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74LS01 Quad 2-Input NAND Gate IC
₹18.00 Original price was: ₹18.00.₹15.00Current price is: ₹15.00. inc. GST
- Quad 2-Input NAND Gate
- High-level input voltage:Â 2V
- Low-level input voltage:Â 0.8V
- High-level output voltage:Â 5.5V
- Low-level output current:Â 8mA
- Input clamp voltage:Â -1.5V
- No. of gates:Â 4
- No. of inputs:Â 8
- No. of outputs:Â 4
- Propagation delay time:Â 32ns
- Supply voltage range:Â 4.5 to 5.5V
- Package:Â DIP-14
74LS01 designed as a high-speed Quad 2-Input Positive NAND gate IC fabricated in low power schotkey technology. These devices come with four independent 2-input Positive-NAND gates. They perform the Boolean functions Y = A • B or Y = A + B in positive logic. The 74LS01 designed as an advanced high-speed CMOS 2 Input NAND circuit fabricated with silicon gate CMOS technology. It achieves a high−speed operation similar to equivalent Bipolar Schottky TTL while maintaining the CMOS low power dissipation almost like LS-TTL gates. In this IC, the open collector outputs require pull−up resistors to function correctly. They may be connected to other open-collector outputs to implement active−low wired−OR or active−high wired−AND functions. Open collector devices often used to generate higher VOH levels.
 74LS01 manufactured in 14−pin plastic PDIP wide-body surface-mount packages. The 74LS01 designedpecifically for operation over the full military temperature range of −55°C to 125°C. All inputs shielded from damage due to static discharge by internal diode clamps to VCC and ground. The 74LS logic family is functionally as well as pin-out compatible with the standard 74HC logic family.
The NAND gate is a type of digital logic gate that is frequently utilised in DLD applications. It’s also known as a universal logic gate since it can be used to implement any logic gate or expression known to man. If any of the NAND gate’s inputs are set to high, the gate’s output will always be a logical low. A NAND gate, on the other hand, produces a logical high only when all of its inputs are set to LOW.

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