Abstract:
For providing a tactile sensation regardless of an input position of a user when receiving a pressure at which the tactile sensation is to be provided, The tactile sensation providing apparatus according to the present invention includes: a load detection unit 12 configured to detect a different pressure load depending on a pushed position even when an object presses by a uniform pressure a touch face of a touch sensor 11 to detect a touch input; a tactile sensation providing unit 13 which provides the tactile sensation to the object pressing the touch face of the touch sensor 11; and a control unit 16 which controls according to the pushed position on the touch face such that the tactile sensation providing unit 13 provides the tactile sensation to the pressing object when the pressing object, applying the uniform pressure, presses any position on the touch face for providing the tactile sensation.
Abstract:
A vibration motor having an eccentric weight 20 includes a tubular metal holder frame 30 with a flat bottom part 31 and a wall surface 32, the flat bottom part 31 having an inner projection 31f with a bottom-up recess part W, the upper wall surface 32 being domed; a pair of external terminal pieces 14 and 15 attached to a plastic end cap 13, wherein the plastic end cap 13 has spacer projections 13b and 13c inserted between the motor case 11 and the flat bottom part 31.
Abstract:
A radio communication terminal (AT) includes a communication section for performing a radio communication with a base station, and a controller. Before performing a handoff from a first base station to another peripheral base station while receiving service information delivered by the first base station, the controller checks a progress of sequence of the service information being received. Then, the controller performs a handoff control depending on the check result. When it is determined that reception of a packet having the sequence number being received is to be completed within a certain time as a result of checking the progress, the controller suspends the handoff until the reception of the packet is completed.
Abstract:
A virtual image eliminating apparatus and its method at the time when the position of a radio wave transmitting source is measured, in which the virtual image is eliminated automatically with high reliability, are provided. The virtual image eliminating apparatus provides plural bearing measuring instruments and a controlling and displaying instrument. The controlling and displaying instrument receives the measured results from the plural bearing measuring instruments. The controlling and displaying instrument calculates estimated radio wave transmitting intensity in all of the combinations of bearing lines, which formed an intersection point. And the controlling and displaying instrument judges whether each of the intersection points is a real image or a virtual image based on the difference between the estimated radio wave transmitting intensity in one combination of the bearing lines formed the intersection point. And the controlling and displaying instrument displays the bearing lines and the real image and the virtual image.
Abstract:
A wireless communication terminal includes a measurement section that measures quality of a signal transmitted from a base station, a determination section that determines whether or not handoff is to be performed based on a measurement result of the measurement section and a criterion of the determination of the handoff, and handoff section that performs the handoff based on a determination result of the determination section, wherein the determination section changes the criterion of the determination of the handoff when the handoff section performs the handoff in a predetermined repetition pattern.
Abstract:
Dual chips exchange a signal indicating a pressing load detected for providing the tactile sensation such that application process based on the pressing load is performed. A tactile sensation providing apparatus according to the present invention includes a touch sensor, a load detection unit configured to detect the pressing load on the touch sensor for providing the tactile sensation, a tactile sensation providing unit configured to vibrate a touch face of the touch sensor, a tactile sensation provision control unit configured to control drive of the tactile sensation providing unit, and a main control unit configured to control an application. The tactile sensation provision control unit transmits the pressing load to the main control unit. The main control unit, based on an output of the touch sensor and the pressing load received from the tactile sensation provision control unit, performs the application process.
Abstract:
The present invention provides a hat-type steel sheet pile whose economic efficiency, workability, and integrity are all optimized. In the hat-type steel sheet pile according to the present invention, web portions are continuously formed at both ends of an upper flange portion, and lower flange portions are formed at respective end portions of a pair of web portions. A relationship among geometrical moment of inertia I per 1 m of wall width (cm4/m) when forming a steel sheet pile wall, weight per unit wall area W (kg/m2), penetration resistance R, and web angle θ (°) is set to satisfy one of several expression groups.
Abstract translation:本发明提供一种经济效率,可加工性和完整性全部优化的帽型钢板桩。 在本发明的帽型钢板桩中,在上凸缘部的两端连续地形成腹板部,在一对腹板部的各端部形成有下凸缘部。 形成钢板桩壁时每1米壁宽(cm4 / m)的几何惯性矩I之间的关系,每单位壁面积W(kg / m 2),穿透阻力R和腹板角度& (°)被设定为满足几个表达组之一。
Abstract:
Dual chips exchange a signal indicating a pressing load detected for providing the tactile sensation such that application process based on the pressing load is performed. A tactile sensation providing apparatus according to the present invention includes a touch sensor, a load detection unit configured to detect the pressing load on the touch sensor for providing the tactile sensation, a tactile sensation providing unit configured to vibrate a touch face of the touch sensor, a tactile sensation provision control unit configured to control drive of the tactile sensation providing unit, and a main control unit configured to control an application. The tactile sensation provision control unit transmits the pressing load to the main control unit. The main control unit, based on an output of the touch sensor and the pressing load received from the tactile sensation provision control unit, performs the application process.
Abstract:
A tactile sensation is provided without exchanging a signal indicating a pressing load between a dual chip. A tactile sensation providing apparatus includes a touch sensor, a load detection unit for detecting a pressing load on the sensor, a tactile sensation providing unit for vibrating a face of the sensor, a tactile sensation provision control unit for controlling drive of the providing unit, and a main control unit for controlling an operation of the provision control unit based on an output of the sensor. The main control unit determines whether a predetermined area of the touch face is touched based on the output of the sensor and, when the area is touched, transmits a tactile sensation control instruction to the provision control unit. The provision control unit, upon receiving the instruction from the main control unit, controls drive of the providing unit based on the instruction and the pressing load.
Abstract:
By dual chips exchanging a signal indicating a pressing load detected for providing the tactile sensation, application process based thereon is performed. A tactile sensation providing apparatus includes a touch sensor, a load detection unit for detecting the pressing load on the sensor for providing the sensation, a tactile sensation providing unit for vibrating a surface the sensor, a provision control unit for controlling drive of the providing unit, and a main control unit for controlling an application. The main control unit determines whether a predetermined area of the surface is touched based on an output of the sensor and, when touched, transmits an instruction to the provision control unit. The provision control unit, upon receiving the instruction from the main control unit, detects the pressing load and transmits the detected load to the main control unit. The main control unit, based on the load, performs the application process.