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    • 3. 发明专利
    • Electronic thermometer
    • 电子温度计
    • JPS6179126A
    • 1986-04-22
    • JP20277884
    • 1984-09-27
    • Seiko Epson CorpShiojiri Kogyo Kk
    • OZAWA MASAKIHOSAKA TOSHIYUKIYOSHIZAWA MASAYUKI
    • G01K7/24G01K1/02
    • G01K1/028
    • PURPOSE:To reduce the cost of the titled therometer by providing an initial logic adjusting circuit which corrects variance in the ratio of the resistance value of a thermistor at the temperature during initial adjustment and the resistance value of a reference resistance by varying a gate setting. CONSTITUTION:Resistance value-frequency conversion is performed by the reference resistance 102 as many times as set and then resistance value- frequency conversion is performed by the thermistor 101 within the time when the same time with conversion is generated by a frequency dividing circuit 5 which generates the same resistance value-frequency conversion time of the reference resistance 102 and the thermistor 101 by using the clock of an oscillation circuit 4. Then, the counted value of the conversion of the thermistor 101 is latched by a latch 12, decoded by a decoder 13, and displayed on an LCD14. Then, an N count number is equalized to a set number by the initial logic adjusting circuit 3 which correct the reference resistance and resistance value of the thermistor 101 so a specific expression is satisfied according to the reference resistance 102 and the count number and resistance value of the thermistor 101.
    • 目的:通过提供一个初始逻辑调节电路来降低标准的测微计的成本,该电路通过改变门设置来校正热敏电阻的电阻值在初始调节期间的温度和参考电阻的电阻值之间的差异。 构成:电阻值 - 频率转换由参考电阻102执行多次,然后在由分频电路5产生转换的同时,由热敏电阻101进行电阻值 - 频率转换, 通过使用振荡电路4的时钟产生参考电阻102和热敏电阻101相同的电阻值 - 频率转换时间。然后,热敏电阻101的转换的计数值由锁存器12锁存,由 解码器13,并显示在LCD14上。 然后,通过校正热敏电阻101的参考电阻和电阻值的初始逻辑调整电路3将N个计数值与设定数相等,从而根据参考电阻102和计数数和电阻值满足特定表达式 的热敏电阻101。
    • 4. 发明专利
    • Electronic thermometer
    • 电子温度计
    • JPS61133829A
    • 1986-06-21
    • JP25718184
    • 1984-12-04
    • Seiko Epson CorpShiojiri Kogyo Kk
    • OZAWA MASAKIHOSAKA TOSHIYUKIYOSHIZAWA MASAYUKI
    • G01D3/00G01K1/02G01K7/24G01K7/25G01K15/00
    • G01K7/25G01K1/02G01K7/245
    • PURPOSE:To enable a highly accurate adjustment of absolute values while lowering the cost, by variably setting the measured resistance value of a thermosensitive element to correct variations in the temperature at the point of adjusting the resistance value ratio between the thermosensitive element and a reference resistance. CONSTITUTION:A reference resistance 2 and a thermosensitive element 3 are arranged and the charge/discharge frequency with the thermosensitive element 3 and a capacitance 4 within a fixed period and the charge/discharge frequency with the reference resistance 2 and the capacitance 4 are measured by counting clock pulses generated from a main controller 17. As these counts are proportional to the respective resistance values, the ratio thereof is calculated and converted to a temperature digital value by a conversion table of a ROM 12 to be shown on a display section 15. Then, second measured clock value is adjusted as adjustment of absolute values while first clock measurement set value is allowed to be set variable with an initial logical adjustment circuit 9 thereby eliminating variations in the resistance value ratio.
    • 目的:为了在降低成本的同时高精度地调整绝对值,通过可变地设置热敏元件的测量电阻值来校正热敏元件与参考电阻之间的电阻值比的温度变化 。 构成:布置参考电阻2和热敏元件3,并且在固定周期内将热敏元件3和电容4的充电/放电频率以及参考电阻2和电容4的充电/放电频率通过 计数从主控制器17产生的时钟脉冲。由于这些计数与各个电阻值成比例,所以其比率被计算并通过ROM12的转换表转换成温度数字值,以在显示部分15上显示。 然后,将第二测量时钟值作为绝对值的调整进行调节,同时可以利用初始逻辑调整电路9将第一时钟测量设定值设定为可变,从而消除电阻值比的变化。
    • 8. 发明专利
    • ELECTRONIC THERMOMETER
    • JPS60161538A
    • 1985-08-23
    • JP1749984
    • 1984-02-01
    • SHIOJIRI KOGYO KKSUWA SEIKOSHA KK
    • YOSHIZAWA MASAYUKIOZAWA MASAKIHOSAKA TOSHIYUKI
    • G01K7/24G01K1/02G01K7/25
    • PURPOSE:To simplify adjustment and to enhance adjustment accuracy, by correcting the irregularity in the ratio of resistance values of a thermister and a reference resistor at the time of initial adjustment by the initial setting of a digital counter. CONSTITUTION:The output of a resistance value/frequency converter circuit 1 to which a thermistor 101 and a reference resistor 102 are connected, and the output of a clock frequency divider circuit 4 are inputted to a NOR gate 10 and the output thereof is inputted to a frequency divider circuit 2. The set signal of the frequency divider circuit 2 is imparted from a control circuit 3 and an initial adjusting logical circuit is formed of said circuits 2, 3. In this cases, resistance value/frequency conversion by the reference resistor 102 is performed definite number of times and that by the termistor 101 is performed for the same time as said conversion by the reference resistor 102 and the count number thereof is decoded and displayed. A digital counter is used in this data correction and the number of times for performing resistance value/frequency conversion are made variable and adjusted by a first reference resistor and, when display becomes same to a measured temp., adjustment is stopped and the number of times of conversion by the reference resistor is fixed.
    • 10. 发明专利
    • DATA IMPRINTING DEVICE FOR CAMERA
    • JPS63216037A
    • 1988-09-08
    • JP4964087
    • 1987-03-04
    • SHIOJIRI KOGYO KK
    • OZAWA MASAKI
    • G03B17/24
    • PURPOSE:To make the light emission quantity of a light emission source specific and constant and to hold the brightness of data to be imprinted in a film surface constant by applying a constant voltage to the light emission source by a driving means consisting of a operational amplifier and a reference power source. CONSTITUTION:When a camera imprinting signal is inputted from the camera main body to the camera imprinting input terminal 9 of an electronic timer and imprinting control part 7, the imprinting control part outputs the one signal of the operational amplifier 1 to a control line 8 so as to turn on a lamp 4 for a constant time. When the operational amplifier 1 turns on, the driving means 3 operates so that a reference voltage VR that a reference power source 2 generates for the plus side of a source battery 6 is at the same level as the voltage applied to the lamp 4. The lamp 4 irradiates an internal LCD 10 for light emission imprinting with a constant applied voltage for the on time of the operational amplifier 1, and photographic data on a data, time, etc., outputted to the internal LCD 10 for imprinting are imprinted in the film surface.