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GS84118B-166

产品描述256K x 18 Sync Cache Tag
产品类别存储    存储   
文件大小492KB,共30页
制造商GSI Technology
官网地址http://www.gsitechnology.com/
下载文档 详细参数 全文预览

GS84118B-166概述

256K x 18 Sync Cache Tag

GS84118B-166规格参数

参数名称属性值
是否无铅含铅
是否Rohs认证不符合
厂商名称GSI Technology
零件包装代码BGA
包装说明BGA, BGA119,7X17,50
针数119
Reach Compliance Codecompli
ECCN代码3A991.B.2.B
最长访问时间8.5 ns
其他特性FLOW-THROUGH OR PIPELINED ARCHITECTURE
最大时钟频率 (fCLK)166 MHz
I/O 类型COMMON
JESD-30 代码R-PBGA-B119
JESD-609代码e0
长度22 mm
内存密度4718592 bi
内存集成电路类型CACHE TAG SRAM
内存宽度18
湿度敏感等级3
功能数量1
端子数量119
字数262144 words
字数代码256000
工作模式SYNCHRONOUS
最高工作温度70 °C
最低工作温度
组织256KX18
输出特性3-STATE
封装主体材料PLASTIC/EPOXY
封装代码BGA
封装等效代码BGA119,7X17,50
封装形状RECTANGULAR
封装形式GRID ARRAY
并行/串行PARALLEL
峰值回流温度(摄氏度)NOT SPECIFIED
电源2.5/3.3,3.3 V
认证状态Not Qualified
座面最大高度2.4 mm
最大待机电流0.03 A
最小待机电流3.14 V
最大压摆率0.31 mA
最大供电电压 (Vsup)3.6 V
最小供电电压 (Vsup)3.135 V
标称供电电压 (Vsup)3.3 V
表面贴装YES
技术CMOS
温度等级COMMERCIAL
端子面层Tin/Lead (Sn/Pb)
端子形式BALL
端子节距1.27 mm
端子位置BOTTOM
处于峰值回流温度下的最长时间NOT SPECIFIED
宽度14 mm

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GS84118T/B-166/150/133/100
TQFP, BGA
Commercial Temp
Industrial Temp
Features
• 3.3 V +10%/–5% core power supply, 2.5 V or 3.3 V I/O
supply
• Intergrated data comparator for Tag RAM application
• FT mode pin for flow through or pipeline operation
• LBO pin for Linear or Interleave (Pentium
TM
and X86) Burst
mode
• Synchronous address, data I/O, and control inputs
• Synchronous Data Enable (DE)
• Asynchronous Output Enable (OE)
• Asynchronous Match Output Enable (MOE)
• Byte Write (BWE) and Global Write (GW) operation
• Three chip enable signals for easy depth expansion
• Internal self-timed write cycle
• JTAG Test mode conforms to IEEE standard 1149.1
• JEDEC-standard 100-lead TQFP package and 119-BGA:
T:TQFP or B: BGA
-166
Pipeline
3-1-1-1
Flow
Through
2-1-1-1
t
cycle
t
KQ
I
DD
t
KQ
t
cycle
I
DD
6.0 ns
3.5 ns
310 mA
8.5 ns
10 ns
190 mA
-150
6.6 ns
3.8 ns
275 mA
10 ns
10 ns
190 mA
-133
7.5 ns
4.0 ns
250 mA
11 ns
15 ns
140 mA
-100
10 ns
4.5 ns
190 mA
12 ns
15 ns
140 mA
256K x 18 Sync
Cache Tag
166 MHz–100 MHz
8.5 ns–12 ns
3.3 V V
DD
3.3 V and 2.5 V I/O
Output registers and the Match output register are provided and
controlled by the FT mode pin (Pin 14). Through use of the FT
mode pin, I/O registers can be programmed to perform pipeline
or flow through operation. Flow Through mode reduces
latency.
Byte write operation is performed by using Byte Write Enable
(BWE) input combined with two individual byte write signals
BW1-2. In addition, Global Write (GW) is available for
writing all bytes at one time.
Compare cycles begin as a read cycle with output disabled so
that compare data can be loaded into the data input register.
The comparator compares the read data with the registered
input data and a match signal is generated. The match output
can be either in Pipeline or Flow Through modes controlled by
the FT signal.
Low power (Standby mode) is attained through the assertion of
the ZZ signal, or by stopping the clock (CLK). Memory data is
retained during Standby mode.
JTAG boundary scan interface is provided using IEEE
standard 1149.1 protocol. Four pins—Test Data In (TDI), Test
Data Out (TDO), Test Clock (TCK) and Test Mode Select
(TMS)—are used to perform JTAG function.
The GS84118 operates on a 3.3 V power supply and all inputs/
outputs are 3.3 V- or 2.5 V-LVTTL-compatible. Separate
output (V
DDQ
) pins are used to allow both 3.3 V or 2.5 V IO
interface.
Functional Description
The GS84118 is a 256K x 18 high performance synchronous
SRAM with integrated Tag RAM comparator. A 2-bit burst
counter is included to provide burst interface with Pentium
TM
and other high performance CPUs. It is designed to be used as
a Cache Tag SRAM, as well as data SRAM. Addresses, data
IOs, match output, chip enables (CE1, CE2, CE3), address
control inputs (ADSP, ADSC, ADV), and write control inputs
(BW1, BW2, BWE, GW, DE) are synchronous and are
controlled by a positive-edge-triggered clock (CLK).
Output Enable (OE), Match Output Enable, and power down
control (ZZ) are asynchronous. Burst can be initiated with
either ADSP or ADSC inputs. Subsequent burst addresses are
generated internally and are controlled by ADV. The burst
sequence is either interleave order (Pentium
TM
or x86) or
linear order, and is controlled by LBO.
Rev: 1.05 7/2001
1/30
* Pentium is a trademark of Intel Corp.
© 1999, Giga Semiconductor, Inc.
Specifications cited are subject to change without notice. For latest documentation see http://www.gsitechnology.com.
Trademark Notice (if any) Trademark of Giga Semiconductor, Inc. (GSI Technology).
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