AC power line filter common mode choke inductor

Share on (251173642):


Price:

Quantity:


Product Overview

Description


AC power line filter common mode choke inductor


 UTTuf ui


*Custom-design inductors are welcome


*Manufacture Surface Mount Power Inductors,


 Surface Mount Shielded Inductors,


 Surface Mount Chip Inductors,


 Power Line Inductors,


 High Current Hash Chokes,


 Axial Lead RF Chokes,


 Drum Core Power Inductors,


 Universal Wound Coils,


 Air Coils,


 Ferrite Bobbin Coils, 


 Common Mode Toroids.


 


Specification





































































































Item NameISO Factory Good Price UL ROHS CQC Certified 1H Ferrite Toroidal Core Adjustable Coils Inductor
ComponentsFerrite core, Copper wire;Basing;Shielding case
CoreNiZn/Iron /MnZn/MPP/Amorphous magnetic
WireEnameled copper wire
FunctionsPower line filter/Signal line filter/Energy saving/Voltage step-up etc/Choke etc
Mounting typeSurface mount ;Through hole ; Wire lead
Shape TypesVertical;Horizontal;with/without base;shielded/unshielded ;SMD
Coil StructureToroidal
Working Frequency Range1KHZ-100MHZ
Inductance Range1uH-1H
DCR Rangeunknown-Depend on customers' request
Storage Temperature-20ºC to +85ºC
Working Temperature-20ºC to +105ºC
Storage Humidity30% to 95%
Test ItemsØ Turns Ratio
Ø Inductance
Ø DC resistance test
Ø Safety test
Ø Current test
Ø Hi-POT
CertificationsISO9001:2008, ISO14001:2008, 
MOQ1000 pcs
OEMAcceptable
SampleFree
Sample Time3-5 working days
PackageEPE foam + export carton, or  plastic tray+export carton
Delivery timeabout 15 days against deposit
FeatureHigh current High power High efficiency
Low temperature rise
Stable performance
Applications1. VCRS, Copy machine , Audio equipment , Game machines
2. TV sets, Microcomputer equipment, printers, Terminals
3. communications control equipment
4.Switching power supply, chargers, alarm system
5. UPS, VCD/DVD players, audio and visual equipment
6. OA machines, inverters, chargers, alarm system

 


4


0.0185 s.