SLKOR High-voltage MOSFET SL22N65CF is Widely Used in High-efficiency Switch Mode Power Supplies
SLKOR SL22N65CF is a High-voltage MOSFET produced using advanced super-junction MOSFET technology, with outstanding characteristics and performance. It is widely used in high-efficiency switch mode power supplies and other fields.
The SL22N65CF uses Slkor's unique super-junction MOSFET technology, which has been specially customized to greatly reduce on-resistance, provide excellent switching performance, and withstand high-energy pulses in avalanche and commutation modes. This advanced technology makes the SL22N65CF an ideal choice for high-efficiency switch mode power supplies.
SLKOR high-voltage MOSFET SL22N65CF has excellent parameters and characteristics. Its drain-source voltage can reach 650V, continuous drain current is 22A and power handling capability is 36W. Under conditions of 10V and 10A, its on-resistance is 150mΩ, and the threshold voltage is 4.5V. These parameters indicate that the SL22N65CF can operate stably and reliably, and perform well in high-voltage, high-current, and high-power environments.
The SL22N65CF has many outstanding features. Firstly, it has high ruggedness and can withstand various harsh operating conditions, ensuring equipment reliability and long life. Secondly, the SL22N65CF has ultra-fast switching characteristics, providing fast and reliable switching action to meet high-efficiency energy conversion requirements. In addition, it has undergone 100% avalanche testing to ensure its reliability under special circumstances.
This MOSFET has a wide range of applications. It is suitable for high-efficiency switch mode power supplies, motor drivers, inverters, lighting, and other fields. In high-efficiency switch mode power supplies, it can stably control current and has the characteristic of fast switching, providing high-efficiency energy conversion. In motor drivers and inverters, the SL22N65CF can provide stable power handling capability to ensure the normal operation of equipment. In the field of lighting, it can be used in applications such as LED drivers, providing high-efficiency energy conversion and reliability.
In summary, the SL22N65CF is a high-performance and highly reliable high-voltage MOSFET. With advanced super-junction MOSFET technology, the SL22N65CF possesses excellent switching performance and high-energy pulse withstand capability. It is widely used in fields such as high-efficiency switch mode power supplies, providing robust support for various applications. Sarko Microelectronics will continue to be committed to technological innovation, driving the development and progress of the semiconductor industry.
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本文由三年不鸣转载自SLKOR News,原文标题为:【Daily Highlight】SLKOR High-voltage MOSFET SL22N65CF,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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目录- Company Introduction MOSFETs Product Map N Channel MOSFET N Channel Trench MOSFET N Channel Planar MOSFET N Channel Super Junction MOSFET N Channel Small Signal MOSFET P Channel MOSFET P Channel Trench MOSFET P Channel Planar MOSFET P Channel Small Signal MOSFET FRED MOSFET Combo Mosfet
型号- FMOSP30P06,FMOSB3205,FMOSU06N90,FMOSU07N70B,FMOSP03N65,FMOSP3025A,FMOSPF10N90,FMOSP03N60,FMOSU07N70A,FMOSP40N10,FMOSU410,FMOSPFA05N60,FMOSP40N15,FMOSP03N70,FMOSAJ2352,FMOSU05N60KA,FMOSP04N60KA,FMOSU002NM65,FMOSU413,FMOSP04N60KB,FMOSP04N60KC,FMOSU08N50B,FMOSPFA05N65,FMOSP10N65K,FMOSUA09NM65,FMOSPFA02N65KA,FMOSP15N60,FMOSU830KA,FMOSU830KB,FMOSAC50P04,FMOSPF10N80,FMOSU21P04A,FMOSD36N10,FMOSAJ2340,FMOSU420,FMOSD630A,FMOSAC60N03,FMOSAC60N06,FMOSAC60N05,FMOSPFA05N50,FMOSP02N40K,FMOSU012N60Q,FMOSU03N25Z,FMOSB20N06,FMOSD02N30Z,FMOSP12N25V,FMOST01NM65,FMOSB09P10,FMOST01NM60,FMOSD08N40K,FMOSPX23N50E,FMOSU90N03A,FMOSPFA05N80,FMOSAC08NM65B,FMOSU80N06,FMOSP17N50K,FMOSU9435,FMOSA01N70,FMOSPF10N65,FMOSU01N60Q,FMOSAG03N25Z,FMOSPF10N60,FMOSU45P03,FMOST01NM70,FMOST16N15,FMOSU408,FMOSPFA03N60K,FMOSU01N60Z,FMOSQ07N10A,FMOSU80N10,FMOSPFA05N70,FMOSU02N40K,FMOSU08NM70A,FMOSU01N60A,FMOSAJ2305A,FMOSAJ4502,FMOSAJ2321,FMOSU405,FMOSU55N03,FMOSAC25P10,FMOSU01N60K,FMOSQ30N10,FMOSAC03N06,FMOSU06N50,FMOSU454,FMOSK05P04M,FMOSD24N06,FMOSAJ2312,FMOSAC03N10,FMOSAJ2316,FMOSU21P04,FMOSD03N100,FMOSU452,FMOSG1333,FMOSL654,FMOSQ30N04,FMOSU43N03,FMOSU18N25,FMOSA05N10,FMOSU10N65C,FMOSL8205,FMOSU06N65,FMOSPW60N10M,FMOSU09NM50A,FMOSU06N60,FMOST005N65,FMOSPFA05N90,FMOSPW33N25,FMOSP06N65KA,FMOSP03N40KA,FMOSD12N10,FMOSAJ2302,FMOSAJ2301,FMOSAG12NP03,FMOSAJ2304,FMOSAG05P04M,FMOSAJ2306,FMOSQ30N06,FMOSAJ2305,FMOSAJ2308,FMOSPF24NM65,FMOSQ4509,FMOST04N20,FMOSAJ2309,FMOSU06N70,FMOSPX60NM60,FMOSB07N70,FMOST04N03,FMOSPFA10N60Z,FMOSAJ015N10,FMOSAJ9435HZ,FMOSA05N06,FMOST02N60Q,FMOSPX60NM65,FMOSP64N04,FMOSU05NL70,FMOSB76N15,FMOSK02P06,FMOSU436,FMOSD01N50A,FMOSAG16N15,FMOST02N60K,FMOSPFA10N60K,FMOSD01N50K,FMOSUA3004,FMOSAG16N10,FMOST02N60D,FMOSU06N80,FMOSK302,FMOSU12N25V,FMOSPFA730K,FMOSB07N65,FMOSPW90N10,FMOSAG04N30,FMOSPFA10N60A,FMOST04N20Z,FMOSAC2003,FMOSAC5504,FMOSU02NM50A,FMOS1013T,FMOSPF08N40K,2N7002E,FMOSD28N03,FMOSU06N10,FMOSB540,FMOSU05N25Z,FMOSPF10N90B,2N7002T,FMOSD18P06,FMOS001P20,FMOSAC80N03,FMOSAC80N06,FMOSK351,FMOSU60N10M,2N7002K,FMOSPFA05N65A,FMOSP50P10,FMOS1012T,FMOSAG28N03,FMOSP08N100,FMOSPFA05N65K,FMOSAI2158,FMOSAC80N09M,FMOSPFA01N90,FMOSK04N10,FMOSU09N70A,FMOSD16N10,FMOSU03N65A,FMOSP60N10,FMOSU03N65B,FMOSU03N65C,FMOS002P06E,FMOSAJ6302,FMOSL606P,FMOST005N25,FMOSPFA10N65Z,FMOS001P10,FMOSP3025,FMOSD04N40,FMOSP03N06,FMOSAG3404,FMOS047N03,FMOSQ4953A,FMOSAG3400,FMOSPFA10N65A,FMOSPFA10N65K,FMOSU04NM60A,FMOSPX60N10,FMOSAG3409,FMOSU75N03,FMOSP60N03,FMOSP740A,FMOSAC2054,FMOSP60N05,FMOSP60N06,FMOSU08P03,FMOSP60N08,FMOSPWA24NM65,FMOSUC50P10,FMOSPWA24NM60,FMOS001P03,FMOSU18N20,FMOSP5210,FMOSPFA02N40K,FMOST02P50,FMOSAI0015N03,FMOSAP410,FMOSQ80N09M,FMOSP50P06,FMOSK9435H,FMOSD75P03,FMOSPFA50N06,FMOSU06N40,2N7002Z,FMOSAC80N07A,2N7002W,FMOSAJ4101,FMOSD04N60,FMOSAC45P03,FMOSAM7401,FMOSAC80N10,FMOSU484,FMOSPX80N06,FMOSA01N60,FMOSA01N65,FMOSAC23N15,FMOSAC55N06,FMOSAC6401,FMOSAC6402,FMOSU02N90,FMOSAM351,FMOSP15N06,FMOSM2311,FMOSB8010,FMOSAM3055,FMOSP06N90Z,FMOST005NM70,FMOSQ02NM65A,FMOSB15N65,FMOSQ10N10,FMOSU07NL70,FMOSAJ035N10,FMOSAC2305A,FMOSPFA17N50K,2N7002DW1,FMOSD40N025,FMOST005NM65,FMOST005NM60,FMOSM2305,FMOSH008N02Z,FMOSD03N50K,FMOST02P40,FMOSP15N10,FMOSAG2513,FMOSD02N70A,FMOSAC108N03,FMOSD02N70K,FMOSPFA03N65K,FMOST01N40A,FMOSHBSS84ZT,FMOSP15N25,FMOSB30P06,FMOSP15N20,FMOSAM001P03,FMOSPFA04N100A,FMOSU01N65Q,FMOSAG2502,FMOSAM02N10,FMOSU06NM60A,FMOSPX24NM60,FMOSU04NM65A,FMOST12N10,FMOSAJBSS139Z,FMOSPX11N80,FMOSACBSS84Z,FMOSP17P10,FMOSQ09N10,FMOSP17P12,FMOS2302A1,FMOSAC3416A,FMOSG001P03,FMOSU15N06,FMOSD05N65K,FMOSD34,FMOSAG10P02,FMOS3418V,FMOSB36N10,FMOSU02N65KA,FMOST9971P,FMOSD05N65B,FMOSU09NM50,FMOSD05N65A,FMOSU03N10,2N7002KW,FMOSAG20N03,FMOSPFA20NM65,FMOS01P10,FMOSQ25N10,FMOSU15N10,FMOSU12N60K,FMOSPFA830,FMOSP9530,FMOSAG3458,FMOSK9435HZ,FMOSQ9930M,FMOSP13N40K,FMOSU03N30,FMOSPW08N120,FMOSQ5003Z,FMOSU03N25,FMOST02P06,FMOSAJ2035Z,FMOS2303P,FMOSPFA07N65A,FMOSP6016,2N7002KA,FMOSPFA07N65C,FMOSAG3008,FMOSAJ001P03,FMOSAG3006,FMOSB12N65,FMOSAG2158,FMOSU03N70B,FMOSU04N50Z,FMOSU03N70C,FMOSAP01N10,FMOSAC001P03,FMOSU15N25,FMOSU05P20,FMOSAM410,FMOSU03N70A,FMOSD90N02,FMOSU15NM70A,FMOSD90N03,FMOS2302T,FMOSU04N50D,FMOSQ50N03,FMOSU15N30,FMOSU17P10,FMOSU04N50B,FMOSPF05N50A,FMOS2302W,FMOSPFA05N60KA,FMOSP634,FMOSAF21NM70,FMOSAMBSS84Z,FMOSD40N03A,FMOSU03N50,FMOSU06N10Z,FMOSAC2035Z,FMOS2301T,FMOSU34,FMOSAM4414,FMOSP06N60KA,FMOSPFA05N60A,FMOSP630,FMOSQ15P03,FMOSU15N20,FMOSQ15P04,FMOSA005NM65,FMOSG7401,FMOSPFA20NM70,FMOS2301W,FMOSA005NM60,FMOSU60N10,2N7002KWAI,2N7002KWAG,FMOS2301A,2N7002KWAL,2N7002KWAM,2N7002KWAJ,FMOSU50P06,FMOSAC6006,FMOSU11NM65,2N7002KWAC,FMOSU09NM95,FMOSPFA06N40K,FMOSAJ6354,FMOSU50P04,2N7002KWAP,FMOSD04N70,FMOSPFA,2N7002KWAN,FMOSP730K,FMOSU80N075A,FMOSP12N10,FMOSU40N025,FMOST02NM65A,FMOSAC75N06,FMOSAG3416,FMOSAG3413,FMOSP05N70K,FMOSA9435HZ,FMOSAC6016,FMOSAG3419,FMOSAG3418,FMOSAC75N03,FMOSAG40N025,FMOSPX15NM65,FMOSQ4812Z,FMOSU60N06,FMOSD04N80,FMOSAG3443,FMOSU09NM70,FMOSP12N65A,FMOSP12N65B,FMOSP36N05,FMOSPW460,FMOSPFA13N65,FMOSD04N90,FMOSD06N40A,FMOSAC035N10,FMOSPF13N40K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型号- BLP04N08,BLP04N08-B,BLP04N08-P
MOSFET and IGBT Working Principle and Structure
If the application is low voltage and high frequency, requiring fast switching and small switching losses, MOSFETs can be chosen. If the application is high voltage and low frequency and requires a smaller conduction resistance and greater resistance to breakdown, IGBT can be chosen.
BLP038N15 MOSFET
描述- BLP038N15是一款采用先进双沟槽技术的N沟道增强型功率MOSFET,具有低导通电阻、低栅极电荷、高雪崩鲁棒性等特点,适用于电机驱动和高电流应用。
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轻松了解功率MOSFET的雪崩效应
在关断状态下,功率MOSFET的体二极管结构的设计是为了阻断最小漏极-源极电压值。MOSFET体二极管的击穿或雪崩表明反向偏置体二极管两端的电场使得漏极和源[敏感词]子之间有大量电流流动。典型的阻断状态漏电流在几十皮安到几百纳安的数量级。
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描述- 该资料介绍了BLP04N08型MOSFET的特性、规格和应用。它是一种采用先进双沟槽技术的N通道增强功率器件,具有低导通电阻、低栅极电荷、高雪崩鲁棒性等特点,适用于电池管理系统(BMS)和高电流开关应用。
型号- P04N08,BLP04N08,BLP04N08-B,BLP04N08-BA
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定制液冷板尺寸5mm*5mm~3m*1.8m,厚度2mm-100mm,单相液冷板散热能力最高300W/cm²。
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