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TH0200
TUNKIA
The TH0200 is a high-precision, wide-range resistance measurement standard. It comes with a built-in reference resistor, enabling fast and accurate measurement of 0.01-grade or lower standard resistors/resistance boxes. It also supports external connection of a standard reference resistor for achieving even higher measurement precision.
This device utilizes a comparator bridge principle, making it ideal for metrology laboratories to perform measurement, comparison, transfer, and calibration of standard resistors or resistance boxes.
References:
JJG 166-2022 Verification Regulation of DC Standard Resistors.
JJG 982-2022 Verification Regulation of DC Resistance Boxes.
Output Current Range: 3.16 μ A ~ 10 A
Resistance Measurement Range: 1 m Ω ~ 11 M Ω
Typical Resistance Measurement Uncertainty: 10 ppm
Built-in Standard Reference Resistor: Enables fast and convenient testing; supports external connection for higher precision resistance measurements
Measurement Cycle: 8 seconds (adjustable)
Equipped with RS232, USB, and LAN interfaces, facilitating the construction of automated testing systems
Large LCD touchscreen: Offers intuitive display and user-friendly operation
Simultaneously displays test power, current, and measured resistance values
Provides statistical analysis features, including mean value and standard deviation
High reliability with excellent protection mechanisms
Optional dedicated software for automatic calibration of resistors/resistance boxes
Transfer of standard resistor values
Calibration of standard resistors
Calibration of wide-range resistance boxes
Verification of single and double bridge calibration devices
☆ Calibration of 2-wire/4-wire resistance (box) with internal reference |
|
l Using built-in standard resistors as references to calibrate 0.005-grade or lower standard resistors/resistance boxes l For measured resistance values R ≥ 100 kΩ, two-wire method is recommended。 l For measured resistance values R ≤ 10 kΩ, four-wire method is recommended l The four-wire method effectively eliminates errors caused by lead resistance, improving measurement accuracy |
☆ Calibration of 2-wire/4-wire resistance (box) with external reference |
l Using external standard resistors as references, calibrate 0.001-grade high-precision standard resistors/resistance boxes l For measured resistance values R ≥ 100 kΩ, the two-wire method is recommended l For measured resistance values R ≤ 10 kΩ, the four-wire method is recommended l The four-wire method effectively eliminates errors caused by lead resistance, improving measurement accuracy |
☆ Comprehensive Resistance Testing and Analysis | |
S/N | Function |
1 | Visually display the changing trend of resistance measurement values. |
2 | Perform comprehensive analysis of resistance measurement values, including average (Avg), standard deviation (S.dev), and number of measurements (N). |
3 | Switchable trend charts, tables, and histograms for easy user analysis of measurement data. |
Advantages: The integration of system-wide testing and analysis functions eliminates the need for manual, time-consuming, and multiple measurement recording in traditional testing methods, significantly optimizing test operations and improving calibration efficiency. It also facilitates easy evaluation of the resistance testing process by test personnel. |
☆ Front Panel/ Side Panel | |
S/N | Function |
1 | Large-size LCD touch color screen with multi-channel voltage and waveform display, intuitive touch operation, enhancing the instrument's usability. |
2 | Button and knob operation panel allows users to easily set resistance calibration values, making metrology work more convenient. |
3 | Measurement terminals for tested resistance/resistance box (Rx) and standard reference resistance (Rs). |
4 | Foldable support feet elevate the instrument by approximately 15° for optimal operation and viewing angles. |
5 | Ergonomically designed handle for easy transportation of the instrument. |
☆ Rear Panel | |
S/N | Function |
1 | High-power cooling fan: Efficient cooling system ensures long-term stable operation of the instrument. |
2 | Versatile communication interfaces: Includes RS232, USB, and LAN, enabling users to build fully automated testing systems. |
3 | Chassis Ground: Ensure the chassis is properly grounded before using the equipment. |
4 | Power Interface: Power input interface with switch and fuse. |
The TH0200 is a high-precision, wide-range resistance measurement standard. It comes with a built-in reference resistor, enabling fast and accurate measurement of 0.01-grade or lower standard resistors/resistance boxes. It also supports external connection of a standard reference resistor for achieving even higher measurement precision.
This device utilizes a comparator bridge principle, making it ideal for metrology laboratories to perform measurement, comparison, transfer, and calibration of standard resistors or resistance boxes.
References:
JJG 166-2022 Verification Regulation of DC Standard Resistors.
JJG 982-2022 Verification Regulation of DC Resistance Boxes.
Output Current Range: 3.16 μ A ~ 10 A
Resistance Measurement Range: 1 m Ω ~ 11 M Ω
Typical Resistance Measurement Uncertainty: 10 ppm
Built-in Standard Reference Resistor: Enables fast and convenient testing; supports external connection for higher precision resistance measurements
Measurement Cycle: 8 seconds (adjustable)
Equipped with RS232, USB, and LAN interfaces, facilitating the construction of automated testing systems
Large LCD touchscreen: Offers intuitive display and user-friendly operation
Simultaneously displays test power, current, and measured resistance values
Provides statistical analysis features, including mean value and standard deviation
High reliability with excellent protection mechanisms
Optional dedicated software for automatic calibration of resistors/resistance boxes
Transfer of standard resistor values
Calibration of standard resistors
Calibration of wide-range resistance boxes
Verification of single and double bridge calibration devices
☆ Calibration of 2-wire/4-wire resistance (box) with internal reference |
|
l Using built-in standard resistors as references to calibrate 0.005-grade or lower standard resistors/resistance boxes l For measured resistance values R ≥ 100 kΩ, two-wire method is recommended。 l For measured resistance values R ≤ 10 kΩ, four-wire method is recommended l The four-wire method effectively eliminates errors caused by lead resistance, improving measurement accuracy |
☆ Calibration of 2-wire/4-wire resistance (box) with external reference |
l Using external standard resistors as references, calibrate 0.001-grade high-precision standard resistors/resistance boxes l For measured resistance values R ≥ 100 kΩ, the two-wire method is recommended l For measured resistance values R ≤ 10 kΩ, the four-wire method is recommended l The four-wire method effectively eliminates errors caused by lead resistance, improving measurement accuracy |
☆ Comprehensive Resistance Testing and Analysis | |
S/N | Function |
1 | Visually display the changing trend of resistance measurement values. |
2 | Perform comprehensive analysis of resistance measurement values, including average (Avg), standard deviation (S.dev), and number of measurements (N). |
3 | Switchable trend charts, tables, and histograms for easy user analysis of measurement data. |
Advantages: The integration of system-wide testing and analysis functions eliminates the need for manual, time-consuming, and multiple measurement recording in traditional testing methods, significantly optimizing test operations and improving calibration efficiency. It also facilitates easy evaluation of the resistance testing process by test personnel. |
☆ Front Panel/ Side Panel | |
S/N | Function |
1 | Large-size LCD touch color screen with multi-channel voltage and waveform display, intuitive touch operation, enhancing the instrument's usability. |
2 | Button and knob operation panel allows users to easily set resistance calibration values, making metrology work more convenient. |
3 | Measurement terminals for tested resistance/resistance box (Rx) and standard reference resistance (Rs). |
4 | Foldable support feet elevate the instrument by approximately 15° for optimal operation and viewing angles. |
5 | Ergonomically designed handle for easy transportation of the instrument. |
☆ Rear Panel | |
S/N | Function |
1 | High-power cooling fan: Efficient cooling system ensures long-term stable operation of the instrument. |
2 | Versatile communication interfaces: Includes RS232, USB, and LAN, enabling users to build fully automated testing systems. |
3 | Chassis Ground: Ensure the chassis is properly grounded before using the equipment. |
4 | Power Interface: Power input interface with switch and fuse. |
Resistance | Resolution | Test Current | Test Power | Measurement Uncertainty( k=2 , μΩ / Ω ) |
1 mΩ | 100 pΩ | 3.16 A ~ 10 A | 10 mW ~ 100 mW | 30+ KP[1]*2 |
10 mΩ | 1 nΩ | 1 A ~ 3.16 A | 10 mW ~ 100 mW | 20+ KP[1] *1 |
100 mΩ | 10 nΩ | 0.316 A ~ 1 A | 10 mW ~ 100 mW | 10+ KP[1] *0.5 |
1 Ω | 100 nΩ | 0.1 A ~ 0.316 A | 10 mW ~ 100 mW | 10 |
10 Ω | 1 μΩ | 31.6 mA ~ 100 mA | 10 mW ~ 100 mW | 10 |
100 Ω | 10 μΩ | 10 mA ~ 31.6 mA | 10 mW ~ 100 mW | 10 |
1 kΩ | 100 μΩ | 3.16 mA ~ 10 mA | 10 mW ~ 100 mW | 10 |
10 kΩ | 1 mΩ | 1 mA ~ 3.16 mA | 10 mW ~ 100 mW | 10 |
100 kΩ | 10 mΩ | 0.316 mA ~ 1 mA | 10 mW ~ 100 mW | 10 |
1 MΩ | 100 mΩ | 31.6 μA ~ 100 μA | 1 mW ~ 10 mW | 30 |
10 MΩ | 1 Ω | 3.16 μA ~ 10 μA | 0.1 mW ~ 1 mW | 50 |
Note 1:KP is the power coefficient,KP=100 mW/ test power |
Resistance | Resolution | Reference Resistance | Test Current | Test Power | Proportional Measurement Uncertainty( k=2 , μΩ / Ω ) |
1 mΩ | 100 pΩ | 10 Ω | 3.16 A ~ 10 A | 10 mW ~ 100 mW | 20+ KP[1]*2 |
10 mΩ | 1 nΩ | 10 Ω | 1 A ~ 3.16 A | 10 mW ~ 100 mW | 15+ KP[1]*1 |
100 mΩ | 10 nΩ | 10 Ω | 0.316 A ~ 1 A | 10 mW ~ 100 mW | 5+ KP[1] *0.5 |
1 Ω | 100 nΩ | 10 Ω | 0.1 A ~ 0.316 A | 10 mW ~ 100 mW | 5 |
10 Ω | 1 μΩ | 10 Ω | 31.6 mA ~ 100 mA | 10 mW ~ 100 mW | 5 |
100 Ω | 10 μΩ | 10 Ω | 10 mA ~ 31.6 mA | 10 mW ~ 100 mW | 5 |
1 kΩ | 100 μΩ | 100 Ω | 3.16 mA ~ 10 mA | 10 mW ~ 100 mW | 5 |
10 kΩ | 1 mΩ | 100 Ω | 1 mA ~ 3.16 mA | 10 mW ~ 100 mW | 8 |
100 kΩ | 10 mΩ | 1 kΩ | 0.316 mA ~ 1 mA | 10 mW ~ 100 mW | 8 |
1 MΩ | 100 mΩ | 10 kΩ | 31.6 μA ~ 100 μA | 1 mW ~ 10 mW | 20 |
Note 1:KP is the power coefficient,KP=100m W/ test power |
Power Supply | AC 90 V ~ 264 V / 47 Hz ~ 63 Hz |
Warm-Up Time | Minimum 1 hour. The warm-up time after power-off should be at least twice the duration of the power-off period |
Maximum Power Consumption | 150 VA |
Temperature Performance | Operating Temperature: 18 ℃ ~ 28 ℃ Storage Temperature: -20 ℃ ~ 60 ℃ |
Humidity Performance | Operating Humidity: (20% ~ 50%) R.H., non-condensing Storage Humidity: (15% ~ 80%) R.H., non-condensing |
Display Screen | LCD; 7 inch; |
Instrument Weight | About 13 kg |
Communication Interfaces | RS 232, LAN, USB(Type-B) |
Dimensions | W * D * H=435 mm * 398 mm * 177 mm(Excluding handle and support feet) |
Units: mm |
Resistance | Resolution | Test Current | Test Power | Measurement Uncertainty( k=2 , μΩ / Ω ) |
1 mΩ | 100 pΩ | 3.16 A ~ 10 A | 10 mW ~ 100 mW | 30+ KP[1]*2 |
10 mΩ | 1 nΩ | 1 A ~ 3.16 A | 10 mW ~ 100 mW | 20+ KP[1] *1 |
100 mΩ | 10 nΩ | 0.316 A ~ 1 A | 10 mW ~ 100 mW | 10+ KP[1] *0.5 |
1 Ω | 100 nΩ | 0.1 A ~ 0.316 A | 10 mW ~ 100 mW | 10 |
10 Ω | 1 μΩ | 31.6 mA ~ 100 mA | 10 mW ~ 100 mW | 10 |
100 Ω | 10 μΩ | 10 mA ~ 31.6 mA | 10 mW ~ 100 mW | 10 |
1 kΩ | 100 μΩ | 3.16 mA ~ 10 mA | 10 mW ~ 100 mW | 10 |
10 kΩ | 1 mΩ | 1 mA ~ 3.16 mA | 10 mW ~ 100 mW | 10 |
100 kΩ | 10 mΩ | 0.316 mA ~ 1 mA | 10 mW ~ 100 mW | 10 |
1 MΩ | 100 mΩ | 31.6 μA ~ 100 μA | 1 mW ~ 10 mW | 30 |
10 MΩ | 1 Ω | 3.16 μA ~ 10 μA | 0.1 mW ~ 1 mW | 50 |
Note 1:KP is the power coefficient,KP=100 mW/ test power |
Resistance | Resolution | Reference Resistance | Test Current | Test Power | Proportional Measurement Uncertainty( k=2 , μΩ / Ω ) |
1 mΩ | 100 pΩ | 10 Ω | 3.16 A ~ 10 A | 10 mW ~ 100 mW | 20+ KP[1]*2 |
10 mΩ | 1 nΩ | 10 Ω | 1 A ~ 3.16 A | 10 mW ~ 100 mW | 15+ KP[1]*1 |
100 mΩ | 10 nΩ | 10 Ω | 0.316 A ~ 1 A | 10 mW ~ 100 mW | 5+ KP[1] *0.5 |
1 Ω | 100 nΩ | 10 Ω | 0.1 A ~ 0.316 A | 10 mW ~ 100 mW | 5 |
10 Ω | 1 μΩ | 10 Ω | 31.6 mA ~ 100 mA | 10 mW ~ 100 mW | 5 |
100 Ω | 10 μΩ | 10 Ω | 10 mA ~ 31.6 mA | 10 mW ~ 100 mW | 5 |
1 kΩ | 100 μΩ | 100 Ω | 3.16 mA ~ 10 mA | 10 mW ~ 100 mW | 5 |
10 kΩ | 1 mΩ | 100 Ω | 1 mA ~ 3.16 mA | 10 mW ~ 100 mW | 8 |
100 kΩ | 10 mΩ | 1 kΩ | 0.316 mA ~ 1 mA | 10 mW ~ 100 mW | 8 |
1 MΩ | 100 mΩ | 10 kΩ | 31.6 μA ~ 100 μA | 1 mW ~ 10 mW | 20 |
Note 1:KP is the power coefficient,KP=100m W/ test power |
Power Supply | AC 90 V ~ 264 V / 47 Hz ~ 63 Hz |
Warm-Up Time | Minimum 1 hour. The warm-up time after power-off should be at least twice the duration of the power-off period |
Maximum Power Consumption | 150 VA |
Temperature Performance | Operating Temperature: 18 ℃ ~ 28 ℃ Storage Temperature: -20 ℃ ~ 60 ℃ |
Humidity Performance | Operating Humidity: (20% ~ 50%) R.H., non-condensing Storage Humidity: (15% ~ 80%) R.H., non-condensing |
Display Screen | LCD; 7 inch; |
Instrument Weight | About 13 kg |
Communication Interfaces | RS 232, LAN, USB(Type-B) |
Dimensions | W * D * H=435 mm * 398 mm * 177 mm(Excluding handle and support feet) |
Units: mm |