Aicaigou LogoAicaigou LogoB2B WikiIndustrial Encyclopedia

MC14584BDR2G

Updated: 2026-08-06

Overview

The MC14584BDR2G is a monolithic CMOS integrated circuit containing six Schmitt trigger inverters, designed to convert slowly varying or noisy input signals into sharply defined digital outputs. Manufactured by ON Semiconductor, it is housed in a compact SOIC-14 package, suitable for space-constrained PCB designs. The device operates across a broad voltage range (3V to 18V), accommodating diverse industrial and automotive environments. Its hysteresis characteristic ensures immunity to input signal noise, making it ideal for debouncing mechanical switches or conditioning sensor outputs. As a member of the 4000-series logic family, the MC14584BDR2G maintains compatibility with legacy systems while offering improved performance over standard inverters. Each of its six inverters functions independently, providing flexibility in circuit design. Common applications include pulse shaping, level translation, and interfacing between analog sensors and digital microcontrollers.

Structure and Working Principle

MC14584BDR2G 安森美ON 非门 施密特触发 1输入 SOIC-14深圳市欣向阳科技有限公司

The MC14584BDR2G integrates six identical inverter circuits, each featuring a Schmitt trigger input stage followed by a CMOS output driver. The Schmitt trigger mechanism employs two distinct voltage thresholds (positive-going and negative-going) to create hysteresis, typically 1.6V at 5V supply. This ensures that output transitions occur only when input signals cross these predefined thresholds, effectively filtering out noise or ringing. Internally, the device uses a combination of P-channel and N-channel MOSFETs to achieve low static power consumption (nanoampere range) while delivering output currents up to 8mA. The symmetrical output drive capability allows for rail-to-rail switching, with rise/fall times optimized for medium-speed digital applications (propagation delay ~200ns at 5V). Power supply decoupling is recommended near the VDD and GND pins to maintain stability in high-noise environments.

商家经验真实案例 · 安全可信
继电器红灯亮起怎么办
本文解析小型中间电磁继电器亮红灯的常见原因及处理方法,并介绍判断继电器工作状态的实用技巧,帮助快速定位问题并确保设备正常运行。

Key Features

Wide operating voltage range (3V–18V DC) enables use in battery-powered and industrial systems. The Schmitt trigger inputs provide typical hysteresis of 0.8V–2.4V (scaling with VDD), eliminating the need for external filtering components in noisy environments. With a balanced output drive (sink/source capability), the device can directly interface with TTL or other CMOS logic families when voltage levels are compatible. Notable specifications include a maximum quiescent current of 1µA at 5V, making it suitable for power-sensitive designs. The SOIC-14 package offers a footprint of 8.65mm x 3.9mm, supporting automated PCB assembly processes. Temperature stability is ensured across the industrial range (–40°C to +85°C), with ESD protection exceeding 2kV (HBM) on all pins. These features collectively enhance system reliability in automotive, industrial control, and consumer electronics applications.

Application Areas

Industrial automation systems utilize the MC14584BDR2G for conditioning signals from proximity sensors, encoders, or limit switches, where electrical noise is prevalent. Its hysteresis characteristic converts erratic mechanical switch contacts into clean digital pulses, critical for PLC input modules and safety interlocks. In automotive electronics, the device filters ignition noise in sensor interfaces or acts as a buffer for CAN bus signals. Consumer applications include debouncing tactile switches in appliances, shaping oscillator waveforms in timers, and level-shifting signals between low-voltage microcontrollers and higher-voltage peripherals. Medical devices leverage its noise immunity for reliable signal processing in patient monitoring equipment. Designers also employ it in DIY electronics projects requiring robust signal conditioning, such as retro-computing or robotics prototypes where component tolerance is essential.

Maintenance and Precautions

MC14584BDR2G SOIC-14 逻辑芯片 六路非门 施密特触发 ON安森美深圳市欣向阳科技有限公司

While the MC14584BDR2G requires no routine maintenance, proper PCB layout practices should be followed: minimize trace lengths to inputs, use 0.1µF decoupling capacitors near the power pins, and avoid routing high-speed signals adjacent to its inputs. Unused inverter inputs must be tied to VDD or GND to prevent floating-state oscillations that could increase power consumption. ESD precautions are critical during handling; use grounded workstations and anti-static packaging. Exceeding the absolute maximum ratings (18V supply, 50mA output current) may cause permanent damage. For high-reliability applications, derate operating voltages by 20% and ensure junction temperatures remain below 125°C. Thermal vias under the package are recommended for designs with sustained high switching frequencies to enhance heat dissipation.

商家经验真实案例 · 安全可信
20安锂电池能跑多远
本文解析20安时锂电池的续航能力,涵盖电池容量、电动车功耗、骑行条件等核心因素,并提供实用续航估算方法,帮助用户合理规划出行距离。

B2B Procurement Guide

When sourcing the MC14584BDR2G, verify manufacturer authenticity through authorized distributors like Arrow, Avnet, or Digi-Key to avoid counterfeit components. Volume pricing typically breaks at 1k units, with lead times varying from stock availability to 12 weeks for large orders. Specify the tape-and-reel packaging option (2500 units per reel) for automated assembly lines. Alternate part numbers include CD40106BE (Texas Instruments) or 74HC14 (for 2V–6V operation), though hysteresis levels may differ. Request factory lot codes and RoHS/REACH compliance documentation for regulatory adherence. For prototype quantities, sample kits from manufacturer evaluation programs may reduce initial costs. Consider second-source agreements or buffer inventory due to potential supply chain disruptions affecting CMOS logic ICs.

Related Manufacturers