 2023-09-06 |
| Landing date | — | 2025-06-05 | 2024-01-19 |
| Landing site | Lunar south pole (NASA-curated candidate region near 84-90°S) | Mare Frigoris (center; hard landing) | Near Shioli crater, Mare Nectaris (~10 m precision vs 100 m target) |
| Payload | ~100 tonnes to lunar surface (sustained variant target) (2024-04-16) | Tenacious micro-rover (5 kg, ispace EU) + 5 commercial payloads (2025-06-05) | LEV-1 (2.1 kg hopper) + LEV-2 'SORA-Q' (0.25 kg sphere) (2024-01-19) |
| Contract value | $2.89B + $1.15B Option B = $4.04B total (2022-11-15) | — | — |
| Outcome | Selected April 2021 as sole HLS provider for Artemis III. Architecture requires Super Heavy launch + multiple Starship tanker refueling flights in LEO + transit to NRHO + rendezvous with Orion (SLS). NASA OIG IG-26-004 (March 2026) flagged crew-rescue capability as open risk. October 2025: NASA acting administrator Sean Duffy reopened Artemis III lander contract to competition due to Starship development pace. | Laser Range Finder anomaly during descent caused hard landing; data lost ~90 seconds before scheduled touchdown at 19:17 UTC. NASA's LRO imaged impact dark-smudge on 2025-06-11. ispace's 2025-06-24 technical analysis ruled out propulsion/power; isolated cause to LRF. | First Japanese soft landing; made Japan the 5th nation to soft-land on the Moon. One of two main engines failed at ~50 m altitude; lander touched down on its side but still met 100-m precision goal. Survived four lunar-night cycles despite not being designed for it; declared concluded 2024-08-23. |
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Underlying dataset: GET /api/moon/landers. Methodology: /moon/methodology.