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Details, datasheet, quote on part number:FD1000FH-56
 
 
Part:FD1000FH-56
Category:Discrete => Diodes & Rectifiers => General Purpose Rectifiers
Description:High-frequency Rectifier Diode For High Power, High Frequency, Press Pack Type
Company:Mitsubishi Electronics America, Inc.
Datasheet:Download FD1000FH-56 datasheet   File size : 42 kB
Request For quote:  Find where to buy FD1000FH-56
 



Datasheet text preview:
MITSUBISHI HIGH-FREQUENCY RECTIFIER DIODES

FD1000FH-56
HIGH POWER, HIGH FREQUENCY, PRESS PACK TYPE

FD1000FH-56

OUTLINE DRAWING

Dimensions in mm

R4
5

9

15°

`38
CATHODE 50 0.4 MIN

q IF(AV) Average forward current .... 1000A q VRRM Repetitive peak reverse voltage ....... 2500V, 2800V q QRR Reverse recovery charge ........ 1000µC q Press pack type

50 92 MAX

ANODE

M5 × 0.8 DEPTH 2.5

APPLICATION High-power inverters, Fly-wheel diodes in DC choppers, Power supplies as high frequency rectifiers

MAXIMUM RATINGS
Symbol VRRM VRSM VR(DC) Symbol IF(RMS) IF(AV) IFSM I2t Tj Tstg -- -- Parameter Repetitive peak reverse voltage Non-repetitive peak reverse voltage DC reverse voltage Parameter RMS forward current Average forward current Surge forward current Current-squared, time integration Junction temperature Storage temperature Mounting force required Weight Voltage class 50 2500 2800 2000 Conditions f = 60Hz, sine wave = 180°, Tf = 79°C One half cycle at 60Hz, non-repetitive One cycle at 60Hz 56 2800 3100 2240 Ratings 1570 1000 25 2.6 × 105 ­40 ~ +125 ­40 ~ +150 26.5 ~ 35.3 Unit V V V Unit A A kA A 2s °C °C kN g

Recommended value 29.4 Standard value

ELECTRICAL CHARACTERISTICS
Symbol IRRM V FM QRR Rth(j-f) Parameter Repetitive peak reverse current Forward voltage Reverse recovery charge Thermal resistance Test conditions Tj = 125°C, VRRM Applied Tj = 125°C, IFM = 2500A, Instantaneous measurement IFM = 1000A, diF/dt = ­30A/µs, VR = 150V, Tj = 125°C Junction to fin Min -- -- -- -- Limits Typ -- -- -- -- Max 80 1.9 1000 0.025 Unit mA V µC °C/W Aug.1998

0.4 MIN

TYPE NAME

21 ± 0.5

MITSUBISHI HIGH-FREQUENCY RECTIFIER DIODES

FD1000FH-56
HIGH POWER, HIGH FREQUENCY, PRESS PACK TYPE
PERFORMANCE CURVES
MAXIMUM FORWARD CHARACTERISTICS 104 7 5 3 Tj = 125°C 2 103 7 5 3 2 102 7 5 3 2 101 0 0.4 0.8 1.2 1.6 2.0 2.4 2.8 3.2 FORWARD VOLTAGE (V) MAXIMUM THERMAL IMPEDANCE CHARACTERISTIC (JUNCTION TO FIN) 100 2 3 5 7 101 0.032
THERMAL IMPEDANCE (°C/W) POWER DISSIPATION (W)
Tj = 25°C

RATED SURGE FORWARD CURRENT
SURGE FORWARD CURRENT (kA)

25

FORWARD CURRENT (A)

20

15

10

5 0

1

23

5 7 10

20 30

50 70100

CONDUCTION TIME (CYCLES AT 60Hz)

MAXIMUM POWER DISSIPATION CHARACTERISTICS 3200 2800
SINGLE-PHASE RESISTIVE, INDUCTIVE LOAD DC CIRCUIT

0.028 0.024 0.020 0.016 0.012 0.008 0.004 0 10­3 2 3 5 710­2 2 3 5 710­1 2 3 5 7 100 TIME (S)

2400 HALF WAVE, FULL WAVE
RECTIFICATION CIRCUIT

2000
THREE-PHASE

1600 HALF WAVE,
FULL WAVE

1200 RECTIFICATION
CIRCUIT

800 400 0 0 400 800 1200 1600

AVERAGE FORWARD CURRENT (A)

ALLOWABLE FIN TEMPERATURE VS. AVERAGE FORWARD CURRENT
RESISTIVE, INDUCTIVE LOAD SINGLE-PHASE HALF WAVE, FULL WAVE RECTIFICATION CIRCUIT

REVERSE RECOVERY CHARGE, REVERSE RECOVERY TIME VS. JUNCTION TEMPERATURE
REVERSE RECOVERY CHARGE (µC), REVERSE RECOVERY TIME (µS)

130 120
FIN TEMPERATURE (°C)

110 100

103 7 5 3 2 102 7 5 3 2

QRR

MAX. AV.
VAK · iA

+ 0 ­

IFM diF/dt trr t VRM

DC CIRCUIT

90 80 70 60 50 0 400 800 1200 1600
THREE-PHASE HALF WAVE, FULL WAVE RECTIFICATION CIRCUIT

trr

Irm QRR = trr!Irm 2 MAX. AV.

101 7 5 3 IFM = 1000A 2 diF/dt = ­30A/µs 100
VRM = 150V

0

20

40

60

80 100 120 140 160

AVERAGE FORWARD CURRENT (A)

JUNCTION TEMPERATURE (°C)

Aug.1998

MITSUBISHI HIGH-FREQUENCY RECTIFIER DIODES

FD1000FH-56
HIGH POWER, HIGH FREQUENCY, PRESS PACK TYPE

REVERSE RECOVERY CHARGE, REVERSE RECOVERY TIME VS. FORWARD CURRENT REVERSE RECOVERY CHARGE (µC), REVERSE RECOVERY TIME (µS) REVERSE RECOVERY CHARGE (µC), REVERSE RECOVERY TIME (µS) 104 7 5 3 2 103 7 5 3 101 7 5 3 2
VAK · iA + 0 ­ IFM diF/dt trr t diF/dt = ­30A/µs VRM = 150V Tj = 125°C

REVERSE RECOVERY CHARGE, REVERSE RECOVERY TIME VS. RATE OF DECREASE OF REVERSE CURRENT 104 7 5 3 2
VAK · iA + 0 ­ IFM diF/dt trr VRM t MAX. AV.

VRM Irm QRR = trr!Irm 2 MAX. AV.

QRR trr

Irm 103 QRR = trr!Irm 2 7

5 2

QRR trr

MAX. AV.

MAX. AV.

101 7 5 3 IFM = 1000A 2 VRM = 150V 100 100 2 3 5 7 101 2 3 5 7 102 2 3 5 7 103
Tj = 125°C

100 101 2 3 5 7 102 2 3 5 7 103 2 3 5 7 104 FORWARD CURRENT (A)

RATE OF DECREASE OF REVERSE CURRENT (A /µS)

Aug.1998