EEWORLDEEWORLDEEWORLD

Part Number

Search

LC4384V-5TN176I

Description
Cpld - complex programmable logic devices programmable super fast HI density pld
Categorysemiconductor    Other integrated circuit (IC)   
File Size330KB,95 Pages
ManufacturerAll Sensors
Environmental Compliance  
Download Datasheet Parametric View All

LC4384V-5TN176I Online Shopping

Suppliers Part Number Price MOQ In stock  
LC4384V-5TN176I - - View Buy Now

LC4384V-5TN176I Overview

Cpld - complex programmable logic devices programmable super fast HI density pld

LC4384V-5TN176I Parametric

Parameter NameAttribute value
ManufactureLattice
Product CategoryCPLD - Complex Programmable Logic Devices
RoHSYes
ProducispMACH 4384
Number of Macrocells384
Number of Logic Array Blocks - LABs24
Maximum Operating Frequency322 MHz
Delay Time3.5 ns
Number of I/Os48
Operating Supply Voltage3.3 V
Maximum Operating Temperature+ 105 C
Mounting StyleSMD/SMT
Package / CaseTQFP-176
Memory TypeEEPROM
Minimum Operating Temperature- 40 C
Number of Product Terms per Mac80
Operating Supply Curre13.5 mA
PackagingTray
Factory Pack Quantity40
Supply Voltage - Max3.6 V
Supply Voltage - Mi3 V
ispMACH 4000V/B/C/Z Family
February 2006
TM
Coolest Power
C
TM
3.3V/2.5V/1.8V In-System Programmable
SuperFAST
TM
High Density PLDs
Data Sheet
Features
High Performance
Broad Device Offering
• Multiple temperature range support
– Commercial: 0 to 90°C junction (T
j
)
– Industrial: -40 to 105°C junction (T
j
)
– Automotive: -40 to 130°C junction (T
j
)
• f
MAX
= 400MHz maximum operating frequency
• t
PD
= 2.5ns propagation delay
• Up to four global clock pins with programmable
clock polarity control
• Up to 80 PTs per output
Easy System Integration
• Superior solution for power sensitive consumer
applications
• Operation with 3.3V, 2.5V or 1.8V LVCMOS I/O
• Operation with 3.3V (4000V), 2.5V (4000B) or
1.8V (4000C/Z) supplies
• 5V tolerant I/O for LVCMOS 3.3, LVTTL, and PCI
interfaces
• Hot-socketing
• Open-drain capability
• Input pull-up, pull-down or bus-keeper
• Programmable output slew rate
• 3.3V PCI compatible
• IEEE 1149.1 boundary scan testable
• 3.3V/2.5V/1.8V In-System Programmable
(ISP™) using IEEE 1532 compliant interface
• I/O pins with fast setup path
• Lead-free package options
Ease of Design
• Enhanced macrocells with individual clock,
reset, preset and clock enable controls
• Up to four global OE controls
• Individual local OE control per I/O pin
• Excellent First-Time-Fit
TM
and refit
• Fast path, SpeedLocking
TM
Path, and wide-PT
path
• Wide input gating (36 input logic blocks) for fast
counters, state machines and address decoders
Zero Power (ispMACH 4000Z) and Low
Power (ispMACH 4000V/B/C)
Typical static current 10µA (4032Z)
Typical static current 1.3mA (4000C)
1.8V core low dynamic power
ispMACH 4000Z operational down to 1.6V V
CC
Table 1. ispMACH 4000V/B/C Family Selection Guide
ispMACH
4032V/B/C
Macrocells
I/O + Dedicated
Inputs
t
PD
(ns)
t
S
(ns)
t
CO
(ns)
f
MAX
(MHz)
Supply Voltages (V)
Pins/Package
32
30+2/32+4
2.5
1.8
2.2
400
3.3/2.5/1.8V
44 TQFP
48 TQFP
ispMACH
4064V/B/C
64
30+2/32+4/
64+10
2.5
1.8
2.2
400
3.3/2.5/1.8V
44 TQFP
48 TQFP
100 TQFP
ispMACH
4128V/B/C
128
64+10/92+4/
96+4
2.7
1.8
2.7
333
3.3/2.5/1.8V
ispMACH
4256V/B/C
256
64+10/96+14/
128+4/160+4
3.0
2.0
2.7
322
3.3/2.5/1.8V
ispMACH
4384V/B/C
384
128+4/192+4
3.5
2.0
2.7
322
3.3/2.5/1.8V
ispMACH
4512V/B/C
512
128+4/208+4
3.5
2.0
2.7
322
3.3/2.5/1.8V
100 TQFP
128 TQFP
144 TQFP
1
100 TQFP
144 TQFP
1
176 TQFP
256 fpBGA
2
176 TQFP
256 fpBGA
176 TQFP
256 fpBGA
1. 3.3V (4000V) only.
2. 128-I/O and 160-I/O configurations.
© 2006 Lattice Semiconductor Corp. All Lattice trademarks, registered trademarks, patents, and disclaimers are as listed at www.latticesemi.com/legal. All other brand
or product names are trademarks or registered trademarks of their respective holders. The specifications and information herein are subject to change without notice.
www.latticesemi.com
1
ispm4k_22z.2
In fact, every entrepreneur thinks he is the smartest.
God rewards hard work. In fact, every entrepreneur thinks that he is the smartest and is more or less self-righteous. If you are lucky, you will succeed. If you are unlucky, you should just pay tuitio...
lishile88 Talking
I have an urgent question about the UI of Windows Mobile programs!
Hello everyone, I am a beginner in WM6 programming, and now I want to make a UI. The problem is that I use VC++2005 and WIN32 to write it. As we all know, in Windows Mobile, when you enter a folder, t...
aa55 Embedded System
Question + How to implement flash wear leveling algorithm
Anyone who has used ferroelectrics knows that their storage times are basically unlimited, but they are too expensive. Many times we have to consider using flash to replace ferroelectrics, but flash h...
zhaojun_xf stm32/stm8
Looking for a solution that can achieve high-speed USB communication with Android phones
I am looking for a single chip solution that can connect to Android via USB and achieve USB-HS high-speed communication, preferably at a low cost....
littleshrimp Domestic Chip Exchange
Computer Power User (CPU) Magazine
...
dcexpert Download Centre
atmeg16 UART weird problem
#include iom16v.h #include macros.h #define uchar unsigned char #define uint unsigned int #pragma interrupt_handler uart_rx:12 uchar rdata,flag=0; void delay(uint ms) {uint i,j;for (i=0;ims;i++){for(j...
Farid MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1700  2584  870  2373  2780  35  53  18  48  56 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号