Abstract:
A cutter assembly for an electric pencil sharpener has a cutter bracket and a cutter. The cutter bracket has a pencil sharpening hole and an engaging structure. The pencil sharpening hole is defined in the cutter bracket for a pencil being inserted into the pencil sharpening hole. The engaging structure is formed on the cutter bracket to engage a rotating frame in the electric pencil sharpener. The cutter is mounted rotatably on the cutter bracket. Accordingly, the cutter assembly is replaceable for the electric pencil sharpener when the cutter of the cutter assembly is damaged or worn off.
Abstract:
Multimedia KVM systems are provided. A multimedia KVM system comprises a KVM switch and a local console coupled to the KVM switch. The KVM switch comprises a plurality of first connectors for connecting to a plurality of first multimedia components, respectively. The local console comprises a plurality of second connectors for connecting to a plurality of second multimedia components, respectively. A first user utilizes the first multimedia components, via the local console and the KVM switch, to communicate with a second user utilizing the second multimedia components.
Abstract:
Disclosed herein is a thermoplastic cellulosic composition for preparing a cellulose-based masterbatch and/or a fiber with an improved breaking elongation. In one example, the thermoplastic cellulosic composition includes an esterified cellulose present in a range of about 77 wt % to about 95 wt %, polyethylene glycol present in a range of about 4.5 wt % to about 15 wt %, a bifunctional reactant present in a range of about 0.01 wt % to about 3 wt %, an initiator present in a range of about 0.01 wt % to about 0.15 wt %, and a dispersing agent present in a range of about 0.01 wt % to about 5 wt %.
Abstract:
This is generally directed to systems and methods for noise reduction in high dynamic range (“HDR”) imaging systems. In some embodiments, multiple images of the same scene can be captured, where each of the images is exposed for a different amount of time. An HDR image may be created by suitably combining the images. However, the signal-to-noise ratio (“SNR”) curve of the resulting HDR image can have discontinuities in sections of the SNR curve corresponding to shifts between different exposure times. Accordingly, in some embodiments, a noise model for the HDR image can be created that takes into account these discontinuities in the SNR curve. For example, a noise model can be created that smoothes the discontinuities of the SNR curve into a continuous function. This noise model may then be used with a Bayer Filter or any other suitable noise filter to remove noise from the HDR image.
Abstract:
High dynamic range image sensors and image reconstruction methods for capturing high dynamic range images. An image sensor that captures high dynamic range images may include an array of pixels having two sets of pixels, each of which is used to capture an image of a scene. The two sets of pixels may be interleaved together. As an example, the first and second sets of pixels may be formed in odd-row pairs and even-row pairs of the array, respectively. The first set of pixels may use a longer exposure time than the second set of pixels. The exposures of the two sets of pixels may at least partially overlap in time. Image processing circuitry in the image sensors or an associated electronic device may de-interlace the two images and may combine the de-interlaced images to form a high dynamic range image.
Abstract:
A method comprises supplying a dopant gas in an arc chamber of an ion source. A dilutant is supplied to dilute the dopant gas. The dilutant comprises about 98.5 wt. % xenon and about 1.5 wt. % hydrogen. An ion beam is generated from the diluted dopant gas using the ion source.
Abstract:
An exemplary portable electronic device includes: a main body, a camera module, a protecting cover, and a fill-in light emitting module. The camera module has a camera, and the camera module is disposed in the main body. The camera is exposed and positioned against an outer surface of the main body to take pictures. The fill-in light emitting module is fixed on the protecting cover. The protecting cover is movably connected to the main body adjacent to the camera for covering the camera or exposing the camera.
Abstract:
A ringing area detector classifies the input image into two regions: a mosquito noise region (i.e. filtering region) and a non-mosquito noise region (i.e. non-filtering region), and uses this classification information to adaptively remove the mosquito noise in a mosquito noise reduction system. The mosquito noise reduction system includes a ringing area detector, a local noise power estimator, a smoothing filter, and a mixer. The ringing area detector includes an edge detector, a near edge detector, a texture detector, and a filtering region decision block. The ringing detection block detects the ringing area where the smoothing filter is to be applied. The local noise power estimator controls the filter strength of the smoothing filter. The smoothing filter smoothes the input image. The mixer mixes the smoothed image and the original image properly based on the region information from the ringing area detection block.
Abstract:
Multimedia KVM systems are provided. A multimedia KVM system comprises a KVM switch and a local console coupled to the KVM switch. The KVM switch comprises a plurality of first connectors for connecting to a plurality of first multimedia components, respectively. The local console comprises a plurality of second connectors for connecting to a plurality of second multimedia components, respectively. A first user utilizes the first multimedia components, via the local console and the KVM switch, to communicate with a second user utilizing the second multimedia components.
Abstract:
A KVM management system is provided. The KVM management system comprises at least one KVM switch and a KVM recorder. The KVM switch comprises a plurality of ports for connecting to a plurality of computers, respectively. The KVM recorder comprises a storage device, and couples to the KVM switch. The KVM recorder receives and records operations on the KVM switch to the storage device.