FT37-75

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MATERIAL 75 (Permeabilität 5000)

Ein Mangan-Zink-Material, mit geringem Volumenwiderstand und niedrigen Kernverlusten zwischen 1 kHz und 1 MHz. Wird für Transformatoren niedriger Leistung, Breitbandübertrager und Puls-Transformatoren benutzt. Sehr geeignet auch zur Dämpfung unerwünschter HF im Bereich von 5 bis 20 MHz.

Chart Legend

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

75 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

2200

±20%

9500

0.001-

1,0

0.15-

12

1-

20

Flux Density @ Field Strength

Gauss
Oersted

B

H

4300

5

Mittlere Feld-

Linienlänge

2.07 cm

Oberfläche

0.072 cm³

Volumen

0.15 cm²

Residual Flux Density

Gauss

Br

1400

 

Coercive Force

Oersted

Hc

0.16

Sättigungsflußdichte

10 Oe (Gauß)

4300

Vol.Widerstand Ω/cm

5x102

Loss Factor @ Frequency

10 -6
MHz

Tan δ/ µi

15

0.1

Remanenzflußdichte

10 Oe (Gauß)

1400

Σl/A(cm-1)

28.6

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

%/°C

 

0.6

 

Density gm/cm3

 

≈4.7 g/cm3

Curie Temperature

°C

Tc

>140

Resistivity

Ohm-cm

Ρ

300

102

1×108

Electrical Specifications

Bestellnr.

Kern-Material

Item

Unit/Symbol

Condition

Value

AL-Toleranz

 

FT37-75

Ferrit Toroid

AL

nH/N2

@ 10 KHz

2200

±20%

Mn-Zn

 

Le

cm

N/A

2.07

±10%

Ae

cm²

N/A

0.0072

±10%

Ve

cm³

N/A

0.15

±10%

Initial Permeability

µ0

@ B < 10 gauss

5000

±20%

Temp. Coeff. Of initial

Permeability

% °C

20-70°C

0.6

Typ.

Coercive Force

Hc

oersted

0.16

Typ.

Residual Flux Density

Gauss, Br

N/A

1400

Typ.

Flux Density

Gauss, B

Initial (B), oersted

4300

Typ.

 

Gauss, H @

@ Field Strength (H), oersted

5

Typ.

Curie temperature

°C

Tc

> 140

Nom.

Resistivity

Ω cm. p

@ Field Strength

10²

Typ.

Loss Factor

1×108Tan δ/ µi

Initial

15

Typ.

 

MHz

@ Frequency

0.1

Typ.

Chart Legend

Σl/A(cm-1):

le :

Ae :

Ve :

AL :

 

Core Constant

Effective Path Length

Effective Cross-Sectional

Effective Core Volume

Inductance Factor  

 

 

28.6

2.07

0.0072

0.15

880

Dimensional Tolerances

Case

In

Toleranz

mm

Toleranz

Weight

Gewicht

B (Outer Diameter)/mm

0.325

±0.008

9.50

±0.20

0.14 g

0.14 gramm

A (Inner Diameter)/mm

0.187

±0.006

4.75

±0.15

---

---

H (Height)/mm

0.125

±0.010

3.30

-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.

Ferrite Toroids 75 material has low volume resistiwity and low core loss from 1 kHz to 1 MHz. Used for pulse transformers and low level wideband transformers. Exellent frequency attenuation from 0.4 MHz to 20 MHz