Flowsensor

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New

SDY Capacitive Level Sensor

Features ・ Ideal for indirect detection of liquids or powders in non-metallic containers. ・ Resistant to condensation, wetting and dirt on the inner wall of the container. ・ Adopting digital circuit for excellent noise resistance. ・ Two types are available for liquid and powder detection. ・ Compact and low cost.

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New

MKCM Water / Oil Flow Switch

Features 《With Flow Switch》 By detecting the fluid flow, the switch is turned ON or OFF at the specified flow rate. The switch is fixed. The flow rate value cannot be changed later. 《 Visible Flow at a glance》 The flow of the fluid can be confirmed by the movement of the float in the transparent tube. 《With Protective Cover》 The metal protective cover reduces the possibility of damage due to impact from the outside.

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New

MKCTV Water Signal / Oil Signal

Features 《Visible Flow Rate 》 Since a transparent taper tube is used, the approximate flow rate can be confirmed by looking at the position of the relationship between the ball and the indicated red line. 《With Flow Adjustment Valve》 By adjusting the miniature valve, the required flow rate can be set by aligning the ball with the red line. 《With Protective Cover》 The metal protective cover reduces the possibility of damage due to impact from the outside.

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New

MKCT Water Signal / Oil Signal

Features 《Visible Flow Rate》 Since a transparent taper tube is used, the approximate flow rate can be confirmed by looking at the position of the relationship between the ball and the indicated red line. 《With Protective Cover》 The metal protective cover reduces the possibility of damage due to impact from the outside.

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New

MKTV Water Signal / Oil Signal

Features 《Visible Flow Rate 》 Since a transparent taper tube is used, the approximate flow rate can be confirmed by looking at the position of the relationship between the ball and the indicated red line. 《With Flow Adjustment Valve》 By adjusting the miniature valve, the required flow rate can be set by aligning the ball with the red line.

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New

MKT Water Signal / Oil Signal

Features 《Visible Flow Rate 》 Since a transparent taper tube is used, the approximate flow rate can be confirmed by looking at the position of the relationship between the ball and the indicated red line. 《Free Installation Posture》 Because using a spring inside, it can be installed in any posture, such as upward, downward, or sideways.

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New

NDV Turbine Type Compact Flowsensor

Features »Easy, high-quality, and low-cost flowsensor »Excellent repeatability »Compact design ideal for device integration »Simple structure

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New

OF-Z Gear Type Flowsensor

Features »Ideal for measuring a variety of liquids. »Measures microflow rate with accuracy. »Excellent repeatability. »Viscous fluid is measurable.

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New

ND Vane Wheel Flowsensor

Features »Ideal for measuring various liquids »Best-selling products with high quality at a low price ・Excellent repeatability. »Suitable for batch control »Lineup of 3 different wetted materials Measurement Principle The flow from the inlet is injected into the vane wheel and the vane wheel is rotated in proportion to the flow rate. A magnet is installed on the vane wheel, and the number of rotations is detected and output by the magnetic sensor. The structure of this flowsensor is simple and indestructible. This flowsensor operates smoothly from low flow rate range. In addition, the performance is excellently reproducible.

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New

VN Compact Electromagnetic Flowsensor

Features ・Electromagnetic flowsensor without moving parts suitable for use in machines. ・With absence of moving parts, there is less failure due to its contaminants. ・Low pressure loss ・No straight pipe required, compact design, and easy to install. Measurement Principle By applying the Faraday’s law of induction, with a current flowing through the coil to generate a magnetic field in the flow path, an electromotive force is generated when a conductive liquid passes through the flow path. Electromagnetic force becomes signal which is proportional to flow velocity, and this voltage is measured to convert it to flow rate. The flow rate is calculated by multiplying this flow rate by the cross-sectional area of the flow path.

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