XCF32PFSG48C Allicdata Electronics
Allicdata Part #:

122-1457-ND

Manufacturer Part#:

XCF32PFSG48C

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Xilinx Inc.
Short Description: IC PROM SRL/PAR 1.8V 32M 48CSBGA
More Detail: N/A
DataSheet: XCF32PFSG48C datasheetXCF32PFSG48C Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: --
Packaging: Tray 
Part Status: Active
Programmable Type: In System Programmable
Memory Size: 32Mb
Voltage - Supply: 1.65 V ~ 2 V
Operating Temperature: -40°C ~ 85°C
Package / Case: 48-TFBGA, CSPBGA
Supplier Device Package: 48-CSP (8x9)
Base Part Number: XCF*P
Description

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XCF32PFSG48C memory-configuration proms for FPGAs is a type of integrated circuit and is supported by Xilinx logic devices. It is also known as a FPGA configuration device, an FPGA configuration ROM, or a PROM. It is an essential component that allows the Xilinx logic device to function reliably under a wide variety of environments and applications. As such, having the correct knowledge and understanding of the XCF32PFSG48C application field and its working principles can be beneficial.

The XCF32PFSG48C is mainly used in industrial and commercial applications for FPGA configuration. This device possesses the ability to configure Xilinx logic devices at the time of power-up, or as a regularity of operation regardless of external conditions. The data that is held inside is ‘burned’ or programmed into the device at the time of manufacture, and cannot be altered or modified. It is the key component that allows the Xilinx logic device to function reliably over time, and is the device to which all other FPGA components connect.

The basic configuration of the XCF32PFSG48C consists of a two layer printed circuit board with a ZIF (Zero Insertion Force) socket for the FPGA component. The socket is connected to the FPGA component by 16- and 32-bit wide busses. The actual FPGA component is a Xilinx Spartan 6 XC6SLX25 FPGA. The XCF32PFSG48C is powered by a 5V connection, and also includes various power and ground pins as required. In terms of its physical size, the XCF32PFSG48C configuration device is approximately 6.25cm by 6.25cm.

The main purpose of the XCF32PFSG48C is to configure the Xilinx logic device using data stored within the device\'s non-volatile memory. This data is ‘burned’ or programmed into the device at the time of manufacture, and contains the necessary information for the Xilinx logic device to boot and operate. The XCF32PFSG48C is also responsible for generating all custom signals and clock inputs required for the Xilinx logic device, as well as for the ability to perform the logic operations necessary for the logic device.

The XCF32PFSG48C is capable of configuring the Xilinx logic device in two different ways. The first is called ‘Firmware Download’ and is the most commonly used method of configuration. In this mode, the XCF32PFSG48C is used to download the logic code into the Xilinx logic device, which is then executed by the logic device itself. The second mode is called ‘Slave Serial Mode’, and is much less commonly used. In this mode the XCF32PFSG48C is used to read the logic code from an external EPROM, which is then executed by the Xilinx logic device.

In addition to its primary function of Xilinx logic device configuration, the XCF32PFSG48C also has several extra features. These features are designed to increase the device’s usability and performance. For example, it can be used to write data to the FPGA, program EEPROMs, or access control registers within the FPGA. It also has the ability to generate gate and frame pulses, as well as trigger signals in order to activate the logic operations contained within the FPGA.

Overall, the XCF32PFSG48C application field and its working principles are essential for anyone wanting to successfully configure Xilinx FPGA components. Although the device may seem complex, it is actually quite simple to understand. With its various features and capabilities, the XCF32PFSG48C provides a reliable method of configuring Xilinx logic devices, ensuring that they continue to operate reliably over time.

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

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