# Peregrine Lander

> model of lunar lander by Astrobotic

**Wikidata**: [Q66496877](https://www.wikidata.org/wiki/Q66496877)  
**Wikipedia**: [English](https://en.wikipedia.org/wiki/Peregrine_lunar_lander)  
**Source**: https://4ort.xyz/entity/peregrine-lander

## Summary
Peregrine Lander is a model of lunar lander developed by Astrobotic Technology, designed to land on the Moon. It is part of Astrobotic's efforts to support NASA's Artemis program through commercial lunar delivery services. The lander has a height of 1.9 meters and a diameter of 2.5 meters, and it is powered by solar cell panels and the TALOS-150 propulsion system.

## Key Facts
- **Class**: Lunar lander (spacecraft intended to land on the Moon)
- **Operator/Manufacturer**: Astrobotic Technology (United States)
- **Height**: 1.9 meters
- **Diameter**: 2.5 meters
- **Power Source**: Solar cell panels (480 units) and TALOS-150 propulsion system (5 units)
- **Payload Mass**: 90 kilograms
- **Related Mission**: Peregrine Mission One (a former commercial lunar landing mission)
- **Instance of**: Spacecraft model
- **Country of Origin**: United States

## FAQs
### Q: What is the purpose of the Peregrine Lander?
A: The Peregrine Lander is designed to deliver payloads to the lunar surface as part of NASA's Artemis program, supporting commercial lunar delivery services.

### Q: Who operates the Peregrine Lander?
A: The Peregrine Lander is operated and manufactured by Astrobotic Technology, a U.S.-based company.

### Q: What are the dimensions of the Peregrine Lander?
A: The lander has a height of 1.9 meters and a diameter of 2.5 meters.

### Q: What powers the Peregrine Lander?
A: The lander is powered by solar cell panels (480 units) and the TALOS-150 propulsion system (5 units).

### Q: What is the payload capacity of the Peregrine Lander?
A: The lander has a payload mass capacity of 90 kilograms.

## Why It Matters
Peregrine Lander represents a significant step in commercial lunar exploration, as it is part of NASA's Artemis program to return humans to the Moon. Developed by Astrobotic Technology, the lander is designed to deliver scientific instruments and other payloads to the lunar surface, supporting NASA's goals for sustainable lunar exploration. Its successful deployment would mark a milestone in the growing field of commercial spaceflight and lunar research. The lander's modular design and use of advanced propulsion systems also demonstrate innovative approaches to lunar landing technology.

## Notable For
- **First Commercial Lunar Lander**: Part of NASA's Artemis program, Peregrine Lander is a key player in commercial lunar delivery services.
- **Modular Design**: The lander's structure supports a payload mass of 90 kilograms, making it adaptable for various missions.
- **Advanced Propulsion**: Powered by solar cell panels and the TALOS-150 system, it offers efficient and reliable lunar landing capabilities.
- **U.S. Origin**: Developed and operated by Astrobotic Technology, a U.S.-based company, it aligns with national space exploration goals.
- **Related Mission**: Linked to the Peregrine Mission One, which was a former commercial lunar landing mission.

## Body
### Overview
Peregrine Lander is a lunar lander model developed by Astrobotic Technology, a U.S.-based company. It is designed to land on the Moon and deliver payloads as part of NASA's Artemis program. The lander has a height of 1.9 meters and a diameter of 2.5 meters, with a payload capacity of 90 kilograms.

### Design and Specifications
- **Height**: 1.9 meters
- **Diameter**: 2.5 meters
- **Payload Mass**: 90 kilograms
- **Power Source**: Solar cell panels (480 units) and TALOS-150 propulsion system (5 units)

### Operator and Manufacturer
- **Operator**: Astrobotic Technology
- **Manufacturer**: Astrobotic Technology
- **Country of Origin**: United States

### Related Missions
- **Peregrine Mission One**: A former commercial lunar landing mission associated with the Peregrine Lander.

### Significance
Peregrine Lander plays a crucial role in NASA's Artemis program, supporting commercial lunar delivery services. Its successful deployment would contribute to the broader goals of sustainable lunar exploration and scientific research. The lander's design and capabilities reflect advancements in commercial spaceflight and lunar landing technology.

## References

1. [Source](https://space.skyrocket.de/doc_sdat/peregrine.htm)
2. [Source](https://nssdc.gsfc.nasa.gov/nmc/spacecraft/display.action?id=PEREGRN-1)
3. [Source](https://www.astrobotic.com/lunar-delivery/landers/peregrine-lander/)