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Huasheng Jiangquan Group Co Ltd pt100 temperature sensor
Pt100 Temperature Sensor, supplied by Huasheng Jiangquan Group Co Ltd, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Adafruit Industries platinum rtd sensor pt100 3 wire 1 m long
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Platinum Rtd Sensor Pt100 3 Wire 1 M Long, supplied by Adafruit Industries, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Adafruit Industries pt100 rtd temperature sensor amplifier max31865
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Pt100 Rtd Temperature Sensor Amplifier Max31865, supplied by Adafruit Industries, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/1+3+long+m+platinum+pt100+rtd+sensor+wire/pmc12670885-7-1-0
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pt100 rtd temperature sensor amplifier max31865 - by Bioz Stars, 2026-08
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GREISINGER electronic GmbH pt100 sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Pt100 Sensor, supplied by GREISINGER electronic GmbH, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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RS Components pro pt100 rtd sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Pro Pt100 Rtd Sensor, supplied by RS Components, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/pt100+temperature+sensor/pmc12109107-116-4-9
Average 90 stars, based on 1 article reviews
pro pt100 rtd sensor - by Bioz Stars, 2026-08
90/100 stars
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AccuMac Technology Inc pt100 sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Pt100 Sensor, supplied by AccuMac Technology Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/pt100+sensor/pmc12031269-79-2-4
Average 90 stars, based on 1 article reviews
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AccuMac Technology Inc calibrated pt100 sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Calibrated Pt100 Sensor, supplied by AccuMac Technology Inc, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/pt100+sensor/pmc12031269-83-5-7
Average 90 stars, based on 1 article reviews
calibrated pt100 sensor - by Bioz Stars, 2026-08
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METTLER TOLEDO pt100 temperature sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Pt100 Temperature Sensor, supplied by METTLER TOLEDO, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/pt100+sensor/pmc12030344-75-26-21
Average 90 stars, based on 1 article reviews
pt100 temperature sensor - by Bioz Stars, 2026-08
90/100 stars
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90
KERUI PETROLEUM teflon-coated pt100 platinum resistance temperature sensor
ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a <t>resistance</t> <t>temperature</t> <t>detector</t> (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.
Teflon Coated Pt100 Platinum Resistance Temperature Sensor, supplied by KERUI PETROLEUM, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/pt100+sensor/teflon+coated+pt100+platinum+resistance+temperature+sensor/pm40141631-141-11-17
Average 90 stars, based on 1 article reviews
teflon-coated pt100 platinum resistance temperature sensor - by Bioz Stars, 2026-08
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ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a resistance temperature detector (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.

Journal: MethodsX

Article Title: Around the ThermoClock : A precision automated temperature control system for Ex Vivo circadian studies

doi: 10.1016/j.mex.2025.103717

Figure Lengend Snippet: ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a resistance temperature detector (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.

Article Snippet: Platinum RTD Sensor - PT100 - 3 Wire 1 m long , 5 , Adafruit , 59.75 , .

Techniques: Plasmid Preparation, Control

ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a resistance temperature detector (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.

Journal: MethodsX

Article Title: Around the ThermoClock : A precision automated temperature control system for Ex Vivo circadian studies

doi: 10.1016/j.mex.2025.103717

Figure Lengend Snippet: ThermoClock system overview schematics. The microcontroller (Arduino DUE) receives the desired temperature vector, T desired ( t ) , which contains setpoints of each temperature module, T desired , i ( t ) . It also the measured temperature array, T measured ( t ), which contains real-time temperature readings from each module, T measured , i ( t ) . The microcontroller calculates the error array, ( t ) , which is the input to the proportional-integral-derivative (PID) control operating under the same gains for every module. The PID control output PWM signals, u i ( t ) , which are sent to individual bipolar junction transistors (BJTs). BJTs regulate the current output, i i ( t ) , to the heating pads, thereby controlling their temperatures and that of the well plates placed on top. The actual temperature of each module is measured using a resistance temperature detector (RTD), then sent back to the microcontroller for calculation and for logging onto a microSD card.

Article Snippet: Adafruit PT100 RTD Temperature Sensor Amplifier - MAX31865 , 5 , Adafruit , 74.75 , .

Techniques: Plasmid Preparation, Control

Connecting the PCB to the sensors, heating pads, and microSD card. (A) ThermoClock Wiring (Refer to for individual component positions; Abbreviations on PCB: Pad 1, 2, 3,… = heating pad 1, 2, 3, …; TR1, 2, 3,… = BJT 1, 2, 3,…; R1,2,3,…=220 ohm resistor 1, 2, 3…; Sensor1, 2, 3,…= RTD 1, 2, 3,….; SPI = (Arduino DUE) serial peripheral interface; LCD = liquid crystal display; 5VReg1= 5 V linear voltage regulator; C1 = 0.33 µF capacitor; C2 = 0.1 µF capacitor; abbreviations adjacent to the connectors (labelled G) correspond to pins on the SD and MAX31685 breakout boards). (B) Fully wired PCB and Arduino for operating five temperature modules with zoom in on MAX31865 breakout boards configuration.

Journal: MethodsX

Article Title: Around the ThermoClock : A precision automated temperature control system for Ex Vivo circadian studies

doi: 10.1016/j.mex.2025.103717

Figure Lengend Snippet: Connecting the PCB to the sensors, heating pads, and microSD card. (A) ThermoClock Wiring (Refer to for individual component positions; Abbreviations on PCB: Pad 1, 2, 3,… = heating pad 1, 2, 3, …; TR1, 2, 3,… = BJT 1, 2, 3,…; R1,2,3,…=220 ohm resistor 1, 2, 3…; Sensor1, 2, 3,…= RTD 1, 2, 3,….; SPI = (Arduino DUE) serial peripheral interface; LCD = liquid crystal display; 5VReg1= 5 V linear voltage regulator; C1 = 0.33 µF capacitor; C2 = 0.1 µF capacitor; abbreviations adjacent to the connectors (labelled G) correspond to pins on the SD and MAX31685 breakout boards). (B) Fully wired PCB and Arduino for operating five temperature modules with zoom in on MAX31865 breakout boards configuration.

Article Snippet: Adafruit PT100 RTD Temperature Sensor Amplifier - MAX31865 , 5 , Adafruit , 74.75 , .

Techniques: