
The MIC4426/4427/4428 family are highly-reliable dual low-side MOSFET drivers fabricated on a BiCMOS/DMOS process for low power consumption and high efficiency. These drivers translate TTL or CMOS input logic levels to output voltage levels that swing within 25mV of the positive supply or ground. Comparable bipolar devices are capable of swinging only to within 1V of the supply. The MIC4426/7/8 is available in three configurations: dual inverting, dual noninverting, and one inverting plus one noninverting output.The MIC4426/4427/4428 are pin-compatible replacements for the MIC426/427/428 and MIC1426/1427/1428 with improved electrical performance and rugged design. They can withstand up to 500mA of reverse current (either polarity) without latching and up to 5V noise spikes (either polarity) on ground pins.Primarily intended for driving power MOSFETs, MIC4426/7/8 drivers are suitable for driving other loads (capacitive, resistive, or inductive) which require low-impedance, high peak current, and fast switching time. Other applications include driving heavily loaded clock lines, coaxial cables, or piezoelectric transducers. The only load limitation is that total driver power dissipation must not exceed the limits of the package.Note See MIC4126/4127/4128 for high power and narrow pulse applications.
Bipolar/CMOS/DMOS construction
Latch-up protection to >500mA reverse current
1.5A peak output current
4.5V to 18V operating range
Low quiescent supply current
4mA at logic 1 input
400µA at logic 0 input
Switches 1000pF in 25ns
Matched rise and rall times
7Ω output impedance
<40ns typical delay
Logic-input threshold independent of supply voltage
Logic-input protection to -5V
6pF typical equivalent input capacitance
25mV max. output offset from supply or ground
Replaces MIC426/427/428 and MIC1426/1427/1428
Dual inverting, dual noninverting, and inverting/noninverting configurations
ESD protection
MIC4427 封装图
MIC4427 封装图
MIC4427 封装图
MIC4427 封装图
MIC4427 封装图
MIC4427 封装图
型号 | 制造商 | 描述 | 购买 |
---|---|---|---|
MIC4427YMM-TR | Panasonic - BSG | 立即购买 | |
MIC4427ZM-TR | Omron Electronics Inc-EMC Div | 立即购买 | |
MIC4427YM-TR | Omron Electronics Inc-EMC Div | 立即购买 | |
MIC4427ZM | TI | TLC77 具有可编程延迟时间的电压监控器 | 立即购买 |
MIC4427YM | ADI | IC SUPERVISOR 1 CHANNEL SOT23-3 | 立即购买 |
MIC4427YMM | - | - | 立即购买 |
Micrel推出MIC2299高亮度LED驱动器芯片 Micrel Inc.推出了针对便携式设备最小、最强大的LED驱动解决方案MIC2299。这一高
MIC29152双路输出的稳压器电路 (输出1.2V,5V) 由RS104L、MIC29150-12,MIC29150-5.0等组成。
NSG4427是低电压功率MOSFET和IGBT同相位栅驱动器。专有的闩锁免疫CMOS技术可以实现高鲁棒性。输入电平兼容低至3.3V的CMOS或LSTTL逻辑输出电平。具有宽VCC范围、带滞后的欠压锁定和输出电流缓冲级。并联两通道使用可以实现驱动能力增强。
高通的QCC304x及后续的芯片支持HybridANC,包含FFMIC和FBMIC。其中FFMIC可以与2-CVC中的副MIC共用同一个MIC,可以是数字MIC或者模拟MIC。但是如果是模拟MIC的话,因为ANC与CVC会共用FFMIC的模拟增益。
当MICSl57的2脚即3.3 V端连到S端(源极)时,输出就为3.3 V固定输出;当MIC5157的1脚即5.0 V端连接到S端(源极)时,输出就为5.0 V固定输出(这时2脚悬空);当MIC5157的2脚和1脚都悬空时,输出就为12V固
当MICSl57的2脚即3.3 V端连到S端(源极)时,输出就为3.3 V固定输出;当MIC5157的1脚即5.0 V端连接到S端(源极)时,输出就为5.0 V固定输出(这时2脚悬空);当MIC5157的2脚和1脚都悬空时,输出就为12V固
在很多应用场合,要用到多MIC设计,比如AI语音识别,就要用到多个硅麦的设计,以提高语音识别的精准度,本人曾做过两个这样的项目,下面分享下设计心得,看到这篇文章的朋友如果觉得有所帮助的话,记得
本文验证QCC3026在2-MIC CVC下,如果调换两个MIC的位置,即用右MIC做主,左MIC做从,是否具有可行性。 测试工具 MDE:MDE_WIN_2.3.2.126 Toolkit
MIC3202-1 | MM74HC164 | MSC1201Y3 | MCP3919 |
MCP14A0153/4/5 | MIC44F19 | MCP4902 | MC10H105 |
MCP87050 | MCP2515T-I/SO | MC74VHCT374A | MIC5821 |
MMBTH10 | MC34072A | MJ15024 | MCP1541 |
MRF49XA | MIC4223 | MMBF4118 | MIC2103 |
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