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GF Series 0.5m Resolution Satellites China Suppliers and Factory

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GF Series 0.5m Resolution Satellites China Suppliers and Factory

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The GF Series Satellites represent the pinnacle of aerospace engineering, specifically designed for high-precision Earth observation with a remarkable 0.5m resolution. By integrating independent on-satellite mission planning and advanced on-satellite AI, these satellites transition from passive sensors to intelligent orbital assets capable of real-time data processing and rapid transmission.

Engineered for versatility and speed, the GF series utilizes fast maneuvering control to achieve single-orbit multi-point target imaging. This capability, combined with a wide 15km swath width and high-integration architecture, ensures that critical geospatial intelligence is captured and returned with unprecedented efficiency and clarity.

Detailed Parameters

Product ModelJilin-1GF 04A Imaging ModePush-broom imaging
ResolutionFull color: 0.5m Swath Width15km (at Nadir)
Panchromatic Color450nm ~ 700nm Blue Spectrum450nm ~ 510nm
Green Spectrum510nm ~ 580nm Red Spectrum630nm ~ 690nm
Near-infrared770nm ~ 895nm Satellite Weight≈ 90kg

Key Advantages

0.5m Ultra-High Res

Delivers exceptional image clarity and detail, allowing for precise identification of ground targets and infrastructure.

Real-Time Transmission

Equipped with high-speed data links to ensure that critical intelligence reaches the end-user without delay.

On-Satellite AI

Integrated AI capabilities enable autonomous target recognition and efficient data filtering directly in orbit.

Push-Broom Imaging

Advanced scanning technology ensures consistent image quality across a 15km breadth for large-scale monitoring.

Fast Maneuvering

Rapid control systems allow for multi-point target imaging within a single orbit, maximizing efficiency.

High Integration

A compact 90kg design that balances high performance with launch efficiency and reduced cost.

Product Gallery

Management Platforms

Mission Planning

Autonomous on-satellite planning for optimized target acquisition and scheduling.

Maneuver Control

Precision orbital adjustment system for rapid multi-point imaging execution.

Data Return Sys

Optimized downlink protocols for fast and secure information return to ground stations.

AI Analysis Hub

On-board AI processing for real-time feature extraction and event detection.

Spectral Manager

Advanced control of Panchromatic and Multispectral bands for specific environmental analysis.

Telemetry Monitor

Real-time health and status monitoring of the 90kg satellite platform.

Investment Return Comparison

Feature MetricStandard SatellitesGF Series Satellites
Resolution1m - 2m0.5m Ultra-High
Imaging SpeedSingle Target/OrbitMulti-point/Orbit
Data ProcessingGround-based onlyOn-satellite AI
TransmissionScheduled BatchReal-time Stream
Deployment CostHigh (Heavy Mass)Optimized (≈90kg)

Frequently Asked Questions

Q: What is the primary application of GF series satellites?

They are primarily used for high-resolution Earth observation, intelligence gathering, and environmental monitoring, providing critical 0.5m resolution imagery for precise analysis.

Q: How does on-satellite AI improve efficiency?

On-satellite AI allows the satellite to process data in orbit, identifying relevant targets and filtering out useless data (like cloud cover) before transmission, saving bandwidth and time.

Q: What spectral bands are covered by the Jilin-1GF 04A?

It covers Panchromatic (450-700nm), Blue (450-510nm), Green (510-580nm), Red (630-690nm), and Near-infrared (770-895nm) bands.

Q: What is push-broom imaging?

Push-broom imaging is a scanning technique where a linear array of detectors captures a strip of the Earth's surface as the satellite moves, resulting in high-resolution static images.

Q: Can the GF series handle multiple targets in one orbit?

Yes, thanks to its fast maneuvering control, the GF series can capture images of multiple distinct targets within a single orbital pass.

Q: What is the significance of the 15km swath width?

A 15km swath width allows the satellite to cover a significant area of the ground per pass while maintaining a high 0.5m resolution, balancing coverage and detail.

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