常用可控硅的封裝形式有TO-92、TO-126、TO-202AB、TO-220、TO-220ABC、TO-3P、SOT-89、TO-251、TO-252、SOT-23、SOT23-3L等
編輯本段主要用途
普通晶閘管最基本的用途就是可控整流。大家熟悉的二極管整流電路屬于不可控整流電路。如果把二極管換成晶閘管,
就可以構成可控整流電路。以最簡單的單相半波可控整流電路為例,在正弦交流電壓U2的正半周期間,
西碼平板可控硅
N310CH04
N310CH06
N255CH36
N255CH38
N255CH40
N255CH42
N255CH44
N255CH45
N260CH02
N260CH04
N260CH06
N260CH08
N260CH10
N260CH12
N260CH14
N260CH16
N260CH18
N260CH20
N260CH22
N260CH24
N260CH26
N260CH28
N260CH30
N260CH32
N260CH34
N260CH36
N330CH16
N330CH18
N330CH20
N330CH22
N330CH24
N330CH26
N350CH02
N350CH04
N350CH06
N350CH08
N350CH10
N350CH12
N350CH14
N350CH16
N350CH18
N370CH02
N370CH04
N370CH06
N370CH08
N370CH10
N370CH12
N370CH14
N370CH16
N370CH18
N520CH02
N520CH04
N520CH06
N520CH08
N520CH10
富士IGBT
6MBI300U4-170
6MBI450U4-170
6MBP15RH-060
6MBP20RH-060
6MBP30RH-060
6MBP50RA060
6MBP75RA060
6MBP100RA060
6MBP150RA060
6MBP200RA060
6MBP300RA060
7MBP50RA060
7MBP75RA060
7MBP100RA060
7MBP150RA060
7MBP200RA060
7MBP300RA060
6MBP50RTB060
6MBP75RTB060
6MBP100RTB060
6MBP150RTBA060
7MBP50RTB060
7MBP75RTB060
7MBP100RTB060
7MBP150RTB060
6MBP25RA120
6MBP50RA120
6MBP75RA120
6MBP100RA120
6MBP150RA120
7MBP25RA120
7MBP50RA120
7MBP75RA120
7MBP100RA120
7MBP150RA120
6MBP50TEA060
6MBP75TEA060
6MBP100TEA060
6MBP150TEA060
7MBP50TEA060
7MBP75TEA060
6MBP25TEA120
6MBP50TEA120
6MBP75TEA120
西班牙可控硅
CDT250GK12
CDT250GK16
CDT250GK12B
CDT250GK16B
CDT320GK12
CDT320GK16
CDT320GK12B
CDT320GK16B
CDT500GK12
CDT500GK16
CDT500GK12B
CDT500GK16B
西班牙二極管
CATELEC二極管
CDD36N12
CDD36N12B
CDD36N16
CDD36N16B
CDD60N12
CDD60N12B
CDD60N16
CDD60N16B
CDD70N12
CDD70N12B
CDD70N16
CDD70N16B
CDD100N12
CDD100N12B
CDD100N16
CDD100N16B
CDD120N12
CDD120N12B
CDD120N16
CDD120N16B
CDD165N12
CDD165N12B
CDD165N16
CDD165N16B
CDD190N12
CDD190N12B
CDD190N16
CDD190N16B
CDD270N12
CDD270N12B
CDD270N16
CDD270N16B
CDD290N12
CDD290N12B
CDD290N16
CDD290N16B
CDD310N12
CDD310N12B
CDD310N16
CDD310N16B
艾賽斯整流橋VUE130-12NO7 VRRM (V) 1200 IDAVM (A) 130 IFSM 10ms Tvj=45°C (A) 500
VUE22-12NO7 VRRM (V) 1200 IDAVM (A) 24 IFSM 10ms Tvj=45°C (A) 40
VUE35-12NO7 VRRM (V) 1200 IDAVM (A) 40 IFSM 10ms Tvj=45°C (A) 90
VUE50-12NO1 VRRM (V) 1200 IDAVM (A) 50 IFSM 10ms Tvj=45°C (A) 200
VUE75-12NO7 VRRM (V) 1200 IDAVM (A) 74 IFSM 10ms Tvj=45°C (A) 200
FUO22-12N VRRM (V) 1200 IDAVM (A) 28 IFSM 10ms Tvj=45°C (A) 100
VUO100-12NO7 VRRM (V) 1200 IDAVM (A) 100 IFSM 10ms Tvj=45°C (A) 1000
VUO105-12NO7 VRRM (V) 1200 IDAVM (A) 160 IFSM 10ms Tvj=45°C (A) 1500
VUO110-12NO7 VRRM (V) 1200 IDAVM (A) 127 IFSM 10ms Tvj=45°C (A) 1200
VUO120-12NO1 VRRM (V) 1200 IDAVM (A) 121 IFSM 10ms Tvj=45°C (A) 650
VUO122-12NO7 VRRM (V) 1200 IDAVM (A) 125 IFSM 10ms Tvj=45°C (A) 900
VUO125-12NO7 VRRM (V) 1200 IDAVM (A) 166 IFSM 10ms Tvj=45°C (A) 1800
VUO155-12NO1 VRRM (V) 1200 IDAVM (A) 157 IFSM 10ms Tvj=45°C (A) 850
VUO16-12NO1 VRRM (V) 1200 IDAVM (A) 15 IFSM 10ms Tvj=45°C (A) 100
VUO160-12NO7 VRRM (V) 1200 IDAVM (A) 175 IFSM 10ms Tvj=45°C (A) 1800
VUO190-12NO7 VRRM (V) 1200 IDAVM (A) 248 IFSM 10ms Tvj=45°C (A) 2800
VUO22-12NO1 VRRM (V) 1200 IDAVM (A) 22 IFSM 10ms Tvj=45°C (A) 100
VUO25-12NO8 VRRM (V) 1200 IDAVM (A) 25 IFSM 10ms Tvj=45°C (A) 380
VUO27-12NO7 VRRM (V) 1200 IDAVM (A) 28 IFSM 10ms Tvj=45°C (A) 100
VUO28-12NO7 VRRM (V) 1200 IDAVM (A) 28 IFSM 10ms Tvj=45°C (A) 100