• Nie Znaleziono Wyników

EGP30A

N/A
N/A
Protected

Academic year: 2022

Share "EGP30A"

Copied!
2
0
0

Pełen tekst

(1)

^£.m,L-L.onauctoi Lpioaucti.,

20 STERN AVE.

SPRINGFIELD, NEW JERSEY 07081 U.S.A.

TELEPHONE: (973) 376-2922 (212) 227-6005 FAX: (973) 376-8960

3 Amp. Glass Passivated Avalanche Ultrafast Recovery Eectifiet

Dimensions in mm. DO-201AD

(Plastic)

Mounting instructions

1. Min. distance from body to soldering point, 4 mm.

2. Max. solder temperature, 350 °C.

3. Max. soldering time, 3.5 sec.

4. Do not bend lead at a point closer than 3 mm. to the body

Voltage 50 to 600V

Current 3 A at 55 °C.

• Glass Passivated Junction

• High current capability

• The plastic material carries U/L recognition 94 V-0

• Terminals: Axial Leads

• Polarity: Color band denotes cathode

Maximum Ratings, according to IEC publication No. 134

VRRM VRMS VDC

^F(AV)

IFRM IFSM

trr

q

T, T•'•stg

-t-RSM

Peak Recurrent reverse voltage (V) Maximum RMS voltage

Maximum DC blocking voltage Forward current at Tamb = 55 °C Recurrent peak forward current 8.3 ms. peak forward surge current

(Jedec Method)

Max. reverse recovery time from IF= 0 . 5 A ; I R = 1 A ; 1^ = 0. 25 A

Typical Junction Capacitance at 1 MHz and reverse voltaje of 4VDC

Operating temperature range Storage temperature range Maximum non repetitive peak reverse avalanche energy IR = 1A ; Tj = 25 °C

EGF30A EGP30B EGF30D 50 100 200 35 70 140 50 100 200

EGP30F EGF 300 4(

210 2f 300 4(

3A

30G EGP30J 30 600 30 420 30 600

30 A 125A

50ns

90 pF 45 PF

- 6 5 t o + 150 °C - 6 5 t o + 150 °C

20 mj

Electrical Characteristics at Tamb = 25 °C

VF

IR

Rthj-a

Max. forward voltage drop at IF - 3 A Max. reverse current at V^ at ^5 °C Max. thermal resistance ( 1 = 1 0 mm.)

0.95V 1,25V

5 p A 50 p A 30°C/W Quality Semi-Conductors

(2)

EGP30 Rating And Characteristic Curves

FORWARD CURRENT DERATING CURVE TYPICAL FORWARD CHARACTERISTIC

I F(AV, , average forward rectilied current (A) o i-" NI co *» a

\0

/

\m

. - 1

N s

0 mm.

s

\

10

ffi u

2 1 l

o

1 lo-

1

S

IX

EC E(

1 I

3P30A 3P30D

y

/

I

M / /

f7

/ /

t /

/ Ii 1

k- — /

s / /

s

L/

EGI EGI

Tj =

_--^J X"'*'

^

'30F th

530J

26°C

25 50 75 100 125 150 175 Tamb, ambient temperature (C)

0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 V , instantaneous forward voltage (V)

MAXIMUM NON REPETITIVE

PEAK FORWARD SURGE CURRENT TYPICAL JUNCTION CAPACITANCE

£j<J\J

ST•^ 9nn£i\J\J 13

a

3

u CD gi 150

•s

Ul

1 100

3

<u

D,

I 50

n X,,^

^ix^v

\,

s -.

^^^

^^%,

"^s. »»,"*>

»-.^

-

Z10

180

g 150

0)u

1 120 'u

a

(8

« 90

Ro

^ 60

cj

30

0

2 4 6 10 20 40 60 100 Number of cycles at 60 Hz.

X

X

S

S

\

EC EC s

ss _

EGP30F thr EGP30J

5P30A t 5P30D

"\

u hr

\.

u

Sfc

^s

TH - - i j

f~

^v.

1

K,

^

2S<

Ml

*~ * C ...

Jz

"•-•

'--..

0.1 0.5 1 2 5 10 50 100 VR, reverse voltage (V)

Cytaty

Powiązane dokumenty

One way of solving ill-posed inverse problems is by using metaheuristics, which are solution methods that orchestrate an interaction between local improvement procedures and

Thanks to Europol, the European Union law enforcement agency, diff erent police forces across Europe are better able to work together and the EU is a much safer place for it.

Maximum case to ambient thermal resistance for which maximum VJ-O.M and VK,,M ratings apply = 18°C per watt.. Peak Forward Voltage, PFV__ , HMS

'Average Anode Forward Current (180° Condudion AnglcO at (or below) 55 °C Free-Air Temperature (See Hole 2). 'Anode Surge Current (See

First observation is that both forward jet and central jet spectra can be simultaneously and reason- ably described by the High Energy Factorization approach and BFKL-like

I am delighted to announce that for the first time in many years Kardiologia Polska (Polish Heart Journal), the flagship periodical of the Polish Cardiac Society, has

The microstructure of cement paste is simulated by the HYMOSTRUC3D model, and then it is evaluated by the 3D lattice fracture model for its global mechanical properties such as

The four modelling schemes are: Finite element method (FEM), accounting for the total magnetic field of the internal and external current flow; Core-conductor model of the