RES Trust 1U Rugged Secure Server

Enhanced reliability with risk mitigation enhancements and a U.S. designed and manufactured motherboard with built-in security features

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RES Trust 1U

Featuring a U.S. designed and manufactured ATX-style motherboard with built-in security features, up to 60TB of storage in four disk drives, high speed I/O, expansion slots and enhanced reliability features, RES Trust 1U provides trusted performance, improved interoperability and flexibility for current and future system requirements. To further enhance reliability, the system removes socketed components and solders processors and memory directly to the motherboard—eliminating disconnect during shock events.

Mercury’s hardware-based Root of Trust and cyber-resilient BIOS mitigate multiple security threats to the application, in part, by reducing the available attack surfaces to minimize boot devices. Built-in interfaces allow servers to participate in platform-wide security architectures. Our RES Trust motherboard addresses threat vectors from the moment of power-on until a secure OS, hypervisor or application is running.

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Download RES Trust 1U Datasheet

Features
  • Root of Trust (RoT) enforced boot and configuration management
  • Cyber-resilient BIOS, composable security features
  • Dual Intel® Xeon® E5-2600 v4 processors up to 14 cores
  • Field-proven, approved design
  • MIL-STD: 810G, 901D, 167-1, 461
  • Designed, manufactured and tested in the U.S.
Specifications
  • Dual Intel® Xeon® E5-2600 v4 processors with up to 14 cores per processor
  • 2 QPI up to 8 GT/s
  • Up to 128GB DDR4 up to 2400MHz memory
  • Intel Trusted Execution Technology with integrated TPM 2.0

Management & Operating System

  • BIOS: Mercury coded and supported Mercury maintained
  • Cyber Resilient Baseboard Management Controller
  • Red Hat® Enterprise Linux® v7 support
  • Secure Crucible Defense Hypervisor and Titanium Linux Option

BuiltSECURE Embedded Framework

  • Built-in composable security feature set options

Expansion & Modular Maintainability

  • Up to 2 PCIe 3.0x16 cards, half-height and length
  • 3 Fixed fans

Input/Output Versatility

Front Access

  • Up to 4 Removable, Hot Pluggable, 2.5" drive bays
    • Up to (2) 15mm or (4) 7mm (SATA) high drives
    • Optional secure storage with military-grade data protection
  • 1 CFM Switch (Optional)
  • 1 Quick Change CMOS Battery
  • 1 USB 3.0
  • 1 CD/Blu-ray Drive (Optional)
  • 1 Power Switch with Power and Status LEDs

Rear Access

  • 3 RS-232 Serial Interfaces
  • 2 10/100/1000BaseT Ethernet Ports (RJ45)
  • 5 USB 3.0
  • 1 USB 2.0
  • 1 IPMI 2.0
  • 1 10/100BaseT Ethernet Port (RJ45 Management

Power Supply Options

  • Single 55oW AC Power Supply 100V-240V VAC (47/63Hz, 8-4Amps)

Additional Options (Not included)

  • Shock Pins
  • Front Door Filter
  • Compatible Slide Rails and Brackets
    • Rails: Jonathan Engineered Solutions; PN 3308190-P
    • Brackets: Jonathan Engineered Solutions; PN 24908086-KD
  • Cable Accessories
    • Micro DB9 to dual DB9 Serial Port Y-adapter; PN 911-92006
    • Test port cable, Quad USB UART; PN 911-58263-01
    • Xilinx JTAG adapter cable; PN 911-58264-01
  • Tamper-Evidence Features
  • Secure Crucible Defense Hypervisor and Titanium Linux Option

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Environmental & Mechanical

Environmental

Operating

  • Temperature: 0°C to 50°C, configuration dependent
  • Humidity: 5% to 95% (non-condensing)
  • Shock: 3 axis, 35g, 25ms
  • Vibration: 4.76Grms, 4Hz to 2000 Hz (SSD)

Non-Operating

  • Temperature: -40°C to 75°C
  • Humidity: 5% to 95% (non-condensing)

Mechanical

  • Height: 1U or 1.75 inches (44.45mm)
  • Width: 17 inches (433.3mm)
  • Depth: 20 inches (508mm)
  • Weight (Typical)*: 26.3 pounds (11.9kg)
  • 19” rackmountable

* Mercury Systems designs all products to meet or exceed listed data sheet specifications. Some specifications including I/O profiles, weight, and thermal profiles are configuration dependent. Contact Mercury for information specific to your desired configuration requirements.

Security Suite Includes

- Access Control
- Non-volatile memory write protection
- Sanitization
- Physical protection mechanisms
- Sensors
- Key Management
- Data-at-rest protection
- Secure firmware management
- Cryptographic offload engine capabilities

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