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P.P Horizontal-Mount Float Level Switch - LS06

P.P Horizontal-Mount Float Level Switch, Cer:ISO9001,RoSh, PP housing material, more level can be define, Delivery:14 days - more info check here: http://www.buymeasuringtools.com/P-P-Horizontal-Mount-Float-Level-Switch-10287474/

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Place of Origin: Shanghai China (Mainland) Brand Name: MISENSOR Model Number: LS06 Color: White Material: PP

Product Features:

P.P Horizontal-Mount Float Level Switch

Cer:ISO9001,RoSh

PP housing material

more level can be define

Delivery:14 days

Business Terms:

Port: Shanghai

Minimum Order Quantity: 100 Set/Sets

Supply Ability: 1000 Set/Sets per Week

Payment Terms: L/C,D/A,D/P,T/T,Western Union,MoneyGram

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P.P Horizontal-Mount Float Level Switch
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Product Packagings & Delivery Terms:

Packaging Detail: 100 sets in 1 box

Delivery Detail: 3 days

Specifications and Product Details:

P.P Horizontal-Mount Float Level Switch

Specification1A2A
Max contact rating10W50W
Max switching voltage100VDC220VDC
Max switching current0.5A1.5A
Max breakdown voltage220VDC300VDC
Max carry current1.0A3.0A
Max contact resistance100Ω100Ω
Temperature rating-10-+85°C-10-+85°C
Float ball materialP.PP.P
Float body materialP.PP.P

open or close a circuit with only a small change in liquid level - usually a 1/4" to 1/2" movement in level will change the status from open to closed or vice-versa. Where it is desirable to turn a device on at one level and off at a significantly higher or lower level, two float switches can be used.

Suppose that you want a pump to fill a chamber to the point where it is 75% full. You do not want the pump to begin refilling the chamber until the liquid level has dropped to the point where it is only 50% full. The difference in these two levels is 6 inches. Since a float switch activates in about 1/4"-1/2", using a single float switch will not achieve your objective.

The solution is achieved by using two normally-closed float switches. The illustration below shows a simple way to utilize a standard, inexpensive eight prong DPDT relay to prevent the bottom switch from opening the pump circuit and prevent the top switch from closing the circuit. Using this arrangement, the float switches can be placed at any desired "turn pump on" and "turn pump off" levels.

The above illustration is for a "fill-up" application, but the same logic can be utilized in a "drain-out" application. In such an application a pump would be used to pump liquid out of a chamber when it was 75% full and continue pumping liquid out until the level was reduced to 50% full.

You can achieve this by inverting both switches and reversing their position - i.e. the switch shown in the upper position in the illustration would instead be placed low in the chamber where the pump should turn on; likewise, the switch shown in the lower position in the illustration would be placed high in the chamber where the pump should turn off. Remember to invert each switch so that it acts as a normally-open rather than a normally-closed switch.

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