Sensor Developments, Inc.
Orion, MI 48359
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Drift Pull Measurement System tests vehicle alignment.
Enabling vehicle manufacturers to accurately measure effects of drift pull caused by steering wheel and tire alignment errors, 90408 Drift Pull Steering Measurement System helps technicians determine whether vehicle has been properly aligned after production. System features integrated torque and angle measurement and quick clamp attachment to vehicle's steering wheel. It is powered by laptop via...
Read More »Rotary Torque Sensors incorporate digital wireless system.
With 1,000 Hz frequency response and 10,000 rpm speed rating, Series 01424 is designed to measure rotational torque using shaft-to-shaft configuration for in-line placement. Sensors can accurately measure torque from dc motors, engines, turbines, and other rotary power sources. They can also be supplied with 512 ppr optical encoder to measure angle or speed.
Read More »Rotary Socket Torque Test System
SDI's 90377 Rotary socket test system is designed for calibrating tools used to apply torque including electric and pneumatic power tools, torque sensors, hand and click wrenches. The strain gage based rotary torque sensor is installed in-line with the tool and part. Data collection is achieved using one of our three standard instrument systems, covering simple peak and track measurements to...
Read More »Test System utilizes steering effort sensor.
Offering torque capacities of 200, 500, or 1,000 in-lb, Test Measurement System combines portable data acquisition system with air-bag compatible, Model 01184 digital FM telemetry steering effort sensor that transmits and receives torque signal. Providing 7,200 ppr, encoder directly attaches to windshield and is driven with gear drive chain. System also includes laptop computer and measurement...
Read More »Rotary Socket Sensor features 1,024 ppr optical encoder.
With capacities from 50-2,400 lb-in., Square Drive Rotary Socket Sensor allows engineers to check nut runners for torque and angle accuracy and insure proper fastening techniques. Sensor is compatible with commercial DAQ systems using in-line miniature amplifier, or as self-contained system using PTI PMAC 2000 or USB Sensor Link.
Read More »Torque Sensor has 5,000 Hz sample rate.
Rated up to 20,000 rpm, rotating torque sensor features digital, infrared transmission system and 16 bits of resolution. In-line, non-contact unit, offered in various torque capacities and configurations, also features complete signal conditioning that is compatible with commercial dynamometer controllers.
Read More »USB Sensor Link eliminates additional signal processing.
Model 90386 provides portable interface that powers and processes strain gaged based sensor into USB 2.0 compatible signals. In addition to monitoring and storing data for force and torque sensors, product can also measure and record pressure or displacement as well as simultaneous angle or speed measurements. Optional software packages are available for remote control of up to 8 devices,...
Read More »Pinch Force Sensor is offered in hand held model.
In addition to supporting FMVSS-118 laboratory test procedures, Model 10246, 10 N/mm spring rate sensor supports requirements of European Directive 2000/4/EC. Obstacle distances of 25, 50, and 200 mm can be measured with spring rate up to 150 N. Sensor, directly compatible with proprietary PMAC or PTI instruments, also features Auto-ID recognition system.
Read More »Pinch Force Sensor measures window anti-trap forces.
Model 10293 features single sensor element with 5 interchangeable spring racks, and adjustable obstacle distances used to meet requirements of FMVSS-118 standard, including 200 mm extension.
Read More »Sensor measures closing forces of gates and doors.
Model 90335 Lift Gate Pinch Force Sensor measures closing forces of automatic lift gates and power sliding doors. Package compliments company's existing window pinch force sensors used to comply with FMVSS-118. Unit features interchangeable adapter to fit both sliding door and lift gate without needing 2 different sensors.
Read More »Drift Pull Measurement System tests vehicle alignment.
Enabling vehicle manufacturers to accurately measure effects of drift pull caused by steering wheel and tire alignment errors, 90408 Drift Pull Steering Measurement System helps technicians determine whether vehicle has been properly aligned after production. System features integrated torque and angle measurement and quick clamp attachment to vehicle's steering wheel. It is powered by laptop via...
Read More »Rotary Torque Sensors incorporate digital wireless system.
With 1,000 Hz frequency response and 10,000 rpm speed rating, Series 01424 is designed to measure rotational torque using shaft-to-shaft configuration for in-line placement. Sensors can accurately measure torque from dc motors, engines, turbines, and other rotary power sources. They can also be supplied with 512 ppr optical encoder to measure angle or speed.
Read More »Rotary Socket Torque Test System
SDI's 90377 Rotary socket test system is designed for calibrating tools used to apply torque including electric and pneumatic power tools, torque sensors, hand and click wrenches. The strain gage based rotary torque sensor is installed in-line with the tool and part. Data collection is achieved using one of our three standard instrument systems, covering simple peak and track measurements to...
Read More »Test System utilizes steering effort sensor.
Offering torque capacities of 200, 500, or 1,000 in-lb, Test Measurement System combines portable data acquisition system with air-bag compatible, Model 01184 digital FM telemetry steering effort sensor that transmits and receives torque signal. Providing 7,200 ppr, encoder directly attaches to windshield and is driven with gear drive chain. System also includes laptop computer and measurement...
Read More »Rotary Socket Sensor features 1,024 ppr optical encoder.
With capacities from 50-2,400 lb-in., Square Drive Rotary Socket Sensor allows engineers to check nut runners for torque and angle accuracy and insure proper fastening techniques. Sensor is compatible with commercial DAQ systems using in-line miniature amplifier, or as self-contained system using PTI PMAC 2000 or USB Sensor Link.
Read More »Torque Sensor has 5,000 Hz sample rate.
Rated up to 20,000 rpm, rotating torque sensor features digital, infrared transmission system and 16 bits of resolution. In-line, non-contact unit, offered in various torque capacities and configurations, also features complete signal conditioning that is compatible with commercial dynamometer controllers.
Read More »USB Sensor Link eliminates additional signal processing.
Model 90386 provides portable interface that powers and processes strain gaged based sensor into USB 2.0 compatible signals. In addition to monitoring and storing data for force and torque sensors, product can also measure and record pressure or displacement as well as simultaneous angle or speed measurements. Optional software packages are available for remote control of up to 8 devices,...
Read More »Pinch Force Sensor is offered in hand held model.
In addition to supporting FMVSS-118 laboratory test procedures, Model 10246, 10 N/mm spring rate sensor supports requirements of European Directive 2000/4/EC. Obstacle distances of 25, 50, and 200 mm can be measured with spring rate up to 150 N. Sensor, directly compatible with proprietary PMAC or PTI instruments, also features Auto-ID recognition system.
Read More »Pinch Force Sensor measures window anti-trap forces.
Model 10293 features single sensor element with 5 interchangeable spring racks, and adjustable obstacle distances used to meet requirements of FMVSS-118 standard, including 200 mm extension.
Read More »Sensor measures closing forces of gates and doors.
Model 90335 Lift Gate Pinch Force Sensor measures closing forces of automatic lift gates and power sliding doors. Package compliments company's existing window pinch force sensors used to comply with FMVSS-118. Unit features interchangeable adapter to fit both sliding door and lift gate without needing 2 different sensors.
Read More »