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    • 1. 发明授权
    • Visual communications system and method of controlling the same
    • 视觉通信系统及其控制方法
    • US07536707B2
    • 2009-05-19
    • US11004956
    • 2004-12-07
    • Yuichi MatsumotoTakashi YamamotoMasaki KutsunaShigeki Mori
    • Yuichi MatsumotoTakashi YamamotoMasaki KutsunaShigeki Mori
    • H04N5/76H04N5/91H04N7/18
    • H04N21/4223H04N5/76H04N7/147H04N21/4325H04N21/4788
    • A visual communications system and a method of controlling the same for pausing the screens of two terminals at quite the same image. Video communications terminals receive the same channel in their respective broadcast program receiving units. A first video communications terminal temporarily stores the video of the received channel in the temporary storage memory. When a user pauses operation of the first terminal, it temporarily stores a screen pause time obtained by adding a predetermined time to the current time, and transmits a screen pause command and the screen pause time to a second video communications terminal. The second terminal pauses the video at the screen pause time if possible in time. Otherwise, it pauses the video immediately, and transmits a response with its own image pause time to the first terminal. The first terminal displays an image corresponding to the image pause time of the second terminal memory.
    • 可视通信系统及其控制方法,用于在相同图像上暂停两个终端的屏幕。 视频通信终端在各自的广播节目接收单元中接收相同的频道。 第一视频通信终端将接收的频道的视频临时存储在临时存储存储器中。 当用户暂停第一终端的操作时,暂时存储通过将预定时间添加到当前时间而获得的屏幕暂停时间,并将屏幕暂停命令和屏幕暂停时间发送到第二视频通信终端。 如果可能,第二个终端会在屏幕暂停时间暂停视频。 否则,会立即暂停视频,并将具有自己的图像暂停时间的响应发送到第一个终端。 第一终端显示对应于第二终端存储器的图像暂停时间的图像。
    • 4. 发明申请
    • Visual communications system and method of controlling the same
    • 视觉通信系统及其控制方法
    • US20050166242A1
    • 2005-07-28
    • US11004956
    • 2004-12-07
    • Yuichi MatsumotoTakashi YamamotoMasaki KutsunaShigeki Mori
    • Yuichi MatsumotoTakashi YamamotoMasaki KutsunaShigeki Mori
    • H04N5/44H04N5/76H04N5/765H04N5/93H04N7/14H04N7/173H04N7/16
    • H04N21/4223H04N5/76H04N7/147H04N21/4325H04N21/4788
    • A visual communications system and a method of controlling the same for pausing the screens of two terminals at quite the same image. Video communications terminals receive the same channel in their respective broadcast program receiving units. A first video communications terminal temporarily stores the video of the received channel in the temporary storage memory. When a user pauses operation of the first terminal, it temporarily stores a screen pause time obtained by adding a predetermined time to the current time, and transmits a screen pause command and the screen pause time to a second video communications terminal. The second terminal pauses the video at the screen pause time if possible in time. Otherwise, it pauses the video immediately, and transmits a response with its own image pause time to the first terminal. The first terminal displays an image corresponding to the image pause time of the second terminal memory.
    • 可视通信系统及其控制方法,用于在相同图像上暂停两个终端的屏幕。 视频通信终端在各自的广播节目接收单元中接收相同的频道。 第一视频通信终端将接收的频道的视频临时存储在临时存储存储器中。 当用户暂停第一终端的操作时,它暂时存储通过将预定时间添加到当前时间而获得的屏幕暂停时间,并将屏幕暂停命令和屏幕暂停时间发送到第二视频通信终端。 如果可能,第二个终端会在屏幕暂停时间暂停视频。 否则,会立即暂停视频,并将具有自己的图像暂停时间的响应发送到第一个终端。 第一终端显示对应于第二终端存储器的图像暂停时间的图像。
    • 9. 发明授权
    • Gas sensor having a laminate comprising solid electrolyte layers and alumina substrate
    • 气体传感器具有包括固体电解质层和氧化铝基底的层压体
    • US08613844B2
    • 2013-12-24
    • US11507532
    • 2006-08-22
    • Masashi AndoTakao KojimaShigeki Mori
    • Masashi AndoTakao KojimaShigeki Mori
    • G01N27/409G01N27/41
    • C04B35/486B32B18/00C04B35/111C04B35/4885C04B2235/3206C04B2235/3208C04B2235/3225C04B2235/3246C04B2235/3418C04B2235/762C04B2235/765C04B2237/343C04B2237/348C04B2237/62C04B2237/68G01N27/4071
    • A gas sensor (1a) having a laminate including an alumina substrate (11) having a heating resister (115) embedded in the alumina substrate (11); a first oxygen-ion conductive solid electrolyte layer (131) containing zirconia and alumina and partly constituting an oxygen-detecting cell (13) and the first solid electrolyte layer (131) being laminated with said alumina substrate (11); a second oxygen-ion conductive solid electrolyte layer (121) containing zirconia and alumina and partly constituting an oxygen-pumping cell (12); an ion-leakage preventing ceramic spacer (143) for preventing oxygen-ions from leaking from the second oxygen-ion conductive solid electrolyte layer (121) to the first oxygen-ion conductive solid electrolyte layer (131), the spacer (143) being laminated between the first and second oxygen-ion conductive solid electrolyte layers (131, 121); and a gas-diffusion space (141) formed between an electrode (133) of the oxygen-detecting cell (13) and an electrodes (126) of the oxygen-pumping cell (12). Furthermore, the laminate (1a) is co-fired. Preferably, the zirconia contained at least in the second solid electrolyte layer is made of partially stabilized zirconia, the phase formed in the zirconia consisting essentially of tetragonal and cubic phases. Additionally, an ionic migration-preventing electrode (117) is optionally embedded in the alumina substrate (11) for preventing metal ion migration.
    • 一种气体传感器(1a),其具有包含氧化铝基板(11)的层叠体,所述氧化铝基板(11)具有嵌入在所述氧化铝基板(11)中的加热电阻(115)。 含有氧化锆和氧化铝的第一氧离子导电固体电解质层(131)和部分构成氧检测电池(13)的第一固体电解质层(131)和与所述氧化铝基底(11)层压的第一固体电解质层(131)。 含有氧化锆和氧化铝的第二氧离子导电固体电解质层(121),并且部分构成氧气抽吸电池(12); 用于防止氧离子从第二氧离子导电固体电解质层(121)泄漏到第一氧离子导电固体电解质层(131)的防离子泄漏陶瓷间隔物(143),间隔物(143)是 层压在第一和第二氧离子导电固体电解质层(131,121)之间; 以及形成在氧检测单元(13)的电极(133)和氧抽吸单元(12)的电极(126)之间的气体扩散空间(141)。 此外,层压体(1a)共烧。 优选地,至少在第二固体电解质层中包含的氧化锆由部分稳定的氧化锆制成,氧化锆中形成的相基本上由四方晶相和立方相组成。 另外,离子迁移防止电极(117)任选地嵌入在氧化铝基板(11)中,以防止金属离子迁移。