Abstract:
The present invention discloses a metallic linkage-type keying device, which is installed to a casing, such as the casing of a camera, a mobile phone or a video camera. The metallic linkage-type keying device of the present invention comprises: a metallic linkage, having at least two joining portions; and at least one key, having at least two assembling portions. The key is installed to the metallic linkage via fixing two assembling portions to two joining portions. The metallic linkage-type keying device provided by the present invention can prevent ESD from attacking the interior of the casing via key gaps and has the advantages of compactness and low cost.
Abstract:
This invention relates to a functional textile manufacturing system. This system uses weaving equipment, dyeing and finishing equipment, shaping equipment, evaporation equipment, lamination equipment, roll adhesion equipment and printing equipment for production. Weaving equipment, dyeing and finishing equipment and shaping equipment are used for weaving, dyeing, washing and shaping to process low-cost polyester fibers into shaped fabric. Then, the evaporation equipment is used to evaporate a metal onto a plane release film to form a metal evaporation release film, and the lamination equipment, roll adhesion equipment and printing equipment are used to laminate the shaped fabric and the metal evaporation release film and to adhere a printed layer on the functional thin film. Such a manufacturing system can produce laundry resistant unconventional material antimicrobial protective fabric that features special temperature control, antimicrobial, waterproof, breathable, scratch resistant properties, as well as comfortable feeling.
Abstract:
An identification (ID) code printing method for a glass substrate is disclosed, which comprises the following steps: loading a glass substrate onto a front end of a platform; aligning the glass substrate at the front end of the platform; printing an ID code on the glass substrate for three times in a process of moving the glass substrate from the front end of the platform to a back end of the platform, then from the back end of the platform to the front end of the platform and finally again from the front end of the platform to the back end of the platform. An ID code printing apparatus for a glass substrate is further disclosed. Thereby, an additional cycle of ID code printing operations can be carried out in the present disclosure as compared to the prior art, which can increase the number of times of ID code printing under the conventional tact time conditions and improve the utilization factor of the production line.
Abstract:
The present invention discloses a metallic linkage-type keying device, which is installed to a casing, such as the casing of a camera, a mobile phone or a video camera. The metallic linkage-type keying device of the present invention comprises: a metallic linkage, having at least two joining portions; and at least one key, having at least two assembling portions. The key is installed to the metallic linkage via fixing two assembling portions to two joining portions. The metallic linkage-type keying device provided by the present invention can prevent ESD from attacking the interior of the casing via key gaps and has the advantages of compactness and low cost.
Abstract:
The present invention discloses a device with a lens-rotation mechanism, which comprises: a casing having a driving device, such as the casing of a camera, a mobile phone or a video camera; and a lens-rotation system installed to the casing and having at least two transmission elements. Those two transmission elements are respectively coupled to the driving device and driven by the driving device to move horizontally and vertically, and those two transmission elements further drive the lens-rotation system to rotate. Thereby, the device with a lens-rotation mechanism proposed by the present invention can control the rotation of a lens.
Abstract:
An image capture device is used for capturing an image and storing it as digital data. It comprises a signal processing module and an optical module. The optical module detachably disposed n the signal process module and used for capturing the image and transferring to an image data. The signal processing module receives and processes the image data and then stores it as the digital data. Therefore, users can attach different optical module with different shooting elements on the signal processing module according to different shooting requirements of environment to obtain best image quality.
Abstract:
An adhesive coating device is provided with an adhesive reservoir; two opposite adjustment rollers at bottom of the reservoir; a pattern roller between the adjustment rollers and having a pattern formed thereon; a resilient roller under the pattern roller; a roller member under the resilient roller; two pivotal, co-rotated links on a side of the reservoir and operatively connected to the adjustment rollers respectively; and a spring biased adjustment screw pivotably secured to an end of one link. Clockwise rotation of the adjustment screw rotates the links at different directions, thereby decreasing a gap between the pattern roller and each adjustment roller.
Abstract:
An adhesive coating device is provided with an adhesive reservoir; two opposite adjustment rollers at bottom of the reservoir; a pattern roller between the adjustment rollers and having a pattern formed thereon; a resilient roller under the pattern roller; a roller member under the resilient roller; two pivotal, co-rotated links on a side of the reservoir and operatively connected to the adjustment rollers respectively; and a spring biased adjustment screw pivotably secured to an end of one link. Clockwise rotation of the adjustment screw rotates the links at different directions, thereby decreasing a gap between the pattern roller and each adjustment roller.
Abstract:
Mobile communication circuit reporting location information and methods thereof are provided. The circuit comprises a receiver, a transmitter, and a control circuit. The receiver receives first and second location information requests comprising respective first and second timing periods at first and second reference times respectively. The transmitter transmits first location information at a first reporting time having a first timing lapse from the first reference time in response to the first location information request and the second location information at a second reporting time in response to the second location information request. The control circuit, coupled to the receiver and the transmitter, calculates a timing difference between the first reporting time and the second reporting time, and determines second location information according to the first location information when the timing difference is less than or equal to a predetermined timing difference threshold.
Abstract:
An image stabilization method for a camera is provided. The image stabilization method controls the shutter of the camera. The image stabilization method, according to the present invention, first detects whether a trigger signal has been inputted, wherein the trigger signal is inputted by a user and starts an image capturing process. Next, the time when the trigger signal was inputted is detected and recorded as a first time. Afterwards, a stabilization time is delayed based upon the first time. Finally, a drive signal is generated when the stabilization time ends, wherein the drive signal drives the shutter to turn on for executing the image capturing process.