Uploaded July 2025 | Updated September 2026, 2 hours ago
Eliminating wiring errors in strain gage load cells can be tricky, especially when trying to maintain equal-length wiring – a solution that's often impractical. Furthermore, the use of adjustment resistors enables precise control and improves accuracy by addressing zero TC, span TC, and bridge balance errors, but adds to the complexity of the wiring.
The move from intricate hand-wiring to automated wire bonding using flex circuits is revolutionizing the industry. This shift not only streamlines high-volume production, but also enhances consistency and reliability, paving the way for exciting new innovations.
To further simplify, the integration of strain gages containing effective modulus compensation (EMC) dramatically boosts accuracy for load cells operating in fluctuating temperatures without extra resistors.
What’s even more exciting? This same sensor technology has the potential to solve a wide range of measurement challenges, including those where the Wheatstone bridge is distributed, with extra distance between the strain gage arms. The possibilities are endless!
Eliminating wiring errors in strain gage load cells can be tricky, especially when trying to maintain equal-length wiring – a solution that's often impractical. Furthermore, the use of adjustment resistors enables precise control and improves accuracy by addressing zero TC, span TC, and bridge balance errors, but adds to the complexity of the wiring.
The move from intricate hand-wiring to automated wire bonding using flex circuits is revolutionizing the industry. This shift not only streamlines high-volume production, but also enhances consistency and reliability, paving the way for exciting new innovations.
To further simplify, the integration of strain gages containing effective modulus compensation (EMC) dramatically boosts accuracy for load cells operating in fluctuating temperatures without extra resistors.
What’s even more exciting? This same sensor technology has the potential to solve a wide range of measurement challenges, including those where the Wheatstone bridge is distributed, with extra distance between the strain gage arms. The possibilities are endless!










