Abstract:
A method for producing a cable by covering with polytetrafluoroethylene and extrusion molding with a perfluoroalkoxy compound, including: covering an outer surface of a conductor with an insulation layer; and extrusion molding a skin layer on an outer surface of the insulation layer to form a cable. The insulation layer and the skin layer are made of polytetrafluoroethylene and a perfluoroalkoxy compound, respectively. The perfluoroalkoxy compound and polytetrafluoroethylene both have high temperature resistance, good electronic signal transmitting performance, and non-bonding surface, etc., and the perfluoroalkoxy compound has a Shore hardness of 60 to 70D, which can impart the skin layer a certain hardness, and is suitable for being extrusion molded on the outer surface of the insulation layer made of polytetrafluoroethylene, so as to support the insulation layer and prevent the insulation layer from being deformed. Therefore, the perfluoroalkoxy compound is the most suitable material for the skin layer.
Abstract:
A cable with a non-circular ground wire is provided, including two wires, two ground wires, and an insulating tape; wherein the inner sides of the wires are in contact with each other; the ground wires are respectively arranged on two opposite sides of the wires; each ground wire at least includes a first side surface, a second side surface, and a third side surface; the first and second side surfaces respectively contact the outer surfaces of the two wires, and the shapes of the first side surface and the second side surface respectively correspond to the shapes of the outer surfaces of the two wires; the insulating tape covers the outer surfaces of the wires and the third sides of the ground wires. Thereby, the mechanical properties of the cable of the present invention, such as small impedance variation of high-frequency signal transmission, transmission stability, structural flexibility and bending, can be significantly improved.
Abstract:
A double-layer longitudinal wrapping mold is disclosed, including a base, a first longitudinal wrapping structure, a first pressing structure, a second longitudinal wrapping structure, a second pressing structure and a first necking structure. The first longitudinal wrapping structure is disposed on the base and has a first guide hole, a first outer layer wrapping hole and an inner layer wrapping hole. The first pressing structure is disposed on the base and has a first pressing hole and a second outer layer wrapping tape hole. The second longitudinal wrapping structure is disposed on the base and has a second guide hole and a third outer layer wrapping tape hole. The second pressing structure is disposed on the base and has a second pressing hole and a fourth outer layer wrapping tape hole. The first necking structure is disposed on the base and has a necking hole.
Abstract:
A double-layer longitudinal wrapping mold is disclosed, including a base, a first longitudinal wrapping structure, a first pressing structure, a second longitudinal wrapping structure, a second pressing structure and a first necking structure. The first longitudinal wrapping structure is disposed on the base and has a first guide hole, a first outer layer wrapping hole and an inner layer wrapping hole. The first pressing structure is disposed on the base and has a first pressing hole and a second outer layer wrapping tape hole. The second longitudinal wrapping structure is disposed on the base and has a second guide hole and a third outer layer wrapping tape hole. The second pressing structure is disposed on the base and has a second pressing hole and a fourth outer layer wrapping tape hole. The first necking structure is disposed on the base and has a necking hole.
Abstract:
A cable connector assembly includes a circuit board, a plurality of grounding elements and a plurality of cables. Rear ends of an upper surface and a lower surface of the circuit board are equipped with a plurality of contact pads and a plurality of grounding pads. The plurality of grounding elements are soldered to the plurality of the grounding pads. Two sides of each grounding element have two clamping portions. Each cable includes an inner conductor, an inner insulating layer, a shielding layer and an outer insulating layer arranged in an inside-to-outside direction. The inner conductors of the plurality of the cables are electrically connected with the plurality of the contact pads, the shielding layer of each cable is mounted in one grounding element. The shielding layer of each cable is clamped between the two clamping portions of the one grounding element.
Abstract:
A wearable reality device including a left earmuff, a right earmuff, a first connecting component, a display body, and a second connecting component is provided. The left earmuff is configured to be positioned outside the user's left ear when the user uses the wearable reality device. The right earmuff is configured to be positioned outside the user's right ear when the user uses the wearable reality device. The first connecting component connects the left earmuff and the right earmuff, and is configured to extend across a top of the user's head and be supported by the top of the user's head when the user uses the wearable reality device. The display body is configured to be positioned in front of the user's forehead and eyes when the user uses the wearable reality device. The second connecting component connects the display body and the first connecting component.
Abstract:
A multimedia program recording schedule manager for DVR systems is described. In a first embodiment, for example, a method implemented by one or more server computing devices, the method comprising: receiving input selecting a particular DVR system; receiving input selecting a particular multimedia program for the particular DVR system to record on a repeat basis; adding the particular multimedia program to a server-side instance of a repeat recording schedule for the particular DVR system; and synchronizing the server-side instance of the repeat recording schedule with another instance of a repeat recording schedule for the particular DVR system resulting in the addition of the particular multimedia program to the other instance of the repeat recording schedule. In one embodiment, the other instance of the repeat recording schedule for the particular DVR system is a data component of the particular DVR system.
Abstract:
A method for interpreting messages, user-defined alert conditions, voice commands and performing an action in response is described. A method for annotating media content is described. A method for presenting additional content associated with media content identified based on a fingerprint is described. A method for identifying that an advertisement portion of media content is being played based on a fingerprint derived from the media content is described. A method of one media device recording particular media content automatically in response to another media device recording the particular media content is described. A method of concurrently playing media content on multiple devices is described. A method of publishing information associated with recording of media content is described. A method of deriving fingerprints by media devices that meet an idleness criteria is described. A method of loading, modifying, and displaying a high definition frame from a frame buffer is described. A method of recording or playing media content identified based on fingerprints is described.
Abstract:
Apparatuses and systems for photon detection can include a first optical sensing structure structured to absorb light at a first optical wavelength; and a second optical sensing structure engaged with the first optical sensing structure to allow optical communication between the first and the second optical sensing structures. The second optical sensing structure can be structured to absorb light at a second optical wavelength longer than the first optical wavelength and to emit light at the first optical wavelength which is absorbed by the first optical sensing structure. Apparatuses and systems can include a bandgap grading region.
Abstract:
An improvement to the present ink cup technology is presented, resulting in reduced clean-up time, by measurement at least three times faster producing a significant reduction in labor cost. Exposure by employees to high-VOC solvents and emulsifiers is eliminated, and low-VOC solvents mixed with water can be used. This is a significant saving in environmental damage and disposal costs.