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    • 4. 发明授权
    • Semiconductor arithmetic circuit
    • 半导体运算电路
    • US5917742A
    • 1999-06-29
    • US806744
    • 1997-02-27
    • Tadahiro OhmiMakoto ImaiKoji KotaniTadashi Shibata
    • Tadahiro OhmiMakoto ImaiKoji KotaniTadashi Shibata
    • G06F7/509G06F7/49G06F7/501G06G7/14H01L27/10H03K19/20H03M1/00G06G7/00G06F7/00
    • G06F7/49
    • A semiconductor arithmetic circuit which realizes multiple-item addition processing at high speed and with a small surface areas The semiconductor arithmetic circuit adds a plurality of data expressed in binary format which is provided with terminals for the simultaneous input of the plurality of data, a mechanism for conducting a batch addition operation with respect to all the bits of the plurality of data, and for generating an analog or multi-valued signal having a linear relationship with the results of this addition and a mechanism for converting the analog or multi-valued signal to a digital signal. The plurality of data comprise bit data signals, and 4 or more of these are subjected to batch addition. A plurality of bit groups including a plurality of connected bits are also subjected to batch addition.
    • 一种半导体运算电路,其以高速实现多项目相加处理并具有小的表面积半导体运算电路将多个以二进制格式表示的数据相加,该多个数据被提供有用于同时输入多个数据的终端, 用于针对所述多个数据的所有位执行批量添加操作,并且用于生成与该相加结果具有线性关系的模拟或多值信号以及用于转换模拟或多值信号的机制 到数字信号。 多个数据包括比特数据信号,其中4个或更多个进行批量添加。 包括多个连接的位的多个位组也被进行批量添加。
    • 8. 发明授权
    • Power module
    • 电源模块
    • US08254133B2
    • 2012-08-28
    • US12663813
    • 2008-06-12
    • Makoto Imai
    • Makoto Imai
    • H05K1/14
    • H01L25/072H01L23/04H01L23/473H01L24/48H01L25/16H01L2224/48091H01L2224/48108H01L2224/48157H01L2224/48464H01L2924/00014H01L2924/01079H01L2924/1305H01L2924/13055H01L2924/1815H01L2924/19041H01L2924/19107H01L2924/00H01L2224/45099H01L2224/45015H01L2924/207
    • Provided is a power module capable of welding a snubber capacitor without causing melting damage to a resin housing by welding heat. When leads of a snubber capacitor are respectively welded to upper surfaces of the specific portions of a P-pole bus bar and an N-pole bus bar, the welding heat generated at the specific portions of the P-pole bus bar and the N-pole bus bar is respectively radiated from openings, through which the lower surfaces of the specific portions of the P-pole bus bar and the N-pole bus bar are exposed. As a result, the snubber capacitor can be later appended by welding without causing melting damage to the resin housing due to the welding heat. During welding, a separate cooling head is inserted into the openings to forcibly cool the lower surfaces of the specific portions of the P-pole bus bar and the N-pole bus bar respectively, so that the melting damage to a resin housing can be more reliably avoided.
    • 提供了能够焊接缓冲电容器而不会通过焊接热而对树脂壳体造成熔融损伤的电力模块。 当缓冲电容器的引线分别焊接在P极母线和N极母线的特定部分的上表面时,在P极母线和N极母线的特定部分产生的焊接热, 极母线从开口分别辐射,P极母线和N极母线的特定部分的下表面露出。 结果,缓冲电容器可以随后通过焊接而附加,而不会由于焊接热而对树脂壳体造成熔融损坏。 在焊接过程中,将一个单独的冷却头插入开口,以分别强制地冷却P极汇流条和N极汇流条的特定部分的下表面,使得对树脂外壳的熔化损伤可以更多 可靠地避免。