T80-3 - Iron powder toroid core, 0.02 - 1 MHz, OD 20.2 mm

T80-3 Micrometals T80-3 RF iron powder toroids
N Datasheet RoHS REACH

Other available options

Available in stock
963 Units ready for shipment
 
Quantity
Minimum: 1 pcs
Multiple: 1 pcs
$1.539 /pcs
$1.54
Prices
Q.ty Price each Extended price
1+ $1.539 $1.539
10+ $1.338 $13.384
50+ $1.164 $58.187
100+ $1.058 $105.847
250+ $0.962 $240.614
400+ $0.916 $366.474
800+ $0.872 $697.782
Immediate availability
Dedicated technical support
Secure SSL payments
Fast shipping

Iron Powder Toroid T80-3 Micrometals

The T80-3 toroid from Micrometals is an iron powder magnetic core designed for low-frequency RF applications. Thanks to its Mix 3 and initial permeability of 35, this toroid is particularly suitable for circuits requiring high stability and signal handling precision.

The T80-3 is ideal for building inductors, broadband transformers, low-pass filters and impedance matching circuits. It is commonly used in amateur radio, analog and digital communication systems, and power electronics projects requiring stable response up to 1 MHz.

Mix 3 offers high linearity and low magnetic loss, making this toroid ideal for applications where maintaining a high Q (quality factor) and reducing signal distortion is essential.

Typical Applications of the T80-3 Toroid

  • Broadband RF transformers
  • Inductors for low-pass filters
  • Compensation coils for audio circuits
  • DC-DC converters and switching regulators
  • Amateur radio and SDR (Software Defined Radio) projects
  • EMI/RFI filters for noise suppression

Micrometals MIX 3 - KEY FEATURES

  • Annealed carbonyl iron powder material
  • Provides the highest carbonyl permeability
  • Used for high-Q applications below 1 MHz
  • Ideal for broadband transformers from 50 to 500 MHz
  • Permeability 35μ

Specifications

  • gray/clear
  • 3
  • 35
  • 180 µH
  • 0.02 - 1 MHz
  • 20.2 mm
  • 12.6 mm
  • 6.35 mm
  • 0.795 in
  • 0.495 in
  • 0.25 in
PDF · 438.3 kB
View

Compliance

  • US
  • 85049018
  • 6.00 g
  • Yes
  • SVHC not present