# Cosmos 2210
**Wikidata**: [Q13566789](https://www.wikidata.org/wiki/Q13566789)  
**Source**: https://4ort.xyz/entity/cosmos-2210

## Summary
Cosmos 2210 is a Soviet/Russian Yantar-4K2 spy satellite that was launched on September 22, 1992 from the Plesetsk Cosmodrome using a Soyuz-U rocket.

## Key Facts
- Is a Yantar-4K2 class spy satellite (instance_of: Yantar-4K2)
- Launched on September 22, 1992 (launch_date: 1992-09-22)
- Launched from Plesetsk Cosmodrome Site 16 (start_point: Plesetsk Cosmodrome Site 16)
- Launched using a Soyuz-U rocket (launch_vehicle: Soyuz-U)
- Has the COSPAR identifier 1992-062A (cospar_id: 1992-062A)
- Has the satellite number 22133 (scn: 22133)
- Is classified as a spy satellite (related: Yantar-4K2)

## FAQs
### Q: What is Cosmos 2210?
A: It is a Soviet/Russian Yantar-4K2 spy satellite launched in 1992.

### Q: When was Cosmos 2210 launched?
A: It was launched on September 22, 1992.

### Q: What was the launch site for Cosmos 2210?
A: It was launched from Plesetsk Cosmodrome Site 16.

### Q: What type of rocket was used to launch Cosmos 2210?
A: A Soyuz-U rocket was used for the launch.

## Why It Matters
Cosmos 2210 represents a component of the Soviet Union's and later Russia's intelligence-gathering capabilities through its role as a Yantar-4K2 reconnaissance satellite. These satellites were crucial for monitoring military and strategic targets, providing photographic intelligence that supported national security decisions. The continued operation of such satellites reflects the ongoing importance of space-based surveillance in modern geopolitical contexts, particularly during the Cold War era and beyond.

## Notable For
- It is specifically classified as a Yantar-4K2 reconnaissance satellite, which was designed for optical reconnaissance missions
- It represents the continued use of the Soyuz-U launch vehicle for military and intelligence satellite deployments
- The satellite carries the COSPAR designation 1992-062A, which is a unique identifier for its orbital mission
- It operates from the Plesetsk Cosmodrome, a primary launch site for Soviet/Russian military and spy satellites
- The satellite is part of the larger Cosmos program, which has been used to deploy numerous military and scientific spacecraft over decades

## Body
### Technical Specifications
The Cosmos 2210 satellite belongs to the Yantar-4K2 class, which was specifically designed for optical reconnaissance missions. These satellites typically feature high-resolution imaging systems capable of capturing detailed photographs of ground targets. The Yantar-4K2 series represents an evolution from earlier reconnaissance satellite designs, incorporating improved imaging capabilities and more sophisticated data transmission systems.

### Launch Details
The launch of Cosmos 2210 occurred on September 22, 1992, at 16:10:00 from Plesetsk Cosmodrome Site 16. The Soyuz-U rocket, a versatile launch vehicle used for both civilian and military missions, provided the necessary thrust to place the satellite into orbit. The launch from Plesetsk Cosmodrome, located in northern Russia, was a standard procedure for deploying military and intelligence satellites during the Soviet era.

### Operational Context
As a Yantar-4K2 satellite, Cosmos 2210 was part of a larger constellation of reconnaissance satellites that operated in low Earth orbit. These satellites typically have orbital periods of approximately 90 minutes and can capture images with resolutions down to several meters. The satellite's mission would have involved periodic passes over target areas, with data transmitted back to ground stations for analysis by intelligence agencies.

### Program History
The Yantar-4K2 program was part of the broader Soviet space reconnaissance program that began in the 1970s. These satellites were developed to provide photographic intelligence capabilities that complemented other intelligence gathering methods. The program continued through the Soviet era and into the post-Soviet period, with Russia maintaining and upgrading the satellite fleet to meet ongoing intelligence requirements.

### Technical Implementation
The satellite incorporates advanced optical systems and possibly infrared sensors to capture images under various lighting conditions. The spacecraft design includes a modular structure with separate sections for the imaging system, power generation, and communication equipment. The satellite's orbital parameters are carefully calculated to optimize coverage of target regions while minimizing orbital decay.

## References

1. Jonathan's Space Report