Absolute Encoder Improves Semiconductor Die Bonding Equipment
Die bonding is a critical process in manufacturing semiconductors, and precision is paramount when it comes to ensuring the quality of the finished product. At the same time, it’s also essential for manufacturers to develop a die bonding process that is as efficient as possible.
Thankfully, precision and efficiency are two areas where a hybrid stepping motor with batteryless absolute encoder really shines! To showcase the benefits of these innovative motors, let’s take a look at a case study of how one company used our hybrid stepping motors to optimize their die bonding process across three different applications.
Introduction to Die Bonding in Semiconductor Manufacturing
Die bonding involves attaching semiconductor dies to substrates, and it’s a process that requires a high degree of accuracy to ensure the optimal performance of electronic devices. As the demand for smaller and more powerful devices continues to grow, the challenge of improving the precision and efficiency of die bonding is one of the biggest challenges faced by the semiconductor industry.
How MinebeaMITSUMI’s Hybrid Stepping Motors Improve Semiconductor Die Bonding
The innovative hybrid stepping motor with batteryless absolute encoder is helping companies revolutionize numerous processes in semiconductor die bonding. Below, we’ll take a look at three different problems that these motors were able to help one semiconductor manufacturer solve and the specific benefits they were able to achieve in each application.
Application #1: Board Thickness Measurement
In the die bonding process, accurate board thickness measurement is crucial. The conventional method of measuring board thickness involves using a standard motor and an off-the-shelf optical encoder. However, this method requires the system to return to the home position after an error, which creates a lot of costly delays.
MinebeaMitsumi’s hybrid stepping motors solve this problem by retaining position information even when the power is turned off. This eliminates the need for the system to return to the home position following an error and enables a board thickness measurement process that is much more efficient and accurate.
Benefits:
No Need to Return to Home Position: The motor’s absolute encoder maintains position information, which allows for the immediate resumption of operations.
Enhanced Accuracy: High-resolution measurements improve the precision of board thickness assessments.
Increased Productivity: Reduced downtime and faster error recovery boosts overall productivity.
Application #2: Table Drive for IC Pickup
The table drive that the semiconductor manufacturer in our case study used encountered issues with stop position misalignment. Their existing system used an optical encoder with a resolution of 200 cpr (counts per revolution), which was insufficient for detecting small misalignments. This led to numerous ongoing errors and maintenance challenges.
With the high-resolution absolute encoder in our hybrid stepping motor, the manufacturer was able to access much more precise and detailed position data. This enabled them to detect misalignments earlier and more reliably to improve preventive maintenance efforts.
Benefits:
Early Misalignment Detection: High-resolution feedback allows for the early detection of mechanical component deterioration.
Improved Maintenance: The ability to detect and address misalignments early reduces downtime and maintenance costs.
Increased Accuracy: Enhanced positioning accuracy ensures better performance of the IC pickup process.
Application #3: Magazine Transport Drive
The magazine transport drive system used by the manufacturer in our case study—which moved empty magazines to the camera position for inspection—relied on a standard motor with an external sensor. This setup involved complex wiring and a large spatial footprint, making it inefficient and costly.
By implementing a stepper motor with a batteryless absolute encoder, the company was able to simplify the system. MinebeaMitsumi’s hybrid stepping motor eliminates the need for external sensors and maintains position information without power, which drastically reduces wiring complexity and spatial requirements.
Benefits:
Simplified Wiring: The sensorless design reduces the amount of wiring needed, making the system more efficient and easier to maintain.
Reduced Space Requirements: The compact setup frees up space, allowing for more streamlined operations.
Increased Reliability: The motor’s ability to retain position information without power ensures consistent performance and reduces the risk of errors.
Conclusion
Semiconductor manufacturers looking to improve the precision and efficiency of their die bonding process can face several key challenges. Thankfully, our hybrid stepping motor with batteryless absolute encoder helps solve many of these challenges.
These innovative motors not only help semiconductor manufacturers solve their current challenges but also provide a foundation for future advancements and ongoing improvement. As the semiconductor industry continues to evolve at a blistering pace, solutions such as the hybrid stepping motor are poised to play a key role in pushing the industry forward.
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本文由雪飘梦飞转载自MITSUMI Official Website,原文标题为:Absolute Encoder Improves Semiconductor Die Bonding Equipment,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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MITSUMI半导体传感器选型表
MITSUMI提供以下技术参数的半导体传感器选型,品类包含:压力传感器、差压传感器、风速传感器、温度传感器,分辨率:16位、24位,通信方式:SPI、I2C
产品型号
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品类
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封装
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测量类型
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测量量程
|
精度
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分辨率
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通信方式
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工作温度
|
检测方式
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MMR901
|
压力传感器
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7mm×7mm×7.2mm
|
压力
|
0~40kPa
|
±2.5℃
|
16位
|
SPI
|
0~60℃
|
膜片型
|
选型表 - MITSUMI 立即选型
电源半导体
描述- 这份资料主要介绍了Power Semiconductor领域的元器件,包括离散产品、功率模块、堆叠和单元等。具体内容包括各种整流二极管、快速恢复二极管、肖特基二极管、功率模块、堆叠和单元等产品的规格参数和应用信息。资料还提供了产品的详细规格、参数、封装尺寸、工作温度等关键信息,并强调了安全设计和使用注意事项。
型号- ECF06F60-F,KCQ60A03L,K02HD100P080AAA,PT76SN8,FSU05A30,TCU20A20-11A,NA03QSA065,P2H80F4,PT200KN16,PRFMB400W12,P2H80F2,TCF10F60-11A,K34HC400P160AAA,AMC03FA20,PCFMB150W12,K05TA150P080AAA,PAH250N8,K07DT050P080AAA,GCHS30A08,K03HD100P160AAA,PF30SN16,K44TD200P080AAA,PRHMB400W6,PRHMB200W12,K04HC150P080AAA,K34TA400P160AAA,FCQ10A03L,TCH10A15,K04DC200P160AAA,20CDA40,PRHMB150W6,KSU30D60N,FCH20E10,GCQ30A03L,FSQS10A045,K34HC400P080AAA,PRHMB75W6,SA10QA06,PCHMB300W6,SA10QA03,SA10QA04,MA10XA10,FCHS10A065,FCHS30AU08,AMC03FA40,ME01EA045,KCQ30A06,K02TD060P080AAA,KCF16A40,KCQ30A04,PCFMB400W12,K04HC150P160AAA,TSU05D60-11A,PE30SN8,AMVSE10A045,AMC03HA15,MA10EB045,GSF05F60,PF100SN8,AMP01HD10,PGH75N8,FSF08F60,FCU10D40,FRH20A10,PRFMB50W6,PT150KN8,AMVST10A20,ME01HD10,P2H50F12,FSH10A15,FSF05A40,NB10HSA12,FSH10A10,NA03HSA08,FRH20A20,K34TA400P080AAA,UCHS10A08,PCFMB75W6,FSF05A20,FCH30E10,FSU08D60,PD30KN16,KCF20F60,PD200S8,PRFMB75W12,K05TA200P080AAA,PCFMB300W12,NB10HSA08,TCH20A15,NA03QSA045,K44TD150P160AAA,FCH20AU20,KCQ20A04,AMA10EA06,FSF08H60,VSF05A20,FCU10D60,PCHMB100W12,TCH20A20,PGH75N16,PT100SN8,GCF06F60,NA03QSA035,KCQ20A06,UCHS10A12,K05TD200P160AAA,K05TA150P160AAA,NA03HA20,K34DD400P160AAA,K03DC060P160AAA,MVSG15A10,20CFA40,ESF03F60-F,PCFMB,K04HC200P080AAA,AME01EA03,TCH20A20-11A,PE100SN8,PHT608C,MVSX05A10,PD260MYN18,FCH30AU10,K05DD150P080AAA,PCHMB400W6,PRHMB100W12,KSF30F60B,PD260MYN16,AMVSX15A10,ME01EA06,NA03HA15,ME01EA03,TCU20A20,K07DT100P080AAF,K03DD100P160AAA,PDMB50W12,K02DD100P080AAA,PGH150N8,KSF60H60N,UCHS20A12,KCU30D40,PRHMB300W6,PRFMB200W6,P2H60QH10,PAH60LN8,AMP01EA045,TCU20A30,AMVST10A15,K44TF200N040AAA,TCH30A15,K34DC400P160AAA,PRFMB150W12,GCH10A10,PGH150N16,K04HC200P160AAA,UCHS20A08,PHT250N16,P2H60QH20,PT50KN8,PDMB100W12,PCHMB100W6,20CDA60,PCHMB,K35DH400P160AAA,FSU10A20,MA,PHT250N8,MC,ME03HD10,MP01EA045,TCH20A15-11A,ME,50GHSA08,AMC03DA40,FCQS10AU045,AMVSX05A10,MP,MC03HA15,UCHS10A065,50GHSA12,FCQ20A03L,MVSF06A60,MV,AME03EA045,TSU05D60,PT100KN16,NA,KCF16A20,NB,K03TD060P160AAA,FSU10A30,MVSX15A10,PT150MYN18,ECQS10A045-F,KSH30A20,AMVSE20A045,PCHMB200W6,UCHS30A12,K05TD150P160AAA,MC03FA40,P2H60F6,MVSE05A045,PT150MYN16,FCHS10A12,FCHS10A08,K04DC200P080AAA,K03TF080N040AAA,P2H60F2,P2H60F4,TCQ10A04-11A,PD200KN16,PD200MYN18,AMPP5FA20,PD200MYN16,PE30SN16,20CQA06,PRFMB100W6,20CQA04,PC,PD,PE,TSU10D60-11A,PF,K05DD200P160AAA,KCU20D40,PH,AME03EA03,UCHS30A08,PCFMB75W12,PR,PDMB75W12,PT,MC03FA20,PDMB50W6,TCF10A20,KSF60F60N,FCH10A20,K44TF150N040AAA,FSH05A20,FSH05A10,K44DD150P080AAA,FSH05A15,K02HA060P080AAA,K44DD150P160AAA,PRHMB,K03TA060P160AAA,10EHA20,FSHS05A065,K02TA060P080AAA,P2H30F6,FCH10A15,TCQ10A04,P2H30F4,K04DC250P160AAA,PD200S16,AMC05EA03,VSQS10A065,K03TA030P080AAA,KCH30A20,AMC05EA06,FCH10A10,PD100KN16,FSF10A20,AME01FA40,KSF60F60B,K34TD400P160AAA,ESF08HU60B-F,P2H30F2,K03HA030P160AAA,TCU10A20,FCHS20A12,KCH30A15,AMA10EB045,SA,KCH30A10,30GHA20,K03HC060P160AAA,AMPP5DA40,FCHS20A08,FCF16A20,K04DC250P080AAA,FCF20H60,KCH30A06,KCF25A20,PRHMB100W6,TSF05A20,PRHMB75W12,PC150FYN6,TE,TF,TG,TK,AME01FA20,PT75KN8,EA30QS03L-F,TT,MC03DA40,TU,KSQ30A04,K02HC030P080AAA,PCHMB150W12,FSF15H60,UCU20D30,PRHMB400W12,UCF20B40,PD150S8,MVSG05A10,K35DH400P080AAA,K03TA100P160AAA,KCF30F60N,GCF10A40,P2H,11EFS2,PT200KN8,MVSE20A045,11EFS4,30GHA10,K34HD400P080AAA,FCF16A40,K05TD150P080AAA,FSF05HU60,TCF10A40,11EQS03L,PDMB200W12,30GFA40,PC151FYN6,PRHMB300W12,KSH15A10,PRHMB200W6,K02HC060P080AAA,AME01EA045,PCFMB50W12,GCF10A20,FCF20F60,NB06HSA12,FCHS30A08,FCF10H60,PT100KN8,AME01DA40,FCHS30A12,FSF10A40,NB06HSA08,PT200N16,FSQ05A03L,FCF06A20,K04DC150P080AAA,PR250KN8N,KSQ30A06,PT50SN16,UCF10B40,K02HK100P080AAA,AMVSX10A10,30GFA20,FSF05H60,K03HK100P160AAA,KSF30F60,FSF15F60,K05DD150P160AAA,TCQ20A03L,50GQSA065,MVST10A15,FCH10E10,PD200FYN6,UCQS30A045,FCF06A40,PRFMB300W12,MVST10A20,MVSX10A10,FSF03F60,MA10EA06,TCQ30A04,K35TH400P080AAA,PCFMB50W6,30GQA04,TCQ30A06,PD100FYN6,ECH06A20-F,K44TD150P080AAA,30GDA60,KCU60D60N,FCH20A15,PGH101N8,TSF05A20-11A,FCH20A10,EA30QS10-F,K02DR060P080AAA,PCHMB75W12,FCF10F60,30GQA06,PT50SN8,PT75KN16,TCU20A30-11A,FCH20A20,NA05HSA12,PD230S16,K02TA100P080AAA,ESH05A15-F,NB06HSA065,FSF05F60,K03HC030P160AAA,30GDA40,KSF30H60,FSQS10A065,AMVSG10A10,MP01HD10,PCHMB50W6,NA05HSA08,FCHS10A045,FCQS30A045,VSHS03A12,TCQ20A04,TCQ20A03L-11A,ECHS10A08-F,KCH20A20,PF30SN8,K02HA030P080AAA,AMA10XA10,K44HD200P080AAA,FCH30A15,FCH30A10,K05HA200P080AAA,TSU10D60,VSHS15A12,KCH20A10,FCQS30A065,AME01FA60,MP01EA03,MP01EA06,K44TD200P160AAA,K05TA200P160AAA,VSHS15A08,PGH50N16,FSU05A20,PCHMB400W12,PRHMB150W12,K64DT150P080AAA,MC05DA20,20CQA03L,PHT608AC,EA30QS04-F,20CFF60,PDMB400W6,EA60QC10,ME01FA40,K02TD100P080AAA,FCU10A20,K34HA400P080AAA,AMPP4RA60,FCF10A20,GCF06A20,KCU30A30,PC151FYN6C,K05HA150P160AAA,PGH100N16,PHT6016AC,NA05QSA035,K05DD250P160AAA,ME01FA60,NB10QSA035,AMVSG05A10,FCQS20A065,PT150KN16,GCQ30A04,NA05QSA045,PCHMB50W12,K34HA400P160AAA,PDMB400W12,MVST05A20,FCF10A40,GCQ30A06,PD250KN8A,KSF30A40B,K03TD100P160AAA,EA60QC04-F,PAH,KCU20A20,FSD20A90,UCQS20A045,K02HK030P080AAA,MVST05A15,PAT,PD150S16,FCQS10A045
MM1192半导体>收发器IC
描述- 本资料介绍了MM1192是一款集成了多种外部配置功能的收发器集成电路。该IC内置输入信号合成电路、用于驱动总线线的输出级和5V电源电路,支持单电源供电。采用AMI波形作为传输单元和接收单元的处理波形,具有强抗噪能力,即使在电话设备、安全设备、音频或视频设备、空调设备和各种其他设备通过长总线线连接时也能实现互通信。
型号- MM1192,MM1192XFBE
MITSUMI 传感器、元件和仪表产品选型指南
描述- 随着21世纪初期的临近,传感装置事业部(SDBU)正在酝酿下一阶段的发展和增长。身为美蓓亚三美株式会社的一员,SDBU的目标就是开发出在性能和可靠性方面都精益求精的产品,以满足和超越全球测量仪表市场的现有要求。
型号- BCL-1.5K-A,NS100A-2MP*-*132,PCHA-500N-575,ULA-100GR,F-5N-12T11W5-3,TMNR-ME,F-2-12T11W3-3,CSD-401,SCA-CMM1,NS10T系列,CBE1-U系列,C3B1-5T-NS,RCA-C3B1,LTS-500N,JT-1-35G0TXX,CMP1-5T,CSD-819C-31,FX-5-12T11W1,DSA-631,F-05W-12T11W03,FX-5-12T11W5,CB004-35K,FX-5-12T11W3,UTA-100GR,CB14-500K-21,TGE,TGI,CSA-522B,U3B1-200K-B,PSC-350,J-2-12TXXW3-3,NS100A-****-*-*132**,LSM-1K-B,CCACC010,CCP1系列,J-3-12TXXW3,DAS-406B,LTS-50N,FX-5-12T11W5-3,F-02W-12T11W3,CB004-10K,U2D1-25K,FR-5-12T11W3-3,SB-310,F-1S-12MT11W3,F-1S-12MT11W5,CBE1-5K-U,F-1S-12MT11W1,CB004-100K,NS100A-30MP*-*132,JS4-16-35D5TXX,FR-2-12T11W03,U3B1-20K-B,LSM-20K-B,SB-320,DB-307,U2S1-200K,CB004-45K,CC010-20T-S,CSD-891B,CMP1-500K,CBE1-100K-U,PCHS-500N-014,C2B1B,TGE-5KN,CB004-20K,F-5N-12T11W3-3,ULA,F-2-12T11W5-3,FCACC010系列,J-1-12F0TXX,TMOS系列,CSD-819C-07,F-5N-12T11W03,PRN系列,FX-2-12T11W10-3,ULA-20GR,CBE1-200K-U,UWV1,C2T1-A,J-8-12TXXW03,TMBN,CB14系列,UTA-200GR,CB17-3K-11,U2D1-20K,DML-802B,CHW-200N-001,CMP1-20T,TMHFB系列,U2D1-100K,TGI-50KN,TCP1,CSD-702,J-2-12D0TXX,TGE-500N,FX-5-12T11W3-3,CBE1系列,FCA-CMP1-S,DC002-NS,CB004-30K,TMD-100,TGI-250KN,J-2-12TXXW5-3,J-1-12TXXW10-3,CSA-503C,LSMS系列,BCL-A,LSM-2K-B,C2G1-10K-A,C2D1,CC010-30T-S,C3B1-NS系列,TSD-591,U2D1-10K,CMM1-500K,LSMS-20K,CSA-504S,FR-5-12T11W10-3,J-5-35F0TXX,TMOFB,TMNR系列,CC010-500K,CBC1,NS403B,TGI-200N,CSD-819C-15,TGE系列,CCP1-50K,LSM-10K-B,F-5N-12T11W5,PRN01,CCR1系列,PRN03,PRN02,CCACC010系列,F-5N-12T11W3,CSD-819C,TCP1A,J-3-12D5TXX,C3B1-300K-NS,FSA,CSD-912,CB17-2K-11,FCACC010-*B,FR-5-12T11W03,FSI,FCA-CMM1-S,J-5-12TXXW03,TMHFB,NS100系列,FSU,CCACBE1-S,CSD-904,CSD-903,CBE1,ULA-10GR,J-5-12TXXW3,NS413B,U2S1-250K,UL-2GR,C2B1B-500K,SCA-CMP1-S,LSMS-50K,C2B1B-1T,CSD-814B-74,CSD-814B-78,LSMS,CSD-814B-76,CSD-814B-77,J-02-12TXXW10-3,CSA-507C,JD-2-12D0TXX,PCH-500N-002,NS100A系列,U2S1,J-5-12TXXW3-3,CSD-814B-U,CB14-300K-21,CMM1-50K,CMP1-10T,TGE-250KN,JT-2A-12D5T11W5-3,F-2-12T11W03,C2G1-20K-A,J-5-12D0TXX,CBE1-20K-U,JS4-9C35B5TXX,C3B1-3T-NS,BCL-600GM-A,CBE1-10K-U,UTA,C2G1-30K-A,CB17-11,CB004-60K,CB17-1K-11,J-4-12TXXW3,TGE-1KN,NS100A-25MP*-*132,J-02-12C0TXX,J-3-12TXXW03,F-1S-12T11W10-3,U2S1-2T,FR-2-12T11W3,T3B1系列,UTA系列,FR-2-12T11W1,CSA-591,FR-2-12T11W5,C3B1-500K-NS,F-02W-12T11W03,PCH-500N-012,CCP1A系列,CSD-401-76,U2S1-1T,CSD-401-77,CBE1-10K,FR-2-12T11W3-3,TGI-100KN,NS30T,NS30T-*****-**,CB14-150K-21,U3B1-50K-B,C1W1M系列,CC010-500K-S,NS100A-50MP*-*132,TGI-500N,CSD-903-74,CSD-903-73,BCL-A系列,CB14-100K-21,CSD-903-76,J-5-12TXXW5-3,F-2-12T11W10-3,TMNR,C2B1B-2T,NS30T-*****,CB063,U2D1-50K,NS115P,CB14-250K-21,CCP1A,CBE1-100K,PRN0*-*****-**S*,F-8-12T11W03,NS100A-20MP*-*132,U3C1-B,CCP1-500K,NS100A-200KP*-*132,C2G1-A,CBE1-20K,CC010-10T-S,CC010-1T,C1W1M,STD,CC010-5T-S,CBE1-200K,NS100A-10MP*-*132,CWV1,TGE-100KN,CSD-701B,FCA-CCP1,CSD-814B-15,FCACC010-*BS,F-5N-12T11W10-3,J-1-35F0TXX,CC002,CCR1B系列,BCL-3K-A,CSD-903-15,CC010,CSD-903-07,C2B1B-200K,CBE1-U,CB17-11系列,PSD-704,J-1-12TXXW3-3,LSM-2T-B,JT-3-35F0TXX,FR-2-12T11W10-3,J-4-12D0TXX,CSD-912-76,CSD-912-74,CSD-912-73,CSA-561,FR-2-12T11W5-3,TGI-10KN,TMOS,CSD-912-70,UMM1,LSM-100K-B,U2D1-6K,NS10T,CB14-21系列,F-4-12T11W3,UTA-500GR,TGE-10KN,FX-2-12T11W5-3,J系列,U3B1-B,CCP1-1T,C3B1-1T-NS,CBE1-5K,U2D1系列,CCP1,F-02W-12T11W5-3,CCR1,J-05-12TXXW3,ULA系列,CCR1B,CC010-10T,LSM-500K-B,NS100A,CSD-581-74,J-1-12TXXW03,CCP1-2T,CCACC010-B,CSD-903-25,NS100,F-1S-12MT11W03,NS102,LSM-50K-B,PRC,CCS1,U2S1-500K,PRB,CCACC010-BS,CB14-21,U3B1-B系列,PRJ,CSD-892-73,PRO,PRN,DC002,CSD-815B,CSD-401-07,CSD-814B,C2G1-15K-A,PRN01系列,CC002-NS系列,CCP1-3T,J-02-12TXXW5-3,CMP1-250K,J-02-12TXXW3,J-1-12TXXW5-3,CMM1系列,F-3N-12T11W1,CSA-521,F-3N-12T11W3,C2G1-50K-A,F-3N-12T11W5,C3B1-200K-NS,CB004,CCP1-300K,CBE1-50K,CC010-3T-S,NS100A-1MP*-*132,BCL-300GM-A,RCA-C2B1B-S,C3B1-NS,C2G1-6K-A,B-307,F-05W-12T11W3,CSD-815B-73,CMM1-2T,PRN02系列,CSD-815B-74,CSD-401-25,CB14,CSD-815B-76,CCP1-5T,U2D1-3K,J-2-12TXXW03,T3B1,C3B1-2T-NS,NS100A-500KP*-*132,C2G1-A系列,CSD-814B-23,TGI-5KN,CSD-814B-24,J5-2-12D0TXX,CSD-814B-25,C2T1,CSD-814B-26,CMM1-1T,PCH-200N,J-8-12TXXW3,CSD-401-15,J-2-12TXXW5,J-2-12TXXW3,LTS-200N,CSD-912-07,NS30T系列,C2G1-25K-A,J-02-12TXXW03,CB004系列,PTHA-N00-007,CCP1-200K,CB17-600G-11,CC010-2T-S,CSD-592,J-02-12TXXW3-3,F-3N-12T11W03,F-1S-12T11W3-3,NS115P系列,BCL-1.2K-A,PTHA-S03-003,F-2-12T11W5,CSD-581-15,CCP1-20T,F-2-12T11W3,F-2-12T11W1,U2S1系列,PCHA-50N-400,U3B1-500K-B,C2D1系列,CSA-562B,CMP1系列,J-8-12D0TXX,DC002系列,F-8-12T11W3,UTA-2K,CSD-912-25,F系列,TMOFB系列,CC010-50T,C2B1B-250K,J-5-12TXXW10-3,B-304B,CMM1-100K,U3B1-100K-B,CSD-912-15,CMM1,LSM-500G-B,CB004S,CC002-NS,U3S1-NS系列,PTHA-C00-031,CCP1-100K,CMP1-2T,CC010-1T-S,CSD-815B-15,U2D1-15K,LSM-1T-B,F-4-12T11W03,U2D1,LSM-B,TGE-200N,C2B1B系列,J-05-12TXXW03,J-2B35D0TXX,CC010-20T,CMP1-1T,FX-5-12T11W10-3,C2G1-12K-A,CSD-815B-07,F-1S-12T11W5-3,CSD-819C-74,FX-2-12T11W3-3,UTA-1K,J-2-12TXXW10-3,ULA-50GR,NS100A-35MP*-*132,CB004-15K,FX-2-12T11W03,CC010-50T-S,CSD-819C-76,J-4-12TXXW03,F-02W-12T11W10-3,CC010-5T,C1W1M-S01,FR-5-12T11W3,CL-B,BCL-4.5K-A,FR-5-12T11W1,FCACC010,LSM-5K-B,U3B1-1T-B,J-05-12D0TXX,CC010系列,LSM-B系列,CMM1-200K,JD-4-12D0TXX,FR-5-12T11W5-3,FR-5-12T11W5,TGI-1KN,CMP1,U3S1
半导体RoHS(SGS)测试报告(SHAEC23018205801)
描述- 本报告为SGS-CSTC Standards Technical Services (Shanghai) Co., Ltd.出具,针对CHANGZHOU GALAXY CENTURY MICROELECTRONICS CO., LTD.提供的半导体样品进行RoHS指令测试。测试内容包括重金属(铅、镉、汞、六价铬等)和卤素(PBBs、PBDEs、DEHP等)的检测。结果显示,样品符合欧盟RoHS指令2015/863的要求。
日本厂商MITSUMI授权世强硬创代理压力/差压/风速传感器及连接器
MITSUMI主营产品包括压力传感器、差压传感器、风速传感器、温度传感器、HSD连接器、FAKRA 连接器、Mini Coaxial连接器等。
Semiconductor REACH(SGS)测试报告(SHAEC2204095801)
描述- 本报告为MICRODIODE ELECTRONICS (JIANGSU)CO.,LTD.提供的半导体样品的SVHC(高度关注物质)测试报告。报告显示,样品中检测到多种SVHC,包括铅氰胺、铅二硝酸盐、铅氧化物等,浓度均超过0.1%限值。测试依据欧洲化学品管理局(ECHA)发布的SVHC候选清单和WTO通知。报告建议客户根据REACH法规要求,提供足够的信息以确保安全使用,并可能需要准备安全数据表(SDS)。
How Do Semiconductor Fuse Links Protect Against Short-Circuit Conditions?
A semiconductor fuse link is a specialized electrical component that acts as a safety device, protecting electrical circuits from overcurrent and short-circuit conditions. Semiconductor fuse links use advanced semiconductor technology to rapidly interrupt the flow of current, preventing damage to sensitive equipment and ensuring the safety of your operations.
证书IXYS Semiconductor GmbH ISO 9001:2015证书附件注册号001947 QM15 IXYS Semiconductor GmbH
描述- IXYS Semiconductor GmbH及其下属单位已实施并维持质量管理体系,涵盖半导体器件、组件和直接键合基板的设计、生产和销售。通过DQS GmbH的审核,该体系符合ISO 9001:2015标准要求。证书有效期为2018年8月14日至2021年8月13日。
Adcol and Sekorm Announced a DistributorAgreement That Brings Semiconductor Dehumidifiers, Semiconductor Air Conditioners and More
Adcol is a domestic manufacturer with more than 50 years of experience in semiconductor refrigeration and heat conduction. Adcol and Sekorm announced a distributor agreement that brings semiconductor dehumidifiers, semiconductor air conditioners and more.
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