Technical Library: a3 (Page 1 of 1)

Imbedded Component/Die Technology (IC/DT®)

Technical Library | 2009-02-26 03:25:09.0

STI has developed a patented1 packaging technology coined Imbedded Component/Die Technology (IC/DT®) to integrate multiple subsystems within an electronics assembly into a single, advanced, high-density assembly. Imbedded Component/Die Technology (IC/DT®) enables the manufacturing and assembly of smaller, lighter, and more technologically advanced high density CCAs through imbedding unpackaged components in a 3-D laminate substrate with integrated thermal management

STI Electronics

Enhancing Thermal Performance in Embedded Computing for Ruggedized Military and Avionics Applications.

Technical Library | 2014-07-17 17:01:10.0

Embedded computing systems used in many military and avionics applications are trending toward higher heat fluxes, and as a result performance is being hindered by thermal limitations. This is intensified by the high ambient conditions experience by today’s modern warfighter. In many applications liquid cooling is replacing air flow through chassis for both thermal and environmental benefits(...) This paper outlines a series of passive thermal improvements which are easily integrated into legacy, or existing, systems and can provide a 3-4x increase in dissipated power.

Advanced Cooling Technologies

PU515A 3BSE032401R1 Control board

Technical Library | 2024-08-27 06:17:52.0

销售经理 电子邮件 WhatsApp Skype 乌娜 sales5@mooreplc.com 86-15359408275  +8615359408275 品牌/制造商: ◤ PU515A 3BSE032401R1 ◥ PU515A 的特性: MB300 双运河:使用 MB300 协议进行通信的运河,可能会连接到其他控制系统。 密码:PU515A 的最终目的是实现 PU515、PU518 或 PU519 的前模型。 由于 USB 端口:RTA 与其他表的区别,PU515A 不包括 USB 端口。 为什么选择我们 1.100%原装产品,100%质量保证,价格更具竞争力。 如果您发现假货,请立即联系我们!我们承担运费!我们将免费为您寄送新产品! 2.周到的服务 专业的售后服务。 3. 快速发货 我们有大量库存,可以立即发货。 推荐型号 本利内华达 330500-01-04 普罗软件 MVI94-MCM 本利内华达 330780-50-00 霍尼韦尔 05701-A-0301 本利内华达 330104-00-06-10-02-00 霍尼韦尔 FC-电源-UNI2450U 本利内华达 9571-50 普罗软件 MVI46-MNET 本利内华达 177230-00-01-05 霍尼韦尔 05704-A-0135 本利内华达 330180-51-CN ICS T8110B 通用电气 IC697ACC701 伍德沃德 8273-1011 本利内华达 136188-02 ABB HIEE300867R0001 PPB022 DE01 通用电气 IC695ETM001 特利科奈斯 3603E 易宝 PR6424/000-030 CON021 霍尼韦尔 51198685-100 SPS5710-2-LF 霍尼韦尔 CC-TUIO31 51306875-176 通用电气 DS200PTCTG1BAA 福克斯堡 FBM201 P0914SQ 通用电气 UR8LH 通用电气 IS210HSLAH1ADE 霍尼韦尔 CC-PAIH02 51405038-375 霍尼韦尔 51198947-100F 易宝 PR9268/200-000

Moore Automation LIMITED

Fabrication Of Solderable Intense Pulsed Light Sintered Hybrid Copper For Flexible Conductive Electrodes

Technical Library | 2021-11-03 17:05:39.0

Additively printed circuits provide advantages in reduced waste, rapid prototyping, and versatile flexible substrate choices relative to conventional circuit printing. Copper (Cu) based inks along with intense pulsed light (IPL) sintering can be used in additive circuit printing. However, IPL sintered Cu typically suffer from poor solderability due to high roughness and porosity. To address this, hybrid Cu ink which consists of Cu precursor/nanoparticle was formulated to seed Cu species and fill voids in the sintered structure. Nickel (Ni) electroplating was utilized to further improve surface solderability. Simulations were performed at various electroplating conditions and Cu cathode surface roughness using the multi-physics finite element method. By utilizing a mask during IPL sintering, conductivity was induced in exposed regions; this was utilized to achieve selective Ni-electroplating. Surface morphology and cross section analysis of the electrodes were observed through scanning electron microscopy and a 3D optical profilometer. Energy dispersive X-ray spectroscopy analysis was conducted to investigate changes in surface compositions. ASTM D3359 adhesion testing was performed to examine the adhesion between the electrode and substrate. Solder-electrode shear tests were investigated with a tensile tester to observe the shear strength between solder and electrodes. By utilizing Cu precursors and novel multifaceted approach of IPL sintering, a robust and solderable Ni electroplated conductive Cu printed electrode was achieved.

Hanyang University

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