LED驱动电源散热选择导热界面材料是关键
在LED驱动电源中,由于电源转换效率不是100%,大部分电能会被转化为热能。如果热量不能及时散出,会导致电源温度升高,影响其性能和寿命。因此,选择合适的导热界面材料,将驱动电源产生的热量有效地传递到散热器上,对于保证LED驱动电源的稳定运行至关重要。
图 1
TIM导热界面材料是一种填充在电子元件和散热器之间的材料,它能够将电子元件产生的热量有效地传递到散热器上,帮助散发电子元件产生的热量。在选择导热界面材料时,需要考虑以下几个关键因素:
图 2
1、导热性能:导热性能是选择导热界面材料重要的因素之一。高导热系数的材料能够更快速地将热量从电子元件传递到散热器上,从而降低电子元件的工作温度。
2、热阻:热阻是衡量导热能力的另一个重要参数。低热阻的导热界面材料能够更有效地传递热量,降低热量的累积。
3、可靠性:导热界面材料需要具备长期稳定性和可靠性,以确保在长时间的使用过程中不会出现性能下降或失效的问题。
4、易于安装:导热界面材料应易于安装,方便生产过程中的装配。
5、成本效益:在满足性能要求的同时,导热界面材料还应具有成本效益,以降低总体生产成本。
图 3
在实际应用中,选择适合的导热界面材料需要根据具体的应用场景和需求进行评估。通过实验测试和对比不同材料的导热性能、热阻、可靠性等参数,可以找到适合的导热界面材料,以保证LED驱动电源的稳定运行和延长其使用寿命。
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Ziitek(兆科)应用于新能源电动汽车的导热材料选型指南
目录- 公司简介 TIF系列热传导间隙填充材料 TCP™100系列导热工程塑料 硅胶泡棉密封垫 高粘性带阻燃双面胶 导热绝缘硅胶挤出材料 防火导热双面胶带 硅胶垫片密封条 新能源动力锂电池材料应用
型号- TIS480-0140,TCP™-100,TCP™100,Z-FOAM800-10SC系列,TIF100系列,TIA600P,TCP100系列,TCP™-100 SERIES,TCP300-18-06B,Z-FOAM880-10SC-A1,TIA600P SERIES,TIS100-08-1150 SERIES,TCP100-15-02A,TIF500,Z-FOAM8,TIF100,TIF300,TCP200-15-06A,Z-FOAM800-10SC,T1S100,Z-FOAM800 SERIES,TIF100 SERIES,Z-FOAM1030C,TIS100,Z-PASTER917T01,TCP系列,TIA800,TCP100-50-01A,TIS100-08-1150,TCP100,TIF200系列,TCP,Z-PASTER 917T01,TIF600GP,TIS™100-08-1150,Z-PASTER 9,TCP200-18-06A,TCP200-25-06A,TCP™100SERIES,Z-FOAM1030C SERIES,TIS4,TCP™100系列,TIS™100-08-1150 SERIES,TIS1,TIF700GP,Z-PASTER™ 917T01,TCP SERIES,TIF600,TIF800,TIF200,TIF400,TIA™600P,TCP300-12-06B,TIA800系列,TIA™600P SERIES,Z-PASTER917T01 SERIES,TIS100系列,Z-FOAM800,TIF,TIS400 SERIES,Z-FOAM800系列,TIS400,TCP100-40-02A,TIS100-08-1150-A1,TIF SERIES,TIF系列,TIA™600P系列,TIF500S,TIS
冠旭新材 吸波材料/导热界面材料/吸波导热材料选型指南
描述- 冠旭新材成立于2015年,专注于电子设备电磁兼容与界面散热的管理方案设计和材料研发生产。具有完整自主知识产权的全系列产品,包括单一功能的吸波材料和导热界面材料、多功能一体化的吸波导热材料和屏蔽吸波材料,以及结构功能化的热塑型吸波屏蔽复材。产品广泛应用于消费电子、5G通信、新能源汽车、数据中心、储能、医疗和安防等市场。
型号- GXR,GTR-30G25LV,GXS,GXS-PAK,GTR,GXH-8120,GXP-PL107,GTGD,GXR-8908,GXN-8000,GTGD-TG200D,GXH系列,GXH-8C60,GTR-80G60,GTR-50G45LV,GTGS,GTR-120G60,GXH-8125,GXM-1201,GXS-PAVR,GXP-LKU305,GXP-CKU102,GXP-CKU101,GXR-HB160,GXF-200T,GXR-MM-V1020,GXN-7000,GXR-8510,GTH-8740S,GXR-8710,GXM-0801,GTR-系列,GXM-0401,GXH-8730,GXF-150T,GXR-1120,GXR-8110,GXP-系列,GXP-LC305,GXS-PAVA,GXR-8310,GXF-120T,GTGD-TG400D,GXP-CW106,GXR-91,GXP-CW105,GXP-CW104,GXP-CW103,GXP-CW101,GXH-8220,GXR-MM-V103,GTR-60G60LV,GTGD-TG800D,GXP-P801,GXC系列,GTGS-TG650S,GXC-XU102,GXC-XU101,GXH-8740,GXM系列,GXH-9115,GTGS-TG400S,GXR-82,GXN-9000,GXS-PTVA,GXR-81,GXH-8230,GXR-KV101,GXR-87,GXS-PPVA,GXR-8610,GXR-MM-V109,GXC,GXF,GXH-8C50,GXH,GXM-0301,GXM-4701,GTH,GXR-8210,GXR-系列,GXM,GXP,GXR-8410,GXM-2001,GTDD系列,GXF-180T
【选型】Parker Chomerics(派克固美丽)热管理材料选型指南
目录- 产品简介 热传递基础 填缝材料 THERM-A-GAP™569,570,579,580,热垫片 THERM-A-GAP™974,G974,976,高性能热垫片 THERM-A-GAP™T63X系列,可涂布填缝材料 THERM-A-GAP™TP575NS,无硅热垫片 THERM-A-GAP™174,274,574,热垫片 THERMFLOW®相变垫片 HERMATTACH®热粘合带 THERM-A-FORM™可现场固化的灌注和底部填充材料 导热脂和导热胶 绝缘垫片 CHO-THERM®商用热绝缘垫片 CHO-THERM®高能热绝缘垫片 T-WING®和C-WING™薄型散热器 热管理词汇表 安全指南
型号- 65-00-T6XX-0030,WW-XX-5442-ZZZZ,WW-XX-D426-ZZZZ,T500,69-XX-20684-ZZZZ,WW-XX-D387-ZZZZ,69-12-XXXXX-A274,WW-XX-D390-ZZZZ,WW-XX-4659-ZZZZ,61 - 07 - 0909 - G570,69-XX-20698-ZZZZ,6WWXXYYYYZZZZ,T630,WW-XX-D409-ZZZZ,WW-XX-YYYY-ZZZZ,WW-XX-D6875-ZZZZ,WW-XX-D375-ZZZZ,WW-XX-D410-ZZZZ,69-XX-20686-ZZZZ,WW-XX-D424-ZZZZ,THERM-A-FORM™ T64X,69-11-25177-T630,65-00-T6XX - 0030,65-00-T670-3790,WW-XX-D399-ZZZZ,T63X,T404,T647,60-12-20264-TW10,69-11-24419-T630,T405,T646,T766,T644,T642,WW-XX-D385-ZZZZ,62-20-23116-T274,69-11-27155-575NS,69-12-22745-CW10,69 - 12 - XXXXX - A569,WW-XX-D414-ZZZZ,65-00-YYYY-ZZZZ,T650,T636,T635,WW-XX-D389-ZZZZ,65-00-T6XX - 0010,575-NS,WW-XX-D407-ZZZZ,62-16-23115-A274,WW-XX-8531-ZZZZ,WW-XX-D392-ZZZZ,WW-XX-D373-ZZZZ,69-11-27156-575NS,65-00-1642-0000,60-12-20267-TW10,T64X,69-11-27157-575NS,WW-XX-D379-ZZZZ,62-13-23114-T274,WW-XX-D396-ZZZZ,WW-XX-D382-ZZZZ,WW-XX-D418-ZZZZ,WW-XX-D403-ZZZZ,60-XX-YYYY-ZZZZ,274,WW-XX-4306-ZZZZ,62-04-23111-A274,65-00-1641-0000,65-00-T644-0045,WW-XX-402-ZZZZ,62-16-23115-T274,69-XX-20675-ZZZZ,WW-XX-4353-ZZZZ,WW-XX-D397-ZZZZ,T670,WW-XX-D417-ZZZZ,WW-XX-D378-ZZZZ,T405-R,T418,WW-XX-D419-ZZZZ,T777,T413,T414,WW-XX-D380-ZZZZ,T411,T412,69-12-22849-CW10,60-12-20269-TW10,65-00-T6XX-0180,WW-XX-D421-ZZZZ,WW-XX-4997-ZZZZ,WW-XX-D377-ZZZZ,T660,WW-XX-4305-ZZZZ,69-XX-27083-ZZZZ,69-12-23802-CW10,67-XX-YYYY-ZZZZ,69-11-27159-575NS,T444,65-01-1641-0000,WW-XX-4511-ZZZZ,174,TP575NS,65-00-T646-0200,WW-XX-D428-ZZZZ,WW-XX-5791-ZZZZ,WW-XX-8302-ZZZZ,WW-XX-D371-ZZZZ,WW-XX-D422-ZZZZ,974,976,65-00-T647-0200,WW-XX-6956-ZZZZ,T558,T557,WW-XX-4996-ZZZZ,61-07-0909-G174,62 - 20 - 0909 - A579,69-XX-20685-ZZZZ,60-12-20268-TW10,T441,62 - 20 - 0909 - A574,WW-XX-D381-ZZZZ,WW-XX-D412-ZZZZ,G974,65-00-T6XX - 0300,WW-XX-D411-ZZZZ,WW-XX-D374-ZZZZ,61 - 07 - 0909 - G174,WW-XX-4661-ZZZZ,WW-XX-D391-ZZZZ,PC07DS-7,WW-XX-D425-ZZZZ,WW-XX-D386-ZZZZ,6W-XX-YYYY-ZZZZ,WW-XX-D372-ZZZZ,WW-XX-D430-ZZZZ,65-00-T6XX-0300,WW-XX-D427-ZZZZ,WW-XX-D408-ZZZZ,WW-XX-D413-ZZZZ,69-11-27158-575NS,THERM-A-FORM™ 164X,WW-XX-D388-ZZZZ,69-XX-27072-ZZZZ,WW-XX-D423-ZZZZ,WW-XX-D376-ZZZZ,WW-XX-5792-ZZZZ,69-XX-20687-ZZZZ,WW-XX-D429-ZZZZ,WW-XX-D398-ZZZZ,T630G,6-6W-XX-YYYY-ZZZZ,69-XX-27070-ZZZZ,62-07-23112-A274,WW-XX-5527-ZZZZ,69-XX-27082-ZZZZ,62-10-23113-A274,WW-XX-D395-ZZZZ,1642,1641,WW-XX-4969-ZZZZ,65-00-T650-0003,WW-XX-4374-ZZZZ,WW-XX-D370-ZZZZ,WW-XX-D401-ZZZZ,62-20-23116-A274,WW-XX-D404-ZZZZ,WW-XX-D420-ZZZZ,C-WING,62-13-23114-A274,62-04-23111-T274,69-11-27154-575NS,65-00-T6XX - 0180,62-10-23113-T274,65-00-T644-0200,65-00-T642-0035,WW-XX-D383-ZZZZ,WW-XX-D405-ZZZZ,1671,60-12-20266-TW10,69 - 12 - XXXXX - A274,WW-XX-D416-ZZZZ,62-07-23112-T274,569,WW-XX-D065-ZZZZ,164X,T725,69-XX-YYYY-ZZZZ,65-00-T6XX-0010,65-00-T642-0250,65-00-T646-0045,WW-XX-D393-ZZZZ,THERM-A-GAP™ T63X,T609,570,WW-XX-D400-ZZZZ,69-XX-21259-ZZZZ,1678,574,1674,579,WW-XX-D406-ZZZZ,69-XX-20672-ZZZZ,65-00-T647-0045,WW-XX-D394-ZZZZ,69-XX-20991-ZZZZ,T710,580,WW-XX-D384-ZZZZ,WW-XX-D415-ZZZZ,60-12-20265-TW10,T-WING
导热界面材料有效增加换热范围、降低传热系数,提高散热效率,助力智能机器人高效率运作
智能机器人需要通过导热散热来长期保持运作,其电脑主板控制板构造上面依据发热原部位安装散热器开展散热,但是因为发热原与散热器中间出现空隙,则必须导热界面原材料弥补在其中,以扫除空隙里的气体、增加换热范围、降低传热系数、提升散热特性,进而保证智能机器人效率强的运作。
技术探讨 发布时间 : 2024-10-26
Ziitek(兆科)导热材料选型指南
目录- 公司介绍 TIC系列低熔点导热界面材料 TIF系列热传导间隙填充材料 TIG系列导热膏 TIS系列导热绝缘材料 TIR系列超高导热导电材料 TIA系列导热双面胶 TCP™100系列导热工程塑料 Z-Paster100无硅导热片 TIF™100导热泥/导热粘土 TIE/TIS™导热灌封粘合剂(导热灌封胶) Kheat™发热材料 导热界面材料应用介绍 模切产品
型号- Z-PASTER100-30-02E,TIS680-15AB,TIR300-CU SERIES,TIR600-06 SERIES,TIE280-12AB,TIA600FG,TIC800A,TCP300-18-06B,TIR300CU,TIS580-12,Z-PASTER100-15-02E,TIS580-10,TIF500,TIF100-35,TIF300 SERIES,TIC800G,TIF100,TIF100-30,TIF300,TIF600GP SERIES,TIC800B,TIG780-50,TIG780-10,TIF100-25,TIS680-28AB,TIG780-52,TIF100-15-10F SERIES,TIS100B,TIA800FG,TIS100G,TIF200 SERIES,TIA800,TIS100P,TCP100-50-01A,TIF100-32-05S SERIES,TIG780-18,TIF100-20,TIF100-02S SERIES,TIS680-10AB,TIE380-25,TIC800P SERIES,TIF100-30-10F SERIES,TIF600GP,TIS100Y,TC800G SERIES,TIF100-02S,TIF100-15,TCP200-18-06A,TCP200-25-06A,TIF100-12U SERIES,TIF800 SERIES,TIF100-05E SERIES,TIF100-05F SERIES,TIF700GP,TIR300,TIA800AL,TIS800K,TIF600,TIG780-25,TIF800,TIF200,TIF100-20-10F SERIES,TIF100-50,TIF400,TIC800P,TIF700GP SERIES,TIF400 SERIES,TCP300-12-06B,TIR300 SERIES,TIS800 SERIES,TIE280-25AB,TIA800 SERIES,TIS580-13,Z-PASTER100-20-02E,TIS680 SERIES,TIR600-06,TCP100-40-02A,TIS580 SERIES,TIS800,TIS800K SERIES,TIE380-45,TIC800A SERIES,TIC800G SERIES,TIC800K SERIES,TIF500S,TIG780-38
【选型】莱尔德推出热导率高达34W/m-K的导热界面材料解决方案,助力电子产品内部散热
莱尔德设计并制造导热产品,包括导热填缝垫片、点胶类导热填缝材料、相变化材料、导热硅脂、导热胶带、导热绝缘材料、导热 PCB (印刷电路板)、石墨材料和特殊导热界面材料 (如 Coolzorb™),可满足各种应用的需求。
器件选型 发布时间 : 2023-03-16
博恩导热界面材料在智能照明和投影仪中的应用
智能照明和投影仪设备中的LED模组、开关电源,遥感器、传感器等在工作状态时都会产生大量的热,所以为了提高照明设备的工作效率及使用寿命,有效的散热解决方案显得至关重要。博恩一系列导热界面材料,导热硅脂、低挥发导热垫片、导热绝缘膜和导热凝胶等组合为智能家居散热保驾护航。
应用方案 发布时间 : 2024-10-23
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