• Nie Znaleziono Wyników

BYT08P-200

N/A
N/A
Protected

Academic year: 2022

Share "BYT08P-200"

Copied!
5
0
0

Pełen tekst

(1)

rz 7 SCS-THOMSON

• IM r a i r a m i e i E M o e s B Y T 08 P -200 —> 400

FAST RECOVERY RECTIFIER DIODES

FEATURES

■ VERY LOW REVERSE RECOVERY TIME

■ VERY LOW SWITCHING LOSSES

■ LOW NOISE TURN-OFF SWITCHING

S U IT A B LE A P P L IC A T IO N S

■ FREE WHEELING DIODE IN CONVERTERS AND MOTOR CONTROL CIRCUITS

■ RECTIFIER IN S.M.P.S.

Cathode connected to case

TO220AC (Plastic)

ABSO LUTE RATING S (limiting values)

Symbol Parameter Value Unit

Ifrm Repetitive Peak Forward Current t p < 10ps 1 3 0 A

If(rms) RMS Forward Current 16 A

If(AV) Average Forward Current T case = 12 0 ° C

5 = 0 .5

8 A

Ifsm Surge non Repetitive Forward Current tp = 10ms sinusoidal

100 A

p Power Dissipation T case = 1 0 0 ° C 20 W

T s tg

Tj

Storage and Junction Temperature Range - 4 0 to + 1 5 0 ° C

Symbol Parameter BYT 08P-

200 300 400 Unit

Vrrm Repetitive Peak Reverse Voltage 2 0 0 3 0 0 4 0 0 V

Vrsm Non Repetitive Peak Reverse Voltage 2 2 0 3 3 0 4 4 0 V

THERMAL RESISTANCE

Symbol Test Conditions Value Unit

Rth ( j - C ) Junction-case 2.5 °C/W

June 1989 1/5

(2)

BYT 08P-200 -» 400

ELECTRICAL CHARACTERISTICS STATIC CHARACTERISTICS

Symbol Test Conditions Min. Typ. Max. Unit

Ir T j = 25°C Vr = Vrrm 15 p A

T j = 100°C 2.5 m A

Vf Tj = 25°C If= 8 A 1.5 V

Tj = 100°C 1.4

RECOVERY CHARACTERISTICS

Symbol Test Conditions Min. Typ. Max. Unit

trr Tj = 25°C If = 1A diF/dt = - 15A/gs VR = 30V 75 ns

tr, If = 0.5A Ir = 1A lrr=0.25A 35

TURN -OFF SWITCHING CHARACTERISTICS (Without Series Inductance)

Symbol Test Conditions Min. Typ. Max. Unit

t|RM dip/dt = - 32A/ps Vcc = 200V l F = 8A Lp < 0.05pH Tj = 100°C See Figure 11

75 ns

diF/dt = - 64A/ps 50

Irm d iF/dt = - 32A/ps 2.2 A

di F/dt = - 64A/ps 2.8

TURN -OFF OVERVOLTAGE COEFFICIENT - (With Series Inductance)

Symbol Test Conditions Min. Typ. Max. Unit

r - Vrp Vcc

T j = 100°C Vcc = 120V Ip = If(a v) See note dip/dt = - 8 A /|is L p = 9 |iH See figure 12

3 .3

Note : Applicable to BYT 08 P-400 only

To evaluate the conduction losses use the following equations :

Vf= 1.1 + 0.024 If P = 1.1 x If(av) + 0.024 If2 (r m s)

2/5 r = 7 SCS-THOMSON

“ ■7# aacKteBACtmoHoc*

(3)

BYT 08P-200 -> 400

P(W)

0 5 10 Ip(AV)

FIGURE 1 : Low frequency pow er losses versus (A) average current.

FIGURE 2 : Peak current versus form factor

FIGURE 3 : Non repetitive peak surge current versus overload duration.

10 20 30 40 If (A)

FIGURE 5 : Voltage drop versus forw ard current.

10 20 40 60 80 dlF/dt

FIGURE 6 : Recovery charge versus dlp/rff. (A/ps)

r z7 SGS-THOMSON

* • 1 1 MOOSOmBSTOBIOOra

3/5

(4)

BYT 08P-200 -> 400

100 200 300 400 dlp/dt

FIGURE 7 : Recovery time versus dlp/^. (A/^s)

101 20 40 60 80 dlF/dt

FIGURE 8 : Peak reverse current versus dlp/dt- IA/ps)

V FP (V)

20

15

10

5

0 100 200 300 400 dlF/dt

FIGURE § : Peak forward voltage versus dlF/dt. <a/A»>

| T |vi| = 100°C 90% cornu*w ice

0 50 100 150 200 T(vj, ,oC)

FIGURE 10 : Dynamic parameters versus junction temperature.

Figure 11 : Turn-off switching characteristics (without series inductance).

4/5 r = T SGS-THOMSON

7 # MffimmSOTIWMIlOCS

(5)

BYT 08P-200 -» 400

If

Figure 12 : Turn-off switching characteristics (with series inductance).

7

SGS-THONISON MCMmBWBBIWB®

5/5

Cytaty

Powiązane dokumenty

From the discussion for the present paper above, the turbulence intensity ef- fect on C μ 2 increases at times from 9:00 to 14:00 where the turbulence was high during

ELECTRICAL CHARACTERISTICS STATIC CHARACTERISTICS. Symbol T e st

The method was developed 1n order to determine robot performance characteristics in accordance with relevant ISO Standard, which requires the measurement of pose, path

The experimental results were compared with full scale aircraft characteristics, calculated with analytical methods and vortex lattice method.. Keywords: static

The laser is packaged in 14-pin standard butterfly package with monitor photodiode and thermo-electric cooler (TEC).

The texture definition is based on a simple geometric model in which the sample and the crystal lattice are represented by rectangular reference systems, S and C, with a common

Camera resolution curves for neutrons (D1B calcite rostrum sample) and for X-rays (INEL CPS120 standard LaB6 powder sample).. Small crystallites participate in diffraction lines

The method initially developed for powder analysis using monochromatic neutron diffraction was extended to monochromatic X-ray analysis.. It should be stressed that many other