![]() 1792-core NVIDIA Ampere GPU with 56 Tensor Cores / 2048-core NVIDIA Ampere GPU with 64 Tensor Cores. ![]() 8-core NVIDIA Arm Cortex A78AE v8.2 64-bit CPU 2MB L2 + 4MB 元 / 12-core NVIDIA Arm Cortex A78AE v8.2 64-bit CPU 3MB L2 + 6MB 元.The system also accommodates a wide power input range of 9V~36V DC and comes with Ubuntu 20.04 OS support. Additionally, it incorporates an M.2 E-Key 2230 for flexible WiFi/BT/GPS functionality, an M.2 M-Key 2280 socket for ample storage space with NVMe support, and a 16-lane MIPI expansion for enhanced customisation possibilities. Notable features include an M.2 B-Key 3042/3052 with a micro-SIM holder for seamless cellular functionality, ideal for locations with limited network connectivity. “We are proud to offer this cutting-edge solution to our customers and look forward to seeing the impact it will have on the industry."įurthermore, the EC3500 boasts impressive expandability options. "With its powerful computing capabilities, advanced features, and expandability, the EC3500 is the ultimate solution for a wide range of AI applications," said Archer Chien, Director of IBASE Solution Product Planning Dept. The system excels in various applications, including computer vision, object detection, and natural language processing. This remarkable combination enables the concurrent execution of multiple AI application pipelines while ensuring exceptional graphics performance. Exceeding these temperatures may affect performance or damage the device and/or other system components.What sets the EC3500 apart is its incorporation of a powerful NVIDIA Ampere GPU featuring 1792 or 2048 cores, accompanied by 56 or 64 Tensor Cores respectively. Operating Temperature: Recommended operating temperature, typically given in a range or as a maximum. Height Above Board: The maximum height above the surface of the PCB that the device reaches when mounted. Termination Style: The style of the terminations used to connect the device to the system, such as PC Pin, Solder Lug, or Wire Leads.įeatures: Refers to the different feature packages a device has. Due to that they are the least popular type of lead. Leads must be formed into a gull shape prior to use with a separate piece of equipment. Must be protectively packaged to prevent damage to leads. J-Leads: Less pins per inch than gull wing leads but they are stronger and less susceptible to breakage. Easy to inspect for defects after soldering. Gull wing leads: Enable the most pins per inch when compared to J-lead types but they are more fragile. There are three basic types of pins (leads) for surface mount devices. Typically, they are smaller than the through-hole components. May not use or even have all the pins/pads for example 24-SMD module, 14 leads: would fit in the space of a 24-SMD module but only has 14 pins/pads. Number in front of SMD indicates how many pins/pads, for example a 6-SMD module has 6 pins/pads. Have pins or pads that connect to solder pads on the PCB that are then soldered in place forming an electrical and mechanical connection. Screws or bolts go through wings (flanges) that protrude from the product.Ī mount that incorporates a connector into its method of attachment into the electrical system. Has a stud bolt incorporated into one side for attachment. Mounting Type: How the device is attached.ĭesigned to be mounted to a metal chassis.Īttaches to a metal chassis but it includes an 8" wire for connection.ĭesigned to be mounted to a metal Chassis using an incorporated stud bolt. Primarily applicable to coin cells and less-common cylindrical cells. Number of Cells: The number of individual batteries the device is designed to interface withīattery Series: Indicates size(s) and number(s) of cells a holder can accommodate. Style: The physical form and style of the device.īattery Cell Size: The battery cell size the device is designed to interface with. Battery holders for coin cell, cylindrical or rectangular batteries are used to secure battery(s) from one to 10 or more cells in series and parallel configurations.īattery Type, Function: Refers to the shape of cells accommodated and style/form factor of the device. This Product Selection Guide contains information to help select products in the Battery Holders, Clips, Contacts category on īattery holders, clips, and contacts allow circuitry and devices to connect to battery-based power sources using various termination methods such as plugs, PC pins, crimp, surface and through-hole solder, snaps, or wire leads.
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