V436516S04VTG-10PC

Features: 168 Pin Unbuffered 16,777,216 x 64 bit Oganization SDRAM DIMM Utilizes High Performance 128 Mbit, 16M x 8 SDRAM in TSOPII-54 Packages Fully PC Board Layout Compatible to INTEL'S Rev 1.0 Module SpecificationSingle +3.3V (± 0.3V) Power Supply Programmable CAS Latency, Burst Length, and Wr...

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SeekIC No. : 004539834 Detail

V436516S04VTG-10PC: Features: 168 Pin Unbuffered 16,777,216 x 64 bit Oganization SDRAM DIMM Utilizes High Performance 128 Mbit, 16M x 8 SDRAM in TSOPII-54 Packages Fully PC Board Layout Compatible to INTEL'S Rev 1.0 M...

floor Price/Ceiling Price

Part Number:
V436516S04VTG-10PC
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/4/22

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Product Details

Description



Features:

168 Pin Unbuffered 16,777,216 x 64 bit Oganization SDRAM DIMM 
Utilizes High Performance 128 Mbit, 16M x 8 SDRAM in TSOPII-54 Packages 
Fully PC Board Layout Compatible to INTEL'S Rev 1.0 Module Specification
 Single +3.3V (± 0.3V) Power Supply 
Programmable CAS Latency, Burst Length, and Wrap Sequence (Sequential & Interleave) 
Auto Refresh (CBR) and Self Refresh 
All Inputs, Outputs are LVTTL Compatible 
4096 Refresh Cycles every 64 ms
 Serial Present Detect



Specifications

Symbol

Parameter

Limit Values

Unit

Min.

Max.

VIH

Input High Voltage

2.0

VCC+0.3

V

VIL

Input Low Voltage

0.5

0.8

V

VOH

Output High Voltage (IOUT = 2.0 mA)

2.4

-

V

VOL

Output Low Voltage (IOUT = 2.0 mA)

-

0.4

V

II(L)

Input Leakage Current, any input
(0 V < VIN < 3.6 V, all other inputs = 0V)

40

40

mA

IO(L)

Output leakage current
(DQ is disabled, 0V < VOUT < VCC)

40

40

mA




Description

The V436516S04VTG-10PC memory module is organized 16,777,216 x 64 bits in a 168 pin dual in line memory module (DIMM). The 16M x 64 memory module uses 8 Mosel-Vitelic 16M x 8 SDRAM. The x64 modules are ideal for use in high performance computer systems where increased memory density and fast access times are required.




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