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Digital Bus Vertical In-Place Inclinometer System

Update Terakhir
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01 / 12 / 2019
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1 Batang
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Menyediakan berbagai sensor dan instrumentasi presisi untuk aplikasi pengukuran dalam bidang sipil, terkait energy, pemeliharaan kesehatan, dan process control industries. Sensor untuk aplikasi di berbagai infrastruktur seperti jembatan, terowongan, waduk/ dam, sistem transportasi air, gedung beresiko tinggi , industrial transformer , jaringan pemipaan atau pada tanker minyak. Sensor kami berbasis teknologi fiber optik untuk menurunkan resiko kerusakan pada berbagai infrastruktur dan lingkungan, penggunaan berlebihan, tear in machinery , and even loss of life. Jakarta - Indonesia. Phone: 021 29563045, 021 29563046, 021 29563047, Hp : 08156141954, 081399291909, 08179217081, Pin BB : 284152F7 instrumentasi-sipil.

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Detail Digital Bus Vertical In-Place Inclinometer System

Digital Bus Vertical In-Place MEMS Inclinometer Systems are designed to measure lateral movement of soil and rock or deflection of man made structures such as piles or retaining walls, when remote and continuous monitoring is required.

These inclinometers consist of one or more MEMS inclinometer sensors housed inside a 31.75 mm (1.25 in.) diameter, water-tight, stainless steel enclosure. Each sensor is separated from the next by stainless steel rods and wheel assemblies; however, the entire system is connected by a digital bus system which consists of one single cable running the length of the entire chain of connected sensors; this eliminates the need of a separate cable for each sensor and reduces the amount of cable to be managed. Rod lengths can be varied to alter the bay length and sensors can be concentrated in areas of expected movement. An optional analog cable system is also available.

Wheel assemblies are sized to fit 70 mm (2.75 in.) or 85 mm (3.34 in.) O.D. inclinometer casing. As movement occurs and the inclinometer casing deforms, each sensor can be automatically monitored and can be read at a remote readout location. If necessary, an alarm can be triggered when movement reaches a preset critical rate or magnitude.
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