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NT5TU32M16EG Datasheet(PDF) 54 Page - Nanya Technology Corporation.

Part # NT5TU32M16EG
Description  DDR2 512Mb SDRAM
Download  96 Pages
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Manufacturer  NANYA [Nanya Technology Corporation.]
Direct Link  http://www.nanya.com
Logo NANYA - Nanya Technology Corporation.

NT5TU32M16EG Datasheet(HTML) 54 Page - Nanya Technology Corporation.

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DDR2 512Mb SDRAM
NT5TU64M8EE / NT5TU32M16EG
54
Version 1.0
Nanya Technology Corp.©
09/2014
All Rights Reserved
DC & AC Logic Input Levels
DDR2 SDRAM pin timing are specified for either single ended or differential mode depending on the setting of the EMRS(1)
“Enable DQS” mode bit; timing advantages of differential mode are realized in system design. The method by which the
DDR2 SDRAM pin timing are measured is mode dependent. In single ended mode, timing relationships are measured
relative to the rising or falling edges of DQS crossing at VREF.
In differential mode, these timing relationships are
measured relative to the cross point of DQS and its complement, DQS. This distinction in timing methods is guaranteed by
design and characterization. In single ended mode, the DQS (and RDQS) signals are internally di
sabled and don’t care.
Input DC logic level
Symbol
Parameter
Min
Max
Units
VIH(dc)
DC input logic high
VREF + 0.125
VDDQ + 0.3
V
VIL(dc)
DC input logic low
-0.3
VREF - 0.125
V
Input AC logic level
Symbol
Parameter
DDR2-667, DDR2-800
Units
Min
Max
VIH(ac)
AC input logic high
VREF + 0.200
VDDQ+Vpeak
V
VIL(ac)
AC input logic low
VSSQ-Vpeak
VREF - 0.200
V
NOTE 1 Refer to Overshoot/undershoot specifications for Vpeak value: maximum peak amplitude allowed for overshoot and undershoot.
AC input test conditions
Symbol
Condition
Value
Units
Notes
VREF
Input reference voltage
0.5 x VDDQ
V
1
VSWING(MAX)
Input signal maximum peak to peak swing
1.0
V
1
SLEW
Input signal minimum slew rate
1.0
V/ns
2,3
NOTE 1 Input waveform timing is referenced to the input signal crossing through the VIH/IL(AC) level applied to the device under test.
NOTE 2 The input signal minimum slew rate is to be maintained over the range from VREF to VIH(ac) min for rising edges and the
range from VREF to VIL(ac) max for falling edges as shown in the below figure.
NOTE 3 AC timings are referenced with input waveforms switching from VIL(ac) to VIH(ac) on the positive transitions and VIH(ac)
to VIL(ac) on the negative transitions.


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