
The MIC4123/4124/4125 family are highly reliable BiCMOS/DMOS buffer/driver/MOSFET drivers. They are higher output current versions of the MIC4126/4127/4128, which are improved versions of the MIC4426/4427/4428. All three families are pin-compatible. The MIC4123/4124/4125 drivers are capable of giving reliable service in more demanding electrical environments than their predecessors. They will not latch under any conditions within their power and voltage ratings. They can survive up to 5V of noise spiking, of either polarity, on the ground pin. They can accept, without either damage or logic upset, up to half an amp of reverse current (either polarity) forced back into their outputs.The MIC4123/4124/4125 series drivers are easier to use, more ?exible in operation, and more forgiving than other CMOS or bipolar drivers currently available. Their BiCMOS/DMOS construction dissipates minimum power and provides rail-to-rail voltage swings.Primarily intended for driving power MOSFETs, the MIC4123/4124/4125 drivers are suitable for driving otherloads (capacitive, resistive, or inductive) which require low impedance, high peak currents, and fast switching times. Heavily loaded clocklines, coaxial cables, or piezoelectric transducers are some examples. The only known limitation on loading is that total power dissipated in the driver must be kept within the maximum power dissipation limits of the package.
Reliable, low-power bipolar/CMOS/DMOS construction
Latch-up protected to >200mA reverse current
Logic input withstands swing to -5V
High 3A peak output current
Wide 4.5V to 20V operating range
Drives 1800pF capacitance in 25ns
Short <50ns typical delay time
Delay times consistent with in supply voltage change
Matched rise and fall times
TTL logic input independent of supply voltage
Low equivalent 6pF input capacitance
Low supply current
3.5mA with logic 1 input
350μA with logic 0 input
Low 2.3Ω typical output impedance
Output voltage swings within 25mV of ground or VS.
'426/7/8-, '1426/7/8-, '4426/7/8-compatible pinout
Inverting, noninverting, and differential con?gurations
Exposed backside pad packaging reduces heat ePad SOIC-8L (θJA = 58°C/W) 4mm x 4mm MLF?-8L (θJA?= 45°C/W)
MIC4123 封裝圖
MIC4123 封裝圖
MIC4123 封裝圖
MIC4123 封裝圖
型號(hào) | 制造商 | 描述 | 購(gòu)買 |
---|---|---|---|
MIC4123YML-TR | Other | LD39015M10R | 立即購(gòu)買 |
MIC4123YME-TR | Vishay Sprague | 鉭電容 7.00 x 6.00mm 2824 | 立即購(gòu)買 |
MIC4123YME | - | - | 立即購(gòu)買 |
高通的QCC304x及后續(xù)的芯片支持HybridANC,包含F(xiàn)FMIC和FBMIC。其中FFMIC可以與2-CVC中的副MIC共用同一個(gè)MIC,可以是數(shù)字MIC或者模擬MIC。但是如果是模擬MIC的話,因?yàn)锳NC與CVC會(huì)共用FFMIC的模擬增益。
2019年1月14 日晚間,臺(tái)灣工研院公告指出,“若是使用華為手機(jī),自 1月15日中午起將無(wú)法使用本院的無(wú)線內(nèi)部網(wǎng)絡(luò)”,公告還通知員工,目前若有(或準(zhǔn)備使用)與實(shí)驗(yàn)有關(guān)的華為設(shè)備,請(qǐng)馬上與資科中心聯(lián)系。
當(dāng)MICSl57的2腳即3.3 V端連到S端(源極)時(shí),輸出就為3.3 V固定輸出;當(dāng)MIC5157的1腳即5.0 V端連接到S端(源極)時(shí),輸出就為5.0 V固定輸出(這時(shí)2腳懸空);當(dāng)MIC5157的2腳和1腳都懸空時(shí),輸出就為12V固
mic認(rèn)證與telec認(rèn)證介紹 無(wú)線產(chǎn)品在各國(guó)都有著嚴(yán)格的管控法規(guī)標(biāo)準(zhǔn),在中國(guó)有srrc認(rèn)證,美國(guó)有fcc-id,韓國(guó)的kcc認(rèn)證等等,而在日本針對(duì)無(wú)線產(chǎn)品的認(rèn)證是telec認(rèn)證,有人又稱之為mic
...計(jì),2020年全球半導(dǎo)體產(chǎn)業(yè)銷售額為4390億美元,與2019年的4123億美元相比增長(zhǎng)了6.5%。其中,美國(guó)半導(dǎo)體公司的銷售額約為2080億美元,占全球銷售額的47%。同時(shí)2020年美國(guó)芯片市場(chǎng)銷售額增長(zhǎng)了19.8%達(dá)到941.5億美元。 芯思想研究院(...
? 在很多應(yīng)用場(chǎng)合,要用到多MIC設(shè)計(jì),比如AI語(yǔ)音識(shí)別,就要用到多個(gè)硅麥的設(shè)計(jì),以提高語(yǔ)音識(shí)別的精準(zhǔn)度,本人曾做過(guò)兩個(gè)這樣的項(xiàng)目,下面分享下設(shè)計(jì)心得,看到這篇文章的朋友如果覺(jué)得有所幫助的話,記得
本文驗(yàn)證QCC3026在2-MIC CVC下,如果調(diào)換兩個(gè)MIC的位置,即用右MIC做主,左MIC做從,是否具有可行性。 測(cè)試工具 MDE:MDE_WIN_2.3.2.126 Toolkit
MIC4680恒流充電器,MIC4680 battery charger使用開關(guān)電源芯片MIC4680制作,降壓效率高,不發(fā)熱。
MC10H123 | MCP6L2 | MC100EP33 | MCP37D10-200 |
MP34DB02 | MOC3061M | MCP4802 | MIC4101 |
MIC2198 | MIC4120 | MC74VHC595 | MSC1210Y3 |
MJE253 | MOC206M | MIC9131 | MC74HC259A |
MC74ACT273 | MPU-6050 | MC100E151 | MCP2004 |