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    • 2. 发明授权
    • Image forming apparatus maintaining clean back surface of recording material
    • 保持记录材料的干净表面的图像形成装置
    • US08682185B2
    • 2014-03-25
    • US13218842
    • 2011-08-26
    • Yoshihiro AndouMasayuki YamadaLin Lu
    • Yoshihiro AndouMasayuki YamadaLin Lu
    • G03G15/00
    • G03G15/5058G03G15/0173G03G15/161G03G21/0005
    • An image forming apparatus includes: an image forming unit having an image supporting body and a developing unit; a transfer roller; a transfer belt having a conveying surface onto which a recording material is placed; a cleaning unit; a density detection unit detecting toner density on the conveying surface; a calibration processing unit that executes a calibration process; and a control unit that: in a state in which the calibration process has been executed, instructs the image forming unit to adjust the toner density of the toner image formed on the image supporting body based on the toner density detected by the density detection unit; and in a state in which the calibration process has not been executed, switches the cleaning unit to the cleaning state or maintains the cleaning unit in the non-cleaning state based on the toner density detected by the density detection unit.
    • 图像形成装置包括:图像形成单元,具有图像支撑体和显影单元; 转印辊; 具有输送表面的转印带,记录材料放置在该输送表面上; 清洁单元; 密度检测单元,检测所述输送表面上的调色剂浓度; 执行校准处理的校准处理单元; 以及控制单元,其在执行所述校准处理的状态下,指示所述图像形成单元基于由所述浓度检测单元检测到的调色剂浓度来调整形成在所述图像保持体上的调色剂图像的调色剂浓度; 并且在尚未执行校准处理的状态下,基于由浓度检测单元检测到的调色剂浓度,将清洁单元切换到清洁状态或将清洁单元维持在非清洁状态。
    • 5. 发明授权
    • Cam driving mechanism, and belt transporting apparatus and image forming apparatus therewith
    • 凸轮驱动机构,带传送装置和图像形成装置
    • US08634750B2
    • 2014-01-21
    • US13116109
    • 2011-05-26
    • Terumitsu NosoYoshitaka TokoroLin Lu
    • Terumitsu NosoYoshitaka TokoroLin Lu
    • G03G15/01
    • G03G21/1647G03G15/1615G03G2215/0132G03G2221/1642G03G2221/1657Y10T74/18568
    • A cam driving mechanism has: a cam; a motor which drives the cam; a gear train which transmits, while reducing the speed of, the output of the motor to the cam; a pulse disk which is formed integrally with a gear coupled in the gear train and in which a plurality of slits are formed at equal intervals; a home position detecting member which is arranged coaxially with the pulse disk so as to be rotatable independently thereof and which, by meshing with another gear coupled in the gear train, rotates at a lower rotation speed than the pulse disk; and a cam position detecting sensor which has a detecting portion including a light-emitting portion and a light-receiving portion, the cam position detecting sensor detecting the amount of driving of the cam based on the number of slits of the pulse disk that have passed through the detecting portion, the cam position detecting sensor detecting the home position of the cam based on the timing with which the home position detecting member shields the detecting portion.
    • 凸轮驱动机构具有:凸轮; 驱动凸轮的马达; 齿轮串,同时将马达的输出降低到凸轮; 与齿轮组合的齿轮一体地形成的脉冲盘,其中以等间隔形成有多个狭缝; 原位置检测构件,其与脉冲盘同轴地布置,以便能够独立地旋转,并且通过与联接在齿轮系中的另一个齿轮啮合,以比脉冲盘更低的旋转速度旋转; 以及具有包括发光部和受光部的检测部的凸轮位置检测传感器,所述凸轮位置检测传感器基于已经通过的脉冲盘的狭缝数来检测所述凸轮的驱动量 通过检测部分,凸轮位置检测传感器基于原位检测构件屏蔽检测部分的定时检测凸轮的原始位置。
    • 6. 发明申请
    • CAM DRIVING MECHANISM, AND BELT TRANSPORTING APPARATUS AND IMAGE FORMING APPARATUS THEREWITH
    • CAM驱动机构,带式运输装置和图像形成装置
    • US20110293336A1
    • 2011-12-01
    • US13116109
    • 2011-05-26
    • Terumitsu NosoYoshitaka TokoroLin Lu
    • Terumitsu NosoYoshitaka TokoroLin Lu
    • G03G15/01F16H25/16B65G23/44G03G15/16
    • G03G21/1647G03G15/1615G03G2215/0132G03G2221/1642G03G2221/1657Y10T74/18568
    • A cam driving mechanism has: a cam; a motor which drives the cam; a gear train which transmits, while reducing the speed of, the output of the motor to the cam; a pulse disk which is formed integrally with a gear coupled in the gear train and in which a plurality of slits are formed at equal intervals; a home position detecting member which is arranged coaxially with the pulse disk so as to be rotatable independently thereof and which, by meshing with another gear coupled in the gear train, rotates at a lower rotation speed than the pulse disk; and a cam position detecting sensor which has a detecting portion including a light-emitting portion and a light-receiving portion, the cam position detecting sensor detecting the amount of driving of the cam based on the number of slits of the pulse disk that have passed through the detecting portion, the cam position detecting sensor detecting the home position of the cam based on the timing with which the home position detecting member shields the detecting portion.
    • 凸轮驱动机构具有:凸轮; 驱动凸轮的马达; 齿轮串,同时将马达的输出降低到凸轮; 与齿轮组合的齿轮一体地形成的脉冲盘,其中以等间隔形成有多个狭缝; 原位置检测构件,其与脉冲盘同轴地布置,以便能够独立地旋转,并且通过与联接在齿轮系中的另一个齿轮啮合,以比脉冲盘更低的旋转速度旋转; 以及具有包括发光部和受光部的检测部的凸轮位置检测传感器,所述凸轮位置检测传感器基于已经通过的脉冲盘的狭缝数来检测所述凸轮的驱动量 通过检测部分,凸轮位置检测传感器基于原位检测构件屏蔽检测部分的定时检测凸轮的原始位置。
    • 7. 发明申请
    • Apparatus, system, and method for electrostatic discharge protection
    • 静电放电保护装置,系统及方法
    • US20060279887A1
    • 2006-12-14
    • US11150559
    • 2005-06-10
    • Lin LuAndrew Poynot
    • Lin LuAndrew Poynot
    • H02H9/00
    • H05K9/0067H01H2239/008H04M1/23H05K1/0256H05K1/0259
    • An apparatus, system, and method provide electrostatic discharge (ESD) protection in electronic devices by guiding electrostatic charges to a ground through ESD channels within electrical insulation sheet. The ESD channels are positioned within the electrical insulation sheet to provide electrical paths to ground having a lower impedance than electrical paths to protected areas covered by the electrical insulation sheet. Accordingly, an ESD follows the path of least resistance safely to ground rather than to a critical component within the electronic device. In the exemplary embodiment, the ESD channels are openings in a dome contact layer of a keypad where the openings are positioned over one or more ground areas of a printed circuit board (PCB) and the insulting material of the dome contact layer covers areas of the PCB that are protected from ESD. By implementing dedicated GPIO lines, grounded metal domes cover the signal pads in the target discharge area to protected the GPIO lines from ESD. Device components are protected from ESD without additional ports or insulation.
    • 设备,系统和方法通过在电绝缘片内通过ESD通道将静电电荷引导到地面来在电子设备中提供静电放电(ESD)保护。 ESD通道位于电绝缘片内,以提供具有比电绝缘片覆盖的保护区的电路的阻抗低的接地电路。 因此,ESD将安全地遵循最小电阻的路径接地,而不是电子设备内的关键部件。 在示例性实施例中,ESD通道是键盘的圆顶接触层中的开口,其中开口位于印刷电路板(PCB)的一个或多个接地区域上方,并且圆顶接触层的绝缘材料覆盖 受ESD保护的PCB。 通过实现专用GPIO线,接地金属圆顶覆盖目标放电区域中的信号焊盘,以保护GPIO线免受ESD。 器件组件免受ESD保护,无需附加端口或绝缘。
    • 8. 发明申请
    • IMAGE FORMING APPARATUS
    • 图像形成装置
    • US20120051769A1
    • 2012-03-01
    • US13218842
    • 2011-08-26
    • Yoshihiro AndouMasayuki YamadaLin Lu
    • Yoshihiro AndouMasayuki YamadaLin Lu
    • G03G15/00G03G15/16
    • G03G15/5058G03G15/0173G03G15/161G03G21/0005
    • An image forming apparatus includes: an image forming unit having an image supporting body and a developing unit; a transfer roller; a transfer belt having a conveying surface onto which a recording material is placed; a cleaning unit; a density detection unit detecting toner density on the conveying surface; a calibration processing unit that executes a calibration process; and a control unit that: in a state in which the calibration process has been executed, instructs the image forming unit to adjust the toner density of the toner image formed on the image supporting body based on the toner density detected by the density detection unit; and in a state in which the calibration process has not been executed, switches the cleaning unit to the cleaning state or maintains the cleaning unit in the non-cleaning state based on the toner density detected by the density detection unit.
    • 图像形成装置包括:图像形成单元,具有图像支撑体和显影单元; 转印辊; 具有输送表面的转印带,记录材料放置在该输送表面上; 清洁单元; 密度检测单元,检测所述输送表面上的调色剂浓度; 执行校准处理的校准处理单元; 以及控制单元,其在执行所述校准处理的状态下,指示所述图像形成单元基于由所述浓度检测单元检测到的调色剂浓度来调整形成在所述图像保持体上的调色剂图像的调色剂浓度; 并且在尚未执行校准处理的状态下,基于由浓度检测单元检测到的调色剂浓度,将清洁单元切换到清洁状态或将清洁单元维持在非清洁状态。
    • 9. 发明申请
    • Stack-up configuration for a wireless communication device
    • 无线通信设备的堆叠配置
    • US20060233356A1
    • 2006-10-19
    • US11014541
    • 2004-12-15
    • Lin LuSidney Sitachitt
    • Lin LuSidney Sitachitt
    • H04M1/00
    • H04B1/3838
    • A stack-up configuration for a wireless communication device includes a display and keypad on a front face of a housing for the device. A battery for providing power to the components of the wireless communication device is stacked behind the display. A circuit board that holds processing and RF circuitry for the wireless communication device is stacked behind the battery, with a top surface of the circuit board adjacent the battery. Noisy circuitry on the circuit board is covered by shielding on a back surface of the circuit board. An external or internal antenna is connected to the circuit board at a feed point. The antenna in one embodiment of the invention is stacked behind the circuit board, that is, between a back face of the housing and the back surface of the circuit board. The location of the battery between the display and the circuit board lowers the amount of energy radiating from the wireless communications device in the concerned near field range.
    • 用于无线通信设备的堆叠配置包括在用于设备的外壳的前面上的显示器和小键盘。 用于向无线通信设备的组件提供电力的电池堆叠在显示器的后面。 保持用于无线通信设备的处理和RF电路的电路板堆叠在电池后面,电路板的顶表面与电池相邻。 电路板上的嘈杂电路被电路板背面的屏蔽覆盖。 外部或内部天线在馈电点连接到电路板。 本发明的一个实施例中的天线堆叠在电路板之后,即壳体的背面和电路板的后表面之间。 电池在显示器和电路板之间的位置降低了在相关近场范围内从无线通信设备辐射的能量的量。
    • 10. 发明授权
    • Apparatus, system, and method for electrostatic discharge protection
    • 静电放电保护装置,系统及方法
    • US08908347B2
    • 2014-12-09
    • US12493945
    • 2009-06-29
    • Lin LuAndrew Stephen Poynot
    • Lin LuAndrew Stephen Poynot
    • H02H3/22H05K1/02H05K9/00H04M1/23
    • H05K9/0067H01H2239/008H04M1/23H05K1/0256H05K1/0259
    • An apparatus, system, and method provide electrostatic discharge (ESD) protection in electronic devices. The ESD channels are positioned within the electrical insulation sheet to provide electrical paths to ground having a lower impedance than electrical paths to protected areas covered by the electrical insulation sheet. An ESD follows the path of least resistance safely to ground rather than to a critical component within the electronic device. The ESD channels are openings in a dome contact layer of a keypad where the openings are positioned over one or more ground areas of a printed circuit board (PCB) and the insulating material of the dome contact layer covers areas of the PCB that are protected from ESD. By implementing dedicated GPIO lines, grounded metal domes cover the signal pads in the target discharge area to protected the GPIO lines from ESD. Device components are protected from ESD without additional ports or insulation.
    • 一种装置,系统和方法在电子设备中提供静电放电(ESD)保护。 ESD通道位于电绝缘片内,以提供具有比电绝缘片覆盖的保护区的电路的阻抗低的接地电路。 ESD遵循安全地接地的最小电阻的路径,而不是电子设备内的关键部件。 ESD通道是键盘的圆顶接触层中的开口,其中开口位于印刷电路板(PCB)的一个或多个接地区域上,并且圆顶接触层的绝缘材料覆盖PCB的保护区域 ESD。 通过实现专用GPIO线,接地金属圆顶覆盖目标放电区域中的信号焊盘,以保护GPIO线免受ESD。 器件组件免受ESD保护,无需附加端口或绝缘。