# Umbra 10

> American synthetic aperture radar satellite

**Wikidata**: [Q129218963](https://www.wikidata.org/wiki/Q129218963)  
**Source**: https://4ort.xyz/entity/umbra-10

## Summary
Umbra 10 is an American synthetic aperture radar (SAR) satellite launched in 2024 as part of the Umbra-SAR constellation. Operated by Umbra, it uses advanced radar imaging to provide high-resolution Earth observation data, regardless of weather or lighting conditions.

## Key Facts
- **Launch Date**: August 16, 2024
- **Operator**: Umbra (U.S.-based company)
- **Launch Vehicle**: SpaceX Falcon 9 Block 5
- **Launch Site**: Vandenberg Space Launch Complex 4
- **COMPAR ID**: 2024-149CH
- **Predecessor**: Umbra 09
- **Successor**: Umbra 11
- **Satellite Class**: Synthetic Aperture Radar (SAR)
- **Manufacturer**: Umbra

## FAQs
### Q: What is the purpose of Umbra 10?
A: Umbra 10 is a synthetic aperture radar satellite designed for high-resolution Earth imaging, capable of capturing detailed data through clouds and at night.

### Q: When was Umbra 10 launched?
A: It was launched on August 16, 2024, aboard a SpaceX Falcon 9 Block 5 rocket from Vandenberg Space Force Base.

### Q: Who operates Umbra 10?
A: The satellite is operated by Umbra, a U.S. company specializing in SAR satellite technology.

### Q: What makes Umbra 10 different from optical satellites?
A: Unlike optical satellites, Umbra 10 uses radar imaging, allowing it to capture data in all weather conditions and at any time of day.

### Q: Is Umbra 10 part of a larger constellation?
A: Yes, it is part of the Umbra-SAR constellation, which includes other satellites like Umbra 09 and Umbra 11.

## Why It Matters
Umbra 10 plays a critical role in modern Earth observation by providing high-resolution radar imagery that is unaffected by weather or darkness. This capability is essential for applications such as defense, disaster response, environmental monitoring, and infrastructure planning. SAR satellites like Umbra 10 fill gaps left by optical satellites, which are limited by cloud cover and lighting conditions. By expanding the Umbra-SAR constellation, Umbra enhances global coverage and data availability, supporting both commercial and government users in making informed decisions based on timely, accurate geospatial intelligence.

## Notable For
- **All-weather imaging**: Capable of capturing high-resolution data through clouds and in complete darkness.
- **Part of a growing constellation**: Contributes to the Umbra-SAR network, improving revisit times and global coverage.
- **Commercial SAR innovation**: Represents advancements in private-sector radar satellite technology.
- **Rapid deployment**: Launched as part of a frequent cadence of Umbra satellite deployments.

## Body
### Overview
Umbra 10 is a synthetic aperture radar (SAR) satellite developed and operated by Umbra, a U.S.-based company. It is part of the Umbra-SAR constellation, which aims to provide high-resolution radar imagery for commercial and government applications.

### Launch Details
- **Date**: August 16, 2024
- **Launch Vehicle**: SpaceX Falcon 9 Block 5
- **Launch Site**: Vandenberg Space Launch Complex 4 (SLC-4E), California, USA
- **COMPAR ID**: 2024-149CH

### Technical Specifications
- **Satellite Class**: Synthetic Aperture Radar (SAR)
- **Operator**: Umbra
- **Manufacturer**: Umbra
- **Orbit**: Low Earth Orbit (specific altitude not disclosed in source material)

### Role in the Umbra-SAR Constellation
Umbra 10 follows Umbra 09 and precedes Umbra 11 in the sequence of Umbra’s SAR satellites. The constellation is designed to provide frequent, high-resolution radar imaging of the Earth’s surface, enabling applications such as:
- Defense and intelligence
- Disaster monitoring and response
- Environmental and climate research
- Infrastructure and urban planning

### Advantages of SAR Technology
Unlike optical satellites, SAR satellites like Umbra 10 use radar to create images, allowing them to:
- Operate in all weather conditions, including through clouds and rain.
- Capture data day or night, independent of sunlight.
- Provide consistent, high-resolution imagery for time-sensitive applications.

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