NC7NZ17 Triple-Channel Non-Inverting Schmitt Trigger CMOS Buffer SMD IC

Parameter

Value

Manufacturer

onsemi

Model Number

NC7NZ17

Type

Triple-Channel Non-Inverting Schmitt Trigger CMOS Buffer

Datasheet

NC7NZ17

65.00 EGP

Quantity
Price
<10
65.00 EGP
10 - 49
58.50 EGP
50 - 99
52.00 EGP
100+
45.50 EGP
× NC7NZ17 Triple-Channel Non-Inverting Schmitt Trigger CMOS Buffer SMD IC
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SKU:34963001245110
NC7NZ17 Triple-Channel Non-Inverting Schmitt Trigger CMOS Buffer SMD IC

The NC7NZ17, manufactured by onsemi, is a triple-channel, non-inverting Schmitt trigger CMOS buffer designed for ultra-high-speed signal processing in compact electronic systems. Part of the TinyLogic Ultra High Speed (UHS) series, this integrated circuit (IC) combines exceptional performance with low power consumption, making it an ideal choice for applications where efficiency and reliability are paramount. Housed in a US8 surface-mount package, the NC7NZ17 is optimized for high-density printed circuit board (PCB) layouts, enabling designers to create space-efficient solutions without sacrificing functionality.

Features:
  • Triple-channel non-inverting buffer with Schmitt trigger inputs.
  • Ultra-high-speed operation with a typical propagation delay of 3.6ns (at 5V VCC, 50pF load).
  • Wide supply voltage range: 1.65V to 5.5V.
Specifications:
Parameter Value
Category Integrated Circuits (ICs)
Description Logic – Buffers, Drivers, Receivers, Transceivers
Manufacturer onsemi
Series 7NZ
Logic Type Buffer, Non-Inverting
Number of Elements 3
Number of Bits per Element 1
Input Type Schmitt Trigger
Output Type Push-Pull
Current – Output High, Low 32mA, 32mA
Voltage – Supply 1.65V ~ 5.5V
Operating Temperature -40°C ~ 85°C (TA)
Mounting Type Surface Mount
Datasheet NC7NZ17

Applications:
  • High-speed digital signal processing.
  • Noise-sensitive circuits requiring signal conditioning.
  • Battery-powered portable devices.
  • Industrial control systems.
  • Telecommunications equipment.
  • Automotive electronics.
  • Consumer electronics, such as smartphones and tablets.
  • Medical devices requiring reliable signal integrity.
  • Switch debouncing and slow signal transition processing.
  • Interface circuits for microcontrollers and logic systems.

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