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XC18V02VQ44C 参数 Datasheet PDF下载

XC18V02VQ44C图片预览
型号: XC18V02VQ44C
PDF下载: 下载PDF文件 查看货源
内容描述: 在系统可编程配置PROM [In-System Programmable Configuration PROMs]
分类和应用: 可编程只读存储器
文件页数/大小: 21 页 / 227 K
品牌: XILINX [ XILINX, INC ]
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0
R
XC18V00 Series In-System
Programmable Configuration
PROMs
0
DS026 (v4.0) June 11, 2003
0
Product Specification
Dual configuration modes
-
Serial Slow/Fast configuration (up to 33 MHz)
- Parallel (up to 264 Mb/s at 33 MHz)
5V tolerant I/O pins accept 5V, 3.3V and 2.5V signals
3.3V or 2.5V output capability
Available in PC20, SO20, PC44, and VQ44 packages
Design support using the Xilinx Alliance and
Foundation series software packages.
JTAG command initiation of standard FPGA
configuration
Features
In-system programmable 3.3V PROMs for
configuration of Xilinx FPGAs
- Endurance of 20,000 program/erase cycles
-
Program/erase over full commercial/industrial
voltage and temperature range (–40°C to +85°C)
IEEE Std 1149.1 boundary-scan (JTAG) support
Simple interface to the FPGA
Cascadable for storing longer or multiple bitstreams
Low-power advanced CMOS FLASH process
Description
Xilinx introduces the XC18V00 series of in-system program-
mable configuration PROMs (Figure
1).
Devices in this 3.3V
family include a 4-megabit, a 2-megabit, a 1-megabit, and a
512-kilobit PROM that provide an easy-to-use, cost-effec-
tive method for re-programming and storing Xilinx FPGA
configuration bitstreams.
When the FPGA is in Master Serial mode, it generates a
configuration clock that drives the PROM. A short access
time after CE and OE are enabled, data is available on the
PROM DATA (D0) pin that is connected to the FPGA D
IN
pin. New data is available a short access time after each ris-
ing clock edge. The FPGA generates the appropriate num-
ber of clock pulses to complete the configuration. When the
FPGA is in Slave Serial mode, the PROM and the FPGA
are clocked by an external clock.
CLK CE
When the FPGA is in Master-SelectMAP mode, the FPGA
generates a configuration clock that drives the PROM.
When the FPGA is in Slave-Parallel or Slave-SelectMAP
Mode, an external oscillator generates the configuration
clock that drives the PROM and the FPGA. After CE and
OE are enabled, data is available on the PROMs DATA
(D0-D7) pins. New data is available a short access time
after each rising clock edge. The data is clocked into the
FPGA on the following rising edge of the CCLK. A free-run-
ning oscillator can be used in the Slave-Parallel or
Slave-SelecMAP modes.
Multiple devices can be concatenated by using the CEO
output to drive the CE input of the following device. The
clock inputs and the DATA outputs of all PROMs in this
chain are interconnected. All devices are compatible and
can be cascaded with other members of the family or with
the XC17V00 one-time programmable Serial PROM family.
OE/Reset
TCK
TMS
TDI
TDO
Control
and
JTAG
Interface
Data
Memory
Address
Data
Serial
or
Parallel
Interface
7
CEO
D0 DATA
Serial or Parallel Mode
D[1:7]
Parallel Interface
CF
DS026_01_090502
Figure 1:
XC18V00 Series Block Diagram
©2003 Xilinx, Inc. All rights reserved. All Xilinx trademarks, registered trademarks, patents, and further disclaimers are as listed at
All other
trademarks and registered trademarks are the property of their respective owners. All specifications are subject to change without notice.
NOTICE OF DISCLAIMER: Xilinx is providing this design, code, or information "as is." By providing the design, code, or information as one possible implementation of this fea-
ture, application, or standard, Xilinx makes no representation that this implementation is free from any claims of infringement. You are responsible for obtaining any rights you
may require for your implementation. Xilinx expressly disclaims any warranty whatsoever with respect to the adequacy of the implementation, including but not limited to any war-
ranties or representations that this implementation is free from claims of infringement and any implied warranties of merchantability or fitness for a particular purpose.
DS026 (v4.0) June 11, 2003
Product Specification
1-800-255-7778
1