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N64T1630C1B 데이터 시트보기 (PDF) - NanoAmp Solutions, Inc.

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N64T1630C1B Datasheet PDF : 18 Pages
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NanoAmp Solutions, Inc.
N64T1630C1B
Advance Information
Table 4: Absolute Maximum Ratings1
Item
Symbol
Rating
Unit
Voltage on any pin relative to VSS
VIN,OUT
–0.5 to VCCQ+0.3
V
Voltage on VCC Supply Relative to VSS
VCC
–0.2 to 3.6
V
Voltage on VCCQ Supply Relative to VSS
VCCQ
–0.2 to 4.0
V
Power Dissipation
PD
500
mW
Storage Temperature
TSTG
–55 to 150
oC
Operating Temperature
TA
-25 to +85
oC
1. Stresses greater than those listed above may cause permanent damage to the device. This is a stress rating only and functional
operation of the device at these or any other conditions above those indicated in the operating section of this specification is not
implied. Exposure to absolute maximum rating conditions for extended periods may affect reliability.
Table 5: Operating Characteristics (Over Specified Temperature Range)
Item
Symbol
Comments
Min.
Max. Unit
Supply Voltage
Supply Voltage for I/O
Input High Voltage
Input Low Voltage
Output High Voltage
Output Low Voltage
Input Leakage Current
Output Leakage Current
Read/Write Operating Current1
Page Mode Operating Current
Standby Current2
VIN = VCC or 0V
VCC
VCCQ
VIH
VIL
VOH
VOL
ILI
ILO
ICC
ICCP
ISB
IOH = -0.2mA
IOL = 0.2mA
VIN = 0 to VCC
OE = VIH or Chip Disabled
VIN=VCCQ or 0V
Chip Enabled, IOUT = 0
VIN=VCCQ or 0V
Chip Enabled, IOUT = 0
VIN = VCC or 0V
Chip Disabled
VCC = VCCMAX, tA= 85oC
2.7
3.3
V
Vcc
3.3
V
0.8VCCQ VCCQ+0.2 V
–0.2
0.4
V
0.8VCCQ
V
0.2VCCQ V
1
µA
1
µA
25
mA
15
mA
100
170
µA
1. This parameter is specified with the outputs disabled to avoid external loading effects. The user must add current required to
drive output capacitance expected in the actual system.
2. This device assumes a standby mode if the chip is disabled (CE high). In order to achieve low standby current all inputs must
be within 0.2 volts of either VCC or VSS.
Stock No. 23357- Rev E 07/05
3
The specifications of this device are subject to change without notice. For latest documentation see http://www.nanoamp.com.

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