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佛山市斯凱韋爾電子是專業(yè)設(shè)計(jì)制造浮球開關(guān)、液位開關(guān)、水流開關(guān)、接近開關(guān)、物位開關(guān)、料位開關(guān)、液位傳感器、物位傳感器、料位傳感器。公司專營進(jìn)口干簧管、液位儀表、物位儀表、料位儀表,在液位測量、物位測量、料位測量及液位控制、物位控制、料位控制方面有多年的經(jīng)驗(yàn)。
聯(lián)系熱線:0086-757-82208956 82323721
公司傳真:0086-757-82514068 82208946
電子郵箱:skyweal@163.com
lf@skyweal.com
sensors@skyweal.com
聯(lián)系地址:佛山市禪城區(qū)張槎一路華南電源創(chuàng)新科技園125號5座4樓
Reed Switches
Capacitive Loads
Unlike inductive loads, capacitive and lamp loads are prone to high inrush currents which can lead to faulty operation and even contact welding.
When switching charged capacitors (including cable capacitance) a sudden unloading can occur, the intensity of which is determined by the capacity and length of the connecting leads to the switch. This inrush peak can be reduced by a series of resistors. The value of these resistors is dependent on the particular application but should be as high as possible to ensure that the inrush current is within the allowable limits.
>> With lamp load applications it is important to note that cold lamp filaments have a resistance 10 times smaller than already glowing fi laments. This means that when being turned-on, the lamp fi lament experiences a current fl ow 10 times greater than when already glowing. This high inrush current can be reduced to an acceptable level through the use of a series of current-limiting resistors. Another possibility is the parellel switching of a resistor across the switch. This allows just enough current to fl ow to the fi lament to keep it warm, yet not enough to make it glow.
The above diagram illustrates a resistor/capacitor network for protecting a Reed Switch against high inrush currents. R1 and/or R2 are used depending upon circuit conditions. Lamp load with parallel or current limiting resistor across the switch
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佛山市斯凱韋爾電子有限公司 粵ICP備1