Abstract:
The invention provides a system for distinguishing multiple touch points. The system comprises a panel, a first image capturing unit, a second image capturing unit, at least one third image capturing unit, and a processing unit. N touch points are indicated on the panel. A first image and a second image related to the N touch points are captured by the first image capturing unit and the second image capturing unit. At least one third image related to the N touch points is captured by the at least one third image capturing unit. N sets of coordinates corresponding to the N touch points are calculated by the processing unit according to the first image and the second image. And, a set of real coordinates corresponding to the N touch points is determined from the N sets of coordinates according to the at least one third image.
Abstract:
The invention discloses a screen control system including a panel, a magnetic member, at least three magnetic inductive (MI) sensors, and a processing unit. The magnetic member is used for indicating a specific position on the panel. Each of the MI sensors is located under the panel and used for sensing magnetic field of the magnetic member corresponding to the specific position. Afterward, each MI sensor will convert the sensed magnetic field into an output voltage correspondingly. The processing unit is coupled to each of the MI sensors and the panel. According to all of the output voltages, the processing unit will calculate a coordinate corresponding to the specific position. Accordingly, the screen control system is capable of displaying the specific position indicated by the magnetic member for the user.
Abstract:
An optical touch module includes a display panel, an optical sensor and a light emitting unit. The optical sensor is disposed on a corner of the display panel. The light emitting unit is disposed on the optical sensor and includes a light emitting member and a compensating member. The light emitting member emits light with a first light strength along a first direction and light with a second light strength along a second direction, wherein the first light strength is greater than the second light strength. The compensating member is disposed on a side of the light emitting member. After the lights pass through the compensating member, the second light strength is increased.
Abstract:
The invention provides an engaging apparatus utilized in equipment which includes a cover and a base. The engaging apparatus includes a pivotal device and an engaging device. The pivotal device includes a retaining portion. The cover is pivotally connected to the base by the pivotal device. The engaging device is disposed on the cover, and includes an operating portion and an engaging portion. The engaging portion cooperates with the retaining portion. When the cover is positioned at a closed position with respect to the base, the engaging portion is capable of cooperating with the retaining portion to form a locked engagement.
Abstract:
A touch pad module assembly structure includes a housing, a touch pad module and a metal bracket. The housing includes a generally rectangular opening. The touch pad module is assembled into the opening. The touch pad module includes a support member and a circuit board. An edge of the support member has a through hole and a pair of resilient members. An opposite edge of the support member has a connection member secured to a surrounding surface of the opening. The circuit board is disposed over the support member and includes a switch aligned with the through hole. The metal bracket is secured to a surrounding edge of the opening to be in to contact with the switch and expose the connection member.
Abstract:
An electronic device is provided. The electronic device includes a housing, a rotating mechanism and a first rotating member. The rotating mechanism, rotatably disposed in the housing, rotatable along a first direction and a second direction different from the first direction. The first rotating member, disposed on the housing, rotatable between a first position and a second position. When the first rotating member is in the first position, the first rotating member engages with the rotating mechanism. When the rotating mechanism rotates along the first direction, the rotating mechanism is separated from the first rotating member, whereinafter, the first rotating member is able to rotate from the first position to the second position.
Abstract:
The invention discloses a touch panel capable of identifying fingerprints. The touch panel includes a touch layer and a fingerprint sensing layer. The touch layer is used for sensing a specific location touched by a finger. The fingerprint sensing layer is disposed under the touch layer and includes a storage unit, multiple receiving modules, multiple transmitting modules, and a control module. The storage unit stores a first fingerprint data corresponding to the finger. Each receiving module respectively corresponds to one of the transmission modules. According to the specific location, one of the transmission modules transmits a signal, and the signal is then reflected by the finger to the corresponding receiving module. The control module converts the signal received by the receiving module into a second fingerprint data and then determines whether the second fingerprint data conforms to the first fingerprint data.
Abstract:
An electronic device is provided, including a first body, a second body, an axle assembly, a supporting frame, a display panel, a lens unit and a reflective unit. The second body is connected to the first body. The axle assembly is disposed between the first body and the second body, and via which first body is rotatable relative to the second body. The supporting frame is disposed in the second body and connected to the axle assembly, wherein the supporting frame is rotated with the rotation of the axle assembly. The display panel is fastened in the supporting frame. The lens unit is disposed on an end of the supporting frame. The reflective unit is disposed on the supporting frame and adjacent to the display panel.
Abstract:
An audio circuit board includes a main body, an audio connector, a digital ground loop, an analog ground portion and a moat. The main body includes an edge and a surface. The audio connector is disposed on one side of the main body and includes a fixing portion. The digital ground loop completely surrounds the edge of the main body. The audio connector is connected with the digital ground loop via the fixing portion. The analog ground portion is disposed on the surface of the main body and is disposed adjacent to the digital ground loop. The analog ground portion is separated from the main body via the moat.
Abstract:
An ultra-wide bandwidth antenna includes a dielectric substrate, first and second conductive elements, and a third conductive element. The dielectric substrate has opposite first and second surfaces. The first conductive element is formed on the second surface of the dielectric substrate and has a feeding point. The second conductive element is formed on the second surface of the dielectric substrate, is spaced apart from the first conductive element, and has a grounding point. The third conductive element is formed on the first surface of the dielectric substrate, partially overlaps the first conductive element, and is coupled electrically to the second conductive element.