MIC5014 and MIC5015 MOSFET drivers are designed for gate control of N-channel, enhancement-mode, power MOSFETs used as high-side or low-side switches. The MIC5014/5 can sustain an on-state output indefinitely.
The MIC5014/5 operates from a 2.75V to 30V supply.In highside configurations, the driver can control MOSFETs that switch loads of up to 30V.In low-side configurations, with separate supplies, the maximum switched voltage is limited only by the MOSFET.
The MIC5014/5 has a TTL compatible control input. The MIC5014 is noninverting while the MIC5015 is inverting. The MIC5014/5 features an internal charge pump that can sustain a gate voltage greater than the available supply voltage.The driver is capable of turning on a logic-level MOSFET from a 2.75V supply or a standard MOSFET from a 5V supply. The gate-to-source output voltage is internally limited to approximately 15V.
The MIC5014/5 is protected against automotive load dump, reversed battery, and inductive load spikes of -20V. The driver's overvoltage shutdown feature turns off the external MOSFET at approximately 35V to protect the load against power supply excursions.
The MIC5014 is an improved pin-for-pin compatible replacement in many MIC5011 applications. The MIC5014/5 is available in plastic 8-pin DIP and 8-pin SOIC packages.
+2.75V to +30V operation
100µA maximum supply current (5V supply)
15µA typical off-state current
Internal charge pump
TTL compatible input
Withstands 60V transient (load dump)
Reverse battery protected to -20V
Inductive spike protected to -20V
Overvoltage shutdown at 35V
Internal 15V gate protection
Minimum external parts
Operates in high-side or low-side configurations
1µA control input pull-off
Inverting and noninverting versions
MIC5015 封装图
MIC5015 封装图
MIC5015 封装图
MIC5015 封装图
型号 | 制造商 | 描述 | 购买 |
---|---|---|---|
MIC5015YM-TR | Vishay Sprague | 钽电容 轴向 | 立即购买 |
MIC5015YM | - | - | 立即购买 |
MIC5015YN | - | - | 立即购买 |
得益于TN5015H-6G的15 mA调谐门,它可以作为浪涌电压斜坡的快速触发器,并专注于SCR的保护功能。
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。
TN5015H-6G 专注于 SCR 的保护功能,由于其 15 mA 调谐栅极,是浪涌电压斜坡中的快速触发器。在高达 150°C 的温度下,其低栅极电流和高浪涌电流额定值的权衡是市场上的独特功能。
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
在温差电单体开路端接入电阻为RL的外负载,如果温差电单体的热面输入热流,在温差电单体热端和冷端之间建立了温差,则将会有电流流经电路,负载上将得到电功率I2RL,因而得到了将热能直接转换为电能的发电器。
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
CINCON公司提供范围广泛的EN50155兼容的8W-600W的DC-DC变换器。CINCON变换器是专门为普通铁路应用而设计的,标称电压为24V、36V、48V、72V、96V、110 V,还适用于分布式电源结构、电信、电池操作设备和工业应用。 此外,CINCON还提供更...
2023年9月5日,据麦姆斯咨询报道,光梓信息科技(上海)有限公司(PhotonIC Technologies)在3D-dToF芯片领域又取得了重大突破,发布了业界领先的3D-dToF驱动芯片PHX3D5015,填补了国产dToF驱动芯片的空白,推动行业进步发展。
MCP19116 | MC33035 | MCP4726 | MSC1213Y5 |
MC74HC139A | MCP3912 | MCH5908 | MCP6541U |
MC10EP01 | MC100LVEP111 | MC74ACT74 | MC74LVX573 |
MCP1702 | MOC3042M | MOC212M | MMBF5434 |
msp430 | MCP4541 | MTCH105 | MC33202 |