CONTENTS. Embedded Jetson GPGPU Solutions. Software / Hardware Integration Value-added Service...

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2 CONTENTS About Aetina... Business Commitment... Industrial / Embedded Focus... Do the Right Technology : Built for Extreme Reliability... Customization Service Industrial Graphics Cards General Purpose Graphics Cards... Selection Guide... PCI... PCI Express... Rugged GPGPU Boards... Selection Guide... XMC... VPX... CompactPCI Express... Embedded MXM GPU Modules... Selection Guide... MXM... Multi-Display Graphics Cards... Selection Guide... x4 Displays... x9 Displays... x12 Displays Embedded Jetson GPGPU Solutions Software / Hardware Integration Value-added Service... Selection Guide... NVIDIA Jetson TX1/TX2/TX2i Embedded Module... Jetson TX1/TX2 Carrier Board... Jetson TX1/TX2 Developer Kit... NVIDIA Tegra K1 COM Express Type 6 Compact Module... Tegra K1 Developer Kit

3 About Aetina Founded in Taiwan, Aetina is dedicated to industrial graphics cards and GPGPU solutions for industrial embedded applications. With continuous focus and development on the industry-specific form factors and high reputable GPU-accelerated computing solutions, Aetina features a wide range of products for operation in critical imaging applications applied in medical, defense & aerospace, factory automation, transportation, gaming, outside signage and more markets. At Aetina, long-term support is our core commitment. We stand together with customers through close technical partnership as well as our trusted hardware and firmware customization services. Everything we do is dedicated to helping our customers to release their products on time, on budget and with the anticipated competitiveness. Vision Offering GPGPU parallel computing in the unique form factors required by defense, aerospace, and industrial clients, we strive to not only provide better graphics solutions for mission critical applications but to enable the next era of high quality GPU-accelerated computing solutions massively used in the air, on the ground, or in the operating room for an intelligent world. 3

4 Business Commitment The word Aetina is derived from "Accuracy, Efficiency, Teamwork, Innovation, Non-stop and Ambition. This acronym directly reflects our commitment to providing reliable products and continuous service. 4

5 01 OEM/ODM Projects Aetina s R&D team is comprised of experts with over ten years of experience and knowledge regarding in VGA/GPU applications and Industrial PCs. Our talented team is able to design and produce superior products to fulfill customized demands. We strive to help our customers make their industrial platforms and embedded systems competitive by gaining significant graphics performance and GPGPU computations, and simplify in-system qualifications, all purposed in a rapid and affordable way. 02 Long-term Supply Aetina recognizes that industrial embedded devices and applications require longer life spans. We devote ourselves to being a long-term and reliable supplier for our clients. Aetina is widely recognized as a dependable and trustworthy world-class embedded graphics solution provider. 03 Technical Support Aetina focuses on long-term relationships and top-notch service. We provide efficient and timely FAE services and technical support; our client s satisfaction is our top priority. This is the philosophy that guides us in all interactions with our clients and business partners. 04 Various Product Lines Aetina s multiple product portfolios are suited to meet a variety of needs, as well as fulfill specialized platform requirements for applications in medical, defense, military, aerospace, transportation, digital signage, security, casino gaming systems. Aetina collaborates with our customers to incorporate required criteria into the product design concept. Our product lines boast low power consumption, two ball bearings, are fanless and rugged, operate at wide temperatures, and come in diverse form factors for a multi output interface. 05 Quality Assurance Aetina pursues the most innovative designs and incorporate leading edge technologies into our products. Throughout the design, development, testing and manufacturing process, each stage is compliant with strict quality control guidelines, and is overseen by our stringent Quality Assurance Management. 06 Professional Manufacturing Aetina's manufacturing and quality examination is carried out in a 20-year PCBA production experienced factory that implements ISO, OHSAS, RoHS quality management systems. Our factory is a total static-free environment. Throughout every phase of the process, from manufacturing to multi-function testing, our mission is Quality First, Customers Foremost. 5

6 Industrial / Embedded Focus Aetina works closely with industrial computing and embedded customers to ensure that we develop and implement technical innovations that best suit their target markets. Our products are compatible with a wide range of applications, from defense, aerospace, military, medical, surveillance, automation, casino gaming and digital signage. We also offer tailored products to suit demanding working conditions and temperatures. 6

7 Medical In the medical industry, highly accurate and timely image processing is a top priority. X-rays, ultrasounds and endoscopy are just a few of the applications with such requirement. Since critical video, graphics and 3D computing data are provided in different formats, our MXM module series is designed to accommodate a wide array of specific I/O requirements to deliver scalable quality and reliability. Casino Gaming We focus on providing immersive graphics, powerful processing, and low power consumption graphics solutions for the gaming industry that combines premium graphics performance with advanced features. AOI (Automatic Optical Inspection) The AOI system has been widely used for production detection. Our PCI Express card series is the proven and adopted solution for enhancing a manufacturer s ability to inspect defects efficiently, with accuracy, and with high performance in a reliable inspection environment. Transportation For the transportation industry, smaller form factor designs and powerful computing with lower power consumption are the biggest challenges. Our XMC graphics cards can accommodate shock and vibration, are robust and rugged, and are offered with an impressively highresolution. Our products feature a variety of I/O interfaces to support video, voice and video surveillance Digital Signage Digital signage is heavily implemented in a wide-range of applications, including retail (supermarkets, shopping centers), visual display walls, transportation, and point-ofsales. Our products integrate graphics processing units, and help to deliver powerful performance, high-definition graphics (in 2D or 3D formatting), and on single or multiple displays. Defense and Aerospace We offer the most rugged, high resolution and high performance VPX, XMC graphics cards for missioncritical applications. Our products boast runtime performance and state-ofthe-art image quality and graphics capabilities. Our designs ensure significant gains in radar, video and image processing applications. 7

8 Do The Right Technology Built for Extreme Reliability When the mission is on the line, every detail counts. A high reliability system is typically required to sustain normal function under harsh conditions. Today the commercial grade GPU cards achieve amazing graphics performance and computational acceleration until things heat up. Fanless operation, SWaP constrained, and exposure to severe temperature variations are just a part of daily life for aerospace, defense, vehicles, and outdoor-based embedded systems. Aetina targets missioncritical applications for these systems, offering wide operating temperature range and conformal coating in specialized form factors, including MXM, XMC, VPX and CompactPCI Express, providing vendors an excellent choice for building rugged embedded systems with reliable GPGPU and graphics solutions. 8

9 Wide Operating Temperature Range To ensure consistent operation and reliable performance under various environmental temperature extremes, Aetina carries out stringent testing exceeding the requirements of the IEC standard. The testing procedure includes a gauntlet of dynamic temperature burn-in cycles over extended periods of time with start-ups at as low as -40 C and as high as +85 C, using a thermal stream-like testing model, together with our own in-house designed interposer card developed to test specialized form factors required by our industrial customers. Unique Interposer Testing Module For testing special, non-standard form factors, Aetina has specially designed our own unique interposer testing tool. Our interposer testing module such as for MXM, adapts the specialized interface to a PCI- Express slot. With high-speed digital transmission connectors, the signal transfers without any degradation of performance even during temperature variations, giving a true indication of graphics performance in extreme environments. Wide Temperature Cycling and Testing Our wide temperature graphics cards must pass a comprehensive engineering testing procedure during development as well as individual validation before delivery. Beyond testing at temperature extremes, severe temperature variations are also accounted for. Aetina wide temperature cycling test makes sure our GPU cards can stand up to this abuse and keep on ticking. Comprehensive Certification 10 dynamic temperature cycling test 110 hours Burn-in test at 85 C 110 hours Burn-in test at -40 C 100 times of power on/off cycles at 85 C 100 times of power on/off cycles at -40 C Conformal Coating Aetina offers conformal coating service on its complete range of GPU products to meet the rigors of harsh industrial and military use. Our conformal coating technology refers to protective chemical materials applied in layers as thin as 0.03mm and up to 0.13 mm thick onto the circuit board to create a protective film for components, which in line with IPC-A-610 standards, for electronic components to protect the graphics card against dust, moisture, harsh chemicals, mechanical stress and to prevent solder joints and connections corroding due to contact with air. Especially suited to defense and aerospace, outdoors digital signage, in-vehicle computing and factory automation, Aetina s conformal coatings go beyond normal ruggedization methods to not only offer protection from the elements but add value to industrial systems. 9

10 Customization Service Helping Our Partners Reach What They Need Aetina recognizes that each client requires unique application requirements for their end products, especial claims for GPGPU solution for critical applications in military, unmanned aerial vehicle, radar center, surveillance system, factory machine vision equipment, medical imaging and transportation. Supported by our talented R&D team with over decade experience and knowledge in VGA/GPU fields and industrial computing. We are manufacturer has the ability to provide our clients customization services ranging from concept to mass production, and till after services. In past years, we successfully build ODM business with world-leading companies developing their niche products which created by our services : Pure-Custom Level service: From concept to finished product until manufacturing and after services, providing complete customized design supporting into every phase of the product life cycle. Design covering specification initial, domain documents supporting, researching, schematic review, circuit layout, BIOS tailored, debug & analysis, validation & testing, manufacturing management, schedule control and warranty service. Semi-Custom Level service: Based on Aetina s various form factors of graphics modules and boards, customers can have customized I/O, tailor-made BIOS and schematic customized service from Aetina. We will keep providing all necessary information and supporting to customers in order to make sure products are in line with their needs and vertical applications. Minor-Custom Level service: To gain most flexibility and productivity, customers can easily and quickly suffice their systems from our standard-based products with minor configuration change without redesign. It is the way to save total cost and development time, speed up products time to market. ODM Project Procedure 1 CD Concept Designand > Specification initial > Domain documents supporting > Researching 4 EP Engineer Pilot Run > Critical function check > QVL starts > EMI certificate by request 2 DRM Design Review Meeting > Schematic review > Circuit layout > BIOS tailored 5 PP Production Pilot Run > ECR > QVL ready > MP tooling readiness 3 PT Prototype Run > Prototype > Debug & analysis > Validation & testing 6 MP Mass Production > Manufacturing management > QTC > Shipment control 10

11 General Purpose GraphicsCards Today, it is no doubt the industrial applications are growing demanding of elaborate graphics and compute capabilities. For example, the automatic manufacturing facility utilizing machine inspection requires more precise 2D/3D imaging and real-time pixel counting processing. Casino gaming solutions now need better processing performance per watt and immersive 3D graphics to capture player s attention. Multiple displays with improved 3D and video performance are essential for intelligent security deployments and gaming machines. The modern medical imaging industry is embracing advanced 3D visualization quickly than ever. Detailed digital graphs, charts and 3D rendering visualizations, help doctors and radiologists make quick diagnosis and prescribe the best treatment to their patients. Aetina offers the extensive General Purpose Graphics Cards, including PCI, PCI Express x1, PCI Express x16 portfolio, fulfilling and exceeding the unique requirements of these applications for industry-specific features such as multi-displays, small form factor, low power consumption, fanless, two-ball-bearing cooling fan, industrial-grade components, 4K resolutions and mores. Long-term support and longevity service are our core commitment from an understanding that industrial systems demand much longer lifecycles. Thanks to Aetina s strong hardware and firmware team, enable us to support customer reliability, stability and flexibility from our industrial know-how and customization services. 11

12 p.14 p.15 p.16 p.17 p.18 Model Number NF52A-H27FX N710B-E8HL N710D-E5HL N710C-E8HL N1030-J6FL Bus Type PCI PCIe 2.0 x 1 PCIe 2.0 x 8 PCIe 2.0 x 16 PCIe 3.0 x 16 GPU Engine GPU Architecture Graphics Processing Unit NVIDIA CUDA Cores N/A NVIDIA Kepler NVIDIA Kepler NVIDIA Kepler NVIDIA Pascal GeForce FX 5200 GeForce GT 710 GeForce GT 710 GeForce GT 710 GeForce GT 1030 N/A Graphics Clock 250 MHz 954 MHz 954 MHz 954 MHz 1227/1468 MHz Floating Point N/A GFLOPS GFLOPS GFLOPS GFLOPS Memory Size 256MB DDR 1GB DDR3 1GB DDR3 1GB DDR3 2GB GDDR5 Memory Memory Clock Memory Interface Width Memory Bandwidth 266 MHz DirectX 9.0a 800 MHz (1.6 Gbps) 800 MHz (1.6 Gbps) 800 MHz (1.6 Gbps) 3000 MHz (6.0 Gbps) 128-bit 64-bit 64-bit 64-bit 64-bit 4.2 GB/sec 12.8 GB/sec 12.8 GB/sec 12.8 GB/sec 48 GB/sec 12 API (feature level 11_0) 12 API (feature level 11_0) 12 API (feature level 11_0) 12 API OpenGL API OpenCL Shader Mode 2.0a NVIDIA CUDA enabled N/A support support support support Operation System Support OS Windows XP Windows XP Windows 7-10 Windows XP Windows 7-10 Windows XP Windows 7-10 Windows 7-10 Display Max. Displays per Board Max. Digital Display Max. Analog Display x x x x x x x x x x1200 Outputs Single Link DVI-I TV-OUT VGA Dual Link DVI-D HDMI VGA VGA HDMI VGA Dual Link DVI-D HDMI VGA Single Link DVI-I HDMI 2.0b Power Max. Board Power Consumption 25W 19 W 19 W 19 W 30 W Thermal Cooling Active Fan Heat-sink Heat-sink Heat-sink Two-ball-bearing Fan Slot Occupied Single-slot Single-slot Single-slot Single-slot Single-slot Mechanical Dimensions 160.9x100.7 mm x68.9 mm x68.9 mm x68.9 mm x68.9 mm Environment Operation Temperature 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 12 General Purpose Graphics Cards Product specifications are subject to change without prior notice

13 p.19 p.20 p.21 p.22 N75TC-J8FL N950C-JOFX N1050-J9FX N1050TI-L9FX PCIe 3.0 x 16 PCIe 3.0 x 16 PCIe 3.0 x 16 PCIe 3.0 x 16 NVIDIA Maxwell NVIDIA Maxwell NVIDIA Pascal NVIDIA Pascal GeForce GTX 750 Ti GeForce GTX 950 GeForce GTX 1050 GeForce GTX 1050 Ti MHz 1024 MHz 1354/1455 MHz 1290/1392 MHz 1.31 TFLOPS 1.57 TFLOPS 1.73 TFLOPS 1.98 TFLOPS 2GB GDDR5 2GB GDDR5 2GB GDDR5 4GB GDDR MHz (5.4 Gbps) 3300 MHz (6.6 Gbps) 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) 128-bit 128-bit 128-bit 128-bit 86.4 GB/sec GB/sec 112 GB/sec 112 GB/sec 12 API 12 API 12 API 12 API support support support support Windows XP Windows 7-10 Windows XP Windows x x x x x x x x1200 Dual Link DVI-D HDMI VGA Dual Link DVI-I HDMI DisplayPort 1.2 DisplayPort 1.2 HDMI 2.0b Dual Link DVI-I DisplayPort 1.2 HDMI 2.0b Dual Link DVI-I 60 W 90 W 75 W 75 W Two-ball-bearing Fan Two-ball-bearing Fan Two-ball-bearing Fan Two-ball-bearing Fan Single-slot Two-slot Two-slot Two-slot x68.9 mm 174.9x mm x mm x mm 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C Product specifications are subject to change without prior notice General Purpose Graphics Cards 13

14 NF52A-H27FX NVIDIA PCI Low Power Industrial Graphics Card Cost-effective solution for PCI graphics upgrade Single slot thermal system fit to small systems Support 128-bit studio-precision color for 2D/3D Integrated TV encoder, decoder and TV-out functionality Automation GPU Engine Specs Thermal and Power Specs GPU GeForce FX 5200 Thermal Active Cooling NVIDIA CUDA Cores N/A Max. GPU Temperature (in C) 110 C Graphics Clock (MHz) 250 MHz Max. Board Power Consumption (W) 25 W Floating Point Performance N/A Min. System Power Requirement (W) 250 W Memory Specs Dimensions Memory Size 256MB DDR Width Single-slot Memory Clock (MHz) 266 MHz Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) 4.2 Form Factor ATX Feature Support Bus Type PCI OpenGL 1.4 DirectX 9.0a CUDA enabled N/A Operation System Windows XP Display Support Max. Displays per Board 2 Max. Digital Display Support 1600x1200 Max. Analog Display Support 2048x1536 Display Connectors Single Link DVI-I TV-Out VGA 14 General Purpose Graphics Cards

15 N710B-E8HL NVIDIA PCI Express x1 Small Form Factor Industrial Graphics Card 3 years longevity product supply service Powered by NVIDIA power-efficient GPU GeForce GT 710 All industrial grade solid capacitors design Single-slot fanless with low profile design for slim chassis Best budget solution for PCIe x1 graphics upgrade Automation Gaming GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GT 710 Thermal Heat-sink NVIDIA CUDA Cores 192 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 954 MHz Max. Board Power Consumption (W) 19 W Floating Point Performance GFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 1GB DDR3 Width Single-slot Memory Clock (MHz) 800MHz (1.6 Gbps) Length mm Memory Interface Width 64-bit Height 68.9 mm Memory Bandwidth (GB/sec) 12.8 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Bus Type PCI-Express 2.0 x1 OpenGL 4.4 DirectX 12 API with feature level 11_0 CUDA enabled Yes Operation System Windows XP Display Support Max. Displays per Board 3 Max. Digital Display Support 4096x Max. Analog Display Support 2048x1536 Display Connectors VGA HDMI(1.4) Dual Link DVI-D x2160 resolution at 24Hz or 3840x2160 resolution at 30Hz supported over HDMI. General Purpose Graphics Cards 15

16 N710D-E5HL NVIDIA PCI Express x8 Small Form Factor Industrial Graphics Card 3 years longevity product supply service Support natively Dual-VGA connectivity Driven up to 3 independently displays PCIe x8 fanless solution Lowest level power consumption Single-slot with low profile form factor, ideal for small systems Automation Gaming Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GT 710 Thermal Heat-sink NVIDIA CUDA Cores 192 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 954 MHz Max. Board Power Consumption (W) 19 W Floating Point Performance GFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 1GB DDR3 Width Single-slot Memory Clock (MHz) 800 MHz (1.6 Gbps) Length mm Memory Interface Width 64-bit Height 68.9 mm Memory Bandwidth (GB/sec) 12.8 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Bus Type OpenGL DirectX CUDA enabled PCI-Express 2.0 x API (feature level 11_0) Yes Operation System Windows XP Display Support Max. Displays per Board Max. Digital Display Support x Max. Analog Display Support 2048x Display Connectors VGA HDMI VGA x1536 supported over bottom-side D-Sub connector x2160 resolution at 24Hz or 3840x2160 resolution at 30Hz supported over HDMI. 16 General Purpose Graphics Cards

17 N710C-E8HL NVIDIA PCI Express x16 Small Form Factor Industrial Graphics Card 3 years longevity product supply service Lowest level power consumption Driven multi-displays up to 3 monitors Single-slot with low profile design for slim chassis Minimize maintenance to save total system costs Automation Gaming Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GT 710 Thermal Heat-sink NVIDIA CUDA Cores 192 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 954 MHz Max. Board Power Consumption (W) 19 W Floating Point Performance GFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 1GB DDR3 Width Single-slot Memory Clock (MHz) 800 MHz (1.6 Gbps) Length mm Memory Interface Width 64-bit Height 68.9 mm Memory Bandwidth (GB/sec) 12.8 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Bus Type PCI-Express 2.0 x16 1 OpenGL 4.4 DirectX 12 API (feature level 11_0) CUDA enabled Yes Operation System Windows XP Display Support Max. Displays per Board 3 Max. Digital Display Support 4096x Max. Analog Display Support 2048x1536 Display Connectors Dual Link DVI-D HDMI VGA 1. Aetina provides PCI-Express X mechanism while data transmission via PCI-Express 8X x2160 resolution at 24Hz or 3840x2160 resolution at 30Hz supported over HDMI. General Purpose Graphics Cards 17

18 N1030-J6FL NVIDIA Pascal PCI Express x16 Small Form Factor Industrial Graphics Card 3 years longevity product supply service Low power consumption, optimize performance per watt Analog display supported Single-slot with low profile design for slim chassis Ideal for factory automation, AIO and digital signage Automation Gaming Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GT 1030 Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 384 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1227/1468 MHz Max. Board Power Consumption (W) 30 W Floating Point Performance GFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 2GB GDDR5 Width Single-slot Memory Clock (MHz) 3000 MHz (6.0 Gbps) Length mm Memory Interface Width 64-bit Height 68.9 mm Memory Bandwidth (GB/sec) 48 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Bus Type OpenGL PCI-Express 3.0 x DirectX 12 API CUDA enabled Yes Operation System Windows Display Support Max. Displays per Board Max. Digital Display Support 4096x Max. Analog Display Support 1920x1200 Display Connectors HDMI 2.0b Single Link DVI-I 1. Aetina provides PCI-Express X mechanism while data transmission via PCI-Express 4X. 2. Windows10 requires November 2015 update or newer 18 General Purpose Graphics Cards

19 N75TC-J8FL NVIDIA PCI Express x16 High Performance Graphics Card for Gaming Systems Extraordinary longevity for 3 years 25% performance better than GTX 650 Ti Feature 640 CUDA cores, enable powerful GPGPU Two ball bearing fan with copper-enhanced thermal basis Single-slot dainty small form factor suitable for small system Support superb 4K graphics Automation Gaming Medical GPU Engine Specs Thermal and Power Specs GPU GeForce GTX 750 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 640 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 1020 MHz Max. Board Power Consumption (W) 60 W Floating Point Performance 1.31 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 2GB GDDR5 Form Factor Single-slot Memory Clock (MHz) 2700 MHz (5.4 Gbps) Length mm Memory Interface Width 128-bit Height 68.9 mm Memory Bandwidth (GB/sec) 86.4 Width SFF=Small Form Factor (Low profile card) Feature Support Bus Type PCI-Express 3.0 x16 OpenGL 4.4 DirectX 12 API CUDA enabled Yes Operation System Windows XP Display Support Max. Displays per Board 3 Max. Digital Display Support 4096x2160 Max. Analog Display Support 2048x1536 Display Connectors Dual Link DVI-D HDMI VGA General Purpose Graphics Cards 19

20 N950C-JOFX NVIDIA PCI Express x16 High Performance Graphics Card for Gaming Systems Powered by NVIDIA GM206 Maxwell architecture GPU 3X performance better than previous generation Enable DirectX 12 games even on 1080p displays Support 4 independent displays Support optimal CUDA processing and responsive gaming experience Ideal for casino, arcade and medical imaging applications Automation Gaming Vehicle GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 950 Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 768 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 1024 MHz Max. Board Power Consumption (W) 90 W Floating Point Performance 1.57 TFLOPS Min. System Power Requirement (W) 350 W Supplementary Power Connectors One 6-pins Memory Specs Dimensions Memory Size 2GB GDDR5 Width Two-slot Memory Clock (MHz) 3300 MHz (6.6 Gbps) Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) Form Factor ATX Feature Support Bus Type PCI-Express 3.0 x16 OpenGL 4.5 DirectX 12 API CUDA enabled Yes Operation System Windows XP Display Support Max. Displays per Board 4 Max. Digital Display Support 5120x Max. Analog Display Support Display Connectors 2048x1536 Dual Link DVI-I HDMI x DisplayPort x3200 at 60Hz with dual DisplayPort connectors. 20 General Purpose Graphics Cards

21 N1050-J9FX NVIDIA Pascal PCI Express x16 High Performance Graphics Card for Gaming Systems Powered by GeForce GTX 1050 DisplayPort 1.2 certified, DisplayPort 1.3/1.4 ready Support optimal resolution 7680x4320 at 60Hz Analog display supported OpenCL 1.2, OpenGL 4.5, DirectX 12 and Vulkan compatible Ideal for gaming, digital signage and medical imaging Gaming Automation Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 640 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1354/1455 MHz Max. Board Power Consumption (W) 75 W Floating Point Performance 1.73 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 2GB GDDR5 Width Two-slot Memory Clock (MHz) 3500 MHz (7.0 Gbps) Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) 112 Form Factor ATX Feature Support Bus Type PCI-Express 3.0 x16 OpenGL 4.5 DirectX 12 API CUDA enabled Yes Operation System Windows Display Support Max. Displays per Board Max. Digital Display Support Max. Analog Display Support 7680x x Display Connectors DisplayPort HDMI 2.0b Dual Link DVI-I Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Tolerance: 0.2mm General Purpose Graphics Cards 21

22 N1050TI-L9FX NVIDIA Pascal PCI Express x16 High Performance Graphics Card for Gaming Systems Powered by GeForce GTX 1050 Ti DisplayPort 1.2 certified, DisplayPort 1.3/1.4 ready Support optimal resolution 7680x4320 at 60Hz Analog display supported OpenCL 1.2, OpenGL 4.5, DirectX 12 and Vulkan compatible Ideal for gaming, digital signage and medical imaging Gaming Automation Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 768 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1290/1392 MHz Max. Board Power Consumption (W) 75 W Floating Point Performance 1.98 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 4GB GDDR5 Width Two-slot Memory Clock (MHz) 3500 MHz (7.0 Gbps) Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) 112 Form Factor ATX Feature Support Bus Type PCI-Express 3.0 x16 OpenGL 4.5 DirectX 12 AP CUDA enabled Yes Operation System Windows Display Support Max. Displays per Board Max. Digital Display Support Max. Analog Display Support 7680x x Display Connectors DisplayPort HDMI 2.0b Dual Link DVI-I Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Tolerance: 0.2mm 22 General Purpose Graphics Cards

23 Rugged GPGPU Boards Aetina provides industrial-strength GPU accelerated graphics cards targeting the mission-critical faced by defense and aerospace, vehicles, maritime and more embedded applications. Our Rugged GPGPU Boards series includes CompactPCI Express as well as industry-specific XMC and VPX form factors, enabling comprehensive GPGPU computing for embedded systems operating in harsh environments. Apart from industrial grade, in order to meet various difficult environments and extreme temperatures, we offer rugged level GPU boards include extended temperature (-20 C to +70 C) and wide temperature (-40 C to +85 C) operation as well as conformal coatings to protect against environmental hazards such as dust, moisture, chemicals, mechanical stress and solder joint corrosion. The use of Electroless Nickel with Immersion Gold (ENIG) surface finished PCBs, Aetina s rugged GPGPU boards are also inherently more corrosion resistance than standard printed circuit boards.

24 p.25 p.25 p.26 p.27 p.28 Model Number X3N1050TI-LRC X3N1050TI-LSC X3N1050TI-LFA V3N1060-MRC C6N950M-JDH Bus Type XMC XMC XMC VPX 3U CPCIe 6U GPU Architecture NVIDIA Pascal NVIDIA Pascal NVIDIA Pascal NVIDIA Pascal NVIDIA Maxwell Graphics GeForce GTX 1050 Ti GeForce GTX 1050 Ti GeForce GTX 1050 Ti GeForce GTX 1060 GeForce GTX 950M Processing Unit GPU Engine NVIDIA CUDA Cores Graphics Clock 620 MHz 620 MHz 620 MHz 1404 MHz 914 MHz Floating Point GFLOPS GFLOPS GFLOPS 3.59 TFLOPS 1.11 TFLOPS Memory Size 4GB GDDR5 4GB GDDR5 4GB GDDR5 6GB GDDR5 2GB GDDR5 Memory Memory Clock Memory Interface Width Memory Bandwidth 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) 4000 MHz (8.0 Gbps) 2500 MHz (5.0 Gbps) 128-bit 128-bit 128-bit 192-bit 128-bit 112 GB/sec 112 GB/secc 112 GB/sec 192 GB/sec 80 GB/sec DirectX 12 API 12 API 12 API 12 API 12 API OpenGL API OpenCL Shader Mode NVIDIA CUDA enabled support support support support support Operation System Support OS Windows XP Display Max. Displays per Board Max. Digital Display Max. Analog Display 4 N/A x4320 N/A 3840x x4320 up to 3840x x1200 N/A N/A 1920x1200 up to 2048x1536 Outputs Rear I/O(P16): VGA and 4x DisplayPort N/A Front Panel: 4x SL DVI or HDMI via VHDCI Rear I/O: 4x DisplayPort Front Panel: 2x SL DVI-D, HDMI, VGA Rear I/O: 3x SL TMDS, VGA Power Thermal Max. Board Power Consumption Internal Transfer 30 W 30 W 30 W 68 W 55 W Conduction cooled Conduction cooled Air cooled Conduction cooled Heat-sink Mechanical Dimensions x74 mm x74 mm 149x74 mm 160x100 mm 160x233 mm Environment Standard Temp. (0 ~ 55 C) Extended Temp. (-20 ~ 70 C) X3N1050TI-LRC X3N1050TI-LSC X3N1050TI-LFA-xxx V3N1060-MRC N/A X3N1050TI-LRC-B X3N1050TI-LSC-B X3N1050TI-LFA-xxx-B V3N1060-MRC-B N/A 24 Rugged GPGPU Boards Product specifications are subject to change without prior notice

25 X3N1050TI-LRC NVIDIA Pascal Rugged & High Performance XMC GPU Computing Board with Sophisticated GPGPU Capability Compliant to CPCI, VPX, VME rugged platforms High CUDA compute capability for parallel processing Powered by 768 CUDA cores NVIDIA Pascal GPU Rugged conduction-cooled Support NVIDIA Optimus Longevity product supply Ideal for defense, aerospace rugged embedded systems Defense Vehicle GPU Engine Specs Mechanical and Environmental GPU NVIDIA CUDA Cores Graphics Clock (MHz) Floating Point Performance Memory Specs Memory Size Memory Clock (MHz) Memory Interface Width Memory Bandwidth (GB/sec) NVIDIA GeForce GTX 1050 Ti MHz GFLOPS 4GB GDDR MHz (7.0 Gbps) 128-bit 112 Thermal Conduction-cooled Max. Board Power Consumption (W) 30 W Operating Temperature Standard: 0 C to +55 C Operating Humidity 20~90%, No Condensation Form Factor XMC Length mm Width 74 mm Ordering Information Model Number Description X3N1050TI-LRC With XMC P16 I/O Connector, 0 C ~ +55 C Feature Support X3N1050TI-LRC-C With XMC P16 I/O Connector, 0 C ~ +55 C with coating Bus Type OpenGL OpenCL DirectX 8 lane PCI Express 3.0 capable (x8/x4/x1) X3N1050TI-LRC-B X3N1050TI-LRC-BC X3N1050TI-LSC X3N1050TI-LSC-C With XMC P16 I/O Connector, -20 C ~ +70 C With XMC P16 I/O Connector, -20 C ~ +70 C with coating Without XMC P16 I/O Connector, 0 C ~ +55 C Without XMC P16 I/O Connector, 0 C ~ +55 C with coating NVIDIA CUDA enabled support X3N1050TI-LSC-B Without XMC P16 I/O Connector, -20 C ~ +70 C NVIDIA Optimus NVIDIA PhysX support support X3N1050TI-LSC-BC Without XMC P16 I/O Connector, -20 C ~ +70 C with coating NVIDIA Direct Compute support Operation System Display Support Max. Digital Display Support 7680x4320 Max. Analog Display Support 1920x1200 Display Connectors Rear I/O(P16): VGA and 4x DisplayPort Rugged GPGPU Boards 25

26 X3N1050TI-LFA NVIDIA Pascal Rugged & High Performance XMC GPU Computing Board with Sophisticated GPGPU Capability Compliant to CPCI, VPX, VME rugged platforms High CUDA compute capability for parallel processing Powered by 768 CUDA cores NVIDIA Pascal GPU Support 4 independent displays through VHDCI Rugged air-cooled Longevity product supply Ideal for defense, aerospace rugged embedded systems GPU Engine Specs Defense Vehicle Mechanical and Environmental GPU NVIDIA CUDA Cores Graphics Clock (MHz) Floating Point Performance Memory Specs Memory Size Memory Clock (MHz) Memory Interface Width Memory Bandwidth (GB/sec) Feature Support Bus Type OpenGL OpenCL DirectX NVIDIA CUDA enabled NVIDIA Optimus NVIDIA PhysX NVIDIA Direct Compute Operation System NVIDIA GeForce GTX 1050 Ti MHz GFLOPS 4GB GDDR MHz (7.0 Gbps) 128-bit lane PCI Express 3.0 capable (x8/x4/x1) support support support support Thermal Air-cooled Max. Board Power Consumption (W) 30 W Operating Temperature Standard: 0 C to +55 C Operating Humidity 20~90%, No Condensation Form Factor XMC Length 149 mm Width 74 mm Ordering Information Model Number Description X3N1050TI-LFA-HDMI X3N1050TI-LFA-HDMI-C X3N1050TI-LFA-HDMI-B X3N1050TI-LFA-HDMI-BC X3N1050TI-LFA-DVI X3N1050TI-LFA-DVI-C X3N1050TI-LFA-DVI-B X3N1050TI-LFA-DVI-BC VHDCI Cable to 4*HDMI, 0 C ~ +55 C VHDCI Cable to 4*HDMI, 0 C ~ +55 C with coating VHDCI Cable to 4*HDMI, -20 C ~ +70 C VHDCI Cable to 4*HDMI -20 C ~ +70 C with coating VHDCI Cable to 4*DVI, 0 C ~ +55 C VHDCI Cable to 4*DVI, 0 C ~ +55 C with coating VHDCI Cable to 4*DVI, -20 C ~ +70 C VHDCI Cable to 4*DVI, -20 C ~ +70 C with coating Display Support Max. Digital Display Support Display Connectors 3840x2160 Front Panel: 4x Single Link DVI or HDMI via VHDCI Rugged GPGPU Boards

27 V3N1060-MRC NVIDIA Pascal Rugged & High Performance 3U VPX GPU Computing Board with Sophisticated GPGPU Capability Longevity product supply Gear up graphics power with NVIDIA Pascal GPU High CUDA process capability for exceptional parallel computing 8K resolution supported for rugged GPGPU applications Flexible I/O deployment with Quad DP++ Rugged design with conduction-cool thermal system Ideal for UAV, military, defense and in-vehicles GPU Engine Specs Defense Vehicle Mechanical and Environmental GPU NVIDIA CUDA Cores Graphics Clock (MHz) Floating Point Performance Memory Specs Memory Size Memory Clock (MHz) Memory Interface Width Memory Bandwidth (GB/sec) Feature Support Bus Type OpenGL OpenCL DirectX NVIDIA CUDA enabled NVIDIA Optimus NVIDIA PhysX NVIDIA Direct Compute Operation System NVIDIA GeForce GTX MHz 3.59 TFLOPS 6GB GDDR MHz (8.0 Gbps) 192-bit lane PCI Express 3.0 capable (x16/x8/x4/x1) API support support support support Thermal Conduction-cooled Max. Board Power Consumption (W) 68 W Operating Temperature Standard: 0 C to +55 C Operating Humidity 20~90%, No Condensation Form Factor 3U VPX Length 160 mm Width 100 mm Ordering Information Model Number Description V3N1060-MRC Standard 0 C ~ +55 C V3N1060-MRC-C Standard 0 C ~ +55 C with coating V3N1060-MRC-B Extended Temp. -20 C ~ +70 C V3N1060-MRC-BC Extended Temp. -20 C ~ +70 C with coating Display Support Max. Digital Display Support Max. Analog Display Support Display Connectors 7680x x1200 Rear I/O: 4x DisplayPort Rugged GPGPU Boards 27

28 5 C6N950M-JDH NVIDIA Rugged & High Performance CompactPCI Express GPU Computing Board with Sophisticated GPGPU Capability Flexible GPU and graphics upgradability in 6U CPCI-E carrier design Leverage MXM GPU modules, deliver advanced CUDAcomputing Optional four channel outputs from front and rear Compliant to PICMG 2.0 R3.0 Longevity product supply Ideal for military, UAV, vehicles and CPCI embedded systems GPU Engine Specs Defense Vehicle Mechanical and Environmental GPU NVIDIA GeForce GTX 950M Thermal Heat-sink NVIDIA CUDA Cores 640 Max. Board Power Consumption (W) 55 W Graphics Clock (MHz) 914 MHz Operating Temperature Standard: 0 C to +55 C Floating Point Performance 1.11 TFLOPS Operating Humidity 20~90%, No Condensation Form Factor 6U CompactPCI Express Memory Specs Length Width 160 mm 233 mm Memory Size 2GB GDDR5 Memory Clock (MHz) 2500 MHz (5.0 Gbps) Memory Interface Width 128-bit Memory Bandwidth (GB/sec) 80 Feature Support Bus Type 16 lane PCI Express 2.0 capable (x16/x8/x4/x1) OpenGL 4.5 OpenCL 1.2 DirectX 12 API NVIDIA CUDA enabled support NVIDIA Optimus support NVIDIA PhysX NVIDIA Direct Compute Operation System Display Support Max. Digital Display Support support support Windows XP up to 3840x Max. Analog Display Support Display Connectors up to 2048x1536 Front Panel: 2x Single Link DVI-D, HDMI, VGA Rear I/O: 3x Single Link TMDS, VGA Tolerance: 0.2mm 28 Rugged GPGPU Boards

29 Embedded MXM GPU Modules Aetina s Embedded MXM GPU Modules are the most compact, thinnest COTS solutions, leverage the parallel processing performance of NVIDIA GPUs, delivering unmatched power efficient, advanced graphics features, and the latest GPU technology with MXM 3.0/3.1 standards-based. Its superior graphics and high-level compute capability is ideal solution for performance demanding and size, weight and power (SWaP) constrained embedded systems in applications such as defense and aerospace, medical imaging, ground vehicle, avionics, UAV, portable VR device and mores. Based software nature of CUDA programming, Aetina provide vast array of Embedded MXM GPU Module with the most scalability and upgradability for GPGPU computing performance and rigorous data processing capabilities. Beyond the commercial demanding, with a dedication to support customers specific-requirement in harsh environments and critical missions, we not only offer rugged level MXM GPU modules with wide operating temperature range (-40 o C to +85 o C ) to sustain reliable operation even in temperature extremes, but also give option conformal coating services for resistance against dust, moisture, chemicals and physical stress.

30 p.32 p.33 p.34 Model Number M3N1030-JN M3N1050-LN M3N1050TI-LN Bus Type MXM 3.1 MXM 3.1 MXM 3.1 GPU Engine GPU Architecture Graphics Processing Unit NVIDIA CUDA Cores NVIDIA Pascal NVIDIA Pascal NVIDIA Pascal GeForce GT 1030 GeForce GTX 1050 GeForce GTX 1050 Ti Graphics Clock 1227/1468 MHz 1354 MHz 1493 MHz Floating Point GFLOPS 1.73 TFLOPS 2.29 TFLOPS Memory Size 2GB GDDR5 4GB GDDR5 4GB GDDR5 Memory Memory Clock 3000 MHz (6.0 Gbps) 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) Memory Interface Width Memory Bandwidth 64-bit 128-bit 128-bit 48 GB/sec 112 GB/sec 112 GB/sec DirectX 12 API 12 API 12 API OpenGL API OpenCL Shader Mode NVIDIA CUDA enabled support support support Operation System Support OS Display Max. Displays per Board Max. Digital Display Max. Analog Display up to 7680x4320 up to 7680x4320 up to 7680x4320 Not Support Not Support Not Support Outputs Dual Link DVI-D DisplayPort 1.2 HDMI 2.0b edp 1.4 Dual Link DVI-D DisplayPort ++ HDMI 2.0b edp 1.4 Dual Link DVI-D DisplayPort ++ HDMI 2.0b Power Max. Board Power Consumption 30 W 50 W 60 W Mechanical Dimensions 70x82 mm 70x82 mm 70x82 mm Environment Standard Temp. (0 ~ 55 C ) Wide Temp. (-40 ~ 85 C ) Extended Temp. (-20 ~ 70 C ) Coating M3N1030-JN M3N1050-LN M3N1050TI-LN M3N1030-JN-A M3N1050-LN-A M3N1050TI-LN-A M3N1030-JN-B M3N1050-LN-B M3N1050TI-LN-B M3Nxxxx-xx-xC (C=with conformal coating service) 30 Embedded MXM GPU Modules Product specifications are subject to change without prior notice

31 p.35 p.36 p.37 M3N1060-MN M3N1070-NN M3N1080-NN MXM 3.1 MXM 3.1 MXM 3.1 NVIDIA Pascal NVIDIA Pascal NVIDIA Pascal GeForce GTX 1060 GeForce GTX 1070 GeForce GTX /1670 MHz 1442/1645 MHz 1556/1733 MHz 3.59 TFLOPS 5.90 TFLOPS 7.96 TFLOPS 6GB GDDR5 8GB GDDR5 8GB GDDR5X 4000 MHz (8.0 Gbps) 4000 MHz (8.0 Gbps) 5000 MHz (10.0 Gbps) 192-bit 256-bit 256-bit 192 GB/sec 256 GB/sec 320 GB/sec 12 API 12 API 12 API support support support up to 7680x4320 up to 7680x4320 up to 7680x4320 Not Support Not Support Not Support edp 1.4 Dual Link DVI-D DisplayPort ++ HDMI 2.0b edp 1.4 Dual Link DVI-D DisplayPort ++ HDMI 2.0b edp 1.4 Dual Link DVI-D DisplayPort ++ HDMI 2.0b 78 W 115 W 150 W 105x82 mm 113x82 mm 113x82 mm M3N1060-MN M3N1070-NN M3N1080-NN N/A N/A N/A M3N1060-MN-B N/A N/A * M3N1060-MN-D supports extented temperature range from -40 ~ 75 C Product specifications are subject to change without prior notice Embedded MXM GPU Modules 31

32 M3N1030-JN NVIDIA Pascal MXM 3.1 Type A GPU Module Powered by GeForce GT 1030 energy-efficient GPU 384 NVIDIA Pascal architecture CUDA cores Support 8K resolution, H.265/HEVC video decode Support port-to-computer isolation 30μ" golden finger, enhance high-quality and stability 3 years longevity support Ideal for medical imaging, deep learning and defense applications Defense Automation Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GT 1030 Thermal None NVIDIA CUDA Cores 384 Max.Board Power Consumption (W) 30 W Graphics Clock (MHz) 1227/1468 MHz Floating Point Performance GFLOPS Memory Specs Dimensions Memory Size 2GB GDDR5 Length 70 mm Memory Clock (MHz) 3000 MHz (6.0 Gbps) Width 82 mm Memory Interface Width Memory Bandwidth (GB/sec) 64-bit 48 Form Factor MXM graphics module version 3.1 Type A Feature Support Bus Type OpenGL OpenCL DirectX Shader Mode Support Technologies Operation System Display Support Max. Displays per Board Max. Analog Display Support Max. Digital Display support 2 LCD-eDP 1.4 DisplayPort Multimode 3 HDMI 2.0b H.264, HEVC, MPEG2 1080p video decoder MXM 3.1 (PCI Express 3.0 support) API 5 NVIDIA CUDA, GPU Boost, OpenCL,Vulkan, Direct Compute 1 2 Not Support up to 7680x4320 Not Support up to 7680x4320 support support Ordering Information Model Number M3N1030-JN M3N1030-JN-C M3N1030-JN-A M3N1030-JN-AC M3N1030-JN-B M3N1030-JN-BC Description Standard 0 C ~ +55 C Standard 0 C ~ +55 C with coating Wide Temp. -40 C ~ +85 C Wide Temp. -40 C ~ +85 C with coating Extended Temp. -20 C ~ +70 C 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Extended Temp. -20 C ~ +70 C with coating 32 Embedded MXM GPU Modules

33 M3N1050-LN NVIDIA Pascal MXM 3.1 Type A GPU Module Powered by NVIDIA GeForce GTX 1050 mobile GPU 640 new-gen. Pascal architecture CUDA cores 4GB on board memory and 112 GB/sec memory bandwidth Up to 4 independent displays at the same time OpenCL 1.2, OpenGL 4.5, DirectX 12, Vulkan compatible Advanced performance per watt Gold finger 30μ" enhanced high stability and quality signal Defense Gaming Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Thermal None NVIDIA CUDA Cores 640 Max.Board Power Consumption (W) 50 W Graphics Clock (MHz) 1354 MHz Supplementary Power Connectors None Floating Point Performance 1.73 TFLOPS Memory Specs Dimensions Memory Size 4GB GDDR5 Length 70 mm Memory Clock (MHz) 3500 MHz (7.0 Gbps) Width 82 mm Memory Interface Width Memory Bandwidth (GB/sec) 128-bit 112 Form Factor MXM graphics module version 3.1 Type A Feature Support Bus Type OpenGL OpenCL DirectX Shader Mode Support Technologies Operation System Display Support MXM 3.1 (PCI Express 3.0 support) API 5 NVIDIA CUDA, GPU Boost, Battery Boost, OpenCL, PhysX, Direct Compute 1 Ordering Information Model Number M3N1050-LN M3N1050-LN-C M3N1050-LN-A M3N1050-LN-AC M3N1050-LN-B M3N1050-LN-BC Description Standard 0 C ~ +55 C Standard 0 C ~ +55 C with coating Wide Temp. -40 C ~ +85 C Wide Temp. -40 C ~ +85 C with coating Extended Temp. -20 C ~ +70 C 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Extended Temp. -20 C ~ +70 C with coating Max. Displays per Board Max. Analog Display Support Not Support Max. Digital Display support 2 LCD-eDP 1.4 up to 7680x4320 up to 7680x DisplayPort Multimode 3 HDMI 2.0b H.264, HEVC, MPEG2 1080p video decoder up to 7680x4320 support support Embedded MXM GPU Modules 33

34 M3N1050TI-LN NVIDIA Pascal MXM 3.1 Type A GPU Module NVIDIA GeForce GTX 1050 Ti mobile GPU 768 new-gen. Pascal architecture CUDA cores 4GB on board memory and 112 GB/sec memory bandwidth Up to 4 independent displays at the same time OpenCL 1.2, OpenGL 4.5, DirectX 12, Vulkan compatible Advanced performance per watt Gold finger 30μ" enhanced high stability and quality signals Defense Gaming Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Ti Thermal None NVIDIA CUDA Cores 768 Max.Board Power Consumption (W) 60 W Graphics Clock (MHz) 1493 MHz Supplementary Power Connectors None Floating Point Performance 2.29 TFLOPS Memory Specs Dimensions Memory Size 4GB GDDR5 Length 70 mm Memory Clock (MHz) 3500 MHz (7.0 Gbps) Width 82 mm Memory Interface Width Memory Bandwidth (GB/sec) 128-bit 112 Form Factor MXM graphics module version 3.1 Type A Feature Support Bus Type OpenGL OpenCL DirectX Shader Mode Support Technologies Operation System Display Support Max. Displays per Board Max. Analog Display Support Max. Digital Display support 2 LCD-eDP 1.4 DisplayPort Multimode 3 HDMI 2.0b H.264, HEVC, MPEG2 1080p video decoder MXM 3.1 (PCI Express 3.0 support) API 5 NVIDIA CUDA, GPU Boost, Battery Boost, OpenCL, PhysX, Direct Compute 1 4 Not Support up to 7680x4320 up to 7680x4320 up to 7680x4320 support support Ordering Information Model Number M3N1050TI-LN M3N1050TI-LN-C M3N1050TI-LN-A M3N1050TI-LN-AC M3N1050TI-LN-B M3N1050TI-LN-BC Description Standard 0 C ~ +55 C Standard 0 C ~ +55 C with coating Wide Temp. -40 C ~ +85 C Wide Temp. -40 C ~ +85 C with coating Extended Temp. -20 C ~ +70 C 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Extended Temp. -20 C ~ +70 C with coating Embedded MXM GPU Modules

35 M3N1060-MN NVIDIA Pascal MXM 3.1 Type B GPU Module NVIDIA GeForce GTX 1060 energy-efficiency mobile GPU 1280 new-gen. Pascal architecture CUDA cores Over 40% boost performance than GTX 970M Support optimal resolution 8K UHD (7680x4320) at 60Hz OpenCL 1.2, OpenGL 4.5, DirectX 12, Vulkan compatible Blistering graphics and parallel accelerating performance Gold finger 30μ" enhanced high stability and quality signals Ideal for medical, VR rendering, deep learning and defense GPU Engine Specs Defense Gaming Medical AI VR Thermal and Power Specs GPU NVIDIA GeForce GTX 1060 Thermal None NVIDIA CUDA Cores 1280 Max.Board Power Consumption (W) 78 W Graphics Clock (MHz) 1404/1670 MHz Supplementary Power Connectors None Floating Point Performance 3.59 TFLOPS Memory Specs Dimensions Memory Size 6GB GDDR5 Length 105 mm Memory Clock (MHz) 4000 MHz (8.0 Gbps) Width 82 mm Memory Interface Width Memory Bandwidth (GB/sec) 192-bit 192 Form Factor MXM graphics module version 3.1 Type B Feature Support Bus Type OpenGL OpenCL DirectX Shader Mode Support Technologies Operation System Display Support Max. Displays per Board Max. Analog Display Support Max. Digital Display support 2 LCD-eDP 1.4 DisplayPort Multimode 3 HDMI 2.0b H.264, HEVC, MPEG2 1080p video decoder MXM 3.1 (PCI Express 3.0 support) API 5 NVIDIA CUDA, GPU Boost, Battery Boost, OpenCL, PhysX, Direct Compute 1 4 Not Support up to 7680x4320 up to 7680x4320 up to 7680x4320 support support Ordering Information Model Number M3N1060-MN M3N1060-MN-B M3N1060-MN-BC M3N1060-MN-D M3N1060-MN-DC Description 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Standard 0 C ~ +55 C Extended Temp. -20 C ~ +70 C Extended Temp. -20 C ~ +70 C with coating Extended Temp. -40 C ~ +75 C Extended Temp. -40 C ~ +75 C with coating Embedded MXM GPU Modules 35

36 M3N1070-NN NVIDIA Pascal MXM 3.1 GPU Module NVIDIA GeForce GTX 1070 energy-efficiency mobile GPU 2048 new-gen. Pascal architecture CUDA cores 5.90 TFLOPS for massive computing and deep learning More than 60% performance faster than prior generation DisplayPort 1.2 Certified, DisplayPort 1.3/1.4 Ready Gold finger 30μ" enhanced high stability and quality signals Ideal use for medical, defense, autonomous cars and deep learning Defense Medical AI VR Thermal and Power Specs GPU Engine Specs GPU NVIDIA GeForce GTX 1070 Thermal None NVIDIA CUDA Cores 2048 Max.Board Power Consumption (W) 115 W Graphics Clock (MHz) 1442/1645 MHz Supplementary Power Connectors 4-pins(PWR_SRC) Floating Point Performance 5.90 TFLOPS Memory Specs Dimensions Memory Size 8GB GDDR5 Length 113 mm Memory Clock (MHz) 4000 MHz (8.0 Gbps) Width 82 mm Memory Interface Width 256-bit Form Factor MXM graphics module Memory Bandwidth (GB/sec) 256 Ordering Information Bus Type MXM 3.1 (PCI Express 3.0 support) Model Number Description OpenGL 4.5 M3N1070-NN Standard 0 C ~ +55 C OpenCL 1.2 M3N1070-NN-C Standard 0 C ~ +55 C with coating DirectX 12 API Shader Mode 5 Support Technologies NVIDIA CUDA, GPU Boost, Battery Boost, OpenCL, PhysX, Direct Compute Operation System 1 Display Support up to 7680x4320 DisplayPort Multimode up to 7680x4320 HDMI 2.0b support H.264, HEVC, MPEG2 1080p video decoder support up to 7680x4320 LCD-eDP Not Support Max. Digital Display support Max. Analog Display Support Max. Displays per Board Embedded MXM GPU Modules 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Feature Support 36 Gaming

37 M3N1080-NN NVIDIA Pascal MXM 3.1 GPU Module The most ultimate MXM using GeForce GTX 1080 mobile GPU with 2560 new-gen. Pascal architecture CUDA cores 7.96 TFLOPS for massive computing performance Super-fast GDDR5X memory, 10 Gbps, 320 GB/sec DisplayPort 1.2 Certified, DisplayPort 1.3/1.4 Ready Gold finger 30μ" enhanced high stability and quality signals Ideal use for VR, medical, defense and deep learning Defense Gaming Medical AI VR Thermal and Power Specs GPU Engine Specs GPU NVIDIA GeForce GTX 1080 Thermal None NVIDIA CUDA Cores 2560 Max.Board Power Consumption (W) 150 W Graphics Clock (MHz) 1556/1733 MHz Supplementary Power Connectors 4-pins(PWR_SRC) Floating Point Performance 7.96 TFLOPS Memory Specs Dimensions Memory Size 8GB GDDR5X Length 113 mm Memory Clock (MHz) 5000 MHz (10.0 Gbps) Width 82 mm Memory Interface Width 256-bit Form Factor MXM graphics module Memory Bandwidth (GB/sec) 320 Ordering Information Feature Support Bus Type MXM 3.1 (PCI Express 3.0 support) Model Number Description OpenGL 4.5 M3N1080-NN Standard 0 C ~ +55 C OpenCL 1.2 M3N1080-NN-C Standard 0 C ~ +55 C with coating DirectX 12 API Shader Mode 5 Support Technologies NVIDIA CUDA, GPU Boost, Battery Boost, OpenCL, PhysX, Direct Compute Operation System 1. Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready 1 Display Support Max. Displays per Board 4 Max. Analog Display Support Not Support Max. Digital Display support2 up to 7680x4320 LCD-eDP 1.4 up to 7680x DisplayPort Multimode up to 7680x4320 HDMI 2.0b support H.264, HEVC, MPEG2 1080p video decoder support Embedded MXM GPU Modules 37

38 RTM-M3C-6DP NVIDIA MXM GPU Module Carrier Board MXM modules carrier board for evaluation purpose Support PCI Express x16 Gen pin 12V DC-in power connector 6x DisplayPort, 1x DVI, 1x D-SUB, 1x edp Specification Ordering Information Bus Type PCI Express 3.0 x16 Model Number Description Video Output Supplementary Power Connectors edp x1 / DVI x1 D-SUB x1 / DisplayPort x6 One 8-pin RTM-M3C-6DP MXM module evaluation carrier board with 6x DisplayPort, 1x DVI, 1x D-SUB, 1x edp, 0 C ~ +55 C Support Form Factor MXM graphics module Max Output Resolution Depend on MXM module Dimension 164.8mm x 236mm Evaluation Thermal Description GTX 1080 / 1070 MXM Thermal GTX 1060 MXM Thermal GTX 1050 Ti / 1050 MXM Thermal 38 Embedded MXM GPU Modules

39 Multi-Display Graphics Cards Multi Display Savant TM Aetina Multi Display Savant (MDS) series stride the monitor boundaries; enlarge your insight with an expanded display. Delivering high-resolution quality image and seamless multimedia experience across up to 12 displays based a graphics card with single NVIDIA GPU, the MDS series are ideal solutions with flexibility, productivity and reliability for digital signage, display walls and any of multiple monitors deployment in business, industry, enterprise and mission-critical environments. Aetina MDS series feature NVIDIA Surround technology, with up to 6GB on-board frame buffer memory, supporting as high resolution as 7680x4320 for a spectacular display wall. Regardless of type of system (desktop, small form factor system or workstation) or display connectivity (DisplayPort, HDMI, DVI and VGA), Aetina MDS series enable the most efficiency and compatibility to fit your demanding multidisplay installations.

40 p.41 p.42 p.43 p.44 p45 Model Number M4-K208VGA M4-M107mDP M4-P107mDP M9-P107 M12-P107 Bus Type PCIe 2.0 x 8 PCIe 3.0 x 16 PCIe 3.0 x 16 PCIe 3.0 x 16 PCIe 3.0 x 16 GPU Architecture NVIDIA Kepler NVIDIA Maxwell NVIDIA Pascal NVIDIA Pascal NVIDIA Pascal Graphics Processing Unit GeForce GT 710 GeForce GTX 750 Ti GeForce GTX 1050 Ti GeForce GTX 1050 Ti GeForce GTX 1050 Ti GPU Engine NVIDIA CUDA Cores Graphics Clock (MHz) MHz 1020 MHz 1290 MHz 1290 MHz 1290 MHz Floating Point GFLOPS 1.31 TFLOPS 1.98 TFLOPS 1.98 TFLOPS 1.98 TFLOPS Memory Size 1GB DDR3 4GB GDDR5 4GB GDDR5 4GB GDDR5 4GB GDDR5 Memory Memory Clock Memory Interface Width Memory Bandwidth 800 MHz (1.6 Gbps) 2500 MHz (5.0 Gbps) 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) 3500 MHz (7.0 Gbps) 64-bit 128-bit 128-bit 128-bit 128-bit 12.8 GB/sec 80 GB/sec 112 GB/sec 112 GB/sec 112 GB/sec DirectX 12 API (feature level 11_0) 12 API 12 API 12 API 12 API OpenGL API OpenCL Shader Mode NVIDIA CUDA enabled support support support support support Operation System Support OS Windows XP Windows XP Display Max. Displays per Board Max. Digital Display Max. Analog Display N/A 3840x x4320 up to 5760x3240 (3x3 mode) up to 5760x4320 (3x4 mode) 3840x2160(2x2 mode) N/A N/A N/A N/A Power Thermal Outputs Max. Board Power Consumption Cooling VHDCI to 4 VGA 4 mini DisplayPort mini DisplayPort 1.2 VHDCI to 9 DVI or VHDCI to 9 HDMI VHDCI to 12 DVI or VHDCI to 12 HDMI 21 W 60 W 75 W 75 W 75 W Heat-sink Two-ball-bearing Fan Two-ball-bearing Fan Two-ball-bearing Fan Two-ball-bearing Fan Slot Occupied Single-slot Single-slot Single-slot Two-slot Two-slot Mechanical Dimensions x68.9 mm x68.9 mm x68.9 mm x mm x mm Environment Operation Temperature 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 0 C ~ +55 C 40 Multi-Display Graphics Cards Product specifications are subject to change without prior notice

41 M4-K208VGA MDS Multi-Display Graphics Card 4x VGA with NVIDIA GPU for Commercial, Gaming and Infotainment systems 4 VGA displays simultaneously Up to 4Kx2K resolution Increase work productivity with multi-monitors Single slot fanless fit for SFF systems 1 GB dedicated on board memory Longevity, reliable and affordable multi-display graphics product Aim for upgrade market in industrial control, casino and digital signage GPU Engine Specs 4 Display Video wall Gaming Automation Thermal and Power Specs GPU NVIDIA GeForce GT 710 Thermal Heat-sink NVIDIA CUDA Cores 192 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 954 MHz Max.Board Power Consumption (W) 21 W Floating Point Performance GFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 1GB GDDR3 Width Single-slot Memory Clock (MHz) 800 MHz (1.6 Gbps) Length mm Memory Interface Width 64-bit Height 68.9 mm Memory Bandwidth (GB/sec) 12.8 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Bus Type PCI-Express 2.0 x8 OpenGL 4.4 DirectX 12 API (feature level 11_0) Operation System Windows XP Display Support Max. Displays per Board 4 Max. Output Resolution Support 1920x1200 *3, 2048x1536*1 3840x2160 (2x2 mode) Display Outputs VHDCI to 4 VGA Multi-Display Graphics Cards 41

42 M4-M107mDP MDS Multi-Display Graphics Card 4x mini DisplayPort with NVIDIA GPU for Commercial, Gaming and Infotainment systems Powered by NVIDIA Maxwell GeForce GTX 750 Ti Natively 4 mini DisplayPort 1.2 for four displays simultaneously Flexible single-slot, low-profile for space and powerconstrained chassis Large 4GB on-board frame buffer memory True 4K resolutions 3840x2160@ 60 Hz with 30-bit color Ideal for advertising, casino gaming, digital signage and simulation training education 4 Display Video wall Gaming Automation Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 750 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 640 Max. GPU Temperature (in C) 95 C Graphics Clock (MHz) 1020 MHz Max. Board Power Consumption (W) 60 W Floating Point Performance 1.31 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 4GB GDDR5 Width Single-slot Memory Clock (MHz) 2500 MHz (5.0 Gbps) Length mm Memory Interface Width 128-bit Height 68.9 mm Memory Bandwidth (GB/sec) 80 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Ordering Information Bus Type PCI Express 3.0 x16 Model Number Description OpenGL 4.4 7W mini DisplayPort cable to DVI-D DirectX 12 API 7W mini DisplayPort cable to VGA Operation System Windows XP 7W mini DisplayPort cable to HDMI Display Support Max. Displays per Board 4 Max. Output Resolution Support 3840x2160 Display Outputs 4 x mini DisplayPort Multi-Display Graphics Cards

43 M4-P107mDP MDS Multi-Display Graphics Card 4x mini DisplayPort with NVIDIA Pascal for Commercial, Gaming and Infortainment systems Powered by NVIDIA Pascal GeForce GTX 1050 Ti Natively 4 mini DisplayPort 1.2 for four displays simultaneously Flexible single-slot, low-profile for space and powerconstrained chassis 4 displays; support optimal resolution 7680x4320 at 60Hz Ideal for entertainment and infotainment systems such as advertising, conference, casino gaming, digital signage, kiosk and simulation training education 4 Display Video wall Gaming Automation Medical GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 768 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1290 MHz Max. Board Power Consumption (W) 75 W Floating Point Performance 1.98 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 4GB GDDR5 Width Single-slot Memory Clock (MHz) 3500 MHz (7.0 Gbps) Length mm Memory Interface Width 128-bit Height 68.9 mm Memory Bandwidth (GB/sec) 112 Form Factor SFF=Small Form Factor (Low profile card) Feature Support Ordering Information Bus Type PCI Express 3.0 x16 Model Number Description OpenGL DirectX Operation System API Windows M4-P107mDP PCI-Express 16X, NVIDIA GeForce GTX 1050 Ti, 4GB GDDR5, 0 C ~ +55 C Accessories: ATX bracket, mdp to DP cable x4 (Optional) Display Support Max. Displays per Board 4 Max. Output Resolution Support x4320 Display Outputs 4 x mini DisplayPort Windows10 requires November 2015 update or newer x Hz RGB 8-bit with dual-displayport connector 7680x Hz YUV420 8-bit with one DisplayPort1.3 connector 3. DisplayPort 1.2 Certified and DisplayPort 1.3/1.4 Ready Multi-Display Graphics Cards 43

44 M9-P107 MDS Multi-Display Graphics Card 9x Displays with NVIDIA Pascal GPU for 3x3 mode 4K Video Wall and Wide Screen Displaying Systems Powered by NVIDIA Pascal GTX 1050 Ti brings double performance Single card, single GPU support up to 9 displays Semlesssly immersive imagery quality for 3x3 video wall Support H.265/HEVC video decoder, 1920x1080 per port Support EDID caching Ideal for wide screen advertising, digital signage and infotainment systems 9 or 12Display Video wall Gaming GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 768 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1290 MHz Max. Board Power Consumption (W) 75 W Floating Point Performance 1.98 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 4GB GDDR5 Width Two-slot Memory Clock (MHz) 3500 MHz (7.0 Gbps) Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) 112 Form Factor ATX Feature Support Ordering Information Bus Type PCI Express 3.0 x16 Model Number Description OpenGL 4.5 M9-P107D M9-P107 with VHDCI Cable to 3xDVI DirectX 12 API M9-P107H M9-P107 with VHDCI Cable to 3xHDMI Operation System Windows W W VHDCI cable to 3xDVI VHDCI cable to 3xHDMI Display Support Max. Displays per Board 9 Max. Output Resolution Support 5760x3240 (3x3 mode) Display Outputs 9 Single Link DVI or HDMI (via 3x VHDCI to 3 DVI or HDMI cable) 44 Multi-Display Graphics Cards

45 M12-P107 MDS Multi-Display Graphics Card 12x Displays with NVIDIA Pascal GPU for Large Commercial or 3D Graphics Displaying Video Wall Powered by NVIDIA Pascal GTX 1050 Ti brings double performance Drive up to 12 displays in single card with single GPU Flexible displays configuration in clone or extended, portrait or landscape H.265/HEVC video decoder, support maximum 4x 4Kp30 video display Support EDID caching Ideal for wide screen advertising, digital signage and video wall systems 9 or 12Display Video wall Gaming GPU Engine Specs Thermal and Power Specs GPU NVIDIA GeForce GTX 1050 Ti Thermal Two Ball Bearing Fan NVIDIA CUDA Cores 768 Max. GPU Temperature (in C) 97 C Graphics Clock (MHz) 1290 MHz Max. Board Power Consumption (W) 75 W Floating Point Performance 1.98 TFLOPS Min. System Power Requirement (W) 300 W Memory Specs Dimensions Memory Size 4GB GDDR5 Width Two-slot Memory Clock (MHz) 3500 MHz (5.0 Gbps) Length mm Memory Interface Width 128-bit Height mm Memory Bandwidth (GB/sec) 112 Form Factor ATX Feature Support Ordering Information Bus Type PCI Express 3.0 x16 Model Number Description OpenGL 4.5 M12-P107D M12-P107 with VHDCI Cable to 3xDVI DirectX 12 API M12-P107H M12-P107 with VHDCI Cable to 3xHDMI Operation System Windows W W VHDCI cable to 3xDVI VHDCI cable to 3xHDMI Display Support Max. Displays per Board 12 Max. Output Resolution Support 5760x4320 (3x4 mode) Display Outputs 12 Single Link DVI or HDMI (via 4x VHDCI to 3 DVI or HDMI cable) Multi-Display Graphics Cards 45

46 Embedded Jetson GPGPU Solutions Computer on Modules (COMs) or System on Modules (SoMs) gives scalable, reliable, cost-effective and time-to-market embedded computer platforms to meet a wide range of vertical embedded markets. Aetina provides GPGPU-oriented solutions using leading NVIDIA Jetson TX2, TX1 modules and Tegra SoCs, offering high level embedded computing power and graphics processing performance. By leveraging these GPU-acceleration processors, enables you to harness the power of NVIDIA's CUDA GPU cores and to quickly develop and deploy compute-intensive systems for computer vision, autonomous robotics, drones, medical imaging and mores. To speed up product development time and keep customers' time to focus on their own domain knowhow, Aetina built ready-to-ship COM Express pin-out modules and well-featured, functionality carrier boards and developer kits. In order to back up the customization and flexibility demands of versatile applications, Aetina also provides ODM/JDM services to fulfill each unique need.

47 The S/W and H/W Integration Value-added Services to Accelerate Jetson Project Development inavi Customized Operating System Building Service Enhance Optimization, Security and Stability to the System We provide the operating system customization service, that help developers built-in their embedded OS based on, including Shell Custom, Secure Boot, and System Recovery. Pre-integrated the necessary driver porting and request OS specifications Ubuntu OS customization and system integration Device configuration setting Support std driver and 3rd party driver Integration System recovery Secure boot Verified resources integration Support driver-ready extension I/O modules and driver integration Support the latest NVIDIA Jetpack, libraries and APIs integration Collaboration with partners Support partner s or third party application integration EIOA Extension I/O Access Service Increase Connectivity and Time-to-Market We provide wide range of driver ready peripheral I/O modules. Assist developers flexibly expand the connectivity of the systems, meanwhile reduce development time and total cost of ownership. I/O TMUC-B201 TMU2-X2S1 TMUI-0D01 TMPU-3401 TMPL-G201 TMPL-G2P1 Module Types Description USB to Dual Isolated CANBus 2.0B Module, Optional USB to Dual Isolated RS-232 Module, Optional USB to 32bit Digital I/O Module, Optional mpcie to Four USB 3.0 Module, Optional mpcie to Dual Isolated GbE LAN Module, Optional mpcie to Dual Isolated PoE Module, Optional Certified Extension Modules 47

48 p.50 p51 p.52 p.53 Model Number NSO-MD-TX1 NSO-MD-TX2 NSO-MD-TX2i ACE-N510 Processor NVIDIA TEGRA X1 NVIDIA TEGRA X2 NVIDIA TEGRA X2i NVIDIA TX1/TX2(Support) Form Factor SoM SoM SoM Carrier board Processor Graphics Video Interfaces CPU Quad-core ARM Cortex -A57 MPCore Processor HMP Dual Denver 2 / 2 MB L2 + Quad ARM A57 / 2 MB L2 HMP Dual Denver 2 / 2 MB L2 + Quad ARM A57 / 2 MB L2 Processor Core CPU TDP 6.5W~15W 7.5W (Max-Q) / 15W(Max-P) 10W (Max-Q) / 20W (Max-P) GPU NVIDIA Maxwell NVIDIA Pascal NVIDIA Pascal -- NVIDIA CUDA Cores Floating Point 1 TFLOPS 1.5 TFLOPS 1.5 TFLOPS -- Support API Display DirectX OpenGL 12, ES 3.1, OpenGL CUDA 4.5, 8.0, Vulkan 2x DSI(x4), 1x edp 1.4 / DP, 1x HDMI / DP 1.2 DirectX OpenGL 12, ES 3.1, OpenGL CUDA 4.5, 8.0, Vulkan 2x DSI(x4), 1x edp 1.4 / DP, 1x HDMI / DP 1.2 DirectX OpenGL 12, ES 3.1, OpenGL CUDA 4.5, , Vulkan 2x DSI(x4), 1x edp 1.4 / DP, 1x HDMI / DP 1.2a Display/Backlight Control Display/Backlight Control Display/Backlight Control x edp 1.4 HDMI Type A CSI 6x CSI(x2) or 3x CSI(x4) 6x CSI(x2) or 3x CSI(x4) 6x CSI(x2) or 3x CSI(x4) 1x CSI(x2) 4GB LPDDR4 8GB LPDDR4 8GB LPDDR4 ECC Support -- Memory 64-bit 128-bit 128-bit GB/s 59.7 GB/s 51.9 GB/s -- 16GB emmc 5.1 Flash 32GB emmc 5.1 Flash 32GB emmc 5.1 Flash -- Mass Storage Networking SATA SATA SATA -- SD Card Interface SD Card Interface SD Card Interface / SDIO Full size SD card slot Gigabit Ethernet & ac WiFi/Bluetooth Gigabit Ethernet & ac WiFi/Bluetooth Gigabit Ethernet Gigabit Ethernet ( RJ45 w/leds) Others I/O 3x USB2.0 Interface, 3x USB3.0 (Two shared w/pcie or SATA), Multi-PCI-E Configuration ( shared w/usb3.0), 4x I2S, 6x I2C, 3x SPI, 3x UART, GPIO 3x USB2.0 Interface, 3x USB3.0 (Two shared w/pcie or SATA), Multi-PCI-E Configuration ( shared w/usb3.0), 4x I2S, 8x I2C, 3x SPI, 5x UART, 2x CAN GPIO 3x USB2.0 Interface, 3x USB3.0 (Two shared w/pcie or SATA), Multi-PCI-E Configuration ( shared w/usb3.0), 4x I2S, 8x I2C, 3x SPI, 5x UART, 2x CAN GPIO 1x HDMI Type A 1x edp 2x USB3.0 Type A 1x USB2.0 Micro AB 1x Full-Mini Card (PCI Express x1 & USB2.0) 1x Full-Mini Card (PCI Express x1 or msata) 1x RS-232 1x Front Panel 1x 4pin-FAN connector 1x 12V DC Output 1x 5V DC Output 2x CAN Bus 4x GPIO 1x SPI Watchdog Timer Power Requirement 5.5 ~ 19.6V DC 5.5 ~ 19.6V DC 9.0 ~ 19.6V DC 12 ~ 19V DC Dimensions 87 mm x 50 mm 87 mm x 50 mm 87 mm x 50 mm 120 mm x 120 mm Operation Temperature 0 C ~ +55 C 0 C ~ +55 C -20 C ~ +70 C (Optional) -20 C ~ +70 C (Optional) -40 C ~ +85 C 0 C ~ +55 C -20 C ~ +70 C (Optional) 48 Computer on Modules & SoMs Product specifications are subject to change without prior notice

49 p.54 p.55 p.56 p.57 p.58 ACE-N622 ACE-N622-TX2 ACE-N622-TX1 ACE-C6-TK1 ACE-C6-TK1 DevKit NVIDIA TX1/TX2(Support) NVIDIA TEGRA X2 NVIDIA TEGRA X1 NVIDIA TEGRA K1 NVIDIA TEGRA K1 Carrier board Developer Kit Developer Kit COM Express Compact Type 6 Module Developer Kit -- HMP Dual Denver 2 2 MB L2 + Quad ARM A57 2 MB L2 Quad-core ARM Cortex -A57 MPCore Processor 4-Plus-1 ARM Cortex -A15 MPCore "r3" processor 4-Plus-1 ARM Cortex -A15 MPCore "r3" processor W~15W 7.5W (Max-Q) / 15W (Max-P) -- NVIDIA Pascal NVIDIA Maxwell NVIDIA Kepler NVIDIA Kepler TFLOPS 1 TFLOPS 325 GFLOPS 325 GFLOPS -- DirectX OpenGL 12, ES 3.1, OpenGL CUDA 4.5, 7.0, Vulkan DirectX OpenGL 12, ES 3.1, OpenGL CUDA 4.5, 7.0, Vulkan 1x edp 1.4 1x edp 1.4 1x edp W DirectX OpenGL 12 ES 3.0, OpenGL CUDA 4.4, 6.5, Tesellation, Vulkan Single Channel 18/24 bit LVDS or edp 15W DirectX OpenGL 12 ES 3.0, OpenGL 4.4, CUDA 6.5, Tesellation, Vulkan 1x20 board-to-board connector HDMI Type A HDMI Type A HDMI Type A HDMI Interface 1x HDMI Type A 1x CSI(x2) 1x CSI(x2) 1x CSI(x2) 2x CSI (x1 & x4) 1x 20-pin FPC & 1x 26-pin FPC -- 8GB LPDDR4 4GB LPDDR4 2GB DDR3L 2GB DDR3L bit 64-bit 64-bit 64-bit GB/s 25.6 GB/s 14.9 GB/s 14.9 GB/s -- 32GB emmc 5.1 Flash 16GB emmc 5.1 Flash 16GB emmc 4.51 Flash 16GB emmc 4.51 Flash x SATA Interface (3Gb/s) 1x SATA Interface (3Gb/s) Full size SD card slot Full size SD card slot Full size SD card slot 1x micro SD slot 1x micro SD slot Gigabit Ethernet ( RJ45 w/leds) Gigabit Ethernet ( RJ45 w/leds) Gigabit Ethernet ( RJ45 w/leds) Gigabit Ethernet Gigabit Ethernet ( RJ45 w/leds) 1x HDMI Type A 1x edp 2x USB3.0 Type A 1x USB2.0 Micro AB 1x Full-Mini Card (PCI Express x1 & USB2.0) 1x Full-Mini Card (PCI Express x1 or msata) 1x RS-232 1x Front Panel 1x 4pin-FAN connector 1x 12V DC Output 1x 5V DC Output 2x CAN Bus 4x GPIO 1x SPI 1x HDMI Type A 1x edp 2x USB3.0 Type A 1x USB2.0 Micro AB 1x Full-Mini Card (PCI Express x1 or msata) 1x RS-232 1x Front Panel 1x 4pin-FAN connector 1x 12V DC Output 1x 5V DC Output 2x CAN Bus 4x GPIO 1x SPI 1x HDMI Type A 1x edp 2x USB3.0 Type A 1x USB2.0 Micro AB 1x Full-Mini Card (PCI Express x1 & USB2.0) 1x Full-Mini Card (PCI Express x1 or msata) 1x RS-232 1x Front Panel 1x 4pin-FAN connector 1x 12V DC Output 1x 5V DC Output 2x CAN Bus 4x GPIO 1x SPI 1x USB2.0 Micro AB, 4x USB2.0 Interface, 1x USB3.0 Interface, 1x PCI-E (x1), 2x I2S, 1x I2C, SPI Interface, 4x UART, 4x GPI, 4x GPO 1x SM Bus 1x USB2.0 Micro AB, 2x USB2.0 Type A, 1x USB3.0 Type A, 1x Full-Mini Card, 1x Half-Mini Card, 1x MIC-in & Speaker-out, 2x RS yes yes 12 ~ 19V DC 12 ~ 19V DC 12 ~ 19V DC +12V DC +12V DC 120 mm x 120 mm 120 mm x 120 mm 120 mm x 120 mm 95 mm x 95 mm 170mm x 170mm 0 C ~ +55 C -20 C ~ +70 C (Optional) 0 C ~ +55 C -20 C ~ +70 C (Optional) 0 C ~ +55 C -20 C ~ +70 C (Optional) 0 C ~ +55 C 0 C ~ +55 C Computer on Modules & SoMs 49

50 NSO-MD-TX1 NVIDIA Jetson TX1 Supercomputer on Module (SoM) with NVIDIA 256-core Maxwell GPU Powered by NVIDIA Tegra X1 mobile processor 256-core NVIDIA Maxwell GPU, support 1 TFLOPS NVIDIA quad-core ARM Cortex-A57 CPU Leading visual computing platform for deep learning Support 4K and H.265 video decode and encode Support 6 cameras interface, capable of 1400 MPix/s CUDA 8.0, DirectX 12, OpenGL ES 3.1, OpenGL 4.5, Open CL 1.1 Medical AI Drone Automation Defense System Mechanical and Environmental Processor NVIDIA Tegra X1 Quad-core ARM Cortex-A57 CPU Dimension Credit card size 87 mm x 50 mm Graphics System Memory NVIDIA Maxwell GPU with 256 CUDA cores 1 TFLOPS 4GB LPDDR4, 64-bit Power Supply Operating Temperature 5.5 ~ 19.6V DC 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) Mass Storage 16GB emmc5.1 Flash Operating Humidity 10% ~ 90% LAN 1x ac WiFi and Bluetooth 1x Gigabit Ethernet Storage Temperature -40 C ~ +125 C Expansion Slot 400-pin board-to-board connector I/O Support from Expansion slot Mass Storage Video Interfaces USB Audio PCI Express Others 1x serial ATA interface 1x SD card edp/dp Interface HDMI/DP interface (w/cec) 2x DSI (x4 lanes) / CSI (6 x2 or 3 x4) 3x USB2.0 Host Port 3x USB3.0 Host Port (Two shared w/pcie or SATA) 1x I2S for HD Audio 1x 4 lanes+ 1x 1 lane 2x 1 lane + 1x 2 lanes (shared w/usb 3.0) 6x I2C 3x I2S 3x UART 3x SPI GPIOs Real Time Clock Power Management Signals Thermal/FAN Management 50 Computer on Modules & SoMs

51 NSO-MD-TX2 NVIDIA Jetson TX2 Supercomputer on Module (SoM) with NVIDIA 256-core Pascal GPU HMP CPU combines quad-core ARM Cortex-A57 and dualcore Denver 2 Integrates 256-core NVIDIA Pascal GPU Balanced power envelope suitable for mobile/embedded environments Support H.265 video decode and encode Performance is twice as powerful as Jetson TX1 World's leading AI computing module for intelligent devices at the edge,suitable for IVA, drones, robotics, gaming, VR, AR, portable medical devices System Medical AI Drone Automation Defense VR Mechanical and Environmental Processor NVIDIA Tegra X2 / HMP Dual Denver 2 / 2 MB L2 + Quad ARM A57 / 2 MB L2 Dimension Credit card size 87 mm x 50 mm Graphics System Memory NVIDIA Pascal GPU with 256 CUDA cores, 1.5 TFLOPS 8GB LPDDR4, 128-bit Power Supply Operating Temperature 5.5 ~ 19.6V DC 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) Mass Storage 32GB emmc5.1 Flash Operating Humidity 10% ~ 90% LAN 1x ac WiFi and Bluetooth 1x Gigabit Ethernet Storage Temperature -40 C ~ +125 C Expansion Slot 400-pin board-to-board connector I/O Support from Expansion slot Mass Storage Video Interfaces USB Audio PCI Express Others 1x serial ATA interface 1x SD card edp/dp Interface HDMI/DP interface (w/cec) 2x DSI (x4 lanes) / CSI (6 x2 or 3 x4) 3x USB2.0 Host Port 3x USB3.0 Host Port 1x I2S for HD Audio 1x 4 lanes+ 1x 1 lane 2x 1 lane + 1x 2 lanes (shared w/usb 3.0) 8x I2C 3x I2S 5x UART 3x SPI 2x CAN GPIOs Real Time Clock Power Management Signals Thermal/FAN Management Computer on Modules & SoMs 51

52 NSO-MD-TX2i NVIDIA Jetson TX2i Supercomputer on Module (SoM) with NVIDIA 256-core Pascal GPU Powered by Industrial Grade NVIDIA TEGRA X2i processor the powerful new NVIDIA Pascal architecture, 256 GPU cores, a 64-bit CPU. Integrates 256-core NVIDIA Pascal GPU Balanced power envelope suitable for mobile/embedded environments LPDDR4 ECC memory support Wide Temperature support. Range -40 C to 85 C 10 years longevity support Performance is twice as powerful as Jetson TX1 Medical AI Drone Automation Defense System Mechanical and Environmental Processor NVIDIA Tegra X2i / HMP Dual Denver 2 / 2 MB L2 + Quad ARM A57 / 2 MB L2 Dimension Credit card size 87 mm x 50 mm Graphics System Memory Mass Storage NVIDIA Pascal GPU with 256 CUDA cores, 1.5 TFLOPS 8GB 128bit ECC LPDDR4 Industrial Grade 32GB emmc5.1 Flash Industrial Grade Power Supply Operating Temperature Operating Humidity 9.0 ~ 19.6V DC -40 C ~ +85 C (Standard Version) 0-90% relative humidity (operation), 5-90% (storage) LAN 1x Gigabit Ethernet Storage Temperature -40 C ~ +125 C Expansion Slot 400-pin board-to-board connector I/O Support from Expansion slot Mass Storage Video Interfaces USB PCI Express Others 1x serial ATA interface 1x SD card / 1x SDIO 2x DSI (x4 lanes) 2x Multi mode edp/dp/hdmi CSI (6 x2 or 3 x4) 3x USB2.0 Host Port 3x USB3.0 Host Port 1x 4 lanes+ 1x 1 lane 2x 1 lane + 1x 2 lanes (shared w/usb 3.0) 8x I2C 4x I2S 5x UART 3x SPI 2x CAN GPIOs Real Time Clock Power Management Signals Thermal/FAN Management 52 Computer on Modules & SoMs

53 ACE-N510 NVIDIA Jetson TX2 / TX1 Credit Card Size Carrier Board Support Jetson TX2 and TX1 in ultra-small form factor Amiable for compute-intensive and low-power AI applications Support extended temperature -20 C to 70 C 1x HDMI, 2x CAN Bus, 1x Micro USB 2.0 OTG, 2x USB 3.0, 1x RS-232,1x UART and 4x GPIO Ideal for smart cameras, robots, drones, mobile medical and deep learning Surveillance AI Drone Medical Defense I/O Mechanical and Environmental Mass Storage Video Interfaces LAN -- 1x HDMI Type A 1x RJ-45 for Gigabit Ethernet Dimension Power Supply Operating Temperature 87 mm x 50 mm +12V DC 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) Expansion Slots -- Operating Humidity 10% ~ 90% USB 1x USB2.0 Micro AB / 2x USB3.0 Type A Storage Temperature -40 C ~ +125 C Serial 1x RS-232 Other 1x Front Panel / 1x 4-pin FAN connector / 1x UART / 4x GPIO / 2x CAN / 1x DC-in 12V Power Jack Computer on Modules & SoMs 53

54 ACE-N622 NVIDIA Jetson TX2 / TX1 Nano-ITX Carrier Board Nano-ITX form factor (120mm x 120mm) Two Full-Mini card for flexible and multiple extension I/O modules Ideal for all-in-one panel PC project with use of edp Compatible to Jetson TX2/TX1 modules, specifically designed for high performance, low-power AI computing Medical AI Drone AOI 3D Modeling I/O Mechanical and Environmental Mass Storage Video Interfaces 1x Full size SD card slot 1x HDMI Type A 1x edp via 20-pin board-to-board connector Dimension Power Supply Nano-ITX 120 mm x 120 mm 12V~19V DC LAN Expansion Slots 1x RJ-45 for Gigabit Ethernet 1x Full-Mini card (PCI Express x1 & USB2.0) 1x Full-Mini card (PCI Express x1 & msata) Operating Temperature Operating Humidity 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) 10% ~ 90% USB 1x USB2.0 Micro AB 2x USB3.0 Type A Storage Temperature -40 C ~ +125 C Serial 1x RS-232 Others 1x Front Panel, 1x 4-pin FAN connector 1x 12V DC Output, 1x 5V DC Output 1x DC-in 12V~19V Power Jack 1x UART, 1x I2C, 4x GPIO, 1x I2S, 1x SPI 2x CAN Certified Extension Modules I/O CANBus RS-232 Digital I/O USB 3.0 GbE LAN PoE Module Type Description USB to dual isolated CANBus 2.0B Module M/N : TMUC-B201 USB to Dual Isolated RS232 Module M/N : TMU2-X2S1 USB to 32bit Digital I/O Module M/N : TMUI-0D01 mpcie to four USB 3.0 Module M/N : TMPU-3401 mpcie to Dual Isolated GbE LAN Module M/N : TMPL-G201 mpcie to Dual Isolated PoE Module M/N : TMPL-G2P1 54 Computer on Modules & SoMs

55 ACE-N622-TX2 Developer Kit of NVIDIA Jetson TX2 Leverage NVIDIA Jetson TX2 with 256 CUDA cores GPU Well-featured platform for AI computing and deep-learning Ideal for CUDA deployment on environment Driver ready for wide range of extension modules Quick design-in with complete BSP and OS optimization service Ideal for AOI, robotics, UGV, IVA and portable medical devices Medical AI Drone Automation Defense System Mechanical and Environmental Processor Graphics System Memory Mass Storage NVIDIA Tegra X2 / HMP Dual Denver 2 2 MB L2 / 2 MB L2 + Quad ARM A57 NVIDIA Pascal GPU 256 CUDA cores 1.5 TFLOPS 8GB 128bit LPDDR4 32GB emmc5.1 Flash Dimension Power Supply Operating Temperature Operating Humidity Storage Temperature 120 mm x 120 mm 12V~19V DC 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) 10% ~ 90% -40 C ~ +125 C I/O Certified Extension Modules Mass Storage 1x Micro SD card I/O Module Type Description Video Interfaces 1x HDMI Type A 1x edp via 20-pin board-to-board connector CANBus USB to dual isolated CANBus 2.0B Module M/N : TMUC-B201 LAN Expansion Slots USB Serial Others 1x RJ-45 for Gigabit Ethernet 1x Full-Mini card (PCI Express x1 & msata) 1x USB2.0 Micro AB 2x USB3.0 Type A 1x RS-232 1x Front Panel, 1x 4-pin FAN connector 1x 12V DC Output, 1x 5V DC Output 1x DC-in 12V~19V Power Jack 1x UART, 1x I2C, 4x GPIO, 1x I2S, 1x SPI 2x CAN RS-232 Digital I/O USB 3.0 GbE LAN PoE USB to Dual Isolated RS232 Module M/N : TMU2-X2S1 USB to 32bit Digital I/O Module M/N : TMUI-0D01 mpcie to four USB 3.0 Module M/N : TMPU-3401 mpcie to Dual Isolated GbE LAN Module M/N : TMPL-G201 mpcie to Dual Isolated PoE Module M/N : TMPL-G2P1 Computer on Modules & SoMs 55

56 ACE-N622-TX1 Developer Kit of NVIDIA Jetson TX1 Leverage NVIDIA Jetson TX1 with 256 CUDA cores GPU Well-featured platform for AI computing and deep-learning Ideal for CUDA deployment on environment Driver ready for wide range of extension modules Quick design-in with complete BSP and OS optimization service Ideal for AOI, robotics, UGV, IVA and portable medical devices Medical AI Drone Automation Defense System Mechanical and Environmental Processor Graphics System Memory Mass Storage NVIDIA Tegra X1 Quad-core ARM Cortex-A57 CPU NVIDIA Maxwell GPU 256 CUDA cores 1 TFLOPS 4GB 64-bit LPDDR4 16GB emmc5.1 Flash Dimension Power Supply Operating Temperature Operating Humidity Storage Temperature 120 mm x 120 mm 12V~19V DC 0 C ~ +55 C (Standard Version) -20 C ~ +70 C (Optional) 10% ~ 90% -40 C ~ +125 C I/O Certified Extension Modules Mass Storage 1x Full size SD card slot I/O Module Type Description Video Interfaces 1x HDMI Type A 1x edp via 20-pin board-to-board connector CANBus USB to dual isolated CANBus 2.0B Module M/N : TMUC-B201 LAN Expansion Slots USB Serial Others 1x RJ-45 for Gigabit Ethernet 1x Full-Mini card (PCI Express x1 & USB2.0) 1x Full-Mini card (PCI Express x1 & msata) 1x USB2.0 Micro AB 2x USB3.0 Type A 1x RS-232 1x Front Panel, 1x 4-pin FAN connector 1x 12V DC Output, 1x 5V DC Output 1x DC-in 12V~19V Power Jack 1x UART, 1x I2C, 4x GPIO, 1x I2S, 1x SPI 2x CAN RS-232 Digital I/O USB 3.0 GbE LAN PoE USB to Dual Isolated RS232 Module M/N : TMU2-X2S1 USB to 32bit Digital I/O Module M/N : TMUI-0D01 mpcie to four USB 3.0 Module M/N : TMPU-3401 mpcie to Dual Isolated GbE LAN Module M/N : TMPL-G201 mpcie to Dual Isolated PoE Module M/N : TMPL-G2P1 56 Computer on Modules & SoMs

57 ACE-C6-TK1 NVIDIA TEGRA K1 COM Express Compact Type 6 Module with NVIDIA 192-core Kepler GPU Onboard with NVIDIA Tegra K1 SoC NVIDIA Kelper GPU with 192 CUDA cores 4-Plus-1 quad-core ARM Cortex-A15 CPU, 2.3GHz 2GB DDR3L memory with 64-bit width Support 2 independent displays Support up to 4K display resolution (via carrier board) Wide operating temperature capable with -20 C ~70 C CUDA 6.5, DirectX 12, OpenGL ES 3.0, OpenGL 4.4, Open CL 1.1 Medical AI Drone Automation System Mechanical and Environmental Processor NVIDIA Tegra K1 4-Plus-1 ARM Cortex-A15 r3 Dimension COM Express Compact, Type 6 95 mm x 95 mm Graphics System Memory Mass Storage Video Interfaces NVIDIA Kelper GPU with 192 CUDA cores 325 GFLOPS 2GB DDR3L, 64-bit 16GB emmc4.51 Flash 1x micro SD card 2x MIPI CSI Power Supply Operating Temperature Operating Humidity Storage Temperature +12V DC 0 C ~ +55 C (Standard Version) 10% ~ 90% -40 C ~ +125 C LAN 1x Gigabit Ethernet USB 1x USB2.0 Micro AB Expansion Slot 2x COM Express board-to-board connector I/O Support from Expansion slot Mass Storage Video Interfaces USB Audio PCI Express 1x serial ATA interface(3gb/s) Single Channel 18/24 bit LVDS or edp 1x HDMI 4x USB2.0 Host Ports 1x USB3.0 Host Port 1x I2S for HD Audio Realtek ALC5639 1x PCI Express 1 lane ACE-C610 TEGRA K1 COM Express Compact Type 6 Carrier Board. Mini-ITX form factor ( 170mm x 170mm). 1x Full-Mini Card (PCI Express x1 only) and 1x Half-Mini Card. Support COM Express Compact module (Type6), compatible to Aetina ACE-C6-TK1 Serial Others 4x UARTs (1x 1.8V and 3x 3.3V tolerance) 1x I2C Bus 1x SM Bus 4x GPI, 4x GPO SPI Interface Watchdog Timer Real Time Clock Power Management Signals Thermal/FAN Management I/O 1x HDMI Type A 1x edp or LVDS via 20-pin board-to-board connector 1x RJ-45 for Gigabit Ethernet 2x RS-232, 1x USB 3.0, 2x USB2.0, 1x SATA 3Gb/s and SATA Power 1x MIC-in and Speaker-out (Realtek ALC5639) 1x 3pin-FAN connector 1x JTAG connector via 20-pin header 1x DC Power Jack Computer on Modules & SoMs 57

58 ACE-C6-TK1 DevKit Developer Kit of ACE-C6-TK1 COM Express Compact Type 6 Module Powered by NVIDIA Tegra K1, 325 GFLOPS High energy efficient, superior visual computing in ARM Ideal platform for CUDA development within environment Off-the-shelf COM-E platform for GPGPU niche Standard connectors are used, best in flexible and extensible Wide operating temperature capable with -20 C ~70 C Ideal for computer vision, robotics, medicines and more Medical AI Drone Automation System Mechanical and Environmental Processor NVIDIA Tegra K1 4-Plus-1 ARM Cortex-A15 r3 Dimension Mini-ITX 170 mm x 170 mm Graphics System Memory Mass Storage NVIDIA Kelper GPU with 192 CUDA cores 325 GFLOPS 2GB DDR3L, 64-bit 16GB emmc4.51 Flash Power Supply Operating Temperature Operating Humidity Storage Temperature +12V DC 0 C ~ +55 C (Standard Version) 10% ~ 90% -40 C ~ +125 C * Full-Mini card & Half-Mini card CAN NOT use at the same time. I/O Mass Storage Video Interfaces LAN Expansion Slots USB Audio Serial Others 1x micro SD card 1x SATA(3Gb/s) and SATA power 1x LVDS or edp via 20-pin board-to-board connector 1x HDMI Type A 2x MIPI CSI 1x RJ-45 for Gigabit Ethernet 1x Full-Mini card* 1x Half-Mini card* 2x USB2.0 Type A 1x USB2.0 Micro AB 1x USB3.0 Ttype A 1x Mic-in and Speaker-out (Realtek ALC5639) 2x RS-232 3x Pushbuttons 1x Front Panel 1x 3-pin FAN connector 1x JTAG connector via 20-pin header 1x DC Power Jack 58 Computer on Modules & SoMs

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