• Title/Summary/Keyword: temperature control circuit

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Estimation of Insulated-gate Bipolar Transistor Operating Temperature: Simulation and Experiment

  • Bahun, Ivan;Sunde, Viktor;Jakopovic, Zeljko
    • Journal of Power Electronics
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    • v.13 no.4
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    • pp.729-736
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    • 2013
  • Knowledge of a power semiconductor's operating temperature is important in circuit design and converter control. Designing appropriate circuitry that does not affect regular circuit operation during virtual junction temperature measurement at actual operating conditions is a demanding task for engineers. The proposed method enables virtual junction temperature estimation with a dedicated modified gate driver circuit based on real-time measurement of a semiconductor's quasi-threshold voltage. A simulation was conducted before the circuit was designed to verify the concept and to determine the basic properties and potential drawbacks of the proposed method.

Thermal Compensation Circuit with Improved Compensation Characteristic for Power Amplifier (개선된 보상특성을 갖는 증폭기용 온도보상회로)

  • Jung, Young-Bae
    • Journal of IKEEE
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    • v.16 no.3
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    • pp.177-181
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    • 2012
  • This paper introduces a thermal compensation circuit with improved compensation characteristic for amplifiers to provide stable output power regardless environmental temperature. The proposed thermal compensation circuit is composed of two branchline couplers having two diodes between them. And, the thermistor whose resistance varies significantly with temperature inversely and a operational amplifiers, so called as OP-amp, control the diodes in the compensations circuit to realize more effective thermal compendation characteristic compared with conventional circuit.

Effects of the Heated-Humidified Breathing Circuit Applied on the Body Temperature, Shivering, and Thermal Comfort of General Anesthesia Patients (가온가습호흡회로 적용이 전신마취 환자의 체온, 전율, 온도 편안감에 미치는 효과)

  • Son, Won Mi;Park, Jung Suk
    • Journal of East-West Nursing Research
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    • v.26 no.2
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    • pp.149-156
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    • 2020
  • Purpose: The purpose of this study was to identify the effects of the heated-humidified breathing circuit applied on the body temperature, shivering, and thermal comfort of general anesthesia patients. Methods: The participants were patients who received general anesthesia at University Hospital K located in City B, with 25 patients in the experimental group and 25 patients in the control group. The period of this study was from Mar 19 to Apr 26, 2019. The experimental equipment included a heated-humidified breathing circuit, which connects the intubation tube with the anesthesia machine for mechanical ventilation after airway intubation in general anesthesia patients. Results: The body temperature, shivering, and thermal comfort after surgery were significantly different between the two groups (p<.001). However, the body temperature during surgery was slightly different between the experimental group and the control group. Conclusion: A heated-humidified breathing circuit may be actively used in a warming method to prevent the hypothermia of general anesthesia patients.

The Stabilization of Laser Diode Wavelength by Temperature and Current Control (온도, 전류 제어에 의한 레이저 다이오드 파장 안정화)

  • 염진수;양태규;허창우
    • Journal of the Korea Institute of Information and Communication Engineering
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    • v.5 no.3
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    • pp.581-590
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    • 2001
  • This paper has been studied about supply of optical source of laser diode with stable and uniform output wavelength in optical transmission system. The stabilized constant current circuit is designed. The temperature control circuit is constructed for the control of internal temperature of laser diode. Also, the wavelength locker is used in optical output. Finally, A/D, D/A converter and micro-processor are used for the control of temperature.

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Thermal Analysis of High Density Permanent Magnet Synchronous Motor Based on Multi Physical Domain Coupling Simulation

  • Chen, ShiJun;Zhang, Qi;He, Biao;Huang, SuRong;Hui, Dou-Dou
    • Journal of Electrical Engineering and Technology
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    • v.12 no.1
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    • pp.91-99
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    • 2017
  • In order to meet the thermal performance analysis accuracy requirements of high density permanent magnet synchronous motor (PMSM), a method of multi physical domain coupling thermal analysis based on control circuit, electromagnetic and thermal is presented. The circuit, electromagnetic, fluid, temperature and other physical domain are integrated and the temperature rise calculation method that considers the harmonic loss on the frequency conversion control as well as the loss non-uniformly distributed and directly mapped to the temperature field is closer to the actual situation. The key is to obtain the motor parameters, the realization of the vector control circuit and the accurate calculation and mapping of the loss. Taking a 48 slots 8 poles high density PMSM as an example, the temperature rise distribution of the key components is simulated, and the experimental platform is built. The temperature of the key components of the prototype machine is tested, which is in agreement with the simulation results. The validity and accuracy of the multi physical domain coupling thermal analysis method are verified.

Development of Auto-tuning Temperature Controller with Multi-channel (다중채널을 갖는 오토튜닝 온도 제어기 개발)

  • Lee, Kap Rai
    • The Journal of the Convergence on Culture Technology
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    • v.4 no.4
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    • pp.419-427
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    • 2018
  • This paper designs and develops auto-tuning temperature controller with multi-channel, which controller with multi-channel could control a number of control system simultaneously. This controller has multi-channel input and output. And a number of control algorithms run in this controller simultaneously and independently. Firstly we present design method of controller with multi-channel. Secondly we design electrical circuit of sensor input, controller output and power control for temperature control board. And finally we design data protocol for serial communication to monitor control state and present verification of temperature controller with muiti-channel through field experiment.

A Sensorless and Versatile Temperature-Control System for MEMS Microheaters (온도센서를 사용하지 않는 MEMS 마이크로히터 온도제어시스템)

  • Bae, Byung-Hoon;Yeon, Jung-Hoon;Flachsbart Bruce R.;Shannon Mark A.
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.55 no.11
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    • pp.544-547
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    • 2006
  • In this paper, we present a temperature-controlled system for MEMS electrical resistance heaters without a temperature sensor. To rapidly control the heater temperature, the microheater system developed consists of a power supply, power amplifier, digital ${\underline{P}}roportional-{\underline{I}}ntegral-{\underline{D}}ifferential$ (PID) controller, and a quarter bridge circuit with the microheater and three resistors are nominally balanced. The microheaters are calibrated inside a convection oven to obtain the temperature coefficient with a linear or quadratic fit. A voltage amplifier applies the supply voltage proportional to the control signal from the PID controller. Small changes in heater resistance generate a finite voltage across the quarter bridge circuit, which is fed back to the PID controller to compare with the set-point and to generate the control signal. Two MEMS microheaters are used for evaluating the developed control system - a NiCr serpentine microheater for a preconcentrator and a Nickel microheater for ${\underline{P}}olymerase\;{\underline{C}}hain\;{\underline{R}}eaction$ (PCR) chip.

Maximum Current Estimation Method for the Backup of Current Sensor Faults

  • Kim, Jae-Yeon;Park, Si-Hyun;Suh, Young-Suk
    • Journal of information and communication convergence engineering
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    • v.18 no.3
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    • pp.201-206
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    • 2020
  • This paper presents a new method for controlling the current of lighting LEDs without current sensors. This method can be used as backup against LED current sensor faults. LED lighting requires a circuit with a constant current in order to maintain the same brightness when the ambient temperature changes. Therefore, we propose a new current estimation method to provide backup in case of current sensor faults based on the calculation of the inductor current. In the fabricated circuit, the average current changes from 144.03 mA to 155.97 mA when the ambient temperature changes from 0℃ to 60℃. The application of this study can enable the fabrication of a driving IC for LEDs in the form of a single chip without sensing resistors. This is expected to reduce the complexity of the peripheral circuit and enable precise feedback control.

Compensation of temperature characteristics by frequency control of an electronic ballastfor a compact fluorescent lamp (콤팩트 형광램프용 전자식 안정기의 주파수 제어에 의한 온도보상)

  • Song, Sang-Bin;Gwark, Jae-Young;Yeo, In-Seon
    • The Transactions of the Korean Institute of Electrical Engineers B
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    • v.48 no.1
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    • pp.27-33
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    • 1999
  • Compact fluorescent lamps are very sensitive to the variation of ambient temperature. This paper investigates the temperature characteristics of a 15[W] compact fluorescent lamp, and compensates the variation of light output by frequency control of its electronic ballast. Circuit parameters for the inverter of the electronic ballast are obtained by analyzing the R-L-C equivalent circuit for the inverter and the lamp. The optimum ratio of the two capacitance($C_1$/$C_2$), which are connected with the lamp in series and in parallel, respectively, is determined which consideration of the temperature variation within a range of 10~35[$^{\circ}C$]. As a result a value of 10 for the ratio is obtained at an operating frequency of 57[kHz], and with this value the frequency control works well for temperature compensation. Its validity is verified by investigating light output stabilization characteristics resulting from frequency control of the lamp at various temperatures.

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A temperature sensor with low standard deviation with generating reference voltage for use in IoT applications (IoT 어플리케이션에서 활용하는 참조 전압을 같이 생성할 수 있는 표준 편차가 낮은 온도 센서)

  • Juwon Oh;Younggun Pu;Yeonjae Jung;Kangyoon Lee
    • Transactions on Semiconductor Engineering
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    • v.2 no.2
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    • pp.10-14
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    • 2024
  • This paper presents a circuit design aimed at generating the required reference voltage and temperature sensor voltage in conjunction with an ADC, utilizing the current generated by temperature characteristics of BJT components for sensor data conversion. Additionally, two control methods are introduced to reduce the standard deviation of the circuit, resulting in over a ten-fold decrease in standard deviation. The proposed circuit occupies an area of 0.057mm2 and was implemented using 55nm RF process.