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SN74HC132N (74HC132)

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₦ 511.63



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SN74HC132N (74HC132)

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The SN74HC132N (74HC132) is a high-speed CMOS quad 2-input NAND Schmitt trigger from Texas Instruments. It combines the performance and advantages of the NAND gate with the noise immunity and fast response of the Schmitt trigger. This combination makes it ideal for use in various digital logic circuits, especially where signal conditioning or noise immunity is required. The device operates over a wide voltage range and is suitable for various applications in digital systems. Key Features:
  • Four 2-input NAND Schmitt trigger gates
  • High noise immunity
  • Low power consumption
  • Wide operating voltage range: 2V to 6V
  • Inputs accept voltages up to 6V
  • Improved switching characteristics over standard NAND gates
  • Typical tpd (propagation delay) of 16 ns at Vcc = 5V
  • Compatible with standard TTL logic levels
Technical Specifications:
  • Supply Voltage (Vcc): 2V to 6V
  • Input Voltage Range: 0V to 6V
  • High-Level Output Voltage (VOH): Vcc - 0.1V (min at Vcc = 4.5V)
  • Low-Level Output Voltage (VOL): 0.1V (max at Vcc = 4.5V)
  • Input Current (Iin): ±1 μA (max)
  • Quiescent Supply Current (Icc): 1 μA (max)
  • Propagation Delay Time (tpd): 16 ns (typical at Vcc = 5V)
  • Operating Temperature Range: -40°C to +85°C
  • Package: 14-pin DIP
Applications:
  • Signal conditioning
  • Noise filtering
  • Digital circuits requiring fast response and noise immunity
  • Clock pulse shaping
  • Level shifting
Datasheet: For detailed technical information, refer to the SN74HC132N (74HC132) Datasheet.

Technical Specifications:

  • Logic Family: CMOS
  • Number of Channels: 3
  • Switch Configuration: Single-Pole Double-Throw (SPDT)
  • Supply Voltage Range: 3V to 15V
  • “ON” Resistance (R_ON): 125Ω typical at V_DD = 10V
  • “OFF” Leakage Current (I_OFF): ±100pA typical at V_DD = 10V
  • Control Input Voltage (V_IH): 0.7 V_DD min, 0.3 V_DD max
  • Maximum Operating Frequency: 40 MHz at V_DD = 10V

Applications:

  • Signal routing and switching
  • Analog and digital multiplexing
  • Audio and video signal processing
  • Data acquisition systems
  • Test equipment