
10 Amp. Glass Passivated Bridge Rectifier
FB1000........ FB1010
FB1000L ....... FB1010L
Dimensions in mm.
Voltage
± 0.05
0.8 
Metal heat sink
Ø 2.5
18.1
6.35 
± 0.05
Epoxy case
Metal heat sink
± 0.5
18.1 
Ø 1 
± 0.05
Epoxy case
50 to 1000 V
• Glass Passivated Junction
• UL recognized under component
  index file number E130180
• Terminals: FASTON a
• Terminals: WIRE LEADS b
+ 0.1
Ø 5.21 
16.6
– 0
± 0.5
11.4 
• Max. Mounting Torque: 25 Kg x cm 
Lead and polarity identifications 
High surge current capability
Maximum Ratings, according to IEC publication No. 134
a
V 
V 
V
I
F(AV)
RRM
RMS
R
FB1000
b
FB1000L
Peak Recurrent ReverseVoltage (V) 
Maximum RMS Voltage (V)
Recommended Input Voltage (V) 
Max. forward current R-load: At T case = 55 
Max. forward current R-load: At T case = 90 
With Al Square Chassis (200 cm
2
 x 3 mm.)
o
C
o
C
                           Tamb = 45 oC
50
35
20
FB1001
FB1001L
100
70 140 280 420 560 700 
40
FB1002
FB1002L
200
80
FB1004
FB1004L
400
125
10 A
7.5 A 
5 A
Current
10 A
®
FB1006
FB1006L
600
250
FB1008
FB1008L
800
380
FB1010
FB1010L
1000
500
I 
I 
I2t 
T 
T
FRM
FSM
Recurrent peak forward current 
10 ms. peak forward current
2
t value for fusing (t = 10 ms)
I 
Operating temperature range
j
Storage temperature range
stg
Electrical Characteristics at Tamb = 25 °C
V
F
I
R
R
thj-c
Max. forward voltage drop per element at I 
Max. reverse current per element at V 
Typical thermal resistance junction to case 
Isolation voltage from case to leads
 = 5 A
F
 d.c.
RRM
50 A
200 A
2
200 A
sec 
– 55 to + 150 °C 
– 55 to + 150 °C
1.1 V 
5 µ A
o
C/W
2 
2500 Vac
Jan - 00

Characteristic Curves
TYPICAL FORWARD CHARACTERISTIC
100
FB10
MAXIMUM NON-REPETITIVE
PEAK FORWARD SURGE CURRENT
500
50
20
Tamb = 25ºC
10
5 
2
1
0.5
0.2
0.1 
0
0.5 1
F ' instantaneous forward voltage (V)
V
1.5 2
450
400 
350
300 
250 
200
150 
100
50
1 2 4 6 10 20 40 60 100
Number of cycles at 50Hz
60
50
Rthc-a = 0ºC/W
40
30
20
10
0 4 8 10 12 16 20 0 20 40 60 80 100120 140 150
IF (AV)´ average forward current (A)
Tamb, ambient temperature (°C)
20 
40
60 
80
100
120
Jan - 00