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- GPU Architecture: NVIDIA Pascal GP107 Quadro P2000
- CUDA Cores: 768 parallel processing cores
- Peak Performance: 2.3 TFLOPS single‑precision (FP32)
- Memory: 4 GB GDDR5, 128‑bit interface, 96 GB/s bandwidth
- Display Support: Up to four independent UHD (4K) displays via DisplayPort 1.4
- Form Factor: MXM 3.1 Type A (82 × 70 mm)
- Power Consumption: 58 W Total Graphics Power (TGP)
- Clock Speeds: Base 1455 MHz, Boost 1480 MHz
- Operating Temperature Range: ‑40 °C to +85 °C (ETT version)
- Long‑Term Availability: 5‑year product lifecycle support
- Software Ecosystem: CUDA Toolkit 8.0, OpenCL 1.2, DirectX 12, OpenGL 4.5, Vulkan 1.0
- Connectivity: PCI Express Gen3 x16 interface
- Compliance: CE, FCC, EU‑RoHS, WHQL certified for Windows 7/10
The EGX‑MXM‑P2000 combines high compute density with low power draw, making it ideal for embedded systems in medical imaging, industrial automation, digital signage, and defense applications.
- CUDA Cores: 768 parallel processing cores
- Peak Performance: 2.3 TFLOPS single‑precision (FP32)
- Memory: 4 GB GDDR5, 128‑bit interface, 96 GB/s bandwidth
- Display Support: Up to four independent UHD (4K) displays via DisplayPort 1.4
- Form Factor: MXM 3.1 Type A (82 × 70 mm)
- Power Consumption: 58 W Total Graphics Power (TGP)
- Clock Speeds: Base 1455 MHz, Boost 1480 MHz
- Operating Temperature Range: ‑40 °C to +85 °C (ETT version)
- Long‑Term Availability: 5‑year product lifecycle support
- Software Ecosystem: CUDA Toolkit 8.0, OpenCL 1.2, DirectX 12, OpenGL 4.5, Vulkan 1.0
- Connectivity: PCI Express Gen3 x16 interface
- Compliance: CE, FCC, EU‑RoHS, WHQL certified for Windows 7/10
The EGX‑MXM‑P2000 combines high compute density with low power draw, making it ideal for embedded systems in medical imaging, industrial automation, digital signage, and defense applications.
Comprehensive Product Summary: EGX‑MXM‑P2000 NVIDIA Pascal Quadro P2000 Embedded Graphics Module
*(Approx. 3000 tokens / ~12,000 characters)*
### 1. Product Overview
Product Name: EGX‑MXM‑P2000
Model: NVIDIA® Quadro® P2000 Embedded Graphics Module
Series: EGX‑MXM Embedded GPU Series
Article Number: EGX‑MXM‑P2000
Manufacturer: ADLINK Technology Inc.
Part Number: 50‑1Z300‑1000
Manual Revision: 1.0 (November 21, 2019)
The EGX‑MXM‑P2000 is an embedded graphics module integrating the NVIDIA® Pascal™ GP107 GPU architecture in a compact MXM 3.1 Type A form factor. Designed for embedded and industrial applications, it delivers workstation‑class graphics and compute performance in a rugged, thermally efficient design. The module is optimized for edge computing, visualization, and GPU‑accelerated workloads in environments requiring extended temperature operation and long‑term availability.
### 2. Key Features
- GPU Architecture: NVIDIA Pascal GP107 Quadro P2000
- CUDA Cores: 768 parallel processing cores
- Peak Performance: 2.3 TFLOPS single‑precision (FP32)
- Memory: 4 GB GDDR5, 128‑bit interface, 96 GB/s bandwidth
- Display Support: Up to four independent UHD (4K) displays via DisplayPort 1.4
- Form Factor: MXM 3.1 Type A (82 × 70 mm)
- Power Consumption: 58 W Total Graphics Power (TGP)
- Clock Speeds: Base 1455 MHz, Boost 1480 MHz
- Operating Temperature Range: ‑40 °C to +85 °C (ETT version)
- Long‑Term Availability: 5‑year product lifecycle support
- Software Ecosystem: CUDA Toolkit 8.0, OpenCL 1.2, DirectX 12, OpenGL 4.5, Vulkan 1.0
- Connectivity: PCI Express Gen3 x16 interface
- Compliance: CE, FCC, EU‑RoHS, WHQL certified for Windows 7/10
The EGX‑MXM‑P2000 combines high compute density with low power draw, making it ideal for embedded systems in medical imaging, industrial automation, digital signage, and defense applications.
### 3. Technical Specifications
Board Specifications
| Parameter | Specification |
|------------|---------------|
| GPU Core | NVIDIA Quadro P2000 (Pascal GP107) |
| CUDA Cores | 768 |
| Peak FP32 Performance | 2.3 TFLOPS |
| Memory Type | GDDR5 @ 6 Gbps |
| Memory Capacity | 4 GB |
| Memory Bus Width | 128‑bit |
| Memory Bandwidth | 96 GB/s |
| Display Outputs | 4 × DisplayPort 1.4 (HDR, 4K @ 98 Hz, 10‑bit color) |
| Signal Interface | MXM 3.1, PCIe Gen3 x16 |
| Dimensions | 87 mm (W) × 70 mm (D) × 4.8 mm (H) |
| Form Factor | MXM 3.1 Type A |
| Power Consumption (TGP) | 58 W |
| Operating Temperature | Standard: 0–55 °C; Extended: ‑40–85 °C |
| Storage Temperature | ‑40–85 °C |
| Supported OS | Windows 7/10 (64‑bit), Linux (64‑bit) |
Thermal Characteristics
| Parameter | Value | Unit |
|------------|--------|------|
| Thermal Resistance (Junction‑to‑Case, RJC) | 0.03 | °C/W |
| Thermal Resistance (Junction‑to‑Board, RJB) | 3.0 | °C/W |
| Max Operating Temperature | 94 | °C |
| Slowdown Temperature (THERM_ALERT) | 97 | °C |
| Shutdown Temperature (OVERT) | 102 | °C |
Thermal throttling mechanisms ensure safe operation under heavy load, automatically reducing clock speeds when temperature thresholds are exceeded.
### 4. Functionality
The EGX‑MXM‑P2000 operates as a high‑performance embedded GPU module, interfacing with host systems via PCI Express Gen3 x16 through the MXM 3.1 connector. It provides hardware acceleration for both graphics rendering and general‑purpose GPU (GPGPU) computing tasks.
Use Cases and Applications:
- Industrial and Edge Computing: Real‑time data visualization, AI inference, and machine vision.
- Medical Imaging: High‑resolution rendering for diagnostic equipment.
- Gaming and Entertainment: Multi‑display rendering for casino, simulation, or kiosk systems.
- Transportation and Defense: Ruggedized systems requiring extended temperature tolerance.
- Digital Signage and Visualization: Multi‑display 4K output for control rooms or retail environments.
Compatibility:
- Compatible with standard MXM 3.1 Type A slots.
- Supports NVIDIA GPUDirect RDMA for low‑latency data transfer between GPU and peripheral devices.
- Works with NVIDIA driver packages for Windows and Linux platforms.
- Supports CUDA, OpenCL, DirectX, OpenGL, and Vulkan APIs for broad software compatibility.
### 5. Components & Accessories
Included Items:
- EGX‑MXM‑P2000 GPU module
- User documentation and installation guide
Optional Accessories:
- MXM carrier boards or adapters (sold separately)
- DisplayPort to HDMI/DVI dongles for dual‑mode output
- Thermal solution (heatsink or cooling plate) depending on system design
Connectors:
- MXM 3.1 edge connector providing PCIe, power, and display signal interfaces
- Four DisplayPort 1.4 digital video outputs
- Support for HDMI 2.0 and DVI via DisplayPort dual‑mode adapters
### 6. Installation & Setup
System Requirements:
- Host system with MXM 3.1 Type A slot
- Power supply capable of delivering 5 V and 3.3 V rails per MXM specification
- Adequate thermal management (heatsink or active cooling)
Power Sequencing:
- The module requires a specific power‑up sequence:
1. PWR_SRC → 5V → 3.3V → PWR_EN → Internal Power → PWR_GOOD
- Controlled shutdown via PWR_EN signal ensures safe power‑down.
Reset and Initialization:
- Reset sequencing must follow MXM 3.1 guidelines to ensure stable GPU initialization.
Display Configuration:
- Supports four dual‑mode DisplayPort interfaces.
- HDMI and DVI outputs are implemented through DisplayPort using appropriate dongles.
- AC coupling capacitors and 499‑Ω pulldown resistors are required on the system board for HDMI/DVI signal integrity.
Driver Installation:
- Drivers available from NVIDIA’s official website:
[https://www.nvidia.com.tw/Download/index.aspx](https://www.nvidia.com.tw/Download/index.aspx)
- Supports WHQL‑certified drivers for Windows 7/10 and proprietary or open‑source drivers for Linux.
### 7. Performance & Capabilities
Compute Performance:
- 768 CUDA cores deliver up to 2.3 TFLOPS FP32 performance.
- Supports CUDA Compute Capability 6.1 for advanced parallel processing.
- Compatible with NVIDIA GPUDirect RDMA for direct memory access between GPU and network/storage devices, minimizing latency.
Graphics Performance:
- Capable of driving up to four 4K UHD displays simultaneously.
- DisplayPort 1.4 supports HDR video, 10‑bit color depth, and 4K resolution at up to 98 Hz.
- HDMI 2.0 support via adapter enables 4096 × 2160 @ 60 Hz output.
- HDCP 1.3 (DP) and 2.2 (DP/HDMI) content protection supported.
Efficiency and Power:
- 58 W TGP ensures high performance per watt ratio.
- Dynamic clock management and thermal throttling maintain efficiency under varying workloads.
Limitations:
- Limited to 4 GB VRAM; not intended for large‑scale deep learning training.
- Requires adequate cooling for sustained operation near maximum TDP.
### 8. Standards & Compliance
Certifications:
- WHQL Certified: Windows 7 and Windows 10
- CE Mark: Conformité Européenne compliance for electromagnetic compatibility
- FCC Compliance: Meets Federal Communications Commission standards for Class B digital devices
- EU‑RoHS: Restriction of Hazardous Substances compliant
- WEEE Directive: Designed for environmentally responsible disposal
Environmental Compliance:
- ADLINK adheres to RoHS and WEEE directives, ensuring minimal environmental impact during manufacturing and end‑of‑life disposal.
- California Proposition 65 compliance with appropriate labeling for chemical exposure warnings.
Industry Standards:
- MXM 3.1 Type A mechanical and electrical interface
- PCI Express Gen3 x16 signaling
- DisplayPort 1.4, HDMI 2.0, and HDCP 2.2 standards
- OpenGL 4.5, DirectX 12, Vulkan 1.0, and OpenCL 1.2 API compliance
### 9. Additional Information
Warranty & Availability:
- 5‑year product availability and performance warranty from ADLINK Technology.
- Long‑term supply assurance for embedded and industrial customers.
Maintenance & Support:
- Technical support available through ADLINK’s global service network.
- Contact options include:
- Ask an Expert: [http://askanexpert.adlinktech.com](http://askanexpert.adlinktech.com)
- Email: service@adlinktech.com
- Regional Offices:
- Taiwan (HQ): +886‑2‑8226‑5877
- USA: +1‑408‑360‑0200 / info@adlinktech.com
- China: +86‑21‑5132‑8988 / market@adlinktech.com
- Germany (EMEA): +49‑621‑43214‑0 / emea@adlinktech.com
Safety & Handling:
- Operate within specified temperature and voltage ranges.
- Avoid exposure to moisture, dust, or high humidity.
- Ensure proper ventilation and secure mounting.
- Only qualified personnel should perform installation or servicing.
- Lithium battery (if present) must be replaced only with approved types to prevent explosion risk.
End‑of‑Life and Environmental Responsibility:
- ADLINK encourages proper recycling and disposal in accordance with local regulations.
- Manufacturing processes are designed to minimize environmental impact.
Software Updates:
- NVIDIA periodically releases driver and CUDA toolkit updates to enhance performance and compatibility.
- Users are advised to maintain current driver versions for optimal stability and feature support.
### Summary
The ADLINK EGX‑MXM‑P2000 is a compact, high‑performance embedded GPU module built around the NVIDIA Pascal Quadro P2000 architecture. It delivers workstation‑grade graphics and compute capabilities in a rugged MXM 3.1 Type A form factor, optimized for embedded, industrial, and edge computing environments. With 768 CUDA cores, 4 GB GDDR5 memory, and 2.3 TFLOPS of single‑precision performance, it supports up to four 4K displays while maintaining a modest 58 W power envelope.
Its extended temperature tolerance (‑40 to 85 °C), long‑term availability, and compliance with major industry standards make it a reliable choice for mission‑critical applications such as medical imaging, industrial automation, and defense systems. The module’s compatibility with NVIDIA’s CUDA ecosystem and multiple graphics APIs ensures broad software support and future scalability.
In essence, the EGX‑MXM‑P2000 provides a balanced combination of performance, efficiency, and durability, enabling advanced visual computing and GPU acceleration at the edge.
*(Approx. 3000 tokens / ~12,000 characters)*
### 1. Product Overview
Product Name: EGX‑MXM‑P2000
Model: NVIDIA® Quadro® P2000 Embedded Graphics Module
Series: EGX‑MXM Embedded GPU Series
Article Number: EGX‑MXM‑P2000
Manufacturer: ADLINK Technology Inc.
Part Number: 50‑1Z300‑1000
Manual Revision: 1.0 (November 21, 2019)
The EGX‑MXM‑P2000 is an embedded graphics module integrating the NVIDIA® Pascal™ GP107 GPU architecture in a compact MXM 3.1 Type A form factor. Designed for embedded and industrial applications, it delivers workstation‑class graphics and compute performance in a rugged, thermally efficient design. The module is optimized for edge computing, visualization, and GPU‑accelerated workloads in environments requiring extended temperature operation and long‑term availability.
### 2. Key Features
- GPU Architecture: NVIDIA Pascal GP107 Quadro P2000
- CUDA Cores: 768 parallel processing cores
- Peak Performance: 2.3 TFLOPS single‑precision (FP32)
- Memory: 4 GB GDDR5, 128‑bit interface, 96 GB/s bandwidth
- Display Support: Up to four independent UHD (4K) displays via DisplayPort 1.4
- Form Factor: MXM 3.1 Type A (82 × 70 mm)
- Power Consumption: 58 W Total Graphics Power (TGP)
- Clock Speeds: Base 1455 MHz, Boost 1480 MHz
- Operating Temperature Range: ‑40 °C to +85 °C (ETT version)
- Long‑Term Availability: 5‑year product lifecycle support
- Software Ecosystem: CUDA Toolkit 8.0, OpenCL 1.2, DirectX 12, OpenGL 4.5, Vulkan 1.0
- Connectivity: PCI Express Gen3 x16 interface
- Compliance: CE, FCC, EU‑RoHS, WHQL certified for Windows 7/10
The EGX‑MXM‑P2000 combines high compute density with low power draw, making it ideal for embedded systems in medical imaging, industrial automation, digital signage, and defense applications.
### 3. Technical Specifications
Board Specifications
| Parameter | Specification |
|------------|---------------|
| GPU Core | NVIDIA Quadro P2000 (Pascal GP107) |
| CUDA Cores | 768 |
| Peak FP32 Performance | 2.3 TFLOPS |
| Memory Type | GDDR5 @ 6 Gbps |
| Memory Capacity | 4 GB |
| Memory Bus Width | 128‑bit |
| Memory Bandwidth | 96 GB/s |
| Display Outputs | 4 × DisplayPort 1.4 (HDR, 4K @ 98 Hz, 10‑bit color) |
| Signal Interface | MXM 3.1, PCIe Gen3 x16 |
| Dimensions | 87 mm (W) × 70 mm (D) × 4.8 mm (H) |
| Form Factor | MXM 3.1 Type A |
| Power Consumption (TGP) | 58 W |
| Operating Temperature | Standard: 0–55 °C; Extended: ‑40–85 °C |
| Storage Temperature | ‑40–85 °C |
| Supported OS | Windows 7/10 (64‑bit), Linux (64‑bit) |
Thermal Characteristics
| Parameter | Value | Unit |
|------------|--------|------|
| Thermal Resistance (Junction‑to‑Case, RJC) | 0.03 | °C/W |
| Thermal Resistance (Junction‑to‑Board, RJB) | 3.0 | °C/W |
| Max Operating Temperature | 94 | °C |
| Slowdown Temperature (THERM_ALERT) | 97 | °C |
| Shutdown Temperature (OVERT) | 102 | °C |
Thermal throttling mechanisms ensure safe operation under heavy load, automatically reducing clock speeds when temperature thresholds are exceeded.
### 4. Functionality
The EGX‑MXM‑P2000 operates as a high‑performance embedded GPU module, interfacing with host systems via PCI Express Gen3 x16 through the MXM 3.1 connector. It provides hardware acceleration for both graphics rendering and general‑purpose GPU (GPGPU) computing tasks.
Use Cases and Applications:
- Industrial and Edge Computing: Real‑time data visualization, AI inference, and machine vision.
- Medical Imaging: High‑resolution rendering for diagnostic equipment.
- Gaming and Entertainment: Multi‑display rendering for casino, simulation, or kiosk systems.
- Transportation and Defense: Ruggedized systems requiring extended temperature tolerance.
- Digital Signage and Visualization: Multi‑display 4K output for control rooms or retail environments.
Compatibility:
- Compatible with standard MXM 3.1 Type A slots.
- Supports NVIDIA GPUDirect RDMA for low‑latency data transfer between GPU and peripheral devices.
- Works with NVIDIA driver packages for Windows and Linux platforms.
- Supports CUDA, OpenCL, DirectX, OpenGL, and Vulkan APIs for broad software compatibility.
### 5. Components & Accessories
Included Items:
- EGX‑MXM‑P2000 GPU module
- User documentation and installation guide
Optional Accessories:
- MXM carrier boards or adapters (sold separately)
- DisplayPort to HDMI/DVI dongles for dual‑mode output
- Thermal solution (heatsink or cooling plate) depending on system design
Connectors:
- MXM 3.1 edge connector providing PCIe, power, and display signal interfaces
- Four DisplayPort 1.4 digital video outputs
- Support for HDMI 2.0 and DVI via DisplayPort dual‑mode adapters
### 6. Installation & Setup
System Requirements:
- Host system with MXM 3.1 Type A slot
- Power supply capable of delivering 5 V and 3.3 V rails per MXM specification
- Adequate thermal management (heatsink or active cooling)
Power Sequencing:
- The module requires a specific power‑up sequence:
1. PWR_SRC → 5V → 3.3V → PWR_EN → Internal Power → PWR_GOOD
- Controlled shutdown via PWR_EN signal ensures safe power‑down.
Reset and Initialization:
- Reset sequencing must follow MXM 3.1 guidelines to ensure stable GPU initialization.
Display Configuration:
- Supports four dual‑mode DisplayPort interfaces.
- HDMI and DVI outputs are implemented through DisplayPort using appropriate dongles.
- AC coupling capacitors and 499‑Ω pulldown resistors are required on the system board for HDMI/DVI signal integrity.
Driver Installation:
- Drivers available from NVIDIA’s official website:
[https://www.nvidia.com.tw/Download/index.aspx](https://www.nvidia.com.tw/Download/index.aspx)
- Supports WHQL‑certified drivers for Windows 7/10 and proprietary or open‑source drivers for Linux.
### 7. Performance & Capabilities
Compute Performance:
- 768 CUDA cores deliver up to 2.3 TFLOPS FP32 performance.
- Supports CUDA Compute Capability 6.1 for advanced parallel processing.
- Compatible with NVIDIA GPUDirect RDMA for direct memory access between GPU and network/storage devices, minimizing latency.
Graphics Performance:
- Capable of driving up to four 4K UHD displays simultaneously.
- DisplayPort 1.4 supports HDR video, 10‑bit color depth, and 4K resolution at up to 98 Hz.
- HDMI 2.0 support via adapter enables 4096 × 2160 @ 60 Hz output.
- HDCP 1.3 (DP) and 2.2 (DP/HDMI) content protection supported.
Efficiency and Power:
- 58 W TGP ensures high performance per watt ratio.
- Dynamic clock management and thermal throttling maintain efficiency under varying workloads.
Limitations:
- Limited to 4 GB VRAM; not intended for large‑scale deep learning training.
- Requires adequate cooling for sustained operation near maximum TDP.
### 8. Standards & Compliance
Certifications:
- WHQL Certified: Windows 7 and Windows 10
- CE Mark: Conformité Européenne compliance for electromagnetic compatibility
- FCC Compliance: Meets Federal Communications Commission standards for Class B digital devices
- EU‑RoHS: Restriction of Hazardous Substances compliant
- WEEE Directive: Designed for environmentally responsible disposal
Environmental Compliance:
- ADLINK adheres to RoHS and WEEE directives, ensuring minimal environmental impact during manufacturing and end‑of‑life disposal.
- California Proposition 65 compliance with appropriate labeling for chemical exposure warnings.
Industry Standards:
- MXM 3.1 Type A mechanical and electrical interface
- PCI Express Gen3 x16 signaling
- DisplayPort 1.4, HDMI 2.0, and HDCP 2.2 standards
- OpenGL 4.5, DirectX 12, Vulkan 1.0, and OpenCL 1.2 API compliance
### 9. Additional Information
Warranty & Availability:
- 5‑year product availability and performance warranty from ADLINK Technology.
- Long‑term supply assurance for embedded and industrial customers.
Maintenance & Support:
- Technical support available through ADLINK’s global service network.
- Contact options include:
- Ask an Expert: [http://askanexpert.adlinktech.com](http://askanexpert.adlinktech.com)
- Email: service@adlinktech.com
- Regional Offices:
- Taiwan (HQ): +886‑2‑8226‑5877
- USA: +1‑408‑360‑0200 / info@adlinktech.com
- China: +86‑21‑5132‑8988 / market@adlinktech.com
- Germany (EMEA): +49‑621‑43214‑0 / emea@adlinktech.com
Safety & Handling:
- Operate within specified temperature and voltage ranges.
- Avoid exposure to moisture, dust, or high humidity.
- Ensure proper ventilation and secure mounting.
- Only qualified personnel should perform installation or servicing.
- Lithium battery (if present) must be replaced only with approved types to prevent explosion risk.
End‑of‑Life and Environmental Responsibility:
- ADLINK encourages proper recycling and disposal in accordance with local regulations.
- Manufacturing processes are designed to minimize environmental impact.
Software Updates:
- NVIDIA periodically releases driver and CUDA toolkit updates to enhance performance and compatibility.
- Users are advised to maintain current driver versions for optimal stability and feature support.
### Summary
The ADLINK EGX‑MXM‑P2000 is a compact, high‑performance embedded GPU module built around the NVIDIA Pascal Quadro P2000 architecture. It delivers workstation‑grade graphics and compute capabilities in a rugged MXM 3.1 Type A form factor, optimized for embedded, industrial, and edge computing environments. With 768 CUDA cores, 4 GB GDDR5 memory, and 2.3 TFLOPS of single‑precision performance, it supports up to four 4K displays while maintaining a modest 58 W power envelope.
Its extended temperature tolerance (‑40 to 85 °C), long‑term availability, and compliance with major industry standards make it a reliable choice for mission‑critical applications such as medical imaging, industrial automation, and defense systems. The module’s compatibility with NVIDIA’s CUDA ecosystem and multiple graphics APIs ensures broad software support and future scalability.
In essence, the EGX‑MXM‑P2000 provides a balanced combination of performance, efficiency, and durability, enabling advanced visual computing and GPU acceleration at the edge.
-
EGX-MXM-P2000_50-1Z300-1000_10.pdf
PDF Catalog
-
EGX-MXM-P2000-20200618.pdf
Manual
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