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What is HYS72V1283201GR-75-D?

This electronic component, produced by the manufacturer "Infineon", performs the same function as "PC133 Registered SDRAM-Modules".


HYS72V1283201GR-75-D Datasheet PDF - Infineon

Part Number HYS72V1283201GR-75-D
Description PC133 Registered SDRAM-Modules
Manufacturers Infineon 
Logo Infineon Logo 


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HYS 72Vxx3xxGR
PC133 Registered SDRAM-Modules
3.3 V 168-pin Registered SDRAM Modules
PC133 128 MByte Module
PC133 256 MByte module
PC133 512 MByte Module
PC133 1 GByte Module
PC133 2 GByte Module
• 168-pin Registered 8 Byte Dual-In-Line
SDRAM Module for PC and Server main
memory applications
• Programmable CAS Latency, Burst Length,
and Wrap Sequence (Sequential &
Interleave)
• One bank 16M × 72, 32M x 72, 64M × 72and
128M x 72, two bank 128M × 72 and
256M x 72 organization
• Optimized for ECC applications with very low
input capacitances
• JEDEC standard Synchronous DRAMs
(SDRAM) Programmable CAS Latency, Burst
Length and Wrap Sequence (Sequential &
Interleave)
• Single + 3.3 V (± 0.3 V) power supply
• Auto Refresh (CBR) and Self Refresh
• All inputs and outputs are LVTTL compatible
• Serial Presence Detect with E2PROM
• Utilizes SDRAMs in TSOPII-54 packages
with registers and PLL.
• Card Size: 133.35 mm × 38.10 / 43.18 mm
with Gold contact pads and max. 4.00 / 6.80
mm thickness (JEDEC MO-161)
• These modules all fully compatible with the
current industry standard PC133 and PC100
specifications
• Performance:
speed grade
-7 -7.5 Unit
fCK Clock Frequency (max.) @ CL = 3 133 133 MHz
tCK Clock Cycle Time (min.) @ CL = 3 7.5 7.5 ns
tAC
Clock Access Time (min.) @ CL= 3
5.4
5.4
ns
fCK Clock Frequency (max.) @ CL = 2 133 100 MHz
tCK Clock Cycle Time (min.) @ CL = 2 7.5
10
ns
tAC
Clock Access Time (min.) @ CL= 2
5.4
6
ns
Description
The HYS 72Vxx3xxGR-7 and -7.5 are industry standard 168-pin 8-byte Dual in-line Memory Modules (DIMMs)
organized as 16M × 72, 32M x 72, 64M × 72, 128M × 72 and 256M x 72 high speed memory arrays designed with
Synchronous DRAMs (SDRAMs) for ECC applications. All control and address signals are registered on-DIMM
and the design incorporates a PLL circuit for the Clock inputs. Use of an on-board register reduces capacitive
loading on the input signals but are delayed by one cycle in arriving at the SDRAM devices. Decoupling capacitors
are mounted on the PC board. The DIMMs use a serial presence detects scheme implemented via a serial
E2PROM using the 2-pin I2C protocol. The first 128 bytes are utilized by the DIMM manufacturer and the second
128 bytes are available to the end user. All Infineon 168-pin DIMMs provide a high performance, flexible 8-byte
interface in a 133.35 mm long footprint.
INFINEON Technologies
1
2002-07-18

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HYS72V1283201GR-75-D equivalent
HYS 72Vxx3xxGR
PC133 Registered SDRAM-Modules
RCS0
RDQMB0
DQ0-DQ3
DQM CS
DQ0-DQ3
D0
RDQMB4
DQ32-DQ35
DQM CS
DQ0-DQ3
D8
DQ4-DQ7
RDQMB1
DQ8-DQ11
DQM CS
DQ0-DQ3
D1
DQM
DQ0-DQ3
D2
DQ36-DQ39
RDQMB5
DQ40-DQ43
DQM CS
DQ0-DQ3
D9
DQM CS
DQ0-DQ3
D10
DQ12-DQ15
CB0-CB3
RCS2
RDQMB2
DQ16-DQ19
DQM CS
DQ0-DQ3
D3
DQM CS
DQ0-DQ3
D16
DQM CS
DQ0-DQ3
D4
DQ44-DQ47
CB4-CB7
RDQMB6
DQ48-DQ51
DQM CS
DQ0-DQ3
D11
DQM CS
DQ0-DQ3
D17
DQM CS
DQ0-DQ3
D12
DQ20-DQ23
RDQMB3
DQ24-DQ27
DQM CS
DQ0-DQ3
D5
DQM CS
DQ0-DQ3
D6
DQ52-DQ55
RDQMB7
DQ56-DQ59
DQM CS
DQ0-DQ3
D13
DQM CS
DQ0-DQ3
D14
DQ28-DQ31
CLK0
12 pF
CS0/CS2
DQMB0-7
BA0, BA1
A0-A11, A12
RAS
CAS
CKE0
WE
REGE
10 k
VCC
DQM CS
DQ0-DQ3
D7
DQ60-DQ63
DQM CS
DQ0-DQ3
D15
PLL SDRAMs D0-D17
E2PROM
(256 word x 8 Bit)
CLK1, CLK2, CLK3
RCS0/RCS2
12 pF
SA0
SA1
SA0
SA1 SDA
RDQMB0-7
SA2 SA2 WP
RBA0, RBA1
RA0-RA11, RA12
SDRAMs D0-D17
SDRAMs D0-D17
SCL SCL
47 k
RRAS
SDRAMs D0-D17
RCAS
RCKE0
RWE
SDRAMs D0-D17
SDRAMs D0-D17
SDRAMs D0-D17
VCC
VSS
D0-D17, Reg., DLL
C
D0-D17, Reg., DLL
1) DQ wirding may differ from that decribed
in this drawing; however DQ/DQB relationship
must be maintained as shown
2) All resistors are 10 unless otherwise noted
SPB04135
Block Diagram: One Bank 16M x 72, 32M x 72, 64M x 72 and 128M x 72 SDRAM DIMM Modules
HYS72V16300GR, HYS72V32301GR, HYS72V64300GR and HYS72V128320GR
using x4 organized SDRAMs
INFINEON Technologies
5
2002-07-18


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