Honeywell Model AL-SC High Output Load Cell

케이센서스 스마트스토어
Model AL-SC is high-output load cell. These semiconductor strain gage load cells are engineered to measure loads from 500 lb to 2000 lb. The tension/compression Model AL-SC is designed with female threads. It provides high performance in non-linearity, hysteresis, and repeatability. Low mechanical deflection allows for better response capability.

The Model 102 load cells combines both a compact form and high precision to offer a superior tension force transducer. The one-piece S-shaped design achieves a maximum non-linearity of 0.02 % full scale for load ranges from 20 kg to 1000 kg. Additional features include minimal temperature effects on zero and span of 0.002 %/°C and 0.002 %/°C, respectively.
The pedal pressure sensor mounts directly to the brake pedal with its own mounting clamp. Load applied up to 1/2 inch off center, produces less than a 0.5% error. Standard capacity is 300 lbs. This load cell, which is used for brake pedal force measurements by the automotive industry, finds many production applications. It adapts to any of the pedal or bar operated devices used in all production facilities.
The Model 3127 fatigue-resistant load cells are extremely resistant to extraneous bending and side loading forces. The structure virtually eliminates bending strains at the strain gage, minimizing the primary cause of load cell failure. Dual bridge option available for feedback control and redundancy.
The Model 3130-131 fatigue-resistant load cells are extremely resistant to extraneous bending and side loading forces. The structure virtually eliminates bending strains at the strain gage, minimizing the primary cause of load cell failure. Dual bridge option available for feedback control and redundancy.
Model AL-JP is a high output load cell (30 mV/V minimum). These semiconductor strain gage load cells are engineered to measure loads from 500 lb to 2000 lb. The tension/compression Model AL-JP is designed with female threads. It provides high performance in non-linearity, hysteresis, and repeatability. Low mechanical deflection allows for better response capability.
Model RH, with male and female threads, is a high output rod end load cell designed to be mounted inline to the load axis to measure tension. The outputs for these load cells are ±5 Vdc or 10 Vdc, or 4 mA to 20 mA (two wire) all calibrated in tension. The mounting thread configurations and the all welded stainless steel construction make these tension load cells ideal for a variety of rugged field applications as well as in the laboratory.
The optional high output signal offers resistance to electrical noise as well as additional signal resolution. Additional options include an internal buffered shunt calibration circuit for ease of setup with an associated indicator, and a variety of thread selections, including metric sizes.
Model TH Donut Shaped Load Cell features a smooth thru-hole design for use in applications which require the load structure to pass through the cell. Such applications include bolt force measurement, post or leg mount, and rolling mill systems. Load ranges as low as 15,000 pounds and as great as 200,000 pounds can be measured within a maximum full scale non-linearity of ±0.25. This model is used in compression applications. For optimum performance, this load cell must be mounted between load surfaces which are flat and parallel. The Model TH Donut Shaped Load Cell is designed to provide the customer with an internal hole diameter which is large relative to the outside diameter. The Model TH is a small size, high capacity load cell.
Model RM, with male threads, is a high output rod end load cell designed to be mounted inline to the load axis to measure tension. The outputs for these load cells are ±5 Vdc or 10 Vdc, or
4 mA to 20 mA (two wire) all calibrated in tension. The mounting thread configurations and the all welded stainless steel construction make these tension load cells ideal for a variety of rugged field applications as well as in the laboratory.
The optional high output signal offers resistance to electrical noise as well as additional signal resolution. Additional options include an internal buffered shunt calibration circuit for ease of setup with an associated indicator, and a variety of thread selections, including metric sizes.
The X-Y force sensor is constructed of two strain gage bridges, mounted at 90º, isolated by a flexure system. The complete two-component system, including flexures, is machined from one specially prepared metal billet to provide unusual structure strength and to minimize crosstalk between the two transducers. This unique sensor has excellent linearity characteristics and maximum structure life.
Model RF, with female threads, is a high output rod end load cell designed to be mounted inline to the load axis to measure tension. The outputs for these load cells are ±5 Vdc or 10 Vdc, or
4 mA to 20 mA (two wire) all calibrated in tension. The mounting thread configurations and the all welded stainless steel construction make these tension load cells ideal for a variety of rugged field applications as well as in the laboratory.
The optional high output signal offers resistance to electrical noise as well as additional signal resolution. Additional options include an internal buffered shunt calibration circuit for ease of setup with an associated indicator, and a variety of thread selections, including metric sizes.
The Model D Donut Shaped Load Cell features a smooth thru-hole design often ideal for applications which require the load structure to pass directly through the cell. Such applications include bolt force measurements, clamping forces, and monitoring overloads. Load ranges as low as 150 grams and as great as 30,000 pounds can be measured within a maximum full scale non-linearity and hysteresis of ±0.5 % F.S., respectively. These models are used in compression applications and are available in multiple hole and frame sizes. For optimum performance, these cells must be mounted between load surfaces which are flat and parallel. The Model D miniature load cell is designed to have a minimum thickness.
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