參數(shù)資料
型號: GS8644Z36E-166I
廠商: Electronic Theatre Controls, Inc.
英文描述: Header; No. of Contacts:10; Pitch Spacing:0.079"; No. of Rows:2; Gender:Male; Series:1552; Body Material:Glass Filled Polyester; Connector Retention Style:Latch/Ejector; Contact Termination:Through Hole; Housing Style:Right-Angle RoHS Compliant: Yes
中文描述: 72Mb流水線和流量,通過同步唑的SRAM
文件頁數(shù): 33/39頁
文件大?。?/td> 1174K
代理商: GS8644Z36E-166I
Product Preview
GS8644Z18(B/E)/GS8644Z36(B/E)/GS8644Z72(C)
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
Rev: 1.03 11/2004
33/39
2003, GSI Technology
JTAG Port Timing Diagram
Boundary Scan (BSDL Files)
For information regarding the Boundary Scan Chain, or to obtain BSDL files for this part, please contact our Applications
Engineering Department at: apps@gsitechnology.com.
JTAG Port AC Electrical Characteristics
Parameter
TCK Cycle Time
TCK Low to TDO Valid
TCK High Pulse Width
TCK Low Pulse Width
TDI & TMS Set Up Time
TDI & TMS Hold Time
Symbol
tTKC
tTKQ
tTKH
tTKL
tTS
tTH
Min
50
20
20
10
10
Max
20
Unit
ns
ns
ns
ns
ns
ns
tTH
tTS
tTKQ
tTH
tTS
tTH
tTS
tTKL
tTKH
tTKC
TCK
TDI
TMS
TDO
Parallel SRAM input
相關(guān)PDF資料
PDF描述
GS88018AT-133 512K x 18, 256K x 32, 256K x 36 9Mb Sync Burst SRAMs
GS88018AT-133I 512K x 18, 256K x 32, 256K x 36 9Mb Sync Burst SRAMs
GS88018AT-150 512K x 18, 256K x 32, 256K x 36 9Mb Sync Burst SRAMs
GS88018AT-150I 512K x 18, 256K x 32, 256K x 36 9Mb Sync Burst SRAMs
GS88018AT-166 512K x 18, 256K x 32, 256K x 36 9Mb Sync Burst SRAMs
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
GS8644Z36E-166IV 制造商:GSI Technology 功能描述:SRAM SYNC SGL 1.8V/2.5V 72MBIT 2MX36 7NS/2.9NS 165FPBGA - Trays
GS8644Z36E-166V 制造商:GSI 制造商全稱:GSI Technology 功能描述:72Mb Pipelined and Flow Through Synchronous NBT SRAM
GS8644Z36E-200 制造商:GSI 制造商全稱:GSI Technology 功能描述:72Mb Pipelined and Flow Through Synchronous NBT SRAM
GS8644Z36E-200I 制造商:未知廠家 制造商全稱:未知廠家 功能描述:72Mb Pipelined and Flow Through Synchronous NBT SRAM
GS8644Z36E-200IV 制造商:GSI 制造商全稱:GSI Technology 功能描述:72Mb Pipelined and Flow Through Synchronous NBT SRAM