CD54ACT253

Features: • Typical Propagation Delay - 6ns at VCC = 5V, TA = 25, CL = 50pF• Exceeds 2kV ESD Protection MIL-STD-883, Method 3015• SCR-Latchup-Resistant CMOS Process and Circuit Design• Speed of Bipolar FAST™/AS/S with Significantly Reduced Power Consumption• Bal...

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CD54ACT253 Picture
SeekIC No. : 004311573 Detail

CD54ACT253: Features: • Typical Propagation Delay - 6ns at VCC = 5V, TA = 25, CL = 50pF• Exceeds 2kV ESD Protection MIL-STD-883, Method 3015• SCR-Latchup-Resistant CMOS Process and Circuit Des...

floor Price/Ceiling Price

Part Number:
CD54ACT253
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: 2024/11/27

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Product Details

Description



Features:

• Typical Propagation Delay
  - 6ns at VCC = 5V, TA = 25, CL = 50pF
• Exceeds 2kV ESD Protection MIL-STD-883, Method 3015
• SCR-Latchup-Resistant CMOS Process and Circuit Design
• Speed of Bipolar FAST™/AS/S with Significantly Reduced Power Consumption
• Balanced Propagation Delays
• AC Types Feature 1.5V to 5.5V Operation and Balanced Noise Immunity at 30% of the Supply
• ±24mA Output Drive Current
  - Fanout to 15 FAST™ ICs
  - Drives 50W Transmission Lines
 


Pinout

  Connection Diagram


Specifications

DC Supply Voltage, VCC . . . . . . . . . . . . . . . . . . . . . . .  . -0.5V to 6V
DC Input Diode Current, IIK
For VI < -0.5V or VI > VCC + 0.5V . . . . . . . . . . . . . . .  . . . . .±20mA
DC Output Diode Current, IOK
For VO < -0.5V or VO > VCC + 0.5V . . . . . . . . . . . . . . . . . .. .±50mA
DC Output Source or Sink Current per Output Pin, IO
For VO > -0.5V or VO < VCC + 0.5V . . . . . . . . . . . . . . . .  .  . .±50mA
DC VCC or Ground Current, ICC or IGND (Note 3) . . . . . .  . .±100mA
 


Description

The CD74AC253 and 'ACT253 dual 4-input multiplexers that utilize Advanced CMOS Logic technology. One of the four sources for each section is selected by the common Select inputs, S0 and S1. When the Output Enable (1OE or2OE) is HIGH, the output is in the high-impedance state.


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