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Force Sensors/

Measuring Force Sensors

Force Sensors from TallMan Robotics have types as follows: 

Categories of Force Sensors

Measuring Force Sensors

Torque Sensors

Multi Dimensional Sensors

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Measuring Force Sensors are a precision detection device that converts force signals into measurable electrical signals, widely used in various fields such as industrial manufacturing, scientific research experiments, and intelligent equipment. It is the core component for achieving precise control of force parameters. 

This force sensor converts mechanical force into an electrical signal. Strain gauges or piezoelectric elements serve as sensing elements. Compression, tension, bending, or shear force deforms the sensor body. Strain gauges change resistance proportionally to deformation.

Design structure of TallMan Robotics Measuring Force Sensors

Measuring force sensors detect and quantify applied load on a structure or component. The device converts mechanical force into an electrical signal using strain gauges, piezoelectric elements, or capacitive sensing methods. The sensing element deforms under load, and the transducer captures this deformation with high sensitivity. Signal conditioning circuits amplify and stabilize the output for accurate measurement. Engineers define capacity, resolution, and linearity based on application requirements. Mounting interfaces ensure uniform load distribution and minimize error. Calibration establishes a precise relationship between force and output.

The table highlights Measuring Force Sensors, including product photos and full technical data.

Model No.Model No.Model No.Model No.
T101-05T101-06T101-07T101-08
 Measuring Force Sensors Measuring Force Sensors Measuring Force Sensors Measuring Force Sensors
Technical parametersTechnical parametersTechnical parametersTechnical parameters
Capacity5,10,20,30,50,100kgsCapacity10,20,50,100,200,500,1000,2000kgsCapacity5,10,20,50,100kgsCapacity10,20,50,100,200kgs;0.5.1.2.5.10t
Sensitivity1.0±30%mv/vSensitivity1.0±30%mv/vSensitivity1.5±30%mv/vSensitivity1.5±30%mv/v
Zero Balance±2%F.S.Zero Balance±2%F.S.Zero Balance±5%F.S.Zero Balance±1%F.S.
Creep≤0.1%F.SCreep≤0.1%F.SCreep≤0.1%F.SCreep≤0.1%F.S
Non-Linearity≤0.5%F.SNon-Linearity≤0.5%F.SNon-Linearity≤0.5%F.SNon-Linearity≤0.2%F.S
Hysteresis≤0.5%F.SHysteresis≤0.2%F.SHysteresis≤0.2%F.SHysteresis≤0.1%F.S
Repeatability≤0.3%F.SRepeatability≤0.1%F.SRepeatability≤0.2%F.SRepeatability≤0.1%F.S
Input Impedance800-1100ΩInput Impedance800-1100ΩInput Impedance700±ΩInput Impedance700±Ω
Output Impedance800-1100ΩOutput Impedance800-1100ΩOutput Impedance700±ΩOutput Impedance700±Ω
Temp Effect on sensitivity0.1%F.S/10℃Temp Effect on sensitivity0.1%F.S/10℃Temp Effect on sensitivity0.1%F.S/10℃Temp Effect on sensitivity0.1%F.S/10℃
Temp Effect on zero0.1%F.S/10℃Temp Effect on zero0.1%F.S/10℃Temp Effect on zero0.1%F.S/10℃Temp Effect on zero0.1%F.S/10℃
Insulation Resistance≥5000MΩ/100V(DC)Insulation Resistance≥5000MΩ/100V(DC)Insulation Resistance≥5000MΩ/100V(DC)Insulation Resistance≥5000MΩ/100V(DC)
Recommended Excitation5-10VRecommended Excitation5-10VRecommended Excitation5-10VRecommended Excitation5-10V
Max Excitation15VMax Excitation15VMax Excitation15VMax Excitation20V
Compensated Temp. Range(-10~60℃)Compensated Temp. Range(-10~60℃)Compensated Temp. Range(-10~60℃)Compensated Temp. Range(-10~60℃)
Operating temp Range(-20~80℃)Operating temp Range(-20~80℃)Operating temp Range(-20~80℃)Operating temp Range(-20~80℃)
Safe Overload150%F.S.Safe Overload150%F.S.Safe Overload150%F.S.Safe Overload150%F.S.
Ultimate Overload200%F.S.Ultimate Overload200%F.S.Ultimate Overload200%F.S.Ultimate Overload200%F.S.
Cable Size¢2/3X3mCable Size¢2/3X3mCable Size¢3X3mCable Size¢4X3m
Material Stainless SteelMaterial Stainless SteelMaterial Stainless SteelMaterial Stainless Steel

FAQs about Measuring Force Sensors

  • What is the difference between a force sensor and a load cell?

       No technical difference. Load cell describes commercial weight measurement. Force sensor includes all force measuring devices including dynamic types.

  • Which sensing technology works for static force?

       Strain gauge technology works best. Piezoelectric sensors drift under static load. Choose strain gauge for constant force measurement. 

  • How do we mount Sensors?

       Mount on a flat rigid surface. Use hardened washers. Tighten mounting bolts to specified torque. Avoid bending moments on sensor body. 

  • What is the smallest force sensor available?

      Minature sensors measure 2mm diameter. Range 0.1 N full scale. Use for medical devices or micro assembly. 

  • How do we test Measuring Force Sensors linearity?

       Apply increasing known loads. Record output at each step. Plot measured versus actual. Deviation below 0.1% indicates good linearity. 

You are welcome to watch more projects or visit our website to check other series or load down e-catalogues for further technical data. 

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