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Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
A cantilever beam load cell consists of an elastic body, strain gauges, and measurement circuitry. Cantilever beam sensors typically employ a single-end fixed configuration, where one end is rigidly fixed while the other end is freely suspended. Unlike parallel beam sensors, the strain gauges for cantilever beam sensors need to be affixed closer to the fixed end, whereas those for parallel beam sensors are attached to the top and bottom surfaces of the two beams. The working principle of load cells can be referenced from the introduction of CP series load cells.
Our company’s CBD series digital cantilever load cell is a digital sensor that comes with a high-precision analog-to-digital conversion module, allowing it to output digital signals rather than analog ones. Compared to analog sensors, digital sensors have the following advantages:
1. Digital signals have stronger interference resistance;
2. They support various compensation functions, such as temperature compensation and load offset compensation;
3. Communication speed is significantly improved compared to analog signals.
The CBD series digital load cells offer a wide measurement range from 220 kg to 4400 kg, with an accuracy class up to C6 level. Additionally, they feature IP68/IP69K protection ratings, providing better protective performance in industrial production environments.
KWT1B150 is a kind of normal structure weighing sensor, the deign of its tructure makes this weighing sensor easy to install and integrate.
The KWT1B133 has a measuring range of 5kg to 500kg, the accuracy level of the sensor can be customized, and the waterproof and dustproof level is as high (IP68). The sensor adopts four-wire or six-wire connection, which can be used for platform scales, belt scales and hopper scales, etc.
The KWT1B123 load cell is one of the typical shear beam load cells. It has extremely accurate measurement results, and has a certain self-protection ability. All stainless steel and hermetically sealed the compact size of KWT1B123 makes it the ideal choice for multi-head weighing equipment and low capacity vessel and so on.
KWT1B90 single axis force sensor is a small size cantilever beam sensor made of aluminum alloy, with a range of 50kg-300kg. The accuracy level of the sensor can be customized, with a waterproof and dustproof level of up to IP67. The sensor adopts a four-wire or six-wire connection method, which can be used in industrial testing and scientific research fields.
KWT1D52H is a big-range compact-design column load cell. It is made of 17-4PH material, and its rated range is 200kN. The sensor has a rasied surface radius to reduce the possibility of off-center load.
KWT1D42H is a large range column though-hole force sensor. The large load structure can pass through KWT1D42H, the max diameter of which is 12.7mm.
KWT1D33H is a miniature, thin washer weighing sensor, which is suitable for the applications requiring load structures to pass through the sensor. It has multiple strain gauges and a unique single srain guage design that reduces errors caused by off-axis loads. The structure has a very small deflection and suitable for the measurement of dynamic reponse.
KWT1D40 series is a compact compression force sensor, which can reliably measure the compression force in a limited space. Due to the special structural design, the sensor has a high natural frequency, which can adapt to the high-frequency loads.
KWT1L90 is a single axis force sensor with a force measurement direction parallel to the mounting surface. The entire body is made of alloy steel, with high strength and stiffness characteristics, to meet the use needs of special force measurement directions.
KWT1L60 is a bowl-shaped through-hole pressure sensor, which has been widey used in force measurement applications such as electric cylinder end caps. This product has fast response to force measurement, good stability, and can matach various range requirements.
KWT1L16 is a miniature high-performance S-deformation tension pressure sensor with strong applicability and suitable for various application scenarios. The overall height of the sensor is only 19 mm, which is suitable for use in narrow spaces and environments.
KWT1S55 is a small range and high-precision tensile and compressive force sensor. Its main body is designed with an aluminum alloy structure, and its top is equipped with a compressive loading head, which is convenient for customers to apply pressure to the heart.
KWT1C80/130 series is a kind of column structure load cell, which both sides designed with double flanges to locating the position of mounting. The middle of load cell adopts through-hole design to meet the special requirements in the use process. This series has two size, the diameter of KWT1C80 is 80mm, the range is 25kN to 50kN, the KWT1C130 is 130mm and its range is 100kN. We also support customization on size and range as your needs.
The KWT1C35 is a large-capacity, compact design pull-and-press column sensor with a special mounting end face design that enables the sensor to meet the tensile-compression direction loading during use. Using 17-4PH as raw material, rated capacity of 20kN, with high durability and excellent accuracy.
The KWT1C25 is a tensile pressure sensor in a compact design. The special structural design makes the height of the sensor only 36 mm, which is an excellent choice for force measurement in a small space, and is very suitable for applications with a large measuring range and a small use space.
KWT1D52 is a tension-compression bowl-type load cell, suitable for high-speed response measurement. The sensor adopts built-in bending moment compensation, even in the process of using bending moment or lateral force , the test results can be obtained reliably. Since this is a sensor based on the strain principle, static and dynamic measurements are possible.
KWT1D65 series is a kind of high-accuracy and multi-functions spoke type sensor. It has a unique integral multi-beam shear design that can withstand high external load, which makes the load cell with good stiffness and excellent dynamic response ability.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
A cantilever beam load cell consists of an elastic body, strain gauges, and measurement circuitry. Cantilever beam sensors typically employ a single-end fixed configuration, where one end is rigidly fixed while the other end is freely suspended. Unlike parallel beam sensors, the strain gauges for cantilever beam sensors need to be affixed closer to the fixed end, whereas those for parallel beam sensors are attached to the top and bottom surfaces of the two beams. The working principle of load cells can be referenced from the introduction of CP series load cells.
Our company’s CBD series digital cantilever load cell is a digital sensor that comes with a high-precision analog-to-digital conversion module, allowing it to output digital signals rather than analog ones. Compared to analog sensors, digital sensors have the following advantages:
1. Digital signals have stronger interference resistance;
2. They support various compensation functions, such as temperature compensation and load offset compensation;
3. Communication speed is significantly improved compared to analog signals.
The CBD series digital load cells offer a wide measurement range from 220 kg to 4400 kg, with an accuracy class up to C6 level. Additionally, they feature IP68/IP69K protection ratings, providing better protective performance in industrial production environments.
KWT1B150 is a kind of normal structure weighing sensor, the deign of its tructure makes this weighing sensor easy to install and integrate.
The KWT1B133 has a measuring range of 5kg to 500kg, the accuracy level of the sensor can be customized, and the waterproof and dustproof level is as high (IP68). The sensor adopts four-wire or six-wire connection, which can be used for platform scales, belt scales and hopper scales, etc.
The KWT1B123 load cell is one of the typical shear beam load cells. It has extremely accurate measurement results, and has a certain self-protection ability. All stainless steel and hermetically sealed the compact size of KWT1B123 makes it the ideal choice for multi-head weighing equipment and low capacity vessel and so on.
KWT1B90 single axis force sensor is a small size cantilever beam sensor made of aluminum alloy, with a range of 50kg-300kg. The accuracy level of the sensor can be customized, with a waterproof and dustproof level of up to IP67. The sensor adopts a four-wire or six-wire connection method, which can be used in industrial testing and scientific research fields.
KWT1D52H is a big-range compact-design column load cell. It is made of 17-4PH material, and its rated range is 200kN. The sensor has a rasied surface radius to reduce the possibility of off-center load.
KWT1D42H is a large range column though-hole force sensor. The large load structure can pass through KWT1D42H, the max diameter of which is 12.7mm.
KWT1D33H is a miniature, thin washer weighing sensor, which is suitable for the applications requiring load structures to pass through the sensor. It has multiple strain gauges and a unique single srain guage design that reduces errors caused by off-axis loads. The structure has a very small deflection and suitable for the measurement of dynamic reponse.
KWT1D40 series is a compact compression force sensor, which can reliably measure the compression force in a limited space. Due to the special structural design, the sensor has a high natural frequency, which can adapt to the high-frequency loads.
KWT1L90 is a single axis force sensor with a force measurement direction parallel to the mounting surface. The entire body is made of alloy steel, with high strength and stiffness characteristics, to meet the use needs of special force measurement directions.
KWT1L60 is a bowl-shaped through-hole pressure sensor, which has been widey used in force measurement applications such as electric cylinder end caps. This product has fast response to force measurement, good stability, and can matach various range requirements.
KWT1L16 is a miniature high-performance S-deformation tension pressure sensor with strong applicability and suitable for various application scenarios. The overall height of the sensor is only 19 mm, which is suitable for use in narrow spaces and environments.
KWT1S55 is a small range and high-precision tensile and compressive force sensor. Its main body is designed with an aluminum alloy structure, and its top is equipped with a compressive loading head, which is convenient for customers to apply pressure to the heart.
KWT1C80/130 series is a kind of column structure load cell, which both sides designed with double flanges to locating the position of mounting. The middle of load cell adopts through-hole design to meet the special requirements in the use process. This series has two size, the diameter of KWT1C80 is 80mm, the range is 25kN to 50kN, the KWT1C130 is 130mm and its range is 100kN. We also support customization on size and range as your needs.
The KWT1C35 is a large-capacity, compact design pull-and-press column sensor with a special mounting end face design that enables the sensor to meet the tensile-compression direction loading during use. Using 17-4PH as raw material, rated capacity of 20kN, with high durability and excellent accuracy.
KWT1D52 is a tension-compression bowl-type load cell, suitable for high-speed response measurement. The sensor adopts built-in bending moment compensation, even in the process of using bending moment or lateral force , the test results can be obtained reliably. Since this is a sensor based on the strain principle, static and dynamic measurements are possible.
KWT1D65 series is a kind of high-accuracy and multi-functions spoke type sensor. It has a unique integral multi-beam shear design that can withstand high external load, which makes the load cell with good stiffness and excellent dynamic response ability.
KWT1D60 is a kind of high accuracy and overload capacity load cell. The product has a built-in embedded circuit for real-time data accquisition and calculation, and can measure the value of force fastly. This series can also match the measuring requirements of multiple range.
6 Digits Scale LED Display Weight Digital Weighing Electric Weight Indicator
Optional 2/3/4-way relay or OC output, relay contact AC 250V/1A, OC output drive 100mA/48V
Output 4-20mA, 0-20mA, 0-5V, 0-10V, 12bit
accuracy, drive load ≤ 500 ohms. 485 communication port can execute ModbusRTU protocol or active upload protocol (transmission communication can only choose one)
Ambient temperature: -20 ~ 50 ° C; relative humidity: ≤ 85% RH; avoid strong corrosive gases.
AC 100 ~ 240V, 50 ~ 60HZ; power consumption ≤ 5W
Panel/cabinet, high quality plastic case
Small size: outer dimensions 96×48 deep 84mm, opening size: 92*45mm
Big size: outer dimensions 160*80*125mm, opening size: 152*72mm
1 high- quality alloy steel tension and compression load cells, chemical plating the nickel in surface
2 simple structure , convenient to install and maintenance
3 high comprehensive precision
4 compact structure
5 low setting height
6.good long -term stability
6 Digits Scale LED Display Weight Digital Weighing Electric Weight Indicator
Optional 2/3/4-way relay or OC output, relay contact AC 250V/1A, OC output drive 100mA/48V
Output 4-20mA, 0-20mA, 0-5V, 0-10V, 12bit
accuracy, drive load ≤ 500 ohms. 485 communication port can execute ModbusRTU protocol or active upload protocol (transmission communication can only choose one)
Ambient temperature: -20 ~ 50 ° C; relative humidity: ≤ 85% RH; avoid strong corrosive gases.
AC 100 ~ 240V, 50 ~ 60HZ; power consumption ≤ 5W
Panel/cabinet, high quality plastic case
Small size: outer dimensions 96×48 deep 84mm, opening size: 92*45mm
Big size: outer dimensions 160*80*125mm, opening size: 152*72mm
Supply Voltage: 220V AC:220V±10%, Power < 7w; 24V DC:24V±10%, Power < 5w;12V DC:9V~20V, Power < 5w; Other specifications are subject to the instruction attached
Operating Temperature: 0~50℃, humidity < 90%R.H
Display range: -1999~9999, Decimal point position can be set
Display color: The measured value is green, the set value is red, the light column is red or customized
Display resolution: 1/10000
Input Signal: Voltage, Current, RTD, T/C, mV, potentiometer, Pressure Gauges with Resistance Transmitter
Voltage: 1V~5V DC,0V~5V DC, Can be selected by setting
Current: 4mA~20mA,0mA~10mA,0mA~20mA, Can be selected by setting
RTD: Pt100,Cu100,Cu50,BA1,BA2,G53, Can be selected by setting
T/C: K, S, R, B, N, E, J, T, Can be selected by setting
please leave a message for special request
Intrinsic Error: < ±0.2%F.S
Measuring resolution: 1/60000, 16-bit A/D converter
Measurement control cycle: 0.2s
Power: AC220V/24Vdc(power to sensor)option
Display digits:
(Decimal, suitable for linear displacement display)360°00,00
(hexadecimal, suitable for angle display)
Display linear accuracy: Analog output (0.25%, 0.05%)
Scope of application:
Suitable for potentiometer (resistance) output type sensors
For voltage output sensors
For current output (2-wire, 3-wire) sensors
Applicable to incremental pulse output encoders
Applicable to absolute pulse output encoder Suitable for encoder application products
GDM plug type signal transmission module
A wireless analog scale instrument that connects to a wireless junction box. Suitable for using 1~4 analog sensors.
Display character: 6-bit LED with character height 75mm
Power: AC 187~242V;49~51Hz
Communication: RS232 output
Stainless steel triangular shell
Green LED display with 0.8″
AC 100V~240V
Suitable for platform scales and floor scales
It has 6-channel switch control for start/stop, fast forwardslow into and a variety of control.
It can be used for quantitative, weighbridge, cement, food packaging,etc.
It has 6-channel switch control for start/stop, fast forward\slow into and a variety of control.
It can be used for quantitative, weighbridge, cement, food packaging,etc.
Plastic housing :6-digit 20.2mm red LED
Dimensions: 256X165X 170mm
Weight: 1.5kg
Inside battery: 6V 4AH
Applications: Electronic platform scale, weighing scale, etc.
LP8: 96*48*80mm
LP7: 72*72*80mm
LP9: 96*96*80mm
LP10:160*80*80mm
Display Torque (N.m) , Speed (RPM), Power consumption (KW)
Support connecting to PC, computer, collecting data and displayed in wave form / curves.
Support export data to EXCEL file.
1 Analog Input
2 Analog Output
3 Digital Input
7 Digital Relay Output
1 Pulse Output
MODBUS Communication ( Independent RS232 and RS485 Port)
Double LED Display Weighing Indicator GSI-407 is widely applied in electronic platform scale,electronic floor scale and so on alike static weighing system equipped with 1~4 350Ω load cell
Weighing indicator GSI-406 is a price-computing indicator with three LCD display windows and built-in printer. It is able to apply in static weighing system equipped with 1-4 load cell such as electronic platform scale, electronic floor scale etc.
Weighing indicator GSI-405 adopts fast speed, high precision ∑-Δ A/D conversion technology and special anti-vibration software technology, widely applied in electronic platform scale、electronic floor scale、mechanic-electronic conversion scale and so on alike static weighing system equipped with 1~4 load cell.
Weighing indicator GSI-404 adopts fast speed, high precision ∑-Δ A/D conversion technology and special anti-vibration software technology, widely applied in electronic platform scale、electronic floor scale、mechanic-electronic conversion scale and so on alike static weighing system equipped with 1~4 load cell.
GSI401/402 indicator is applied in electronic platform scale, electronic floor scale and electronic ground scale and so on alike static weighing system equipped with 1-4 load cell.
KWR85N207 series is a kind of static torque sensor, what is used to measure the output torque of the motor or reducer. Kunwei torque sensor features in high precision, high rigidity, thin thickness, light weight and strong bending resistance.
The KWR86N80 series torque sensor is a medium-sized and medium range joint torque sensor designed with a special structure. This is a sensor for measuring robot joint torque. This torque sensor adopts a disc design with low height and a double flange structure inside and outside, resulting in excellent installation strength and great stiffness. This sensor can measure both the clockwise and counterclockwise torque of the expenditure. We can produce all the force range according to client’s demands.
KWR70N108 series torque sensor is made of stainless steel, its material has characristics of corrosion proof, high intensity and high hardness. This torque sensor has middle size with 70mm diameter, and middle range with 108Nm.
The KWR70N30 series torque sensor is a small range joint torque sensor designed with a spoke structure. It is a torque sensor specifically designed for robot joint torque measurement. This torque sensor adopts a disc design, low height, and dual flange structure, providing sufficient installation strength and stiffness. This sensor measures torque in both clockwise and counterclockwise directions. In addition to standard dimensions, customized solutions for torque sensors can also be provided according to customer needs.
The KWR61N150 series is a small size, large range torque sensor designed with a special structure, specifically designed to measure the torque at the output end of the joint reducer of the robotic arm. It is conducive to decoupling the dynamic model of the robotic arm, performing position control based on dynamics, and achieving force control.
KWR61N66 series torque sensor is designed for measuring the torque value of robot joint. It has unique design with disc deign, low height and double flange structure, to provide enough installation stength and stiffness.
KWR61N150 Joint Torque Sensor is a high-precision product that uses RS485 communication output and 5V DC power supply. This product has an outer diameter of Φ 61mm and a height of 17.5mm, including the height of the built-in PCBA circuit board and the height of the fixing screws. When selecting products, it is often necessary to calculate the force situation of joints in the robot system to ensure that the torque sensor matches the joint torque parameters in the design, so that the torque is within the linear detection range. The detection range for repeatability, nonlinearity, and hys。teresis of this product is within 0.5% F.S. The torque borne by the joint can be expressed through a specific formula. After calculating the maximum torque borne by the joint, it can be used as a selection basis for sensor range and overload resistance. This product has a range of 150Nm and can withstand 200% safe overload and 300% ultimate destructive load. In addition, when subjected to lateral torsional loads, the maximum rated bending moment of the sensor is 110 Nm, the torsional stiffness is maintained within 214 kNm/Rad, and the maximum torsional angle does not exceed 0.04 °. When the sensor is subjected to lateral load, the maximum rated load is 14.42kN; in the direction of the sensor bearing axis, the rated load limit is 9.61 kN. The applicable working temperature range of this product is between -10 ℃ and 80 ℃, which can better adapt the torque sensor to various complex environments.
KWR61N30 torque sensor is a high-precision product that can output both analog and digital signals directly. This product can customize and adapt high-precision signal acquisition modules according to different signal output requirements (such as RS485, CAN signal output). The product has an outer diameter of Φ 61mm and a height of 10mm. At a rated range of 30Nm, its repeatability, nonlinearity, and hysteresis performance can be controlled within the range of 0.5% F.S. When subjected to lateral torsional loads, the maximum rated bending moment of the sensor is 20 Nm, the torsional stiffness is maintained within 57 kNm/Rad, and the maximum torsional angle does not exceed 0.04 °. When the sensor is subjected to lateral loads, the maximum load rating is 4.2 kN; in the direction of the sensor bearing axis, the load limit rating is 2.5 kN. If the lateral ultimate bending moment, lateral ultimate load, or axial ultimate load exceeds these ratings, the sensor structure will face the risk of damage or instability. The applicable working temperature range of this product is between -10 ℃ and 80 ℃. Within this temperature range, the output of the sensor can remain stable and not be affected by temperature fluctuations. Beyond the temperature range, stability may be affected and the output signal may drift or fluctuate. This product has been verified through multiple practical tests, and the theoretical data is highly consistent with the actual data, demonstrating superior performance.
Torque sensor (KWR60N49)is a high-precision product that uses digital output. The outer diameter of this product is 60mm, the height is 21mm, and it works at the rated range of 49 Nm. Its accuracy can reach at least 0.5% F.S., and its nonlinear and hysteresis performance can be controlled within the accuracy range. In addition, after finite element analysis and verification, the sensor can withstand a lateral ultimate bending moment of 60 Nm, and its strong lateral torsional bearing capacity ensures stability under normal use. The torsional stiffness is maintained within 57 kNm/Rad, and the maximum torsional angle does not exceed 0.04 °. The axial ultimate load of 2 kN and the lateral ultimate load of 3 kN perform equally well. The excellent compressive and tensile performance lays a solid foundation for the digital signal output of the product in the direction of the rated torsional moment, thereby demonstrating outstanding performance. The sensor can operate within a wide temperature range of -10~80 ℃, with a temperature span of up to 90 ℃. Even in extremely harsh temperature environments, our sensor can maintain excellent performance. The product design is based on a solid theoretical foundation, and the test results have extremely high credibility.
KWR50N15 torque sensor is a high-precision product that can achieve direct quantity output in both analog and digital formats. The main dimensional parameters are an outer diameter of 50mm, an inner diameter of 12mm, a height of 17mm, and a measurement range of 15N · m. Suitable for fields such as robot joints, collaborative robotic arms, and precision medical equipment, precise measurement and control of torque is a key link in ensuring equipment performance, improving production efficiency, and ensuring safe operation. The KWR50N15 torque sensor, with advanced measurement technology and reliable design, accurately senses and outputs torque signals, providing strong support for various torque monitoring devices.
Mainly used as torque sensors at robot joints, it is a key component for accurately measuring joint output torque. Its characteristics directly affect the force control performance, dynamic response, and safety of the robot. The core component for achieving high dynamic performance and safe interaction of robots, especially in scenarios that require force control or compliance control, is indispensable. The following are its main characteristics:
1) High rigidity: Made of high-quality stainless steel material
2) High strength anti-interference structure
3) Fast dynamic response: The response frequency can reach several kilohertz (kHz), suitable for high-speed motion or high-frequency force control needs, low latency: real-time feedback of torque changes, improving closed-loop control performance
4) Temperature compensation
5) Compact structure and lightweight: Embedded design, directly integrated into joint drive units, saving space
6) Multiple signal outputs: Supports analog signals (± 10V, 4-20mA) or digital interfaces (RS485, CAN, etc.).
As the flagship product of Changzhou Kunwei Sensing Technology Co., Ltd., KWR70N75 torque sensor has the advantages of high precision, high reliability, compact structure, durability, and easy maintenance. Its main characteristic dimensions are a diameter of 70mm and a height of 18mm. It is a force sensing core component designed specifically for industrial and commercial robots.
KWR63N49 torque sensor is a precision measurement and control device designed specifically for the industrial and commercial robot fields. This product is made of specially designed high-strength stainless steel and integrates high-precision strain measurement circuits and digital signal processing systems internally. It can measure static torque in real time and accurately, and output RS485 signals. This product has the characteristics of high measurement accuracy (comprehensive accuracy ≤ 0.5% FS after calibration), good range stability (temperature self compensation from 0 ℃ to 60 ℃), and sensitive response (minimum resolution of 0.05Nm). It can provide reliable «force perception» capability for rotating machinery systems, helping customers achieve intelligent control and efficient management.
KWR61N66 Joint Torque Sensor is a high-precision product powered by 9~24V DC and outputting digital signal RS485. The wiring method is that the red line corresponds to positive power supply, the black line corresponds to negative power supply, the green line corresponds to 485A+, and the white line corresponds to 485B -. In addition, this product can also output 0-10V, with the red line corresponding to positive power supply, the black line corresponding to negative power supply, the green line corresponding to positive signal, and the white line corresponding to negative signal. The outer diameter of this product is Φ 61mm, with a total height of 10mm, including the height of the built-in circuit board. For the production calibration testing of joint torque sensors, the calibration experimental measurement system includes a high-precision six and a half position instrument, a DC stabilized power supply, a calibration table, and weights. The elastic body is connected to the PCB, and torque calibration is performed by adding weights to the lever connected to the torque measurement sensor, thereby accurately fitting the torque coefficient of the joint. The range of this product is 66Nm, and the detection range of repeatability, nonlinearity, and hysteresis is within 0.5% F.S. It can withstand 200% safe overload and 300% ultimate load. In addition, when subjected to lateral torsional loads, the maximum lateral ultimate bending moment of this product is 66Nm, the torsional stiffness is within 25.4kNm/Rad, and the maximum torsional angle does not exceed 0.03 °. The lateral ultimate load of the sensor is 11.5kN; the axial load limit is 6.39 kN. The applicable working temperature range of this product is between -10 ℃ and 80 ℃, and it can adapt to various complex environments.
KWR200 series six-axis torque sensor is a large torque range and embedded six-axis force sensor with higher accuracy and precision , which can be applied to the base sensor of cooperative robots and also meet the use needs of most industrial mechanical arms. This transducer is widely used in building model wind load test, medical testing, automobile testing, 3C testing, industrial automation, scientific research and other industries.
The KWR168 series is a six axis force sensor with a large range, capable of carrying a force of 8000N. It is generally used at the end of industrial robots and meets the needs of most industrial robotic arms.
KWR116 series is designed specifically for industrial robotic applications. The series provides a wide range of force and torque capacities to select from. It has various versions for different requirements.The built-in high-precision data acquisition module can combine with the six-axis joint decoupling algorithm to achieve higher accuracy and precision of the sensor.
KWR116 series is designed specifically for industrial robotic applications. The series provides a wide range of force and torque capacities to select from. It has various versions for different requirements.The built-in high-precision data acquisition module can combine with the six-axis joint decoupling algorithm to achieve higher accuracy and precision of the sensor.
KWR96 series sensor is an industrial lightweight force torque sensor that measures on 6 axes.,features in high strength and large capacity from 100N to 2000N . this torque sensor with digital output and Light weight also contributes to reducing the load on the robot.
KWR90 series sensor can accurately output values by measuring forces and moments in six different directions (X, Y, Z, Mx, My, Mz),The compact housing is dust-proof and water-resistant. It includes embedded electronics, temperature sensors and provides an mounting flange.The sensor is available with the communication options like Modbus and Serial (RS422 , RS485) and so on
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
A cantilever beam load cell consists of an elastic body, strain gauges, and measurement circuitry. Cantilever beam sensors typically employ a single-end fixed configuration, where one end is rigidly fixed while the other end is freely suspended. Unlike parallel beam sensors, the strain gauges for cantilever beam sensors need to be affixed closer to the fixed end, whereas those for parallel beam sensors are attached to the top and bottom surfaces of the two beams. The working principle of load cells can be referenced from the introduction of CP series load cells.
Our company’s CBD series digital cantilever load cell is a digital sensor that comes with a high-precision analog-to-digital conversion module, allowing it to output digital signals rather than analog ones. Compared to analog sensors, digital sensors have the following advantages:
1. Digital signals have stronger interference resistance;
2. They support various compensation functions, such as temperature compensation and load offset compensation;
3. Communication speed is significantly improved compared to analog signals.
The CBD series digital load cells offer a wide measurement range from 220 kg to 4400 kg, with an accuracy class up to C6 level. Additionally, they feature IP68/IP69K protection ratings, providing better protective performance in industrial production environments.
KWT1B150 is a kind of normal structure weighing sensor, the deign of its tructure makes this weighing sensor easy to install and integrate.
The KWT1B133 has a measuring range of 5kg to 500kg, the accuracy level of the sensor can be customized, and the waterproof and dustproof level is as high (IP68). The sensor adopts four-wire or six-wire connection, which can be used for platform scales, belt scales and hopper scales, etc.
The KWT1B123 load cell is one of the typical shear beam load cells. It has extremely accurate measurement results, and has a certain self-protection ability. All stainless steel and hermetically sealed the compact size of KWT1B123 makes it the ideal choice for multi-head weighing equipment and low capacity vessel and so on.
KWT1B90 single axis force sensor is a small size cantilever beam sensor made of aluminum alloy, with a range of 50kg-300kg. The accuracy level of the sensor can be customized, with a waterproof and dustproof level of up to IP67. The sensor adopts a four-wire or six-wire connection method, which can be used in industrial testing and scientific research fields.
KWT1D52H is a big-range compact-design column load cell. It is made of 17-4PH material, and its rated range is 200kN. The sensor has a rasied surface radius to reduce the possibility of off-center load.
KWT1D42H is a large range column though-hole force sensor. The large load structure can pass through KWT1D42H, the max diameter of which is 12.7mm.
KWT1D33H is a miniature, thin washer weighing sensor, which is suitable for the applications requiring load structures to pass through the sensor. It has multiple strain gauges and a unique single srain guage design that reduces errors caused by off-axis loads. The structure has a very small deflection and suitable for the measurement of dynamic reponse.
KWT1D40 series is a compact compression force sensor, which can reliably measure the compression force in a limited space. Due to the special structural design, the sensor has a high natural frequency, which can adapt to the high-frequency loads.
KWT1L90 is a single axis force sensor with a force measurement direction parallel to the mounting surface. The entire body is made of alloy steel, with high strength and stiffness characteristics, to meet the use needs of special force measurement directions.
KWT1L60 is a bowl-shaped through-hole pressure sensor, which has been widey used in force measurement applications such as electric cylinder end caps. This product has fast response to force measurement, good stability, and can matach various range requirements.
KWT1L16 is a miniature high-performance S-deformation tension pressure sensor with strong applicability and suitable for various application scenarios. The overall height of the sensor is only 19 mm, which is suitable for use in narrow spaces and environments.
KWT1S55 is a small range and high-precision tensile and compressive force sensor. Its main body is designed with an aluminum alloy structure, and its top is equipped with a compressive loading head, which is convenient for customers to apply pressure to the heart.
KWT1C80/130 series is a kind of column structure load cell, which both sides designed with double flanges to locating the position of mounting. The middle of load cell adopts through-hole design to meet the special requirements in the use process. This series has two size, the diameter of KWT1C80 is 80mm, the range is 25kN to 50kN, the KWT1C130 is 130mm and its range is 100kN. We also support customization on size and range as your needs.
The KWT1C35 is a large-capacity, compact design pull-and-press column sensor with a special mounting end face design that enables the sensor to meet the tensile-compression direction loading during use. Using 17-4PH as raw material, rated capacity of 20kN, with high durability and excellent accuracy.
The KWT1C25 is a tensile pressure sensor in a compact design. The special structural design makes the height of the sensor only 36 mm, which is an excellent choice for force measurement in a small space, and is very suitable for applications with a large measuring range and a small use space.
KWT1D52 is a tension-compression bowl-type load cell, suitable for high-speed response measurement. The sensor adopts built-in bending moment compensation, even in the process of using bending moment or lateral force , the test results can be obtained reliably. Since this is a sensor based on the strain principle, static and dynamic measurements are possible.
KWT1D65 series is a kind of high-accuracy and multi-functions spoke type sensor. It has a unique integral multi-beam shear design that can withstand high external load, which makes the load cell with good stiffness and excellent dynamic response ability.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
A cantilever beam load cell consists of an elastic body, strain gauges, and measurement circuitry. Cantilever beam sensors typically employ a single-end fixed configuration, where one end is rigidly fixed while the other end is freely suspended. Unlike parallel beam sensors, the strain gauges for cantilever beam sensors need to be affixed closer to the fixed end, whereas those for parallel beam sensors are attached to the top and bottom surfaces of the two beams. The working principle of load cells can be referenced from the introduction of CP series load cells.
Our company’s CBD series digital cantilever load cell is a digital sensor that comes with a high-precision analog-to-digital conversion module, allowing it to output digital signals rather than analog ones. Compared to analog sensors, digital sensors have the following advantages:
1. Digital signals have stronger interference resistance;
2. They support various compensation functions, such as temperature compensation and load offset compensation;
3. Communication speed is significantly improved compared to analog signals.
The CBD series digital load cells offer a wide measurement range from 220 kg to 4400 kg, with an accuracy class up to C6 level. Additionally, they feature IP68/IP69K protection ratings, providing better protective performance in industrial production environments.
KWT1B150 is a kind of normal structure weighing sensor, the deign of its tructure makes this weighing sensor easy to install and integrate.
The KWT1B133 has a measuring range of 5kg to 500kg, the accuracy level of the sensor can be customized, and the waterproof and dustproof level is as high (IP68). The sensor adopts four-wire or six-wire connection, which can be used for platform scales, belt scales and hopper scales, etc.
The KWT1B123 load cell is one of the typical shear beam load cells. It has extremely accurate measurement results, and has a certain self-protection ability. All stainless steel and hermetically sealed the compact size of KWT1B123 makes it the ideal choice for multi-head weighing equipment and low capacity vessel and so on.
KWT1B90 single axis force sensor is a small size cantilever beam sensor made of aluminum alloy, with a range of 50kg-300kg. The accuracy level of the sensor can be customized, with a waterproof and dustproof level of up to IP67. The sensor adopts a four-wire or six-wire connection method, which can be used in industrial testing and scientific research fields.
KWT1D52H is a big-range compact-design column load cell. It is made of 17-4PH material, and its rated range is 200kN. The sensor has a rasied surface radius to reduce the possibility of off-center load.
KWT1D42H is a large range column though-hole force sensor. The large load structure can pass through KWT1D42H, the max diameter of which is 12.7mm.
KWT1D33H is a miniature, thin washer weighing sensor, which is suitable for the applications requiring load structures to pass through the sensor. It has multiple strain gauges and a unique single srain guage design that reduces errors caused by off-axis loads. The structure has a very small deflection and suitable for the measurement of dynamic reponse.
KWT1D40 series is a compact compression force sensor, which can reliably measure the compression force in a limited space. Due to the special structural design, the sensor has a high natural frequency, which can adapt to the high-frequency loads.
KWT1L90 is a single axis force sensor with a force measurement direction parallel to the mounting surface. The entire body is made of alloy steel, with high strength and stiffness characteristics, to meet the use needs of special force measurement directions.
KWT1L60 is a bowl-shaped through-hole pressure sensor, which has been widey used in force measurement applications such as electric cylinder end caps. This product has fast response to force measurement, good stability, and can matach various range requirements.
KWT1L16 is a miniature high-performance S-deformation tension pressure sensor with strong applicability and suitable for various application scenarios. The overall height of the sensor is only 19 mm, which is suitable for use in narrow spaces and environments.
KWT1S55 is a small range and high-precision tensile and compressive force sensor. Its main body is designed with an aluminum alloy structure, and its top is equipped with a compressive loading head, which is convenient for customers to apply pressure to the heart.
KWT1C80/130 series is a kind of column structure load cell, which both sides designed with double flanges to locating the position of mounting. The middle of load cell adopts through-hole design to meet the special requirements in the use process. This series has two size, the diameter of KWT1C80 is 80mm, the range is 25kN to 50kN, the KWT1C130 is 130mm and its range is 100kN. We also support customization on size and range as your needs.
The KWT1C35 is a large-capacity, compact design pull-and-press column sensor with a special mounting end face design that enables the sensor to meet the tensile-compression direction loading during use. Using 17-4PH as raw material, rated capacity of 20kN, with high durability and excellent accuracy.
The KWT1C25 is a tensile pressure sensor in a compact design. The special structural design makes the height of the sensor only 36 mm, which is an excellent choice for force measurement in a small space, and is very suitable for applications with a large measuring range and a small use space.
KWT1D52 is a tension-compression bowl-type load cell, suitable for high-speed response measurement. The sensor adopts built-in bending moment compensation, even in the process of using bending moment or lateral force , the test results can be obtained reliably. Since this is a sensor based on the strain principle, static and dynamic measurements are possible.
KWT1D65 series is a kind of high-accuracy and multi-functions spoke type sensor. It has a unique integral multi-beam shear design that can withstand high external load, which makes the load cell with good stiffness and excellent dynamic response ability.
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Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
Parallel beam sensors mainly consist of an elastic body, strain gauges, and measurement circuits. The elastic body of parallel beam sensors uses a dual parallel beam structure, typically made from aluminum alloy or stainless steel. When the elastic body deforms under external force, the strain gauges attached to its surface also deform, causing changes in their resistance values. These changes in resistance values are converted into electrical signals through the measurement circuit and then transformed into readable weighing values via an analog-to-digital converter (ADC module). Parallel beam sensors, known for their simple structure, high precision, wide measurement range, and good stability, have become one of the most commonly used types of load sensors in industrial fields, especially suitable for high-precision measurement scenarios.
Our company’s CP series parallel beam load cells are high-performance single-point load cells with a measurement range of 3 kg to 750 kg, available in multiple size specifications. The product has obtained the China Measuring Instruments Type Approval Certificate (CPA) and achieves precision levels of C5/C6, with repeatability error ≤ ±0.01 F.S., meeting customers’ precision requirements across different weighing ranges. The operating temperature of the product is -30°C to +65°C, with an IP67 protection rating. It features automatic corner adjustment, compact design, and temperature compensation, significantly enhancing its accuracy and stability when used in industrial environments. Due to its excellent performance, the CP series load cells are widely used in various industrial and retail weighing applications such as electronic price scales, packaging scales, and process weighing control systems.
A cantilever beam load cell consists of an elastic body, strain gauges, and measurement circuitry. Cantilever beam sensors typically employ a single-end fixed configuration, where one end is rigidly fixed while the other end is freely suspended. Unlike parallel beam sensors, the strain gauges for cantilever beam sensors need to be affixed closer to the fixed end, whereas those for parallel beam sensors are attached to the top and bottom surfaces of the two beams. The working principle of load cells can be referenced from the introduction of CP series load cells.
Our company’s CBD series digital cantilever load cell is a digital sensor that comes with a high-precision analog-to-digital conversion module, allowing it to output digital signals rather than analog ones. Compared to analog sensors, digital sensors have the following advantages:
1. Digital signals have stronger interference resistance;
2. They support various compensation functions, such as temperature compensation and load offset compensation;
3. Communication speed is significantly improved compared to analog signals.
The CBD series digital load cells offer a wide measurement range from 220 kg to 4400 kg, with an accuracy class up to C6 level. Additionally, they feature IP68/IP69K protection ratings, providing better protective performance in industrial production environments.
KWT1B150 is a kind of normal structure weighing sensor, the deign of its tructure makes this weighing sensor easy to install and integrate.
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