格励微新推GLa1200、GLa1301型高精度隔离型电流采样芯片,隔离耐压高达5700Vrms
2023年终马上要到了,格励微2023年新品发布季最后一个产品GLa1200、GLa1301高精度隔离电流采样器正式发布。传统的隔离电流采样通常采用霍尔器件进行,但霍尔器件在采样精度上存在较大差距,格励微新推出的GLa1200、GLa1301高精度隔离电流采样器与高精度采样电阻配合,可满足高精度电流隔离采样要求。本次推出的GLa高精度隔离电流采样器与GLd隔离驱动器一起,可以为大功率电机驱动和电源变换系统中提供完整解决方案,欢迎大家选购。
产品概述
GLa1200、GLa1301采用高度集成设计方法,芯片内部集成高精度AD、高可靠数字隔离通道、高精度DA,隔离耐压高达5700Vrms(塑封),输入电压范围±250 mV,线性度±0.03%,与高精度采样电阻配合,能够在隔离条件下提供高精度的电流测量。
原理框图
产品特性
●输入电压范围:±250mV
●输入失调电压误差:±200µV@25℃;
●输入失调温漂:±3µV/℃;
●增益:
8.2(GLa1301),
8.0(GLa1200);
●增益误差:±0.3%@25℃;
●增益温漂:±50ppm/℃;
●线性度:±0.03%
●线性度温漂:1ppm/℃
●隔离耐压:5700Vrms
●工作温度范围:-55℃~125℃
产品用途
●电机驱动
●电源变换
电机控制系统
电源变换系统
关于新品发布季
2023年即将结束,2023年新品发布季也即将告一段落,在本年度新品发布季中,格励微先后推出了GLb4651隔离型LVDS总线收发器、GLb1042隔离型CAN FD收发器、GLo281兼容光耦型数字隔离器、GLd1600单通道隔离驱动器、GLd240X双通道隔离驱动器、GLd340X半桥隔离驱动器、GLa1200、GLa1301隔离型电流采样器。感谢奋战在研发一线的格励微各位同仁,是你们的辛勤付出为格励微发展打下了坚实基础,在这个寒风刺骨的冬日为格励微带来了厚重的冬衣。今年的冬天格外寒冷,但没有一个春天不会来临!相信春暖花开日,格励微产品会开满用户的每个山坡!
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本文由ll转载自GLW(数字隔离器专家公众号),原文标题为:2023最后一弹,格励微推出GLa1200、GLa1301型高精度隔离型电流采样芯片,本站所有转载文章系出于传递更多信息之目的,且明确注明来源,不希望被转载的媒体或个人可与我们联系,我们将立即进行删除处理。
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SERIES,NSI8231CX-DSWR,NSI1052-DSWR,NSI6801B-DSWFR,NSI6602B-Q1SPNR,NSI6601WC-DSWVR,NSI6651ASC-Q1SWR,NSC6272,NSI8263CX-DSWR,NSD8310-Q1HTSXR,NSC6273,NSREF31XX,NSI6602NB-DLAR,NSI6602NB-DSPNR,NSA5312,NSI6602A-Q1SWR,NSPGS2 SERIES,NSI6642C-DLAMR,NSI6601MC-DSWVR,NSR7808,NSI8220WX,NSI8266WX,NSD5604NE,NSI6602VB-DSWKR,NCA1043B-Q1,NCA9511,NSI6602A-DSWR,NSC6280,NSD2621B,NSD2621C,NSI6602NC-DSWR,NSI6801TC-DDBR,NSI8242SX,NSI68515AC-DSWR,NST112,NSI6602B-DSWKR,NSI6602VD-DLAMR,NSI8220CX-DSWVR,NST235,NST117,NSI6602VC-DSWKR,NSI6602VC-Q1SWKR,NSI6602MB-DSWDR,NST118,NSD1624,NSD16242-Q1SPR,NCA3085,NSP183X SERIES,NSI1050C-SWR,NSI6651,NSI6601MB-DSWVR,NSI6642B-DLAMR,NSI6602C-DSWKR,NSI8240NX,NSP163X,NSI6602NC-DSPNR,NCA1042BN-Q1,NSI8221WX,NSI66X2,NSI6631ASC-Q1SWR,NSD2621A,NSI1050C,NSI6602MNC-DSWTR,NSI6642,NSI6601C-DSWVR,NIRS2X,NSI8266SX,NIRSXX SERIES,NSG65N15K,NSD12409-Q1SPR,NSI6602VA-DSWKR,NSI6642D-DLAMR,NCA1051N,NSI6642A-DSWKR,NIRS20N1-DSPR,NIRS21N1-DSPR,NSC2860X-DQNR,NSI1042-DSWVR,NSI6602C-DSWR,NSI8221CX-DSPR,NPD010N120A-DTOGT,NSI6602VB-Q1SWR,NSI8210CX-DSPR,NSI8241NX,NST461,NCA1042A-Q1,NSI8222WX,NST103,NSI1303D0X,NSI1303E2X,NSI6622A-Q1SWKR,NSI6602VC-DLAR,NSI82XX SERIES,NSR31 SERIES,NSD16242-DSPR,NCA9555,NSPGM2 SERIES,NSI1052,NSC6360,NSC6362,NSI6651ALC-DSWR,NSC6364,NCA1042B,NSI6602NA-DSPNR,NSI6622A-DLAR,NSI6622C-Q1SPNR,NSI8220CX-DSWR,NSI6622C-DSPNR,NSA3166,NSI6642B-DLAR,NCA1042B-Q1,NSPAS3 SERIES,NSD1624-DSPR,NSI6602VA-Q1SWR,NSI8242CX-DSWR,NSI6602MNC-Q1SWTR,NST20,NIRS31,NSREF30XX,NCA9545,NSI1042,NSI6611,NCA9546,NSI6622B-DSPNR,NCA9306,NCA9548,NSD12416-Q1SPR,NSI6602MC-Q1SWTR,NSI8242NX,NSD8308-Q1HTSXR,NCA9617A,NST1001HA,NSI6602VA-DSWR,NSI1303D2X,NSI6601B-DSWVR,NSD7310-DHSPR,NSI6601,NSD731X-Q1,NSR7808GXX,NSD7312-Q1HSPR,NSI6602VB-DLAMR,NSI6602MNF-DSWTR,NSA3300,NSI6602C-Q1SWKR,NSC2860X,NSI6611ASC-DSWR,NST413,NSI22C11,NSI8230CX-DSWR,NSI6801B-DSPR,NSI6622A-DSPNR,NSD5604NE-DHTSTR,NSPDSX SERIES,NSL2163X,NST86,NIRS31-DSSR,NSI810X SERIES,NSI6642C-DSWKR,NSIP8944WX,NSA2200,NSIP8921WX,NSI8262WX,NSI6602NB-DLAMR,NSE11409,NSI8260SX,NSPGD1,NSR31,NSI6602VD-Q1SPNR,NSR35,NSR33,NSD8306,NSD731X,NSD8308,NIRSP31V,NSI6602VB-DLAR,NSD7310-Q1DHSPR,NSD1624-Q1SPKR,NSD11416–Q1,NSI6801X SERIES,NSI6602VB-Q1SWKR,NSD8310,NSI6602VD-DSPNR,NSI68515UC-DSWR,NST60,NSD8312,NSI6602ND-DSPNR,NSHT30,NSI6602C-Q1SWR,NSI82XXC,NSL21630,NSI6642B-DSPNR,NSL21631,NSI6602VD-Q1SWR,NSD5604-DHTSPR,NSI22C12,NSA2302,NSA2300,NSIP8920WX,NSIP8943WX,NSI6651ALC-Q1SWR,NSI8240WX,NSD1224LA-DSPR,NSI8261SX,NSD2621B-DQAGR,NSI8263WX,NSIP89XX SERIES,NSE11409 SERIES,NSI6602A-Q1SPNR,NSI6602NC-DLAR,NSI1303E0X,NSI6801,NSUC1610,NSI83086C,NSI8308XC,NSI6642D-DSPNR,NSD1015T-DSPR,NSI68515,NSI1306M25,NSI1300D25,NSIP8822WX,NSI6642C-DSWR,NSD1025V-Q1HMSR,NSD7312A-Q1HSPR,NPD020N120A-DTOGT,NSI83085C,NSI6602MB-Q1SWTR,NSIP892X,NSL21610,NSI6622B-DSWR,NSI6602VC-DSWR,NPD040N120A-DTOGT,NSI6602C-DLAR,NSI6602MC-DSWTR,NSI8262SX,NSI8241WX,NSIP8822,NSIP8943,NSL21611,NSIP8944,NSI6602A-DSWKR,NCA9534B,NSIP8940,NSIP8820,NSIP8941,NSR35 SERIES,NSIP8821,NSIP8942,NSI6651ASC-DSWR,NSI68515RC-DSWR,NSI8263SX,NSI1042-DSWR,NSI1042CDSWVR,NSI8241CX-DSWR,NSI6611ASC-Q1SWR,NSIP83086C,NSI8260CX-DSWR,NSI8230WX,NSIP1042,NSI6602B-DLAR,NSD
【应用】工作电压高达35V的4A单通道隔离型SIC驱动IVCR1401,满足电机控制器电压需求
工业领域的电压电流会相对较高,耐压、过流能力优秀的SIC MOS、IGBT恰好满足需求但该类物料需要搭配对应的驱动芯片,瞻芯电子的IVCR1401DPR隔离型SIC驱动用于一电机控制器项目中,芯片传播延时低仅45ns,宽工作电压最高达35V。
栅极驱动器及其纳芯微隔离应用方案介绍
不同的功率器件对栅极驱动要求有所不同,目前纳芯微针对四种功率器件,分别开发出了与之适配的驱动产品。本文介绍栅极驱动器及其应用
【产品】纳芯微单通道隔离驱动器NSi6801,工作温度-40~125℃,用于工业电机驱动、变频器等领域
纳芯微全新推出第二代产品NSi6801x系列,包含NSi68010B和NSi68011C两款产品。继承第一代产品优秀性能的同时,价格更优,助力企业降本增效。适用于对可靠性、工作寿命、功率密度和效率要求都比较高的系统,如光伏逆变器,电机驱动系统中。
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服务
可定制板装式压力传感器支持产品量程从5inch水柱到100 psi气压;数字输出压力传感器压力范围0.5~60inH2O,温度补偿范围-20~85ºС;模拟和数字低压传感器可以直接与微控制器通信,具备多种小型SIP和DIP封装可选择。
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可定制风扇尺寸覆盖18x18x04mm~165x165x25mm,随散热器大小而定制;风扇转速范围:1000 RPM~16500 RPM。支持DC风扇,直流风扇轴流风机,鼓风机以及电脑笔记本风扇等产品定制。
最小起订量: 500pcs 提交需求>
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