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CD4011BM SOP-14 Quad 2-Input NAND Gate CMOS Logic IC (10-Pack)

CD4011BM SOP-14 Quad 2-Input NAND Gate CMOS Logic IC (10-Pack)

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CD4011BM SOP-14 Quad 2-Input NAND Gate CMOS Logic IC

The CD4011BM is a quad 2-input NAND gate in a surface-mount SOP-14 package, built on CMOS technology for wide supply voltage operation (3V–18V). Each package contains four independent NAND gates, making it a fundamental building block for digital logic design, oscillators, and signal conditioning circuits.

Key Specifications

Parameter Value
Part Number CD4011BM
Package SOP-14 (SMD)
Logic Function Quad 2-Input NAND Gate
Supply Voltage (VDD) 3V – 18V
Input Voltage 0V to VDD
Propagation Delay ~60ns @ VDD=10V
Output Drive Current ±0.5mA @ VDD=5V
Operating Temperature −55°C to +125°C
Quantity 10 pieces

Why Choose CD4011BM?

  • Wide Supply Range — 3V–18V operation covers 3.3V, 5V, 9V, and 12V systems
  • CMOS Technology — Ultra-low quiescent current, ideal for battery-powered designs
  • SOP-14 SMD Package — Compact footprint for PCB-level integration
  • Universal Logic Building Block — NAND gates implement any Boolean function
  • DIP-Compatible Logic — Same function as CD4011BE, CD4011BCN in through-hole

Typical Applications

  • Combinational logic circuits (AND, OR, NOT, XOR from NAND)
  • Schmitt trigger oscillators and clock generators
  • Debounce circuits for mechanical switches
  • RS latch and flip-flop implementations
  • Signal inversion and buffering in mixed-signal designs
  • Low-power IoT sensor interface logic

Compatible With

Pin-compatible with CD4011BE (DIP-14), CD4011BCN, HEF4011B, MC14011B. Works with 4000-series CMOS logic family (CD4001, CD4013, CD4017, etc.).

FAQ

Q: Can CD4011BM drive TTL inputs directly?
A: At VDD=5V, output levels are compatible with TTL. For 3.3V systems, use a level shifter if interfacing with 5V TTL.

Q: How do I make an inverter from CD4011BM?
A: Tie both inputs of one NAND gate together — it becomes a NOT gate (inverter).

Package Contents

  • 10× CD4011BM SOP-14 Quad 2-Input NAND Gate IC
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