Honeywell Model D Thru-Hole Load Cell

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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.

Model 53 load cells are bonded foil strain gage transducers designed for cost efficient production and testing applications (i.e. press calibration). Engineered compression force measurements up to 50K lb., this model achieves a maximum non-linearity of 0.5 % full scale. Precision gaging techniques and a stainless steel construction provides excellent long-term stability and reliability under severe operating conditions. The Model 53 compression-only load cell has an integral load button machined as part of the load cell. The Model 53 must be mounted on a smooth flat surface for proper operation. Three tapped holes are provided for mounting.
The Model RGH In-Line load cells are high quality, stainless steel, rugged load cells capable of withstanding significant off-axis loads, making them an ideal choice for in-line compression measurement or tension measurement where side loading cannot be completely controlled. The flexible mounting options make applications easier to implement, and the all stainless steel, hermetic construction is well suited to corrosive and very high humidity environments.
Honeywell’s cost-effective, general purpose, carbon steel, pancake load cells offer a compact design that features exceptional structural capability to withstand extraneous loads, such as torque, bending movements and side loads combined with a high degree of accuracy for general purpose applications.
Designed to measure tension/compression, these load cells have enhanced accuracies up to 0.07 % and have measurement ranges from 5 lb up to 100,000 lb. Fatigue-resistant and fatigue-rated models for use with applications with extremely high cycle counts are available. Need special modifications or a custom design? Call us to discuss your requirements.
The small-diameter, cost-efficient, fatigue-resistant load cells are designed to be used in applications that require an ability to mount in an existing system with restricted working area. They are commonly used in fluid power transfer systems. Their low cost and ease of mounting allow simultaneous testing of multi-element systems.
They may be directly attached to the piston rod of a hydraulic cylinder. Side-mounted cable connectors allow cable assemblies to be supported without affecting movement of the cell during tension or compression loading.
Model UG Ultra Precision Universal load cell achieves scale quality and performance standards.The Model UG achieves ±0.03 % non-linearity with very little deflection (typically .0045 in). It utilizes a four arm strain gage bridge which is bonded and tested for high precision and dependability. Female threads on both ends facilitate mounting in any position for tension, compression, or universal force measurements. Model UG load cells can be used in both static and dynamic applications. Stainless steel construction ensures high reliability.
Model 13 (compression only) subminiature load cell is designed to measure load ranges from 150 g to 1000 lb. With subminiature dimensions, including diameters from 0.38 in to 0.75 in and heights of 0.13 in to 0.25 in, these units are easily incorporated into systems having limited space. Model 13 combines high frequency response and low deflection to achieve a combined non-linearity and hysteresis of 0.25 % to 0.5 % full scale. A balance module is included in the load cell’s lead wire cable for temperature compensation and should not be removed.
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.
Model 31 low range precision miniature load cells measure both tension and compression load forces of 50 grams to 500 g. These models are our highest accuracy, rugged miniature load cells. Model 31’s welded, stainless steel construction is designed to eliminate or reduce to a minimum, the effects of off-axis loads. (The internal construction assures excellent long-term stability for ranges 1000 grams and above.) A modification permits this model to be completely welded for underwater applications. The Model 31 tension/compression load cell has male threads attachments. High accuracies of 0.15 % to 0.25 % full scale are achieved. Each bonded strain gage unit is built of welded 17-4 PH stainless steel for additional ruggedness.
The compact Model MPB Load Cells are designed for applications requiring high capacity yet where space restrictions require that the cell be small in size. The Model MPB will measure compression load forces in ranges between 15,000 to 2,000,000 pounds.
Applications include impact testing and mine shaft roof simulations. The diameter of these load cells range between 1.25 in and 10 in while the height ranges between approximately 0.63 in and 14 in depending on the load range desired.
The Model RGF In-Line load cells are high quality, stainless steel rugged load cells capable of withstanding significant off-axis loads, making them an ideal choice for in-line compression measurement or tension measurement where side loading cannot be completely controlled. The flexible mounting options make applications easier to implement, and the all stainless steel, hermetic construction is well suited to corrosive and very high humidity environments.
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