EEWORLDEEWORLDEEWORLD

Part Number

Search

LX64VIFN20835

Description
High Performance Interfacing and Switching
File Size445KB,72 Pages
ManufacturerLattice
Websitehttp://www.latticesemi.com
Download Datasheet View All

LX64VIFN20835 Overview

High Performance Interfacing and Switching

ispGDX2
Family
September 2005
Features
Includes
High-
,
Performance
Low-Cost
“E-Series”
High Performance Interfacing and Switching
Data Sheet
Two Options Available
• High-performance sysHSI (standard part number)
• Low-cost, no sysHSI (“E-Series”)
High Performance Bus Switching
• High bandwidth
– Up to 12.8 Gbps (SERDES)
– Up to 38 Gbps (without SERDES)
• Up to 16 (15x10) FIFOs for data buffering
• High speed performance
– f
MAX
= 360MHz
– t
PD
= 3.0ns
– t
CO
= 2.9ns
– t
S
= 2.0ns
• Built-in programmable control logic capability
• I/O intensive: 64 to 256 I/Os
• Expanded MUX capability up to 188:1 MUX
sysHSI Blocks Provide up to 16 High-speed
Channels
Serializer/de-serializer (SERDES) included
Clock Data Recovery (CDR) built in
800 Mbps per channel
LVDS differential support
10B/12B support
– Encoding / decoding
– Bit alignment
– Symbol alignment
• 8B/10B support
– Bit alignment
– Symbol alignment
• Source Synchronous support
sysCLOCK™ PLL
Frequency synthesis and skew management
Clock multiply and divide capability
Clock shifting up to +/-2.35ns in 335ps steps
Up to four PLLs
Flexible Programming and Testing
• IEEE 1532 compliant In-System Programmabil-
ity (ISP™)
• Boundary scan test through IEEE 1149.1
interface
• 3.3V, 2.5V or 1.8V power supplies
• 5V tolerant I/O for LVCMOS 3.3 and LVTTL
interfaces
sysIO™ Interfacing
• LVCMOS 1.8, 2.5, 3.3 and LVTTL support for
standard board interfaces
• SSTL 2/3 Class I and II support
• HSTL Class I, III and IV support
• GTL+, PCI-X for bus interfaces
• LVPECL, LVDS and Bus LVDS differential support
• Hot socketing
• Programmable drive strength
Table 1. ispGDX2 Family Selection Guide
ispGDX2-64/E
I/Os
GDX Blocks
t
PD
t
S
t
CO
f
MAX
(Toggle)
Max Bandwidth
sysHSI Channels
2
LVDS/Bus LVDS (Pairs)
PLLs
Package
1. Max number of SERDES channels per device * 800Mbps
2. “E-Series” does not support sysHSI.
3. f
MAX
(Toggle) * maximum I/Os divided by 2.
ispGDX2-128/E
128
8
3.2ns
2.0ns
3.1ns
330MHz
6.4Gbps
21Gbps
8
64
2
208-ball fpBGA
ispGDX2-256/E
256
16
3.5ns
2.0ns
3.2ns
300MHz
12.8Gbps
38Gbps
16
128
4
484-ball fpBGA
64
4
3.0ns
2.0ns
2.9ns
360MHz
SERDES
1, 2
3
3.2Gbps
11Gbps
4
32
2
100-ball fpBGA
Without SERDES
© 2005 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
gdx2fam_13
Graduation project help
My graduation project is about the hardware design of a computer game joystick, using MSP430! Dear experts, please help me! Thank you very much!...
dyqq46 Microcontroller MCU
Design and Application of A/D Converter
This article focuses on microcontrollers with built-in analog/digital converters, which can be used in switching power supplies, induction cookers, electric blankets, rice cookers, washing machines, d...
Whillson MCU
Some considerations for DSP hardware design
************************************************************************************************************ Clock circuit selection principles 1. When multiple clock signals of different frequencies ...
水牛 DSP and ARM Processors
MSP430 MCU Program Upgrade Example
[i=s]This post was last edited by Jacktang on 2017-4-24 14:19[/i] [size=3] [color=#333333][font=Arial]TI's MSP430 series microcontroller is an ultra-low power mixed signal controller. It uses a 16-bit...
Jacktang Microcontroller MCU
Discussion on core board and baseboard resources (transferred)
STM32 core board baseboard resource collection and introduction STM32 core board baseboard resource collection and introduction Our core board has been out for a while. In the next two weeks, we will ...
zhangbochao5 stm32/stm8
Summary of Common Instrument Problems of RIGOL (Part 2)
47. How to use an oscilloscope to measure power supply ripple? Power supply ripple refers to the parasitic small-amplitude oscillation waveform generated by the switching and rectification process of ...
西点 Test/Measurement

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1338  1657  1408  2387  2276  27  34  29  49  46 
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