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    • 151. 发明申请
    • Flame retardant ethylene family resin composite and flame retardant electric wire or cable
    • 阻燃乙烯家族树脂复合阻燃电线或电缆
    • US20060014859A1
    • 2006-01-19
    • US11223963
    • 2005-09-13
    • Jun ToshimitsuJun Suzuki
    • Jun ToshimitsuJun Suzuki
    • C08K9/02
    • H01B3/441C08K3/22C08K2003/2217H01B7/295C08L23/08
    • A dispersion medium (31) composed as a mixture of EVA and EEA has therein a dispersion system of flame retardant particles (R1) including magnesium hydroxide treated with polyorganosiloxane, so that polyorganosilane (41) is dispersed with an equal uniformity to a flame retardant agent (40) containing magnesium hydroxide, thereby allowing a resultant flame retardant resin composite (CR1) to have a high flame retardancy, enabling prevention of the emission of smoke in great quantities or that of detrimental gases, such as halogen gases, when burnt, while having a specific gravity of 1.14 or less, enabling the separation by specific gravity difference, and this (CR1) is used as a covering material (12) for an electric wire (10) or cable (20) to be high in flame retardancy.
    • 作为EVA和EEA的混合物构成的分散介质(31)具有由聚有机硅氧烷处理的包含氢氧化镁的阻燃粒子(R 1)的分散体系,使得聚有机硅烷(41)以均匀分散于阻燃剂 含有氢氧化镁的试剂(40),从而使所得到的阻燃树脂复合物(CR 1)具有高阻燃性,能够防止大量的烟气或卤素气体等有害气体燃烧 同时具有1.14以下的比重,能够通过比重差进行分离,并且将该(CR 1)用作电线(10)或电缆(20)的覆盖材料(12)的高度 阻燃性
    • 154. 发明授权
    • Phase shift circuit and FM detector circuit
    • 相移电路和FM检波电路
    • US06586922B2
    • 2003-07-01
    • US09821395
    • 2001-03-28
    • Takao SaekiHiroya YamamotoTakashi IijimaJun SuzukiMasaki Kinoshita
    • Takao SaekiHiroya YamamotoTakashi IijimaJun SuzukiMasaki Kinoshita
    • G01R2500
    • H03K9/06H03D3/04H03K5/13H03K2005/00078H03K2005/00156H03K2005/00234
    • Transistors (12a, 12b) turn on and off with mutually opposite phase input signals. Capacitors (16a, 16b) discharge when the transistors (12a, 12b) turn on, and capacitors (16a, 16b) are charged by constant current from constant current sources (18a, 18b) when the transistors (12a, 12b) turn off. As a result, a gradually rising voltage is obtained at the positive input ends of comparators (14a, 14b) while the input signals are L. By comparing this with fixed voltages of reference sources (20a, 20b), signals having rise timing shifted from input signals by 90° are obtained. The outputs of the comparators (14a, 14b) are mutually shifted by 180°, and at the rise of these outputs, an RS flip-flop (22) is set and reset so that signals delayed in phase by 90° with respect to the input signals are obtained at its outputs.
    • 晶体管(12a,12b)通过相互相反的相位输入信号导通和截止。 当晶体管(12a,12b)关闭时,当晶体管(12a,12b)导通时,电容器(16a,16b)放电,并且电容器(16a,16b)由来自恒流源(18a,18b)的恒定电流充电。 结果,在输入信号为L时,在比较器(14a,14b)的正输入端处获得逐渐上升的电压。通过与参考源(20a,20b)的固定电压进行比较,具有从 输入信号达到90°。 比较器(14a,14b)的输出相互偏移180°,并且在这些输出的上升时,RS触发器(22)被置位和复位,使得相位延迟相位相差90°的信号 在其输出端获得输入信号。
    • 155. 发明授权
    • Image forming apparatus
    • 图像形成装置
    • US06560426B2
    • 2003-05-06
    • US09947377
    • 2001-09-07
    • Katsuhiro SakaizawaSatoshi TsuruyaJun SuzukiMasaru Shimura
    • Katsuhiro SakaizawaSatoshi TsuruyaJun SuzukiMasaru Shimura
    • G03G1524
    • G03G21/0064G03G15/0241
    • An image forming apparatus includes an image bearing member; an electrostatic image forming unit for forming an electrostatic image on said image bearing member, the electrostatic image forming unit including a flexible charge member for electrically charging the image bearing member, the charge member forming a nip between the image bearing member and itself and is supplied with an oscillating voltage, wherein electroconductive particles are provided in the nip; and a developing unit for developing an electrostatic image formed on the image bearing member with a developer, the developing unit being capable of a residual developer on the image bearing member, wherein a frequency f (cycle/sec) of the oscillating voltage and a peripheral speed v (mm/sec) of the image bearing member satisfy |f/v|≧12 (cycle/mm).
    • 图像形成装置包括:图像承载部件; 静电图像形成单元,用于在所述图像承载部件上形成静电图像,所述静电图像形成单元包括用于对图像承载部件充电的柔性充电部件,所述充电部件在图像承载部件与其自身之间形成辊隙, 具有振荡电压,其中导电颗粒设置在辊隙中; 以及显影单元,用于利用显影剂使形成在图像承载部件上的静电图像显影,该显影单元能够在图像承载部件上具有残留的显影剂,其中振荡电压的频率f(周期/秒) 图像承载部件的速度v(mm / sec)满足| f / v |> = 12(周期/ mm)。
    • 156. 发明授权
    • Cleaning member cleaning device and image forming apparatus and process cartridge to which this cleaning device is applied
    • 清洁构件,清洁装置,以及应用该清洁装置的图像形成装置和处理盒
    • US06405015B1
    • 2002-06-11
    • US09375997
    • 1999-08-19
    • Jun Suzuki
    • Jun Suzuki
    • G03G2100
    • G03G21/0017G03G2215/0177G03G2221/183
    • A cleaning member for rubbing and removing toner having a shape coefficient SF1 of 10 to 150 remaining on a member to be cleaned in an electrophotographic apparatus. The cleaning member has an elastic blade, which has a 200 kg/cm2 or greater value or breaks a tensile strength of 300% elongation and a hardness of (JIS A) 60° to 80°. A blade supporting member causes the elastic blade to abut in a counter direction against the photosensitive member, which moves endlessly to rub and remove toner remaining on the photosensitive member after a transfer process, wherein the elastic blade abuts against a surface of a photosensitive member at an abutment pressure of a 55 gf/cm or greater without an inroad amount of the elastic blade into said photosensitive member exceeding 1.6 mm.
    • 一种用于摩擦和去除在电子照相设备中待清洁的构件上残留的形状系数SF1为10至150的调色剂的清洁构件。 清洁构件具有200kg / cm 2以上的弹性叶片,或断裂伸长率为300%,(JIS A)的硬度为60〜80度的拉伸强度。 刀片支撑构件使得弹性刮板相对于感光构件相反方向抵接,感光构件在转印过程之后不断地移动以摩擦和去除残留在感光构件上的调色剂,其中弹性刮板抵靠感光构件的表面 55gf / cm以上的基台压力,而不具有弹性叶片进入所述感光部件的内径超过1.6mm。
    • 158. 发明授权
    • Apparatus and methods for measuring wavefront aberrations of a
microlithography projection lens
    • 用于测量微光刻投影透镜的波前像差的装置和方法
    • US5898501A
    • 1999-04-27
    • US899688
    • 1997-07-24
    • Jun SuzukiTakashi GemmaYutaka Ichihara
    • Jun SuzukiTakashi GemmaYutaka Ichihara
    • G01M11/02G03F7/20G01B9/02
    • G01M11/0271G03F7/706
    • Apparatus and methods are disclosed for measuring wavefront aberrations microlithography projection lenses such as i-line or excimer laser projection lenses. The apparatus comprises an argon-ion laser irradiating a Fizeau surface that reflects reference light and transmits test light. The test light is reflected by a spherical reflecting surface to pass twice through the test lens and the Fizeau surface, to interfere with the reference light. A piezoelectric element changes the fringes slightly. An image-pickup device receives the interference fringes and outputs data to a processor that calculates corresponding wavefront aberrations of the test lens. For testing an i-line lens, the argon laser can be a single-mode, 363.8 nm laser. For testing a lens used with a KrF excimer laser, the argon laser can emit second-harmonic light at 248.25 nm.
    • 公开了用于测量诸如i线或准分子激光投影透镜的微平面投影透镜的波前像差的装置和方法。 该装置包括照射反映参考光并传送测试光的Fizeau表面的氩离子激光。 测试光被球面反射表面反射通过两次穿过测试透镜和Fizeau表面,以干扰参考光。 压电元件稍微改变边缘。 图像拾取装置接收干涉条纹并将数据输出到计算相应的测试透镜的波前像差的处理器。 为了测试i线透镜,氩激光器可以是单模,363.8nm的激光器。 为了测试与KrF准分子激光器一起使用的透镜,氩激光器可以发射248.25nm的二次谐波光。
    • 159. 发明授权
    • Image display system
    • 图像显示系统
    • US5774261A
    • 1998-06-30
    • US309504
    • 1994-09-23
    • Shigeru OmoriJun Suzuki
    • Shigeru OmoriJun Suzuki
    • G02B27/22H04N13/00H04N13/04
    • H04N13/0239G02B27/225G02B27/2264H04N13/0296H04N13/0443H04N13/047H04N13/0475H04N13/0477H04N13/0481
    • An image display system for providing images such that a right eye and a left eye of an observer see different images, respectively. The image display system includes: a camera for taking a picture of said observer and then outputting an image of the observer; a pair of liquid crystal display devices transparent to light; an image generation device for generating a back-light image based on an image output signal provided by the camera; a pair of CRT devices for displaying a back-light image generated by the image generation device to illuminate the pair of liquid crystal display devices from their back sides; a mirror for combining images present on the pair of liquid crystal display devices into one image; and optical elements for giving directivity to back-light emitted by the pair of back-lighting devices so that one of the pair of CRT devices provides back-light illumination for the right eye and the other one of the pair of CRT devices provides back-light illumination for the left eye.
    • 一种用于提供图像的图像显示系统,使得观察者的右眼和左眼分别看到不同的图像。 图像显示系统包括:摄像机,用于拍摄所述观察者的图像,然后输出观察者的图像; 一对对光透明的液晶显示装置; 图像生成装置,用于基于由所述照相机提供的图像输出信号生成背光图像; 一对CRT装置,用于显示由图像生成装置生成的背光图像,以从其背面照亮一对液晶显示装置; 用于将存在于所述一对液晶显示装置上的图像组合成一个图像的反射镜; 以及光学元件,用于给予由一对后照明装置发射的背光的方向性,使得所述一对CRT装置中的一个为右眼提供背光照明,并且所述一对CRT装置中的另一个提供反向照明装置, 左眼照明。