Pico Communications E-14 Field Programmable Gate Array, Fpga Resources, Fpga Fabric, DSP Slice

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Field Programmable Gate Array

The core of the Pico E‐14 is a high performance Virtex‐4 FPGA. Included in the FPGA are the FPGA Fabric, a Power‐PC ™ processor, ultra high‐speed DSP slices and DDR2 RAM.

FPGA Fabric:

The “Fabric” of an FPGA comprises an array of logic elements that can be connected in virtually unlimited patterns. These patterns of logic elements can be used to perform basic mathematical functions such as addition and subtraction, or can be grouped together to perform complex functions like Fast Fourier Transforms. Logic elements can even be connected to create a custom soft processor.

The advantage of the FPGA is that the internal logic can be optimized for a specific application. FPGAs are also able to execute operations in parallel, not being limited by sequential execution like a traditional processor. FPGA operations can be executed in a parallel, pipelined or even an asynchronous manner. The FPGA allows incredible application speed with very low power consumption. Your imagination is really the limit.

DSP Slice:

Embedded within the FPGA are special areas that are designed to facilitate high speed “digital signal processing.” These areas are called DSP slices. The DSP slice can be configured in a variety of different ways. For example one DSP slice can be configured to be one tap of an FIR filter. DSP slices are fully pipelined and feature incredible speed. When configured for FIR filtering the DSP slice has a guaranteed performance of 500MHz with a latency of one cycle. An 18x18 multiply and accumulate also runs at 250MHz with a latency of two cycles. Smaller data widths allow higher clock speeds.

FPGA Resources:

Free FPGA Cores

www.opencores.org

 

 

 

 

Virtex‐4 Website

www.xilinx.com/virtex4

 

E‐14 Hardware Reference Manual

www.picocomputing.com

Pico Computing, Inc.

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Contents ‐14 Appendices ContentsFeatures InterfacesProduct Overview Pico E-14 EP Quick Reference Datasheet Minimum Nominal Maximum Pico E‐14 Electrical SpecificationsPower Consumption Power WRAM System ArchitectureDSP Slice Field Programmable Gate ArrayFpga Resources Fpga FabricPPC405x3 Processor Introduction PowerPC ProcessorCpld Resources Cpld TurboLoaderEthernet Resources Tri‐Mode Ethernet InterfaceByte addresses Description Flash Sectors Flash MemoryDDR2 Memory ‐Bit, 80 Msps Analog‐to‐Digital Converter ADC Analog Interface Optional‐Bit, 165 Msps Digital‐to‐Analog Converter DAC RS‐232 Serial Transceiver Serial Transceiver SpecificationsMax Connections Digital Peripheral Interface Electrical Specifications Minimum Nominal MaximumDiagen State Pcmcia Interface Resources CardBus InterfaceDigital Bus Interface Electrical Specifications DC Minimum Nominal MaximumDevice Instruction register bit length Jtag Debug InterfaceDescription Brand Part Number Appendix a Peripheral I/O Connector InformationConnector Information Peripheral I/O Connector PinoutCardBus Connector Pinout Appendix B CardBus Connector InformationName Pin Description Dir Name Pin Description Value CardBus Connector Pull Up and Pull Down Information‐14 Hardware Reference Manual Fpga Pinout Appendix C Fpga PinoutCBCAD15 DACD0 Ethertxer FLASHD12 RAMA7 SSTL18IIDCI Ramloopback Cpld Pinout Appendix D Cpld PinoutNet Pin Description Direction C10 Sleep Mode Request Standard Part Number Listing Appendix E Standard Part Number ListingPico E‐14 EP All versions Appendix F ErrataAppendix G Fpga Performance Enhancements Appendix E Analog Interface Selection Guide Part Resolution bits Speed Msps Low Power14.1.8.11 Revision History14.1.8.12 Legal Notices

E-14 specifications

Pico Communications E-14 is an advanced wireless communication device designed to meet the demands of modern connectivity. As a versatile solution, it serves various applications in sectors such as telecommunications, IoT, and smart cities. The E-14 stands out for its compact design, exceptional performance, and robust feature set that cater to both individual users and enterprises.

One of the primary features of the Pico E-14 is its support for multiple communication protocols, including LTE, NB-IoT, and LoRaWAN. This multi-protocol capability ensures that users can select the most suitable option for their specific use case, whether it be high-speed data transfer or low-power wide-area networking. With seamless integration into existing infrastructure, the E-14 facilitates hassle-free deployments.

Power efficiency is another hallmark of the Pico E-14. Designed for longevity, the device includes intelligent power management features that drastically reduce energy consumption, making it an ideal choice for battery-operated devices and remote monitoring applications. This capability is particularly valuable in settings where maintenance access is limited, and downtime must be minimized.

The E-14’s built-in security features provide enhanced data protection, making it suitable for applications that require confidentiality and integrity. With end-to-end encryption, secure boot, and trusted platform modules, users can rest assured that their data remains protected against unauthorized access and cyber threats.

Moreover, the Pico E-14 boasts a user-friendly interface, which simplifies setup and operation. Its intuitive configuration tools allow users to quickly adjust settings and monitor performance metrics, reducing the need for specialized technical knowledge. This ease of use is a significant advantage in environments where teams may vary in technical expertise.

The device is also rugged and built to withstand harsh environmental conditions. Its robust casing protects against dust, moisture, and extreme temperatures, allowing it to function reliably in a variety of settings, from urban installations to remote field deployments.

With its array of features, the Pico Communications E-14 is well-positioned to play a pivotal role in the evolution of connectivity solutions. By offering flexible communication methods, energy efficiency, enhanced security, and user-friendly functionality, it addresses the complexities of modern communication needs while paving the way for innovative applications in the future.