FT50-63

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  • Beschreibung

 

MATERIAL 63 (Permeabilität 125)

Ein Nickel-Zink-Material mit geringer Permeabilität und großem Volumenwiderstand. Material hoher Güte für den Frequenzbereich zwischen 15 und 25 MHz. Wird als Ringkern sehr häufig für Spulen hoher Güte verwandt. Lieferbar in Stab-, Perlen- oder Ringform.

Features

NiZn ferrite material with a range for inductive applications up to 25 MHz, that can be used for EMI applications to suppress noise frequencies above 200 MHz.

Burnished to break sharp edges, can contain Parylene C coat at smaller diameters from the length of 9.5mm (0.375") or a uniform coating of thermo-set plastic at larger dimensions (if part numbers ends with a C).

Toroide werden auf AL-Werte bei 10 kHz getestet.

Chart Legend
Σl/A  :  Core Constant,    le :  Effective Path Length,    Ae :  Effective Cross-Sectional Area,    Ve :  Effective Core Volume
AL :  Inductance Factor  

 

 

63 Material Characteristics

Property

Item

Unit/

Symbol

Value

Max.

Permeabilität

Freq. MHz Reso-nanz

Freq. MHz

Breit-band

Freq.

MHz

Drossel

Initial Permeability@ B < 10 gauss

 

µi

40

125

15-25

50-500

500-2000

Flux Density @ Field Strength

Gauss
Oersted

B

H

2500

20

Mittlere Feld-

Linienlänge

2.95 cm

Oberfläche

0.129 cm³

Volumen

0.38 cm³

Residual Flux Density

Gauss

Br

1000

 

 

 

Coercive Force

Oersted

Hc

2.5

Sättigungsflußdichte

10 Oe (Gauß)

2500

Vol.Widerstand Ω/cm

10⁸

Loss Factor @ Frequency

10 -6
MHz

Tan δ/ µi

200

50

Remanenzflußdichte

10 Oe (Gauß)

1000

Σl/A(cm-1)

22.9

Temperature Coefficient of Initial Permeability (20 -70°C)

%/°C

 

0.05

 

Density gm/cm3

 

≈4.7 g/cm3

Curie Temperature

°C

Tc

>475

Resistivity

Ohm-cm

Ρ

 

  1×107

Electrical Specifications

Bestellnr.

Kern-Material

Item

Unit/Symbol

Condition

Value

AL-Toleranz

 

FT50-63

Ferrit Toroid

AL

nH/N2

@ 10 KHz

22

+35%,

 -25%

NiZn

Le

cm

N/A

2.95

±10%

Ae

cm²

N/A

0.129

±10%

Ve

cm³

N/A

0.38

±10%

Initial Permeability

µ0

@ B < 10 gauss

40

±25%

Temp. Coeff. Of initial

Permeability

% °C

20-70°C

0.05

Typ.

Coercive Force

Hc

oersted

2.5

Typ.

Residual Flux Density

Gauss, Br

N/A

1000

Typ.

Flux Density

Gauss, B

Initial (B), oersted

2500

Typ.

 

Gauss, H @

@ Field Strength (H), oersted

20

Typ.

Curie temperature

°C

Tc

> 475

Nom.

Resistivity

Ω cm. p

@ Field Strength

107

Typ.

Loss Factor

1×108Tan δ/ µi

Initial

200

Typ.

 

MHz

@ Frequency

50

Typ.

Chart Legend

Σl/A(cm-1):

le :

Ae :

Ve :

AL :

 

Core Constant

Effective Path Length

Effective Cross-Sectional

Effective Core Volume

Inductance Factor  

 

 

20.9

2.95

0.129

0.38

22 +35%,

-25%

Dimensional Tolerances

Case

In

Toleranz

mm

Toleranz

Weight

Gewicht

B (Outer Diameter)/mm

0.500

±0.010

12.7

±0.25

2.00 g

2.00 gramm

A (Inner Diameter)/mm

0.285

±0.008

7.15

±0.20

---

---

H (Height)/mm

0.188

±0.010

4.9

-0.25

---

--

Ferrite Material Constants

Specific Heat

0.25 cal/g/°C

Thermal Conductivity

3.5 - 4.5 mW/cm-°C

Coefficient of Linear Expansion

8 - 10x10-6/°C

Tensile Strength

4.9 kgf/mm2

Compressive Strength

42 kgf/mm2

Young's Modulus

15x103 kgf/mm2

Hardness (Knoop)

650

Specific Gravity

≈4.7 g/cm3

Die oben genannten Eigenschaften sind typisch für Amidon MnZn- und NiZn-Ferrite.

The above quoted properties are typical for Amidon MnZn and NiZn ferrites.

Ferritring für Breitbandtransformatoren