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温控电路
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  temperature control circuit
     Application of LTC1923 in DWDM Laser Diode Temperature Control Circuit
     LTC1923在DWDM激光器温控电路中的应用
短句来源
     Design of Onboard Temperature Control Circuit Based on PC104 Bus
     基于PC104总线的弹上温控电路设计
短句来源
     Design of temperature control circuit for laser diode based on MAX1968
     基于MAX1968的半导体激光温控电路设计
短句来源
     Design Precise Temperature Control Circuit for Laser
     一种半导体激光器的精密温控电路设计
     For the purpose of improving precision and practicability of fiber optic gyroscope(FOG) , a current source and a temperature control circuit were designed for driving the light source of FOG.
     为提高光纤陀螺精度 ,实现光纤陀螺工程化 ,设计了高精度恒流源及精密温控电路 ,用于光纤陀螺光源驱动 .
短句来源
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  “温控电路”译为未确定词的双语例句
     Circuit design of temperature control system based on MC68HC705C8
     基于MC68HC705C8的温控电路设计
短句来源
     THE DESIGN FOR TEC CIRCUITS AND TIMING SEQUENCE OF 128×128 INFRARED FOCAL PLANE ARRAY
     128×128红外焦平面阵列时序分析与温控电路设计
短句来源
     A Design of Thermoelectric Circuit Basedon on SG1524
     一种基于SG1524的温控电路设计
短句来源
     All together with crystal resonator are sealed into a 16×16×5.5(mm)~3 metal box by resistance welding. Weight is no less than 5g.
     晶振的振荡电路、放大电路、温控电路及分频电路,均以集成技术来实现,并与石英晶体谐振器—同用电阻焊密封于16×16×5.5(mm)~3的金属盒内,其重小于5克.
短句来源
     It utilizes the principle of resistance radiation to adjust the temperature by current. The temperature range is from 46℃to 52℃ , and the temperature is so invariable that the difference is between ± 0.5℃.
     它利用电阻发热的原理,以电流大小调温,其温控电路温控范围为46℃~52℃,且恒温,误差在±0.5℃内。
短句来源
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  相似匹配句对
     The Analysis of Refridgerator Electronic Temperature Controlling Circuit
     冰箱电子温控电路分析
短句来源
     Improvement of the Temperature-contoling Circuit of the Thermostatic Air-blower-driven Drying Closet
     恒温鼓风干燥箱温控电路改进
短句来源
     Basic Direct Current Circuits
     直流电路
短句来源
     Communications ICs
     通信电路
短句来源
     Intelligent Control of Electric Oven Temperature
     电炉温控智能化
短句来源
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  temperature control circuit
Replacement of the bimetallic temperature regulators of thermostats by an electric temperature control circuit
      
A thermistor is attached to the mount as part of the temperature control circuit.
      
Critical changes included thermostat replacement, redesign of the temperature control circuit, and removal of the cathodic anticorrosion system.
      


This paper expounds the mechanism of the oscillating circuit by calculating the oscillating conditions of an oscillator in AC-Bridge continuous temperature control circuit under the controlled and uncontrolled states. Based on the result of calculation. a method for eliminating over-temperature oscillation is found. The method is easy and simple. In fact, it is absolutely reliable. It can guarantee to keep the oven operating at 50℃~70℃ from damage even if the ambient temperature rises to 100℃.

本文通过对交流桥式连续温控电路中振荡器在控温和超温时振荡条件的计算,阐明了该类振荡电路的工作机理,并据此求得了消灭超温的方法.该方法简单易行,且在实际上是绝对可靠的.它能保证工作温度在50℃-70℃之间的恒温槽不出现超温振荡的环境温度不低于100℃.

Microcrystal oscillators described in the paper include three type: ordinary type, fast-heated simple-thermostatic and multi-signal output type.Which of them, frequency-temperature property of the fast-heated simple-thermostatic type can attain 10~(-7) at constant temperature and 10~(-6) over the positive temperature(0℃~80℃). Now, multi-signal output oscillator can achieve 10MHz, 5MHz, 1MHz, 500KHz and 100KHz output signals, whose frequency stability is 10~(-5). Oscillation circuit, amplification circuit, temperature...

Microcrystal oscillators described in the paper include three type: ordinary type, fast-heated simple-thermostatic and multi-signal output type.Which of them, frequency-temperature property of the fast-heated simple-thermostatic type can attain 10~(-7) at constant temperature and 10~(-6) over the positive temperature(0℃~80℃). Now, multi-signal output oscillator can achieve 10MHz, 5MHz, 1MHz, 500KHz and 100KHz output signals, whose frequency stability is 10~(-5). Oscillation circuit, amplification circuit, temperature control circuit and frequency-dividen circuit are implemented by IC. All together with crystal resonator are sealed into a 16×16×5.5(mm)~3 metal box by resistance welding. Weight is no less than 5g.

本文介绍的微型晶体振荡器有普通型、快速加热简易恒温型、多信号输出等三种类型晶振.其中快速加热简易恒温型在常温下工作时,频率—温度特性达10~(-7),在正温范围工作时,频—温特性达lO~(-6)/(0℃~80℃),多信号输出型目前已作出的每台晶振有1OMHz、5MHz、1MHz、500KHz、1OOKHz等五个频率的信号输出,其频率稳定度为10~(-5).晶振的振荡电路、放大电路、温控电路及分频电路,均以集成技术来实现,并与石英晶体谐振器—同用电阻焊密封于16×16×5.5(mm)~3的金属盒内,其重小于5克.

This paper has discussed the problem of electromagnetic fan clutch for automobile that consists of brush and circuit of electronic temperature control, which appeared in application. The electromagnetic clutch with circuit of the wax temperature control switch and the structure without brush is studied. The clutch without brush over-comes the problem of the clutch with brush. The circuit of the wax temperature control switch is more reliable than the electronic one. Based on the test, the result showed that...

This paper has discussed the problem of electromagnetic fan clutch for automobile that consists of brush and circuit of electronic temperature control, which appeared in application. The electromagnetic clutch with circuit of the wax temperature control switch and the structure without brush is studied. The clutch without brush over-comes the problem of the clutch with brush. The circuit of the wax temperature control switch is more reliable than the electronic one. Based on the test, the result showed that electromagnetic fan clutch for Shanghai SH—760 model car raised its' reliab ility after the magnetic ciruit was applied, without brush and circuit of the wax temperature control switch.

分析了电子温控电路和有电刷结构的汽车电磁风扇离合器在推广应用中存在的问题,研究了蜡质温控开关电路和无电刷结构的电磁风扇离合器的磁路。蜡质温控开关的电路与电子温控电路相比较有如下优点:结构简单、性能稳定、使用可靠。试验证明,上海SH-760型轿车电磁风扇离合器采用无刷磁路和蜡质温控开关的电路后,提高了产品质量,促进了推广应用工作。

 
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