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BYT30P-1000-2

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f Z T SGS-THOMSON

^ 7 # l*[R]®[iOT(o)KS BYT30P-1000

FAST RECOVERY RECTIFIER DIODE

■ VERY HIGH REVERSE VOLTAGE CAPABILI­

TY

■ VERY LOW REVERSE RECOVERY TIME

■ VERY LOW SWITCHING LOSSES

■ LOW NOISE TURN-OFF SWITCHING

SUITABLE APPLICATIONS

■ FREE WHEELING DIODE IN CONVERTERS AND MOTOR CONTROL CIRCUITS

■ RECTIFIER IN S.M.P.S.

ABSOLUTE MAXIMUM RATINGS

Symbol Parameter Value Unit

Vr r m Repetitive Peak Reverse Voltage 1000 V

Vr s m Non Repetitive Peak Reverse Voltage 1000 V

If r m Repetitive Peak Forward Current tp < 10ps 375 A

If(r m s) RMS Forward Current 70 A

If(a v) Average Forward Current Tease — 85°C 8 = 0.5

30 A

If s m Surge Non Repetitive Forward Current tp = 10ms

Sinusoidal

200 A

p Power Dissipation Tease = 85°C; 65 W

Tstg Tj

Storage and Junction Temperature Range - 4 0 to + 150 °C

THERMAL RESISTANCE

Symbol Parameter Value Unit

Rth (j-c) Junction-case 1 °C/W

July 1989 1/5

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ELECTRICAL CHARACTERISTICS STATIC CHARACTERISTICS

Symbol Test Conditions Min. Typ. Max. Unit

Ir Tj = 25°C Vr = Vrrm 100 UA

Tj = 100°C 5 mA

Vf T, = 25°C If= 30A 1.9 V

Tj = 100°C 1.8

RECOVERY CHARACTERISTICS

Symbol Test Conditions Min. Typ. Max. Unit

t r r Tj = 25°C If= 1A d i p / d t = — 15A/(XS VR = 30V 165 ns

lF = 0.5A Ir = 1A lrr = 0.25A 70

TURN-OFF SWITCHING CHARACTERISTICS (without series inductance)

Sym bol T e st C onditions Min. Typ- M ax. Unit

t | R M d iF/dt = - 120A/ns Vcc = 200V l F = 30A

Lp < 0.05jiH Tj = 100°C See Figure 11

200 ns

di F/dt = - 240A/|is 120

Ir m dip/dt = — 120A/gs 19.5 A

diF/dt = - 240A/|xs 22

TURN-OFF OVERVOLTAGE COEFFICIENT (With Series Inductance)

Sym bol T e s t C onditions Min. Typ. M ax. Unit

c = ^ L VCc

Tj = 100°C Vcc = 200V If = IF(AV) diF/dt = - 30A/gs Lp = 5pH See figure 12

4.5

To evaluate the conduction losses use the following equations :

Vf = 1.47 + 0.010 If P = 1.47 x If(av) + 0.010 If2(rms>

2/5 r Z

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p (W)

FIGURE 1 : Low frequency power losses versus average current.

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

FIGURE 5 : Voltage drop versus forward current.

0 0.2 0.4 0.6 0.8 1

FIGURE 2 : Peak current versus fora factor.

K

FIGURE 4 : Theraal iapedance versus pulse width.

FIGURE B : Recovery charge versus dip/dt.

SGS-THOMSON ftiOCRMJBCtmMIIICS

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FIGURE 7 : Recovery time versus dlp/dt. FIGURE 8 : Peek reverse current versus dip/dt.

0 100 200 300 400

FIGURE 9 : Peek forward voltage versus dlp/dt.

0 50 100 150

FIGURE 10 : Dynamic parameters versus Junction temperature.

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

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

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