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High Resolution Large Swath Camera China Suppliers Factory CGPLHR0.5m150km

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High Resolution Large Swath Camera China Suppliers Factory CGPLHR0.5m150km

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DESCRIPTION

The CG-PL-HR-0.5m-150km is a state-of-the-art Large Swath Camera designed for high-precision satellite imaging. Utilizing an advanced off-axis three-mirror optical system, this instrument achieves a rare balance of high-resolution detail and an expansive field of view, making it ideal for wide-area surveillance and environmental monitoring.

Engineered for the rigors of space, this system employs a push-broom imaging mode to capture critical data across panchromatic and multispectral bands. With a massive swath width of 150km and a spatial resolution of 0.5m, it provides unparalleled geospatial intelligence for aerospace applications, ensuring comprehensive coverage without compromising on clarity.

Detailed Parameters

Product CodeCG-PL-HR-0.5m-150km Imaging ModePush-broom imaging
Resolution0.5m Swath Width (Nadir)≥150km
Panchromatic Band450nm-700nm Blue Band430nm-510nm
Green/Red BandGreen: 510-580nm / Red: 630-690nm NIR Band740nm-895nm
Signal-to-Noise Ratio30dB Data Transfer Rate19.2Gbps
Dimensions1958mm x 1653mm x 2440mm Power Consumption≤1030W
Total Weight600kg Optical SystemOff-axis three-mirror

Key Advantages

Off-Axis Optical Design

Utilizes a three-mirror system to eliminate central obscuration, maximizing light throughput and image quality.

Ultra-Wide Swath

Captures a massive 150km width per pass, significantly reducing the time required for full-area mapping.

Sub-Meter Resolution

0.5m resolution ensures high-fidelity imagery for precise object identification and analytical accuracy.

Multispectral Capability

Integrated bands from visible to NIR provide comprehensive data for agriculture, forestry, and urban planning.

High Data Throughput

A 19.2Gbps data rate allows for the efficient transmission of massive image files in real-time.

Aerospace Grade Build

Engineered for vacuum and extreme temperature stability to ensure reliability in orbit.

Product Gallery

Management Platforms

Data Acquisition

High-speed buffer management for seamless 19.2Gbps raw data capture.

Optical Calibration

Precision alignment tools for the three-mirror system to maintain 0.5m resolution.

Thermal Control

Active monitoring of power consumption and heat dissipation under 1030W.

Spectral Analysis

Real-time processing of Panchromatic, RGB, and NIR spectral bands.

Payload Integration

Optimized interface for satellite bus integration within the 600kg weight limit.

Orbit Sync

Precision push-broom synchronization with satellite ground speed.

Investment Return Comparison

Feature MetricStandard Satellite CameraCG-PL-HR Large Swath
Coverage AreaNarrow (10-30km)Ultra-Wide (150km)
Revisit CycleFrequent / Slow Area CoverageRapid / Efficient Coverage
Image FidelityVariable ResolutionConsistent 0.5m Detail
Spectral RangeRGB OnlyFull Panchromatic + NIR
Operational ROIHigh Cost per Sq KmLow Cost per Sq Km

Frequently Asked Questions

Q: What is the primary advantage of an off-axis three-mirror system?

An off-axis three-mirror system prevents light blockage (obscuration) that occurs in traditional on-axis designs, resulting in higher contrast and superior light gathering capability.

Q: How does the 150km swath width impact satellite missions?

A wider swath allows a satellite to image much larger portions of the Earth's surface in a single pass, drastically increasing the efficiency of wide-area mapping and disaster monitoring.

Q: What applications benefit most from the NIR spectral coverage?

Near-Infrared (NIR) coverage is essential for vegetation health analysis, water body detection, and distinguishing between various types of land cover in aerospace imagery.

Q: Is the push-broom imaging mode suitable for real-time data?

Yes, combined with a 19.2Gbps data rate, the push-broom mode allows for continuous high-resolution data streaming, which can be processed for near-real-time geospatial intelligence.

Q: How is the 600kg weight managed for satellite launch?

The unit is designed using space-grade lightweight alloys and optimized structural components to ensure it meets the strict mass budgets of modern aerospace launch vehicles.

Q: What is the significance of the 30dB signal-to-noise ratio?

A 30dB SNR ensures that the captured images have very low electronic noise, providing clear, sharp images even in challenging lighting conditions in orbit.

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