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XC9536XL-5VQ44I

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XC9536XL High PerformanceCPLD

XC9536XL-5VQ44I 数据手册

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R
XC9536XL High Performance  
CPLD  
DS058 (v1.2) June 25, 2001  
Preliminary Product Specification  
cations and computing systems. It is comprised of two  
54V18 Function Blocks, providing 800 usable gates with  
propagation delays of 5 ns. See Figure 2 for architecture  
overview.  
Features  
5 ns pin-to-pin logic delays  
System frequency up to 178 MHz  
36 macrocells with 800 usable gates  
Available in small footprint packages  
Power Estimation  
-
-
-
-
44-pin PLCC (34 user I/O pins)  
44-pin VQFP (34 user I/O pins)  
48-pin CSP (36 user I/O pins)  
64-pin VQFP (36 user I/O pins)  
Power dissipation in CPLDs can vary substantially depend•  
ing on the system frequency, design application and output  
loading. To help reduce power dissipation, each macrocell  
in a XC9500XL device may be configured for low-power  
mode (from the default high-performance mode). In addi•  
tion, unused product-terms and macrocells are automati•  
cally deactivated by the software to further conserve power.  
Optimized for high-performance 3.3V systems  
-
-
Low power operation  
5V tolerant I/O pins accept 5 V, 3.3V, and 2.5V  
signals  
For a general estimate of I , the following equation may be  
CC  
-
-
3.3V or 2.5V output capability  
Advanced 0.35 micron feature size CMOS  
FastFLASH™ technology  
used:  
I
(mA) = MC (0.5) + MC (0.3) + MC(0.0045 mA/MHz) f  
HP LP  
CC  
Where:  
MC = Macrocells in high-performance (default) mode  
Advanced system features  
-
-
In-system programmable  
HP  
Superior pin-locking and routability with  
FastCONNECT II™ switch matrix  
Extra wide 54-input Function Blocks  
Up to 90 product-terms per macrocell with  
individual product-term allocation  
Local clock inversion with three global and one  
product-term clocks  
MC = Macrocells in low-power mode  
LP  
MC = Total number of macrocells used  
f = Clock frequency (MHz)  
-
-
This calculation is based on typical operating conditions  
using a pattern of 16-bit up/down counters in each Function  
-
Block with no output loading. The actual I  
value varies  
CC  
-
-
Individual output enable per output pin  
Input hysteresis on all user and boundary-scan pin  
inputs  
with the design application and should be verified during  
normal system operation.  
Figure 1 shows the above estimation in a graphical form.  
-
-
Bus-hold circuitry on all user pin inputs  
Full IEEE Standard 1149.1 boundary-scan (JTAG)  
60  
Fast concurrent programming  
178 MHz  
50  
Slew rate control on individual outputs  
Enhanced data security features  
Excellent quality and reliability  
40  
30  
-
Endurance exceeding 10,000 program/erase  
cycles  
125 MHz  
-
-
20 year data retention  
ESD protection exceeding 2,000V  
20  
Pin-compatible with 5V-core XC9536 device in the  
44-pin PLCC package and the 48-pin CSP package  
10  
Description  
0
100  
200  
250  
50  
150  
The XC9536XL is a 3.3V CPLD targeted for high-perfor•  
mance, low-voltage applications in leading-edge communi•  
Clock Frequency (MHz)  
DS058_01_061101  
Figure 1: Typical I vs. Frequency for XC9536XL  
CC  
© 2000 Xilinx, Inc. All rights reserved. All Xilinx trademarks, registered trademarks, patents, and disclaimers are as listed at http://www.xilinx.com/legal.htm.  
All other trademarks and registered trademarks are the property of their respective owners. All specifications are subject to change without notice.  
DS058 (v1.2) June 25, 2001  
www.xilinx.com  
1
Preliminary Product Specification  
1-800-255-7778  

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