# MUOS 5

> US Navy Comsat satellite

**Wikidata**: [Q26059359](https://www.wikidata.org/wiki/Q26059359)  
**Wikipedia**: [English](https://en.wikipedia.org/wiki/MUOS-5)  
**Source**: https://4ort.xyz/entity/muos-5

## Summary
MUOS 5 is a US Navy communications satellite launched on June 24, 2016, aboard an Atlas V 551 rocket. It serves as part of the Mobile User Objective System (MUOS) network, providing advanced satellite communications capabilities to the U.S. military.

## Key Facts
- MUOS 5 is a US Navy communications satellite (Comsat)
- It was launched on June 24, 2016
- It was launched using an Atlas V 551 launch vehicle
- Its COSPAR ID is 2016-041A
- It has a Satellite Control Number (SCN) of 41622
- It is classified as an artificial satellite
- It has Wikipedia entries in English and Latvian languages
- It is part of the Mobile User Objective System (MUOS) network
- It has 2 sitelinks across different language versions of Wikipedia

## FAQs
### Q: What is MUOS 5?
A: MUOS 5 is a US Navy communications satellite launched in 2016 that is part of the Mobile User Objective System (MUOS) network, which provides advanced satellite communications capabilities to the U.S. military.

### Q: When and how was MUOS 5 launched?
A: MUOS 5 was launched on June 24, 2016, aboard an Atlas V 551 rocket, which is a United Launch Alliance launch vehicle.

### Q: What is the purpose of MUOS 5?
A: MUOS 5 serves as part of the Mobile User Objective System network, providing enhanced satellite communications capabilities to the U.S. military, including improved voice, video, and data transmission.

### Q: How is MUOS 5 identified in space?
A: MUOS 5 has a COSPAR ID of 2016-041A and a Satellite Control Number (SCN) of 41622, which are used to uniquely identify it in space.

## Why It Matters
MUOS 5 represents a significant advancement in military communications technology, providing the U.S. Navy with enhanced capabilities for secure and high-bandwidth communications. As part of the MUOS constellation, it enables voice, video, and data transmission that is significantly more advanced than previous military satellite systems. This capability is crucial for modern military operations, allowing forces to maintain communication in remote or contested environments. The MUOS system also provides compatibility with both legacy military communications systems and modern cellular technology, ensuring interoperability across different generations of equipment.

## Notable For
- Being part of the Mobile User Objective System (MUOS) network, which represents a major upgrade in military satellite communications
- Launching on an Atlas V 551, one of the most powerful configurations of the Atlas V rocket family
- Having both English and Latvian Wikipedia entries, indicating international interest and documentation
- Being designated with a COSPAR ID (2016-041A) and Satellite Control Number (41622) for official tracking and identification

## Body
### Overview
MUOS 5 is a communications satellite operated by the U.S. Navy as part of the Mobile User Objective System (MUOS). It was launched on June 24, 2016, aboard an Atlas V 551 launch vehicle. The satellite is designed to provide advanced communications capabilities to military users, including enhanced voice, video, and data transmission.

### Technical Specifications
- Classification: Artificial satellite
- COSPAR ID: 2016-041A
- Satellite Control Number (SCN): 41622
- Launch Vehicle: Atlas V 551 (United Launch Alliance)
- Launch Date: June 24, 2016
- Wikipedia Title: MUOS-5
- Available in: English and Latvian Wikipedia

### Documentation
MUOS 5 has been documented on Wikipedia with 2 sitelinks across different language versions. The satellite has been formally referenced in official documentation with its SCN and COSPAR ID, ensuring proper tracking and identification in space operations.

### System Integration
As part of the MUOS constellation, MUOS 5 integrates with other satellites in the network to provide comprehensive coverage and enhanced communications capabilities. The system is designed to be backward compatible with legacy military communications while also supporting modern cellular technology standards.

## References

1. Jonathan's Space Report