Test and Measurement
Sensors designed for test and measurement applications.
Sensors designed for test and measurement applications.
The miniature size and light weight of the XFC200R facilitates testing where these conditions are necessary. Unlike sensors with flat force application surfaces, the XFC200R incorporates a spherical load button resulting in more precise measurements. Its high stiffness, for the size and measurement ranges, allows measurements in dynamic applications. A strain relief spring strengthens the cable output. The sensing element is fitted with a fully temperature compensated Wheatstone bridge equipped with high stability micro-machined silicon strain gauges.
The XFL212R series is an extraordinarily thin miniature load cell with a temperature compensation module integrated into the output cable. The XFL212R measures strain during compression in static and dynamic applications. Unlike sensors with flat force application surfaces, the XFL212R incorporates a spherical load button, which assures more precise loading and in return more accurate measurements.
The XFL225D series is a very flat miniature load cell with a temperature compensation module integrated into the output cable. This design allows extremely small sensors to be manufactured without sacrificing thermal zero and sensitivity performance. The sensing element is fitted with a fully temperature compensated Wheatstone bridge equipped with high stability micro-machined silicon strain gauges.
The XFTC300 series has been specifically developed to measure tension and/or compression in static and dynamic applications. The miniature size and light weight facilitate testing where these conditions are necessary. The sensing element is fitted with a fully temperature compensated Wheatstone bridge equipped with high stability micro-machined silicon strain gauges. The use of silicon strain gauges optimizes the load cell’s performance at low ranges and frequencies. For sensors with a range of between 2 and 2KN, a high-level output model is available. With two male threads, the XFTC300 is easily installed in industrial or OEM applications. A strain relief spring strengthens the cable output.
The FN3002 is suitable for measuring cable tension and for use in test benches and in many industrial applications. The FN3002 with its compact dimensions measures tension and compression in standard ranges from 10 KN to 2,000 KN [2 to 400 klbf]. Numerous options are available for adaptation to severe environments, for example IP67 or IP68 protection.
The FN2420 is a high accuracy compression load cell often used in applications involving calibration presses. It comes with many options, including a concave loading fixture and an integrated amplifier for high level output. The FN2420's design and optional concave loading fixture minimizes transverse effects. Constructed in stainless steel, the sensor is suitable for use in many hostile environments and can be customized for increased protection.
Model FN1010 is designed to fit in the place of the regular mounting unit. The implantation is facilitated by the possibility of modifying a certain number of dimensions. The FN1010 is suitable for numerous applications on lifting motors and handling equipment. The load pins can be used to measure forces on rotating components (pulleys, sheaves, etc.) and can be directly mounted on shackle.
The FN3030 is well suited for customization in industrial applications and protection levels can be upgraded for use in hostile environments.
The FN3060 S-beam load cell is highly suited for use in test benches and fatigue tests. Due to the mechanical design, the FN3060 is especially durable. It measures tension and compression in standard ranges from 0-250 to 0-2500 N [50 to 500 lbf].
The FN3280 S-beam load cell is designed to measure low force and has standard ranges of 1 to 5 N[0.2 to 1 lbf]. Integrated mechanical stops protect against accidental overloads up to 100 times F.S. The FN3280 provides a combination of economy and performance, this low cost load cell has an accuracy of 0.1% F.S.
The FN3148 high precision load cell features accuracy of 0.05% F.S. Integrated mechanical stops protect against accidental overloads in tension and compression.
The FN7110 features high accuracy measurement channels in two ranges in the same load cell. The standard ratio between the ranges is 1 to 10, and standard load range combinations go from 0-10 and 0-100 N through 0-1000 and 0-10,000 N. The FN7110's percentage accuracy is the same over each range in the load cell. In practice one maintains accuracy of 0.1% over the high force range even in the first 10% of F.S.
The rugged FN3050 load cell is highly suited for the process industry and test bench applications. Dimensions are identical in standard ranges from 0-100 to 0-20,000 N so during testing the sensor can be interchanged for another of a different range without mechanical modifications.
The FN3000 measures tension and compression in standard ranges from 0-10 KN to 0-1000 KN. The mechanical design and gauge placement minimizes transverse effects. Depending on the range, the FN3000 is constructed in aluminium alloy or stainless steel and is available with numerous options. It is suitable for test bench applications and used in many hostile environments and can be customized for increased protection.
The FN3042 is highly suited for use in test benches and fatigue tests. Due to the mechanical design, the FN3042 is especially durable. It measures tension and compression in standard ranges from 5 KN to 500 KN and is able to undergo more than 1,000,000 cycles of full scale with very little change in zero offset stability.
The EL20-S458 provides a super low mass titanium structure to minimize F=MA errors during crash events. The EL20-S458 is offered with optional ultra low mass slotted titanium axles and super robust armoured cable exit from the device.The low noise Wheatstone bridge consists of metal foil strain gages which provide full scale outputs of typically 2 mV/V of excitation. The EL20-S458 can be configured with a variety of options to fine tune the instrument to your application: select from several standard compensated temperature ranges, slotted or knurled axles, input voltages, lead lengths or specify unique combinations of these options.
The multiaxial FN7325 measures force from 0-5 KN to 0-250 KN along three axes as well as the corresponding torque from 0-200 Nm to 0-7000 Nm. The FN7325 is simple to use and install and in many diverse applications circumvents the necessity of employing multiple single-axes units.
The UT is a robust, high accuracy loadcell with a low profile.
The EPXN is a high performance small pressure sensor using a silicon chip for clean media (non corrosive). With it's recessed port, it is best recommended for static applications or low frequency. Available with 10-32UNF or M5 thread, EPXN is available with a cable or integral connector.
The ELHS load cell is a compact package able to fit into many applications where others cannot. The low noise Wheatstone bridge consists of piezoresistive strain gauges which provide 200 mV of typical full scale output. When compact design, extreme stiffness and superior resolution are required, the ELHS load cell is the sensor for your application. The ELHS is provided with either SAE or metric threads for tension and compression applications.
The ELFF unit is fully thermally compensated and will provide an essentially unlimited cycle life expectancy. The ELFF can be configured with a variety of options to fine tune the instrument to your application: select from several standard package geometries, compensated temperature ranges, input voltages, lead lengths or specify entirely unique combinations of these options.
The ELHM load cell is a compact package able to fit into many applications where others cannot. When compact design and superior stability are required, the ELHM load cell is the sensor for your application.
ELPF series of sensors, unlike most competitive designs, are provided with a "four-bar" design where a flexible diaphragm parallels the measuring flexure. This configuration is far less susceptible to off-axis load components than single diaphragm traditional designs. Shielded, Teflon insulated instrumentation cabling is provided along with spring steel strain reliefs and full NIST traceable calibration certificates. The ELPF unit is fully thermally compensated and will provide an essentially unlimited cycle life expectancy. The ELPF can be configured with a variety of options to fine-tune the instrument to your application: select from several standard package geometries, compensated temperature ranges, input voltages, lead lengths or specify entirely unique combinations of these options.
The ELWF series of sensors are ideal for your test and measurement applications. Shielded, Teflon insulated instrumentation cabling is provided along with full NIST traceable calibration certificates. The ELWF unit is fully thermally compensated and will provide an essentially unlimited cycle life expectancy. The ELWF can be configured with a variety of options to finetune the instrument to your application: select from several standard compensated temperature ranges, input voltages, lead lengths or specify entirely unique combinations of these options.
The ELAF series of sensors, unlike most designs, are provided with a "four-bar" design where a flexible diaphragm parallels the measuring flexure. This configuration is far less susceptible to off-axis load components than single diaphragm traditional designs. Shielded, teflon insulated instrumentation cabling is provided along with spring steel strain reliefs and full NIST traceable calibration certificates. The ELAF unit is fully thermally compensated and will provide an essentially unlimited cycle life expectancy. The ELAF can be configured with a variety of options to fine tune the instrument to your application: select from several standard package geometries. Compensated temperature ranges, input voltages, lead lengths or specify entirely unique combinations of these options.
Model FMT is designed to measure clamping and screwing forces. The sensor design reduces the hysteresis and sensitivity variations associated with torque generated by friction during tightening. The FMT has a high stiffness and can be used in static and dynamic applications.