Abstract:
According to the present invention, an image signal processor, comprising a receiver, a mixing block, and an adjustment block, is provided. The receiver receives first, second, and third color pixel signals which an imaging device outputs. The mixing block generates first, second, and third color mixed pixel signals. The first, second, and third color mixed pixel signals are generated by mixing the first, second, and third color pixel signals generated by all the first, second, and third color pixels occupying a space of which the area is a second predetermined area whose the center is in agreement with the center of the first, second, and third color mixed pixel areas, respectively. The adjustment block adjusts the signal levels of the first, second, and third color mixed pixel signals based on first, second, and third pixel numbers.
Abstract:
A correction-term adder 1 compares a maximum value max(V*) with an absolute value of a minimum value min(V*). The correction-term adder 1 selects a signal 1−max(V*) when the maximum value max(V*) is larger than the absolute value of the minimum value min(V*), on the other hand, selects a signal −1−min(V*) when the absolute value of the minimum value min(V*) is larger than the maximum value max(V*). Thereby, a signal of correction amount α is calculated. Moreover, the correction-term adder 1 produces a triangular-wave-shaped signal k(max(V*)+min(V*)) by multiplying a gain k by an addition signal max(V*)+min(V*) of the maximum value max(V*) and the minimum value min(V*). This triangular-wave-shaped signal k(max(V*)+min(V*)) is synchronized with the correction amount α. The correction-term adder 1 produces a correction amount β by selecting smaller one in absolute value between the triangular-wave-shaped signal k(max(V*)+min(V*)) and the correction amount α, and adds the correction amount β to the voltage command values V*U, V*V, V*W.
Abstract:
A motion controlled vehicle power adapter with a vehicle power adapter that can be plugged into the 12V vehicle power outlet and has a remote motion sensor at one end of the vehicle power adapter opposite the end that plugs into the 12 V vehicle power outlet. The remote motion sensor is operated by the operator's hand motion near the sensor without contacting the sensor. The remote motion sensor may be detachable from the vehicle power adapter. The operator's hand motions are translated into control signals and sent to a portable electronic device to control its functions. The control signals may be sent through a wire or wirelessly through a wireless transmitter.
Abstract:
A USB charger comprises a power input, a microprocessor, a resistor network, and a USB port for charging electronic devices through the USB port. The USB charger defaults to provide 2000 mA when power is applied through the power input. When a device is detected at the USB port, it measures device current drain to determine if it is charging. If the device is charging, then it remains in the 2000 mA charging mode. If no current drain is detected, the power supply switches to 1000 mA. If the electronic device recognizes the proper charging network it will begin charging. When the microprocessor detects current drain, it leaves the charging network as is. If still no current drain is detected, the USB microprocessor will attempt the 500 mA charging current. If there is a current drain, it will leave the charging network as is. If no current drain is detected, then it indicates a fault and a LED flashes to indicate the fault.
Abstract:
In one embodiment, a liquid crystal display device includes first and second substrates, an active area to display an image, a seal material surrounding the active area, and an intermediate area between the active area and the seal area. In the intermediate area, first and second color filters are formed on the second substrate. An overcoat layer is laminated on the first and second color filters. First and second pillar-shaped spacers are provided between the overcoat layer and the first substrate corresponding to the first and second color filters to form a first and second cell gaps between the first and second substrates, respectively. The first cell gap adjacent to the active area between the first and second substrates is smaller than the second cell gap adjacent to the seal area in the intermediate area.
Abstract:
A targeted object pursuit system comprising a first setting block, a second setting block, a recognition block, a first determination block, a second determination block, and a re-designation block is provided. The first setting block initially designates a partial area as a pursuit area. The second setting block designates the areas displaced from the pursuit area as candidate areas. The recognition block extracts a standard image and candidate images. The first determination block determines in which general direction the targeted object moves is the first or second general direction. Based on the determination made by the first determination block, the second determination block determines in which of the first, second, third, or fourth detailed direction the targeted object has moved. The re-designation block re-designates a candidate area as the new pursuit area.
Abstract:
A polymer represented by Formula (7): wherein all variables are defined in the specification, including P1 which is a polymer chain obtained by polymerizing an addition-polymerizable monomer, which makes it possible to control the structure of the polymer as a molecular aggregate.
Abstract:
The present invention provides a silicon compound represented by Formula (1) and a polymer obtained by using the same, and this makes it possible not only to obtain an organic-inorganic composite material having a distinct structure but also to control the structure of the above polymer as a molecular aggregate. wherein R1 is a group independently selected from hydrogen, alkyl having a carbon atom number of 1 to 40, substituted or non-substituted aryl and substituted or non-substituted arylalkyl; in this alkyl having a carbon atom number of 1 to 40, optional hydrogens may be substituted with fluorine, and optional —CH2— may be substituted with —O—, —CH═CH—, cycloalkylene or cycloalkenylene; in alkylene in this arylalkyl, optional hydrogens may be substituted with fluorine, and optional —CH2— may be substituted with —O— or —CH═CH—; and A1 is a group having an α-haloester group.
Abstract:
An object is to provide a torque tool device which can expedite tightening operations using a torque tool without requiring any other manipulation than the tightening. The device is also capable of performing tightening operations consecutively by determining instantly whether the tightening has been adequately performed.The torque tool device includes a torque tool 1 and an information processing terminal 20. The tool 1 is capable of measuring the torque value at which a bolt or the like was tightened and then transmitting the measured torque value via wireless communication means. The terminal 20 has information processing means for receiving the measured torque value and determining whether the torque value is acceptable. This arrangement eliminates the need of including a pass/fail test device in the torque tool 1, thereby allowing it to be reduced in weight. Additionally, the wireless communication using the ISM frequency band can allow the determination result to be instantly sent and received, thereby making it possible to expedite the tightening consecutively with the torque tool 1.