Abstract:
본 발명은 정전용량형 터치 센서에 이용되는 도트 스페이서를 용이하게 설계하여 제조하는 방법 및 이를 이용하여 고감도를 가지는 정전용량형 터치 센서를 제조하는 방법에 관한 것이다. 하면에 상부전극이 형성된 상부필름, 상기 상부필름과 이격되어 배치되고 상면에 하부전극이 형성된 하부필름 및 상기 상부필름과 상기 하부필름의 이격된 공간에 형성되고 유전체(Dielectric Substance)로 이루어진 도트 스페이서(Dot Spacer)를 포함하는 정전용량형 터치 센서에 있어서, 본 발명의 일례와 관련된 정전용량형 터치 센서의 도트 스페이서의 형성방법은, 액상의 상기 유전체에 핀의 일부를 주입하는 제 1 단계, 상기 주입된 핀을 상기 액상의 유전체에서 추출하여 상기 핀의 일단에 상기 액상 유전체의 방울을 묻히는 제 2 단계, 상기 핀의 일단을 제 1 구역에 접촉하는 제 3 단계 및 상기 접촉된 핀을 상기 제 1 구역으로부터 떼어내면서 상기 액상 유전체의 방울을 상기 제 1 구역에 위치시키는 제 4 단계를 포함하되, 상기 제 1 구역은 상기 상부필름 또는 상기 하부필름의 적어도 일부이고, 상기 제 1 구역에 위치한 상기 액상 유전체의 방울로부터 상기 도트 스페이서가 형성될 수 있다.
Abstract:
The present invention relates to a haptic feedback producing device using electrostatic power, a control method thereof, and a manufacturing method of the haptic feedback producing device capable of effectively producing haptic feedbacks for users by producing the haptic feedbacks both in horizontal and vertical directions using frictional force and vibration generated by electrostatic power. According to an embodiment of the present invention, the haptic feedback producing device comprises: an upper film where an upper electrode is formed on a lower surface and receiving touches of a first object; a middle film on which a middle electrode is formed; an attachment unit for attaching the upper film on the middle film; a lower film where a lower electrode is formed on the upper surface and is placed apart from the middle film; a spacer having a gap between the middle and lower films and attaching the middle film and lower film; a control unit for producing electric signals if the first object touches at least part of the whole area of the upper film; and an actuator generating haptic feedbacks by receiving electric signals produced by the control unit. If input wave forms having a first frequency are applied to a first electrode which is at least one of the upper, middle and lower electrodes, either first electrostatic power or second electrostatic power is formed. The first electrostatic power is formed between a second electrode and lower electrodes. The second electrostatic power is formed between the second electrode and first object. The second electrode is at least one of the upper and middle electrodes. The haptic feedbacks may be frictional power generated by the vibration generated by the first electrostatic power and frictional power generated by the second electrostatic power.
Abstract:
본 발명의 목적은 가시광 통신을 이용하여 안내 정보를 제공함으로써 현재 이미 설치되어 있는 다양한 설치물을 거의 그대로 활용하면서도 시각 장애인에게 해당 위치에 대한 안내 정보를 정확하게 제공할 수 있도록 하는 시각 장애인용 안내 장치를 제공하는 것이다. 본 발명의 시각 장애인용 안내 장치는, 가시광 통신을 사용하여 시각 장애인을 안내하는 장치(100)로서, 시설물(500)에 설치된 가시광 조명(550)에 구비되며, 가시광 통신을 사용하여 상기 가시광 조명(550)에서 발생되는 광신호에 안내 정보를 포함시키는 정보 입력 수단(110); 상기 가시광 조명(550)에서 발생되는 광신호를 수신하는 수신부(121) 및 상기 수신부(121)에서 수신된 광신호에 포함된 안내 정보를 분석하여 인식 가능한 정보로 처리하는 분석부(125), 상기 분석부(125)에서 처리된 안내 정보를 출력하는 출력부(122)를 포함하여 이루어지는 단말기(120); 를 포함하여 이루어지는 것을 특징으로 한다.
Abstract:
The present invention relates to a touch generation method and a recording medium. An embodiment of the present invention relates to a touch generation apparatus comprising: a first circuit board for receiving the touch of a user; a touch sensor for sensing the touch for a first area which is one or more parts of the first circuit board; a control unit for outputting electricity signals for outputting touch feedback according to a control variable, for sensing a conversion factor for the first area when the touch sensor senses the touch; and an actuator capable of outputting a trigger signal, for outputting the output of the touch feedback corresponding to the electricity signal. The control unit controls the touch feedback to be outputted for the first area using the conversion of electrostatic power according to the touch. The conversion factor may be a location factor and a force factor for the first area sensed using the conversion of the electrostatic power and the conversion of the resistance according to the touch. [Reference numerals] (1037) AC voltage
Abstract:
The present invention relates to a method of manufacturing a flexible integrated circuit and, more specifically, to a method of manufacturing a flexible integrated circuit comprising a step of forming an LSN thin film layer by depositing the LSN thin film layer on the upper and lower surfaces of a substrate; a step of depositing a polycrystalline silicon thin film layer on the upper part of the LSN thin film layer deposited on the upper surface of the substrate; a step of forming a component part by patterning and etching the polycrystalline silicon thin film layer; a step of forming a via hole by etching the polycrystalline silicon thin film layer at the boundary of the component part and the LSN thin film layer deposited on the upper surface of the substrate; a step of etching the LSN thin film layer deposited on the lower surface of the substrate; a step of forming a protective layer on the upper part; a step of coating a photosensitive film on the upper part to protect the component part from a substrate etching solution; a step of etching the substrate until the lower surface of the LSN thin film layer deposited on the upper surface of the substrate is exposed by soaking the substrate in the substrate etching solution; and a step of removing the photosensitive film.
Abstract:
The present invention relates to a power or pressure sensing module using graphene, a multi touch power or pressure sensing transparent touch screen, and a power measuring method using the touch screen and, more specifically, to a power or pressure sensing module using graphene which includes a first conductive layer joined to the underside of a flexible upper substrate; a second conductive layer joined to the top surface of a lower substrate; graphene layers which are arranged between the first and second conductive layers and composed of at least one graphene film; and a graphene unit having a tunnel ring barrier layer arranged between the graphene layers.
Abstract:
본 발명은 고분자유전체 기반 고성능 구동기, 그 구동기를 이용한 액추에이터, 표면질감제공장치, 진동모터 및 촉각 피드백 제공장치에 대한 것이다. 보다 상세하게는 고분자 유전체 기반 고성능 구동기에 있어서, 유연성을 갖는 하우징; 하우징의 상부 또는 하부에 구비되며 인가되는 전압에 의해 평면방향으로 인장되고 수직방향으로 압축되는 고분자유전체와 고분자유전체의 상부면과 하부면 각각에 설치되는 전극층을 갖는 압축력 생성부; 및 압축력 생성부에서 생성된 압축력에 대응하여 복원력을 생성시키는 복원력생성부를 포함하는 것을 특징으로 하는 고분자 유전체 기반 고성능 구동기에 관한 것이다.
Abstract:
PURPOSE: A guide system for the blind using a dual infra-red ray sensor is provided to increase transmission and reception available distance using infra-red ray communications only, thereby smoothly effectively guiding the blind. CONSTITUTION: A transmitter (110) transmits an infra-red ray signal which includes a binary code used as an identification code. A receiver (120) comprises a first analog sensor (121), a second analog sensor (122), and an analyzer (125). The first analog sensor measures the intensity of the infra-red ray signal which is transmitted from the transmitter. The second analog sensor is separately arranged with the first analog sensor at a predetermined interval and measures the intensity of the infra-red ray signal which is transmitted from the transmitter. The analyzer calculates distance and direction to the transmitter using average and difference of the intensity of the infra-red ray signal measured in the first and second analog sensors.
Abstract:
PURPOSE: A structure of a tactile sensor for attaching the tactile sensor to a curved surface and a method for attaching the tactile sensor to the curved surface are provided to insert a flexible tactile sensor unit into a sensor insertion groove, thereby easily attaching the tactile sensor unit. CONSTITUTION: A structure of a tactile sensor for attaching the tactile sensor to a curved surface includes a sensor fixing unit (200), a tactile sensor unit (100), a sealing unit (300), and a supporting unit. At least a portion of one surface of the sensor fixing unit is curved, and a plurality of sensor insertion grooves (210) which is mutually intersected is formed into a matrix form on the surface of the sensor fixing unit. The tactile sensor unit formed into a matrix form is inserted into the sensor insertion grooves and senses an external force. The sealing unit seals the sensor insertion grooves. The supporting unit is in contact with one surface of the sealing unit or the sensor fixing unit, thereby supporting the sensor fixing unit.
Abstract:
PURPOSE: A flexible touch panel equipped with an elastic tactile sensor, and an elastic tactile sensor and a manufacturing method thereof are provided to have elasticity suitable to be used for various flexible touch panels, and to uniformly distribute the weight applied by external force like tension, etc. by arranging an electrode layer in a matrix form and symmetrically connecting signal lines around each electrode layer. CONSTITUTION: A manufacturing method of an elastic tactile sensor approximately includes a first sensor part forming step(S100), a second sensor part forming step(S200), a spacer forming step(S300), a bonding step(S400), and a punching step(S500). The first sensor part forming step includes a first electrode layer forming step(S110), a first signal line forming step(S120), and an insulation layer forming step(S130). The second sensor part forming step includes a second electrode layer forming step(S210) and a second signal line forming step(S220). Spacers are additionally formed on a second substrate in the spacer forming step. In the bonding step, a bonding layer is formed first and then one side of the bonding layer is attached to a spacer. In the punching step, a part of a first substrate and second substrate is removed by punching in order to form a first base layer and a second base layer. [Reference numerals] (AA) Start; (BB) End; (S110) Form a plurality of first electrode layers on a first substrate; (S120) Form a first signal line between the adjacent first electrode layers; (S130) Form an insulation layer on the surface of the first electrode layer; (S210) Form a plurality of second electrode layers on a second substrate; (S220) Form a second signal line between the adjacent second electrode layers; (S300) Form a plurality of spacers on the second substrate; (S400) Adhere the insulation layer and the spacer by forming an adhesive layer; (S500) Remove a part of the first substrate and the second substrate by punching