Allicdata Part #: | 1241-1178-ND |
Manufacturer Part#: |
VL-EPU-2610-EDPN |
Price: | $ 0.69 |
Product Category: | Embedded Computers |
Manufacturer: | VersaLogic Corporation |
Short Description: | SWAP SYSTEM 1.6 GHZ, 2GB |
More Detail: | N/A |
DataSheet: | VL-EPU-2610-EDPN Datasheet/PDF |
Quantity: | 1000 |
Lead Free Status / RoHS Status: | Lead free / RoHS Compliant |
Moisture Sensitivity Level (MSL): | 1 (Unlimited) |
1 +: | $ 0.63000 |
Series: | Falcon |
Part Status: | Obsolete |
Lead Free Status / RoHS Status: | -- |
Core Processor: | Atom E680T |
Moisture Sensitivity Level (MSL): | -- |
Speed: | 1.6GHz |
Number of Cores: | 1 |
Power (Watts): | 10.6W |
Cooling Type: | Heat plate |
Size / Dimension: | 2.17" x 3.31" (55mm x 84mm) |
Form Factor: | EPU |
Expansion Site/Bus: | -- |
RAM Capacity/Installed: | 2GB/2GB |
Storage Interface: | SATA2, mSATA, MicroSD (2) |
Video Outputs: | LVDS |
Ethernet: | GbE |
USB: | USB 2.0 (4) |
RS-232 (422, 485): | 4 |
Digital I/O Lines: | 4 |
Analog Input:Output: | 0:0 |
Watchdog Timer: | Yes |
Operating Temperature: | -40°C ~ 85°C |
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Single Board Computers (SBCs): VL-EPU-2610-EDPN Application Field and Working Principle
Single board computers (SBCs) are all-in-one computer systems that are typically used for industrial and embedded systems applications. They are versatile and reliable, and their primary purpose is to reduce the cost of development. For instance, they can be used as a low or medium cost alternative to traditional server architectures. The VL-EPU-2610-EDPN is a single board computer produced by VxWorks and designed for digital signal processing (DSP) applications.
Application Field
The VL-EPU-2610-EDPN architecture is a single board computer (SBC) designed for embedded systems. It provides a comprehensive set of features and tools for digital signal processing (DSP) applications. It is ideal for use in a range of applications, such as medical imaging, robotics, factory automation, vision systems, military, and aerospace. The device offers excellent performance and reliability, and can be used in place of a conventional server.
The device is equipped with a high performance, dual-core Intel processor and up to 4GB of RAM. It also supports an optional PCIe slot and Gigabit Ethernet. It also features dual mini-PCIe slots for additional expansion and I/O. The system also has an 8-channel Digital I/O Module, with a custom discrete encoding algorithm for data acquisition.
Working Principle
The VL-EPU-2610-EDPN architecture utilizes an innovative architecture that enables high performance and cost-effective computing. It is designed to minimize power consumption and maximize precision, making it ideal for digital signal processing tasks. It utilizes a dual-core Intel processor, up to 4GB of RAM, and onboard Gigabit Ethernet, allowing it to handle performance-demanding applications.
The device is designed for high-precision floating-point calculation. It utilizes an algorithm called vector operation acceleration (VOA), which is designed to increase the performance of algorithms such as FFT. Additionally, the device includes an 8-channel Digital I/O Module with custom discrete encoding algorithm. This makes the device suitable for acquiring and transmitting data with high accuracy.
The device also supports high-speed communications with its Gigabit Ethernet port. It is compatible with a wide range of serial protocols, including I2C, RS232, RS485, and TTL. Additionally, it supports an optional long-distance RS485 transceiver that allows for communication over a distance of up to 25 meters.
The device is designed for easy integration into existing applications and systems. It features user-friendly software and hardware customization tools such as GNUC and MPLAB X. Furthermore, the device is equipped with an optional I/O development kit that allows for software development in a fraction of the time.
Conclusion
The VL-EPU-2610-EDPN is a cost-effective and reliable single board computer (SBC) designed for digital signal processing (DSP) applications. It is designed for ease of integration into existing systems and quick development cycles, and offers an excellent level of performance and reliability.
The specific data is subject to PDF, and the above content is for reference
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