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Stainless steel shear beam load cell 0-10t IP68 weighing sensor

Shear Beam Load Cell

Stainless steel shear beam load cell 0-10t IP68 weighing sensor

The Stainless Steel Shear Beam Load Cell LCG04 is a robust and reliable sensor designed for precise weight or force measurements. Operating as a simple cantilever beam, it flexes slightly under load, mimicking the behavior of a diving board. This load cell is typically fixed at one end while the other remains free to bear the applied weight, ensuring accurate force readings.

    single ended shear beam load cell

    The LCG04 weighing sensor features a wide capacity range from 500kg to 10 tons (1,000lb to 20,000lb), making it suitable for diverse industrial applications. Its temperature-compensated design ensures consistent performance across varying environmental conditions, while its IP68 hermetically welded construction guarantees durability and resistance to moisture, dust, and harsh working environments.

    With a unified rated output of 2.0mV/V (for metric capacities) or 3.0mV/V (for imperial capacities), the LCG04 simplifies signal processing when multiple load cells are connected in a single weighing system. This feature makes it ideal for systems requiring precise synchronization, such as platform scales, pallet truck scales, vessel and tank weighing systems, and packaging machines.

    The beam load cell LCG04 also serves as a cost-effective alternative to models like the Flintec SB9, Ascellsensor CSGI, Anyload 563YS, Coti Global CG-23-SSW-02, Rice Lake RL35082 and RLHTO, VPG Sensortronics 65083S, Mettler Toledo SLB215, Hardy HISB01, and Minebea-Intec MP 79. Each load cell comes with a 6-meter-long shielded cable, ensuring easy connectivity and reducing signal interference.

    Designed for high-accuracy weighing applications, the LCG04 shear beam load cell is the go-to choice for professionals seeking dependable performance and cost-efficiency in demanding industrial environments. Its versatility and robust construction make it an indispensable component in modern weighing systems.

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