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Space Edge™

Space Edge is Voyager’s managed, space-hardened cloud platform, the first multi-cloud region in space. It processes data in orbit, offering up to 30x faster processing than traditional satellite-to-ground methods.

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GPU acceleration built for the harshest environments in orbit

G1

G1 is a configurable, radiation-tolerant edge accelerator on a 3U SOSA-aligned single-board computer. It pairs a Teledyne LS1046A processor and AMD-Xilinx Kintex UltraScale KU040 FPGA with an NVIDIA Jetson AGX Orin or Orin Nano, backed by a rad-hard monitor for reliable boot and configuration.

  • Configurable by design: Multiple GPU and AI-accelerator configurations on the same hardware
  • Built-in resilience: Rad-hard monitor handles boot, configuration, and scrubbing for CPU and FPGA
  • Mission ready: Designed to QML Class P for rapid, fast-turn space missions
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Multi-core CPU power meets massive FPGA flexibility

A1 single-board computer

A1 pairs a Teledyne LX2160A processor with an AMD Kintex UltraScale KU115 FPGA on a radiation-tolerant 3U SOSA-aligned single-board computer. A rad-hard monitor ensures reliable boot and scrubbing, giving developers flexibility and high performance for demanding workloads.

  • Serious processing power: 16x ARM A72 cores for traditional processing tasks
  • Always watching: CPU and FPGA monitoring with boot and configuration support via RHM
  • Health at a glance: On-board ADC and IPMC report telemetry to the system manager
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Reliable, modular power for the whole payload stack

P1 – POWER SUPPLY

P1 is a modular, radiation-tolerant SOSA-aligned power card delivering up to 330W for 3U missions. It’s built to power FPGA and processor cards in a SOSA-aligned chassis, with an on-board IPMC controller for full system telemetry.

  • Power where it’s needed: 300W isolated 12.0V output plus a 30W isolated 3.3V AUX output
  • Built for the chassis: EMI filtering, inrush control, and switched services protect the system
  • Flexible by design: Expansion connector adds switched services and front-panel connections
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Accelerate payloads to flight readiness

F1 Single-Board Computer

F1 is a radiation-tolerant 3U SOSA-aligned single-board computer built around the AMD Versal AI Core VC1902. A rad-hard monitor provides boot, configuration, and scrubbing support, letting VSPARC reconfigure in-flight to meet changing mission needs.

  • AI/ML on orbit: High-performance AI and DSP processing with fault-tolerant computing
  • Adapts in flight: Robust reconfiguration supports dynamic mission requirements
  • System-wide awareness: On-board ADC and IPMC deliver full telemetry to the system manager
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Accelerate payloads to flight readiness

PDK

The Voyager PDK supports every phase of mission development, from board bring-up to flight-ready payload. Each Voyager compute platform pairs with a PDK combining a representative development environment, extensible platform software, and mission services for integration and flight operations.

  • Develop earlier: Processor emulation supports development and validation before flight hardware arrives
  • Integrate faster: Board reference designs and a mature software baseline reduce integration effort
  • Optimize operations: Intelligent resource orchestration maximizes payload compute utilization
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INTEGRATE FLIGHT SOFTWARE BEFORE FLIGHT HARDWARE ARRIVES

SHIRE

Space Edge SHIRE (Software & Hardware Integration Runtime Environment) is an open-source, software-only simulation environment that emulates satellite flight hardware and interfaces — connecting flight software, spacecraft dynamics, components, and ground systems inside one synchronized environment so teams can develop, integrate, and test an end-to-end mission from day one.

  • Start earlier: Give every engineer a repeatable mission environment before physical hardware is available
  • Test fearlessly: Exercise nominal, off-nominal, fault detection, and correction scenarios on demand
  • Scale confidently: Move from one component to a vehicle or constellation without changing the integration model