Safran DSI - SEEING™ 130 Wide Space Optical Imager
- Ultra-Low Swap: Saving launch and operational costs
- Wide FOV (Field of View): 6.3° x 4.3° / 54 x 36 km2 from a 500km orbit
Our Space Optical Imager, SEEING™ 130 Wide, acquires high-quality images with accurate radiometry for LEO earth observation applications. That high resolution optical imager includes a 10 Mpixels sensor and control electronics, delivering a 35 mm full frame image format.
SEEING™ 130 Wide is based on a unique medium focal length catadioptric design, only limited by diffraction and with ultra-low distortion. SEEING™ 130 Wide enables high Signal to Noise Ratio for multispectral (MS), hyperspectral (HS) and low light level imaging, thanks to its 7 Bands spectral filter covering Blue, Green, Red, Near InfraRed and Red Edge MS, for a broad spectral range between 475 and 900nm.
SEEING™ 130 Wide has a wide Field of View of 6.3°x 4.3° / 54 x 36 km2 from a 500km orbit. In addition to its a thermal design within a robust design, SEEING™ 130 Wide offers an ultra-low SWaP (Size, Weight, and Power) saving launch and operational costs.
More Product Information
- Proven Design: Designed for New Space with radiation tested and hardened
- Multi-Constellation: GPS, GALILEO, Beidou
- Long Lifetime: 2-5 year-lifetime in Low Earth Orbit (LEO) Missions
- STC and LPDC: Space Time Coding and LPDC supported, as well as many advanced features
- CH. 10 & IRIG218-20 Output: Easy and Modern UDP Data Spreading
- DQM/DQE: Embedded data Quality Metrics / Encapsulation compatible with Best Source Selector
- Front Panel Controls: 3 TFT Color Screen and Keyboard on Equipment, and Full Control from External KVM
- EQ+: Adaptive Equalizer for all Modulations, on Video and PCM outputs
- Qualified for Harsh Environment: DO-160, MIL-STD-704, -461, -810
- Designed to Minimize Obsolescence Risk & Management: FPGA-Based Design
- Easy Set up: User-Defined Media Partitioning
- Multi-Protocol, GigE Interfaces: FTP, NFS, SMB/CFS, HTTP
- High-Capacity Rugged Removable Cartridge: 64GB to 2TB
- High Reliable New Space Design
- 5 Year Life-Time LEO Missions
- Multi-Constellation (GPS, GALILEO, BeiDou, & GLONASS) / GALILEO Autonomous
- In-Flight Firmware Uploading
- Ultra-Low Swap: Saving launch and operational costs
- Wide FOV (Field of View): 6.3° x 4.3° / 54 x 36 km2 from a 500km orbit
- Wide Range Power: 400 to 1,000 W
- Fuel Compatibility: Xenon (also compatible with Krypton)
- High Total Impulsive and Reliability Level
- Designed for Orbit-Topping and Station Keeping
- 40% Weight Saving Convention Propulsion
- Excellent Thrust-to-Electrical Power Ratio
- Highest Ephemeris Accuracy: Typical accuracy of 200m (1 sigma), no cross-tagging, top-class conjunction analysis and close approach monitoring
- Straightforward Adoption: Plug-and-play with major Flight Dynamics Systems, API on web-interface, pay-per-use or yearly plans
- Highest Revisit Rate: Refreshed by the minute orbital, measurements continuous day and night tracking in all-weather conditions, scheduled tasking in critical situation
- Ultimate Maneuver Detection: High-rate measurement refresh to guarantee immediate maneuver detection
- Scalable Mainframes: 2 to 8 Slots for Signal Interface Cards
- Eas Setup & Re-Configuration: In-the-field Configuration, Adaptable to Any Scenario
- Hybrid Modules: Up to 4 Different Data Types Within One Module
- Full Spectrum of Interfaces: PCM, Ethernet, ARINC 429, MIL 1553, CAN, Analog, Video, Serial, Discrete…
- Multi-Recording: Simultaneous Recording of Multiple Data Subsets in Separate Files on Various Storage Media
Safran DSI
Safran DSI Testing & Telemetry provides complete, end-to-end solutions covering instrumentation, mission systems, onboard recording, and transmission, through to base stations for data monitoring and control. Our solutions are platform-agnostic and adaptable to customer mission needs.