XC17S10PD8I Allicdata Electronics
Allicdata Part #:

XC17S10PD8I-ND

Manufacturer Part#:

XC17S10PD8I

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC PROM PROG I-TEMP 3.3V 8-DIP
More Detail: N/A
DataSheet: XC17S10PD8I datasheetXC17S10PD8I Datasheet/PDF
Quantity: 483
Stock 483Can Ship Immediately
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Programmable Type: OTP
Memory Size: 100kb
Voltage - Supply: 4.5 V ~ 5.5 V
Operating Temperature: -40°C ~ 85°C
Package / Case: 8-DIP (0.300", 7.62mm)
Supplier Device Package: 8-PDIP
Base Part Number: XC17S10
Description

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FPGA configuration proms are type of memory chips designed or programmed to hold FPGA configuration data. XC17S10PD8I FPGAs are especially designed to use in various applications and working needs. In this article, we will discuss two aspects of XC17S10PD8I, its targeted application fields and its working principle.

Application Fields

Many fields and industries have requirements for the XC17S10PD8I FPGA configuration proms such as:

  • Data Centers: XC17S10PD8I FPGA configuration proms are widely used in data centers because of their high speed and multi-purpose capabilities. The FPGA configuration proms make it easy for data centers to quickly and accurately store and process large amounts of data.
  • Automation: Automation requires highly reliable and efficient systems with controllable data points. XC17S10PD8I FPGA configuration proms are designed to operate at very low power and provide a high degree of accuracy.
  • Communication: XC17S10PD8I FPGA configuration proms are used in communication systems because of their high-speed, low-cost, and reliable performance. XC17S10PD8I FPGA configuration proms are used in a variety of communication applications including fiber optic systems and cellular networks.
  • Aerospace: As aerospace applications require durable and reliable products, XC17S10PD8I FPGA configuration proms are used in a wide range of aerospace applications such as navigation systems, communication systems, and sensors.
  • Industrial: XC17S10PD8I FPGA configuration proms are used in a variety of industrial applications such as process control, machine operation, data acquisition, and maintenance.

Working Principle

The working principle of XC17S10PD8I FPGAs is relatively simple. First, the FPGA is plugged into a socket, preferably on the motherboard. Two or three input signals are then fed into the FPGA, including a data input, the clock signal, and the reset signal. The data input is then read by the configuration proms and stored. The data input is a sequential series of bits representing the configuration data, which is then written to a memory or a configuration memory or ROM, which is typically built-in on the motherboard. The FPGA then uses this data to carry out the tasks related to its configured application.

The XC17S10PD8I FPGAs also have an internal configuration memory, which is operated using the clock signal. The configuration memory can be written to and read from, allowing the FPGA to retain its configuration data even when the power supply is switched off, or when the FPGA is reset. This effectively gives the user the ability to program the FPGA without the need to reprogram it from scratch.

Finally, the XC17S10PD8I FPGAs also have a set of user controlled pins, which can be used to control the behaviour of the FPGA. These pins can be used to program certain tasks, such as controlling the output of a certain module or the inputs to certain I/O ports. In addition to this, they can also be used to control the external behaviour of the FPGA, such as setting up an external interrupt or enabling a specific module.

Overall, the XC17S10PD8I FPGA configuration proms are an advanced and versatile product that can be used for a variety of applications and tasks. Their high-speed and low-power consumption make them one of the most cost-effective and reliable FPGAs currently on the market.

The specific data is subject to PDF, and the above content is for reference

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