S-75L00ANC

Features: · Wide power supply range: 1 to 3.6 V· Low current consumption: 1.0 mA maximum (at 3.6 V, 25°C)· Typical propagation delay: tpd = 7 ns (at 3.0 V)· High noise immunity: VNIH=VNIL=28% VCC minimum· Power down protection: All pins· Very small plastic package: SC-88AApplication· Personal comp...

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S-75L00ANC Picture
SeekIC No. : 004482985 Detail

S-75L00ANC: Features: · Wide power supply range: 1 to 3.6 V· Low current consumption: 1.0 mA maximum (at 3.6 V, 25°C)· Typical propagation delay: tpd = 7 ns (at 3.0 V)· High noise immunity: VNIH=VNIL=28% VCC mi...

floor Price/Ceiling Price

Part Number:
S-75L00ANC
Supply Ability:
5000

Price Break

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

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Month Sales

268 Transactions

Rating

evaluate  (4.8 stars)

Upload time: 2024/7/26

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Product Details

Description



Features:

· Wide power supply range: 1 to 3.6 V
· Low current consumption: 1.0 mA maximum (at 3.6 V, 25°C)
· Typical propagation delay: tpd = 7 ns (at 3.0 V)
· High noise immunity: VNIH=VNIL=28% VCC minimum
· Power down protection: All pins
· Very small plastic package: SC-88A



Application

· Personal computers, peripherals
· Cellular phones
· Cameras
· Games



Pinout

  Connection Diagram


Specifications

Item
SYMBOL
Conditions
RATING
UNIT
Power Supply Voltage
VCC
 
-0.5 to +5.0
V
Input Voltage
VIN
 
-0.5 to +5.0
V
Output Voltage
VOUT
 
-0.5 to VCC+0.5
V
Input Parasitic Diode Current
IIN
 
-20
mA
Output Parasitic Diode Current
IOK
 
±20
mA
Output Current
IOUT
 
±12.5
mA
VCC/GND Current
ICC
 
±25
mA
Power Dissipation
PD
 
200
mW
Storage Temperature
TSTG
 
-50 ~ +125
Lead Temperature (10 sec.)
TL
 
260



Description

The S-75L00ANC is a single 2-intput NAND gate fabricated by utilizing advanced silicon-gate CMOS technology which provides the inherent benefit of CMOS low power consumption to achieve operation by only a couple of batteries (1 to 3V).

The internal circuitry has buffered outputs to ensure high noise immunity and output stability.

Input voltage is allowed to be applied even if power voltage is not supplied because no diode is inserted between an input pin and VCC. This allows for interfaces between power supplies of different voltage, output level conversion from 3 V to 1 V and battery backup applications.




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