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V827332N04SXTL-A1 データシートの表示(PDF) - Mosel Vitelic Corporation

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V827332N04SXTL-A1
Mosel-Vitelic
Mosel Vitelic Corporation  Mosel-Vitelic
V827332N04SXTL-A1 Datasheet PDF : 15 Pages
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MOSEL VITELIC
V827332N04S
DC Operating Conditions
(TA = 0 to 70°C, Voltage referenced to VSS = 0V)
Parameter
Power Supply Voltage
Power Supply Voltage
Input High Voltage
Input Low Voltage
I/O Termination Voltage
Reference Voltage
Input Leakage Current
Output Leakage Current
Output High Current (VOUT = 1.95V)
Output Low Current (VOUT = 0.35V)
Symbol
VDD
VDDQ
VIH
VIL
VTT
VREF
II
IOz
IOH
IOL
Min
2.3
2.3
VREF + 0.15
-0.3
VREF - 0.04
1.15
-2
-5
-16.8
16.8
Typ.
2.5
2.5
-
-
VREF
1.25
-
-
-
-
Max
2.7
2.7
VDDQ + 0.3
VREF - 0.15
VREF + 0.04
1.35
2
5
-
-
Unit
V
V
V
V
V
V
µA
µA
mA
mA
Note
1
2
3
Notes: 1. VDDQ must not exceed the level of VDD.
2. VIL (min) is acceptable -1.5V AC pulse width with ð 5ns of duration.
3. The value of VREF is approximately equal to 0.5VDDQ.
AC Operating Conditions
(TA = 0 to 70 °C, Voltage referenced to VSS = 0V)
Parameter
Symbol
Min
Max
Unit
Note
Input High (Logic 1) Voltage, DQ, DQS and DM signals
VIH(AC)
VREF + 0.31
V
Input Low (Logic 0) Voltage, DQ, DQS and DM signals
VIL(AC)
VREF - 0.31
V
Input Differential Voltage, CK and CK inputs
VID(AC)
0.7
VDDQ + 0.6
V
1
Input Crossing Point Voltage, CK and CK inputs
VIX(AC)
0.5*VDDQ-0.2
0.5*VDDQ+0.2
V
2
Notes: 1. VID is the magnitude of the difference between the input level on CK and the input on CK.
2. The value of VIX is expected to equal 0.5*VDDQ of the transmitting device and must track variations in the DC level of the
same.
V827332N04S Rev. 1.1 May 2002
7

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