【应用】集成三相半桥Sic模块助力APF集成化设计
APF(有源电力滤波器)具有谐波补偿、功率因数补偿和三相不平衡补偿等多种补偿功能。APF是治理电能质量管理的完美方案。基于对电能的优化以及对后端的保护,APF设计需求较高的稳定性和快速响应效果。VINCOTECH的集成三相半桥Sic模块10-PZ126PA080MR-M909F28Y,是一款专门适应三相Sic设计类型需求产品的模块。在APF集成设计上,它完美匹配了相应电流规格的APF的设计架构以及三相集成的特性。
10-PZ126PA080MR-M909F28Y(简称M909)的Sic模块在APF上的优势主要体现在集成化上。M909的内部电路拓扑如图1所示,模块内部每一相对应均有两个Sicmosfet以及两个快恢复二极管。Sicmosfet的规格为1200V/80mΩ,开关频率高达100KHz以上,导通损耗小。二极管规格同样高达1200V/10A。另外模块内部还集成NTC热敏电阻,以便模块内部温度检测。
图1
M909是内部集成了三路独立的逆变架构设计的电路模块。在APF产品设计上,相对于采用分立器件的方案,该集成独立的三相逆变模块,无论在设计理念上还是空间布局利用上,均有明显的优势。
分立器件方案中,空间布局大,每一相的器件之间的主架构和驱动回路电路走线布局均会比较复杂,相应的杂散电感就会增加。杂散电感的增加,就会影响到驱动回路的抗干扰能力,进一步影响到系统长期运行的稳定性。
使用M909集成模块方案,只需考虑外围的驱动电路布局便可。模块的集成设计使得每一相的内部杂散电感更低、三相的空间布局更加合理化。杂散电感低,模块抗干扰能力就会相应提高,从而提升产品的稳定性。同时使用集成模块,产品相应的散热器设计就会更小。因此,M909的集成理念模块,最终带来的就是APF成品的设计更加简单,成品体积更小,稳定性能更高的优势。
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型号- SMCJ36CA,SMBJ,SMAJ6.0CA,92MLSC A 24X18 H1/059AL2 0030+-0007/DI,SMBJ220CA,92G0400CWWAKP42,SMBJ8.5CA,SMBJ51A,SMBJ75A,SMBJ160A,SMBJ70CA,SMAJ16A,0324030.,92G0600CWWAWP42,SMAJ,92G0600CTTAKP42,MLX91210KDC-CAS-101-RE,SMBJ78CA,SMBJ17CA,SMBJ40A,SMBJ64A,0324.375,SMAJ48CA,SMBJ43CA,SMBJ20CA,SMCJ14CA,SMBJ160CA,0314.375MXP,SMDJ,SMCJ7.5A,SMBJ7.0A,SMBJ85A,TOP268EG,SMBJ28CA,SMAJ8.0A,SMBJ54CA,SMBJ18A,SI86XXISO-KIT,MLX91210KDF-CAS-102-SP,5KP,SMAJ26A,SMBJ300A,0324040.,SMBJ150A,SMBJ150CA,92ML,92ML 104/83 24X18,SMCJ,0314015.,92MLSC A 24X18 H2/059AL2 0030+-0007/DI,SMDJ33CA,SMF12A,SMF5.0A,SMF36A,SMBJ16CA,SMBJ6.0CA,SI86XX,SMCJ350A,0324030.MXP,SMBJ100CA,SMAJ15A,SMCJ30A,SMDJ20A,MLX91210KDC-CAS-102-RE,SMF11A,SMBJ6.5A,SMCJ400A,SMBJ16A,SMCJ250A,SMAJ180CA,SMBJ30CA,SMDJ15CA,SMBJ28A,SMBJ188A,SMBJ170CA,0324010.,SMCJ64CA,SMBJ400A,SMBJ8.0A,SMF10A,92MLHF 0104 RC:88% 24.00X18.00,SMCJ8.0CA,SMBJ60A,SMBJ440CA,92ML 1080/85 24X18,SMBJ15CA,0324030.HXP,MLX91210KDC-CAS-102-SP,SMBJ64CA,0324020.MXP,SMBJ17A,MLX91210,SMCJ40A,SMAJ5.0A,SMCJ16CA,SMBJ120CA,SMBJ250A,SMCJ64A,0314012.,92ML 104/88 12X18,TOP268,SMBJ26CA,SMBJ400CA,MLX91210KDC-CAS-101-SP,SMBJ14A,SMBJ75CA,92G0080CWWAKP42,SMBJ26A,SMBJ110CA,SMBJ90CA,SMBJ7.0CA,0324020.,92ML A 24X18 HL/HL 0400+-004/DI,SMBJ130A,0324010.MXP,SMCJ6.5A,SMBJ14CA,SMBJ7.5A,SMBJ70A,SMBJ40CA,SMBJ15A,0324025.MXP,92G0040CVVAKP42,92G0400CTTAKP42,SMCJ30CA,SMDJ7.0A,0324015.,92ML0488-50K042,SMBJ9.0A,SMCJ16A,SMBJ48CA,SMBJ12A,SMBJ51CA,SMBJ36A,SMBJ24A,SMAJ6.0A,SMDJ36CA,SMBJ48A,SMAJ10CA,SMBJ130CA,SMAJ18CA,SMBJ350A,SMBJ120A,SMAJ20A,SID1132,SMBJ6.5CA,SMCJ28CA,SMBJ13CA,SMF54A,SMDJ51CA,SMF,SMDJ51A,SMBJ36CA,SMBJ13A,SMBJ85CA,SMAJ250CA,0314012.MXP,SMAJ33A,SMBJ8.0CA,SMCJ6.0A,SMBJ24CA,SMBJ8.5A,SMCJ200A,SMBJ22A,SMBJ58A,MLX91210KDC-CAS-102-TU,SMBJ110A,92ML PREPREG 104/88 12.00X18.00,SMBJ300CA,TOPSWITCH-JX,0314040.MXP,SMBJ90A,0314015.MXP,SMBJ12CA,SMAJ170A,SMBJ10A,0314.375,SMBJ58CA,SMBJ11A,SMF3.3,SMBJ188CA,SMBJ220A,0324001.,SMBJ350CA,0324025.,SMCJ6.5CA,SMCJ70A,SMBJ180CA,SMBJ5.0A,SMCJ48A,SMCJ36A,MLX91210KDF-CAS-101-TU,SID11X2,SMCJ180A,SMCJ250CA,SMBJ43A,SMBJ180A,92ML SC B 24X18 H3/059AL2 0.006+-0. 001,SMBJ7.5CA,SMCJ440A,SMAJ5.0CA,314,SMBJ100A,92ML A 24X18 H2/H2 0200+-0025/DI,0324040.MXP,SMAJ40A,92G0080CTTAKP42,SMAJ30CA,SMDJ11CA,SMBJ11CA,SMDJ180A,SMBJ20A,SMBJ45A,SMBJ33A,SMBJ9.0CA,324,92G0600CWWAKP42,SMDJ16A,SMBJ60CA,92ML0488-50K098,SMDJ5.0A,SMBJ440A,SMCJ12CA,SMCJ33CA,SMCJ58CA,SID1132K,10-PZ126PA080MR-M909F28Y,SMCJ5.0CA,MLX91210LDC-CAA-000-RE,SMBJ22CA,SMBJ200CA,SMBJ45CA,TPCM 780,0314040.,92ML A 24X18 H2/H2 0600+-005/DI,MLX91210KDF-CAS-101-RE,SMBJ78A,SMBJ170A,SMCJ220A,SMBJ10CA,0324001.MXP,0324010.HXP,SMCJ33A,0324015.HXP,MLX91210KDF-CAS-101-SP,SMBJ6.0A,92G0080CWAKP42,SMCJ5.0A,SMBJ33CA,SMBJ18CA,SMBJ250CA,SMBJ30A,SMAJ150A,SMBJ54A,92ML PREPREG 104/88 24. 00X18. 00,92MLSC B 24X18 H4/059AL2 0060+-001/DI,SMBJ200A,0324.375HXP,SMCJ22A,SMBJ5.0CA
在10-PZ126PA080MR-M909F28Y工作时,芯片和散热器的温差一般有多大?
同一个模块在不同的条件下,芯片与散热器的温差会有很大不同。需要计算得到。首先,散热器的温度是可以测到的,假设为Th,然后需要根据目前的工作情况,计算模块的损耗,假设某开关管的损耗为P,同时模块某开关管芯片的热阻是固定的,假设为Q(j-h),则可以用P*Q(j-h)计算得到,芯片与散热器的温差,假设为△T。用Th+△T可以得到芯片的温度。而不同的工作条件下,由于P不同,这就导致了温差的不同。
技术问答 发布时间 : 2017-05-05
【PCN】4" -> 6" wafer size change of Rohm SiC Mosfet 10-PZ126PA080MR-M909F28Y
型号- 10-PZ126PA080MR-M909F28Y
10-PZ126PA080MR-M909F28Y模块所对应推荐的导热硅脂的导热系数是3,而目前用的导热硅脂的导热系数是1,会有很大的散热影响吗?
对10-PZ126PA080MR-M909F28Y模块来说,导热硅脂的热阻大概占到了整体模块热阻的60%,那可以想象,如果之前推荐的导热系数是3,而现在的导热系数是1,会导致该模块的整体的达到原来2倍以上,对整体模块散热有很大威胁。
技术问答 发布时间 : 2017-05-05
在用10-PZ126PA080MR-M909F28Y模块时,对于NTC的温度,为什么说要多运行一段时间后再测NTC更稳?
对于10-PZ126PA080MR-M909F28Y该模块,NTC的温度比较接近散热器的温度,对于某一稳态情况,建议运行30分钟,让NTC的温度和散热器温度会非常接近,让温度稳定下来后再测试,温度会更准确,如果时间太短,热传导会有一定的延时,可能会有一定的误差。
技术问答 发布时间 : 2017-05-05
Vincotech(威科) 高效功率模块充电桩应用方案
描述- 高效功率模块让您的充电桩动力倍增,提高效率,达到最佳性能
型号- 10-PZ074PA080CR-L622F68Y,10-PZ074PA050SM-L624F08Y,10-PY074PA100SM-L583F08Y,10-PY074PA100SM01-L583F18Y,V23990-P729-F48-PM,10-PY126PA020MR-L227F28Y,10-PY073A A050RG01-LK14L08Y,10-PZ126PA080MR-M909F28Y,V23990-P627-F88-PM,10-PY073AA050RG02-LK14L03Y,10-PY124PA080FV-L589F88Y,10-PY124PA020MR03-L227F38Y,10-TY12NMB030SM-L394L08,10-PY124PA040F V-L588F88Y,10-T Y12NMB030SM-L394L08,10-PC124PA040MR-L638F18Y,V23990-P629-F48-PM,10-PY074PA020CR-L582F78Y,10-PZ07ANA080RV02-LK38L88Y,10-PC094PB035ME02-L629F36Y,10-PY124PA080SH-L589F48Y,10-PC094PB017ME02-L620F36Y,10-FZ071SA050SM02-L524L18,10-PY074PA040CR-L581F78Y,10-PZ126PA080ME-M909F18Y,10-PY074PA100SM01-L583F18,10-PY124PA040SH-L588F48Y,10-PY124PA040FV-L588F88Y,10-PZ07ANA100RG03-LK39L38Y,10-PY126PA020ME-L227F18Y,10-FZ07LBA100SM03-L705L08,10-FZ071SA100SM02-L526L18,010-FZ07LBA100SM01-L705L18,10-PZ074PA030SM-L623F08Y,10-PZ074PA075SM-L625F08Y,10-FZ071SA075SM02-L525L18,10-PY096PA035ME-L224F18Y,10-PZ07ANA100RG02-LK39L88Y,10-PC094PB065ME01-L637F06Y,10-PH126PA010MR-L820F86T,10-FZ071SA075S501-L525L58,10-PZ06O2A030FW-LH02J08Y,10-PG07ORA160RF-LJ53I88T,10-FZ07LBA100SM01-L705L18,10-PY073AA050RG01-LK14L08Y,10-PY126PA040MR-L226F28Y
【产品】Vincotech新型基于碳化硅的超高频率功率模块,适用于充电机和开关电源
Vincotech(威科) 新型基于碳化硅的功率模块, 包括用于充电机和开关电源应用的H桥模块和六管模块,开关频率高达400kHz,适用于硬开关/软开关。以及用于光伏与开关电源应用的BOOSTER模块,高效双路升压,超快开关频率,低感应布局
新产品 发布时间 : 2018-12-19
型号为10-PZ126PA080MR-M909F28Y的SiC模块,在规格书中,有Vgs参数,请问一下这项参数是必须满足的要求还是说只是一个推荐的范围?
根据规格书,Vgs的规格是-6~+22V,为安全工作区域,超规使用会导致管子失效的情况.
技术问答 发布时间 : 2018-02-05
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