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    • 1. 发明授权
    • Semiconductor device sealed with resin, and its manufacture
    • 半导体器件用树脂密封,其制造
    • US6150194A
    • 2000-11-21
    • US117551
    • 1998-07-30
    • Noboru SakaguchiYoshinori MiyajimaToru Hizume
    • Noboru SakaguchiYoshinori MiyajimaToru Hizume
    • H01L23/31H01L23/498H01L21/44H01L21/48H01L21/50
    • H01L23/3107H01L23/3114H01L23/49816H01L2224/50H01L2924/3025
    • A semiconductor device is provided which is capable of improving the productivity, the reliably, and the shielding of exposed parts such as leads or others and preventing chipping. The semiconductor device comprises a semiconductor chip 10, an insulating member 20 adhered onto an electrode terminal-forming surface 10a of a semiconductor chip 10, a circuit pattern 30 having at one end a land 32 to be connected to an external connection terminal, provided on the insulating member 20, and at the other end a lead 34 to be connected to an electrode terminal 12, a cover member 52 having an outer size larger than that of the semiconductor chip 10 to cover not only the electrode terminal-forming surface 10a and the lead 34 but also the outer edge of the semiconductor chip 10, and a resin shield 50 formed by filling a resinous sealant into a gap between the electrode terminal-forming surface 10a and the cover member 52 and curing the same, which shields the electrode terminal-forming surface 10a, the lead 34 and a side surface of the semiconductor chip 10.
    • PCT No.PCT / JP97 / 04450 Sec。 371日期:1998年7月30日 102(e)日期1998年7月30日PCT 1997年12月4日PCT PCT。 公开号WO98 / 25302 日期1998年6月11日提供了一种能够提高生产率,可靠地以及诸如引线等暴露部件的屏蔽并防止碎裂的半导体器件。 半导体器件包括半导体芯片10,粘合到半导体芯片10的电极端子形成表面10a上的绝缘构件20,电路图案30,其一端具有连接到外部连接端子的焊盘32,设置在外部连接端子 绝缘构件20,另一端连接到电极端子12的引线34,具有比半导体芯片10的外形尺寸大的外壳尺寸的盖构件52,以不仅覆盖电极端子形成表面10a和 引线34以及半导体芯片10的外边缘以及通过将树脂密封剂填充到电极端子形成表面10a和盖构件52之间的间隙中并使其固化而形成的树脂屏蔽件50,其屏蔽电极 端子形成表面10a,引线34和半导体芯片10的侧表面。
    • 2. 发明授权
    • Resin-shield type semiconductor device
    • 树脂屏蔽型半导体器件
    • US06285087B1
    • 2001-09-04
    • US09557292
    • 2000-04-25
    • Noboru SakaguchiYoshinori MiyajimaToru Hizume
    • Noboru SakaguchiYoshinori MiyajimaToru Hizume
    • H01L2328
    • H01L23/3107H01L23/3114H01L23/49816H01L2224/50H01L2924/3025
    • A semiconductor device is provided which is capable of improving the productivity, the reliably, and the shielding of exposed parts such as leads or others and preventing chipping. The semiconductor device comprises a semiconductor chip 10, an insulating member 20 adhered onto an electrode terminal-forming surface 10a of a semiconductor chip 10, a circuit pattern 30 having at one end a land 32 to be connected to an external connection terminal, provided on the insulating member 20, and at the other end a lead 34 to be connected to an electrode terminal 12, a cover member 52 having an outer size larger than that of the semiconductor chip 10 to cover not only the electrode terminal-forming surface 10a and the lead 34 but also the outer edge of the semiconductor chip 10, and a resin shield 50 formed by filling a resinous sealant into a gap between the electrode terminal-forming surface 10a and the cover member 52 and curing the same, which shields the electrode terminal-forming surface 10a, the lead 34 and a side surface of the semiconductor chip 10.
    • 提供一种半导体器件,其能够提高生产率,可靠地以及诸如导线等暴露部件的屏蔽以及防止碎裂。 半导体器件包括半导体芯片10,粘合到半导体芯片10的电极端子形成表面10a上的绝缘构件20,电路图案30,其一端具有连接到外部连接端子的焊盘32,设置在外部连接端子 绝缘构件20,另一端连接到电极端子12的引线34,具有比半导体芯片10的外形尺寸大的外壳尺寸的盖构件52,以不仅覆盖电极端子形成表面10a和 引线34以及半导体芯片10的外边缘以及通过将树脂密封剂填充到电极端子形成表面10a和盖构件52之间的间隙中并使其固化而形成的树脂屏蔽件50,其屏蔽电极 端子形成表面10a,引线34和半导体芯片10的侧表面。
    • 4. 发明授权
    • Wireless receiver, wireless receiving method, and recording medium
    • 无线接收器,无线接收方法和记录介质
    • US06643498B1
    • 2003-11-04
    • US09535728
    • 2000-03-27
    • Yoshinori Miyajima
    • Yoshinori Miyajima
    • H04B700
    • H04W52/52H03G3/3068
    • A signal processing unit 107 outputs a control parameter of a gain control operation-starting electric field strength value in the form of a signal CN1 in correspondence with data of transfer speed/number of FM level by referring to a memory 108. Then, this signal processing unit 107 controls setting of an Received Signal Strength Indicator 105. When an electric field strength of a signal reaches an operation-starting electric field strength value, the Received Signal Strength Indicator (RSSI) 105 changes a voltage of an output GC1 based upon the control parameter (signal CN1). A gain control circuit 106 changes a gain control amount in response to the output signal GC1 derived from the Received Signal Strength Indicator 105. As a consequence, the operation-starting electric field strength value of the AGC operation can be set under optimum condition in correspondence with the sort of signal.
    • 信号处理单元107通过参照存储器108,输出与传送速度/ FM电平数的数据对应的信号CN1形式的增益控制操作开始电场强度值的控制参数。然后,该信号 处理单元107控制接收信号强度指示器105的设置。当信号的电场强度达到操作启动电场强度值时,接收信号强度指示器(RSSI)105基于 控制参数(信号CN1)。 增益控制电路106响应于从接收信号强度指示器105导出的输出信号GC1改变增益控制量。结果,AGC操作的操作启动电场强度值可以在对应的最佳条件下设置 有一些信号。
    • 5. 发明授权
    • Radio receiver, radio receiving method, and recording medium
    • 无线电接收机,无线电接收方法和记录介质
    • US07103336B1
    • 2006-09-05
    • US09654274
    • 2000-09-01
    • Yoshinori MiyajimaAtsuhiko Hashigaya
    • Yoshinori MiyajimaAtsuhiko Hashigaya
    • H04B1/06H04L27/08
    • H04B1/1027H03G3/3052H03G2201/103H03G2201/202H03G2201/307H03G2201/706H04B17/318
    • The AGC threshold of electric intensity level is set by the signal processor portion 107 in response to the measured result of the error rate measuring circuit 109 that measures the error rate of the received signal, and the gain control operation of the gain control circuit 106 is caused to start when the electric field intensity detected by the field intensity detector 105 reaches the threshold of electric intensity level. Accordingly, the optimum AGC threshold of electric intensity level can be set to meet the radio wave situation in which the radio receiver, i.e., the receiving situation of the received signal and also the gain control of the gain controlling means can be achieved to optimize the signal quality of the received signal in the situation of either the IM characteristic or the electric field variation characteristic, e.g., under the environment of the strong electric field IM or the environment in which the electric field is changed strongly.
    • 响应于测量接收信号的误码率的误差率测量电路109的测量结果,由信号处理器部分107设置电强度电平的AGC阈值,并且增益控制电路106的增益控制操作是 当由场强检测器105检测到的电场强度达到电强度水平的阈值时开始启动。 因此,可以设置电强度级的最佳AGC阈值以满足无线电接收机的无线电波情况,即接收信号的接收状况,以及增益控制装置的增益控制可以实现, 在IM特性或电场变化特性的情况下,例如在强电场IM的环境或电场强烈变化的环境下,接收信号的信号质量。