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    • 5. 发明申请
    • Surface contact card holder
    • 表面接触卡夹
    • US20070001698A1
    • 2007-01-04
    • US11398024
    • 2006-04-04
    • Rui-Hao ChenZhong-Shu QinHsiao-Hua TuChia-Hua Chen
    • Rui-Hao ChenZhong-Shu QinHsiao-Hua TuChia-Hua Chen
    • G01R31/02
    • H04B1/3816H01R33/97H04M2250/14H05K5/026
    • A surface contact card holder (200) for an electronic device includes a latching portion (30) and an elastic frame (40). The electronic device has a device body (10) with a receiving groove (20) defined therein for receiving a surface contact card (50) therein and the receiving groove has a card entrance (1002). The latching portion (30) is located adjacent to the card entrance of the receiving groove and the elastic frame is configured for attaching to the device body. The elastic frame has a first frame end (402) located adjacent to the card entrance, and an opposite second frame end (4013). The first frame end has a pressing portion configured for pressing the surface card against the body. The second frame end and the latching portion are configured for sandwiching the surface card therebetween.
    • 一种用于电子设备的表面接触卡夹(200)包括一个闩锁部分(30)和一个弹性框架(40)。 该电子设备具有一个其中限定有用于在其中接收表面接触卡(50)的接收槽(20)的设备主体(10),并且接收槽具有卡入口(1002)。 闩锁部分(30)位于接收槽的卡入口附近,并且弹性框架构造成用于附接到装置主体。 弹性框架具有邻近卡入口定位的第一框架端(402)和相对的第二框架端(4013)。 第一框架端部具有被配置为将表面卡片压靠在主体上的按压部分。 第二框架端和闩锁部分构造成将表面卡夹在其间。
    • 6. 发明申请
    • Battery cover latching assembly for portable electronic device
    • 便携式电子设备的电池盖闩锁组件
    • US20060292439A1
    • 2006-12-28
    • US11411587
    • 2006-04-26
    • Zhou-Quan ZuoChia-Hua Chen
    • Zhou-Quan ZuoChia-Hua Chen
    • H01M2/10H05K5/00
    • H04M1/0262H01M2/1066
    • A battery cover latching assembly (50) is for a portable electronic device (100) including a housing (20), a first cover (10) configured for attaching to a first side of the housing, and a second cover (30) configured for attaching to a second side of the housing. The battery cover latching assembly includes a locking portion (114), a resisting portion (342), and a latch (40). The locking portion is formed on the first cover. The resisting portion is formed on the second cover. The latch is attached to the housing and abutting the resisting portion. The latch includes an engaging portion (44) and a button portion (42). The engaging portion is engageable with the locking portion so as to lock the first cover and the housing with each other. The button portion is movable so as to disengage the engaging portion from the locking portion, thereby unlocking the first cover from the housing.
    • 电池盖闭锁组件(50)用于便携式电子设备(100),该便携式电子设备包括壳体(20),被配置为附接到壳体的第一侧的第一盖(10)和第二盖(30) 附接到壳体的第二侧。 电池盖闩锁组件包括锁定部分(114),阻力部分(342)和闩锁(40)。 锁定部分形成在第一盖上。 阻挡部分形成在第二盖上。 闩锁附接到壳体并抵靠抵抗部分。 闩锁包括接合部分(44)和按钮部分(42)。 接合部可以与锁定部接合,以便将第一盖和壳体彼此锁定。 按钮部分是可移动的,以使接合部分与锁定部分脱开,从而将第一盖从壳体解锁。
    • 8. 发明申请
    • Hinge mechanism for foldable electronic device
    • 可折叠电子装置的铰链机构
    • US20060265838A1
    • 2006-11-30
    • US11391873
    • 2006-03-28
    • Chao DuanChia-Hua Chen
    • Chao DuanChia-Hua Chen
    • E05D11/10
    • H04M1/0216E05F1/1223E05Y2201/638E05Y2900/606Y10T16/537Y10T16/5387Y10T16/540243Y10T16/540255
    • A hinge mechanism includes a shaft (1), a cam follower (12), a cam (2), an antifriction member (3), a washer (4) and an elastic member (5). The cam follower is fixed relative to the shaft and has a cam follower surface. The cam has a cam surface (24) and a cam hole defined therein. The cam is rotatable relative to the cam follower. The shaft runs through the cam, the washer and the elastic member, in turn. The antifriction member has one end touching the cam and an opposite end touching the washer. The cam surface abuts against the cam follower surface due to the elastic force of the elastic member. As the friction coefficient between the antifriction member and washer is smaller than that between the cam and the washer, the hinge mechanism generates a smaller friction therebetween, so the waste of energy is very small.
    • 铰链机构包括轴(1),凸轮从动件(12),凸轮(2),减摩构件(3),垫圈(4)和弹性构件(5)。 凸轮从动件相对于轴固定,并具有凸轮从动表面。 凸轮具有凸轮表面(24)和限定在其中的凸轮孔。 凸轮可相对于凸轮从动件旋转。 轴依次穿过凸轮,垫圈和弹性构件。 减摩构件的一端接触凸轮,相对端接触垫圈。 由于弹性构件的弹力,凸轮表面与凸轮从动件表面抵接。 由于减摩构件和垫圈之间的摩擦系数小于凸轮和垫圈之间的摩擦系数,所以铰链机构之间产生较小的摩擦力,因此能量的浪费非常小。