Cooking apparatus having automatically starting kitchen timer function
    1.
    发明授权
    Cooking apparatus having automatically starting kitchen timer function 失效
    烹饪设备具有自动启动厨房定时器功能

    公开(公告)号:US6013908A

    公开(公告)日:2000-01-11

    申请号:US116471

    申请日:1998-07-16

    CPC分类号: H05B6/6435 H05B6/6417

    摘要: A microwave oven includes a heating chamber containing a magnetron for heating and cooking food S, a body with a door provided in front of the heating chamber, and a control circuitry provided on the body for controlling driving of the magnetron. The control circuitry includes a switch key for switching either to a cooking time input mode for setting and inputting time period for driving magnetron or to an optional timer input mode for setting and inputting time period for an optional timer, input ten keys for inputting the time period of the set input mode, a timer body for separately counting time periods of respective input modes input by the ten keys, a display portion for displaying time count of either one of the input modes switched by the switch key, and a start key for starting time count for the input time period on display portion. When the operation is switched to the optional timer input mode by switch key 22 and an input of the time period for the optional timer is given through ten keys, time count of the time period for the optional timer starts after a prescribed time period, without waiting for an input to start time count from the start key.

    摘要翻译: 微波炉包括加热室,该加热室含有用于加热和烹调食物S的磁控管,设置在加热室前面的门体,以及设置在主体上用于控制磁控管驱动的控制电路。 控制电路包括用于切换到用于设置和输入用于驱动磁控管的时间段的烹饪时间输入模式的开关键或用于可选定时器的设置和输入时间段的可选定时器输入模式,输入用于输入时间的十个键 设置输入模式的周期,用于分别计数由十个键输入的各个输入模式的时间段的定时器主体,用于显示通过切换键切换的任一个输入模式的时间计数的显示部分,以及用于 显示部分的输入时间段的开始时间计数。 当通过切换键22将操作切换到可选的定时器输入模式时,并且通过十个键给出可选定时器的时间段的输入时,可选定时器的时间段的时间计数在规定的时间段之后开始,而没有 等待输入从开始键开始计时。

    Microwave oven
    2.
    发明授权
    Microwave oven 失效
    微波炉

    公开(公告)号:US5906765A

    公开(公告)日:1999-05-25

    申请号:US061470

    申请日:1998-04-16

    IPC分类号: F24C7/02 H05B6/64 H05B6/68

    CPC分类号: H05B6/6435

    摘要: A microwave oven 10 including a main body 1 in which a heating chamber 2 is installed, a microwave supplying unit 3 installed at an inner portion of the main body 1 for heating a food incorporated in the heating chamber 2 by supplying microwave at a predetermined output, an operation panel 4 (input operating unit) for inputting cooking output information and cooking time information of the food, a control unit 6 for comparing the cooking output information inputted by the operation panel 4 with the predetermined output, correcting the inputted cooking time information in accordance with a result of the comparison and instructing to drive the microwave supplying unit 3 based on corrected cooking time obtained by the correction, wherein the control unit 6 includes buzzer 48 (information supplying means) for successively supplying the cooking time information inputted by the operation panel 4 and the corrected cooking time and supplying, after having supplied the cooking time information, information that the corrected cooking time is being supplied.

    摘要翻译: 包括安装有加热室2的主体1的微波炉10,安装在主体1的内部的微波供给单元3,用于通过以预定的输出提供微波来加热加热室2中的食物 ,用于输入食物的烹调输出信息和烹饪时间信息的操作面板4(输入操作单元),用于将由操作面板4输入的烹调输出信息与预定输出进行比较的控制单元6,校正输入的烹饪时间信息 根据比较结果,指示通过校正得到的校正烹调时间来驱动微波供给单元3,其中控制单元6包括蜂鸣器48(信息提供装置),用于连续提供由 操作面板4和校正烹调时间,并且在提供烹饪时间信息之后, 提供校正烹饪时间的信息。

    Image processing method and image coding apparatus utilizing the image processing method

    公开(公告)号:US07120306B2

    公开(公告)日:2006-10-10

    申请号:US10391020

    申请日:2003-03-19

    IPC分类号: G06K9/36 G06K9/46

    摘要: A wavelet transform is applied to an original image, so as to generate an image of a first hierarchy. Among the thus generated image of the first hierarchy, each of high-frequency sub-band components 1HL, 1LH and 1HH are immediately quantized and coded so as to be temporarily stored in a coded data storage. Another wavelet transform is applied to an LL sub-band component, among the image of the first hierarchy, so as to generate an image of a second hierarchy. Thereafter, an image of a third hierarchy is generated from an LL sub-band component in the image of the second hierarchy. During such a process, quantization and coding processings are performed in parallel with transformation processings. After all processings are completed and the coded data are prepared, coded image data complying with the JPEG2000 standard are generated by first reading out low-frequency components in sequence from the prepared coded data.

    Semiconductor memory device having test mode
    5.
    发明授权
    Semiconductor memory device having test mode 失效
    具有测试模式的半导体存储器件

    公开(公告)号:US06189119B1

    公开(公告)日:2001-02-13

    申请号:US09111881

    申请日:1998-07-08

    IPC分类号: G11C2900

    CPC分类号: G11C29/20

    摘要: A counter is provided in an SRAM using a CSP (Chip Scale Package). The counter includes n+1 stages of flipflops, counts the number of pulses of an address clock signal when a test signal attains “H” level, and outputs a group of address signals. Compared with a conventional SRAM to which the group of address signals is externally input, the number of external pins necessary when a test is conducted can be reduced, and a test board can be formed using a single-layer interconnection. Consequently, reduction of costs of testing is achieved.

    摘要翻译: 使用CSP(芯片级封装)在SRAM中提供计数器。 计数器包括n + 1级触发器,当测试信号达到“H”电平时,对地址时钟信号的脉冲数进行计数,并输出一组地址信号。 与外部输入一组地址信号的常规SRAM相比,可以减少进行测试时所需的外部引脚数,并且可以使用单层互连形成测试板。 因此,实现了测试成本的降低。

    Coding method for coding moving images
    9.
    发明申请
    Coding method for coding moving images 审中-公开
    编码运动图像的编码方法

    公开(公告)号:US20070064809A1

    公开(公告)日:2007-03-22

    申请号:US11520859

    申请日:2006-09-14

    IPC分类号: H04N11/02 H04N11/04

    摘要: A motion vector holding unit 61 holds motion vector information with respect to a backward reference frame detected beforehand and received from a motion compensation unit 60. A motion vector calculation unit 63 calculates multiple motion vectors for each macro block defined in a coding target frame with reference to the motion vector information with respect to the backward reference frame held by the motion vector holding unit 61 according to each calculation mode of a set of different calculation modes. A motion compensation prediction unit 64 performs motion compensation using motion vectors obtained for each calculation mode, thereby creating predicted images. The predicted images are output to a coding amount estimation unit 65. The coding amount estimation unit 65 estimates the coding amount of the subtraction image, which is the subtraction between the predicted image and the original image, for each calculation mode. A motion vector selection unit 67 makes a comparison between the coding amounts of the subtraction images, and selects the motion vector which provides the smallest coding amount.

    摘要翻译: 运动矢量保持单元61保持关于事先检测并从运动补偿单元60接收的反向参考帧的运动矢量信息。 运动矢量计算单元63根据运动矢量保持单元61保持的反向参考帧的运动矢量信息,根据组的每个计算模式,计算在编码目标帧中定义的每个宏块的多个运动矢量 的不同计算模式。 运动补偿预测单元64使用针对每个计算模式获得的运动矢量来执行运动补偿,由此创建预测图像。 将预测图像输出到编码量估计单元65。 编码量估计单元65针对每个计算模式估计作为预测图像和原始图像之间的减法的减法图像的编码量。 运动矢量选择部67进行减法图像的编码量的比较,并选择提供最小编码量的运动矢量。

    Coding method producing generating smaller amount of codes for motion vectors
    10.
    发明申请
    Coding method producing generating smaller amount of codes for motion vectors 审中-公开
    产生较小量运动矢量代码的编码方法

    公开(公告)号:US20070064791A1

    公开(公告)日:2007-03-22

    申请号:US11520024

    申请日:2006-09-13

    IPC分类号: H04B1/66 H04N11/02

    摘要: A motion vector coder performs coding on motion vectors MV0, MV1 and MV2 in the stated order. Initially, the motion vector coder receives the motion vectors MV0-MV2 from a motion vector holder. The motion vector coder codes the motion vector MV0 at the lowest layer 0. Subsequently, the motion vector coder codes (½*MV0-MV1), which is a difference between ½ of MV0 and MV1, instead of coding the motion vector MV1 at layer 1. The motion vector coder then codes (½*MV1-MV2), which is a difference between ½ of MV1 and MV2, instead of coding the motion vector MV2 at layer 2.

    摘要翻译: 运动矢量编码器按照所述顺序对运动矢量MV 0,MV 1和MV 2进行编码。 最初,运动矢量编码器从运动矢量保持器接收运动矢量MV 0 -MV 2 2。 运动矢量编码器对最下层0的运动矢量MV <0> <0>进行编码。随后,运动矢量编码器对(1/2 * MV 0 -MV 1 / SUB>),它是MV 1和MV 1之间的差值,而不是在层1处编码运动矢量MV 1 <1>。 运动矢量编码器然后编码(1/2 * MV 1 -MV 2 2),其是MV&lt; 1&gt;和MV&lt; SUB&lt; > 2 ,而不是在层2处编码运动矢量MV 2