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CCHN Industry

CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

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Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

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CCHN Industry
 
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CCHN Industry

CCHN is a trusted U.S. registered company in industrial automation & controls, CCHN's goal is helping saving your money by bypassing all kinds of local dealers/agents in buying industrial automation products from Chinese manufacturers directly. You will be enjoyed to get free tech support on how to choose, how to wire, how to commissioning with CCHN professional engineers. Shopping for your automation systems on CCHN one-stop online store now. The price on the website only for sample reference. for Mass order,please send the enquiry to us.

Blog

Foam cutting is a device for processing materials in the chemical industry such as foam and sponges. It mainly uses the high

...
EMI Power Line Filter 10A, 3 phase
 
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EMI Power Line Filter 10A, 3 phase


$89.92
EMI power line filter, 3-phase 3-wire, single stage, rated current 10A, operating frequency 50/60Hz and voltage rating to 250
SKU: CHN-EMI-1010
Free Shipping Worldwide
Delivery date: 6-12 days

10A EMI power line filter is easily mounted with screw, effective noise suppression, and provides effective shield for the power supplies like 3-phase motor drive, UPS, packaging equipment, textile equipment, industrial air conditioners, and other 3-phase 3-wire automatic equipment.

Specification

ModelCHN-MT710-10
Filter TypeEMI
ConfigurationSingle Stage
Rated Current @ 40℃10A
Rated Voltage250/440V AC
Operating Frequency50/60Hz
PhaseThree Phase Three Wire
Leakage Current≤5mA @ 250V AC 50Hz 20℃
Filter Range150KHz-30MHz
Hipot Rating (one minute)Line to Line1450V DC
Line to Ground2250V DC
Climatic Category25/085/21
Working Temperature-25°C~+85°C
Output TermainalThreaded stud M4
Weight510g
DimensionSee below

Dimensions (Unit: mm)

10A 3-phase EMI Line Filter Dimension

Electrical Schematic

Three phase emi filter electrical schematic

Insertion Loss Table (in 50Ω system acccording to IEC/CISPR No.17)

6A 10A 20A 30A Power Line Filter Insertion Loss Table

40A 50A 100A EMI Line Filter Insertion Loss Table

Tips: How to use a filter to suppress EMI of switching power supply?

A filter is an effective measure to restrain interference, especially conducting interference and radiation interference for switching power supply EMI signal. Conducting interference signal in any power line could be expressed by differential mode and common mode signal. Differential mode interference will transmit between 2 wires, belonging to symmetrical interference; common mode interference transmits between wire and grounding (housing), belonging to non-symmetrical interference. Under normal condition, differential mode interference has small range, low frequency, and the caused interference is small. Common mode interference has large range, high frequency, able to generate radiation through wire, and the caused interference is large. Therefore, if you want to weaken conducting interference and control the EMI signal under the limit level which is stipulated by related EMC standard, the best way is to install EMI filter in switching power supply input and output circuit. Working frequency of switching power is about 10kHz~100kHz. Most of EMC standards specified that the limit value of conducting interference level is from 10 kHz. Referring to high frequency band EMI signal generating by switch power supply, only choose the EMI filter with decoupling circuit or simple network structure, and then you can get satisfied effect.