Maximum average forward current
at case temperature
Maximum RMS forward currentI
Maximum peak, one-cycle forward,
non-repetitive surge current
Maximum I
Maximum I
2
t for fusingI2t
2
√t for fusingI2√tt = 0.1 ms to 10 ms, no voltage reapplied16 000A2√s
Value of threshold voltage
(up to 1200 V)
Value of threshold voltage
(for 1400 V/1600 V)
Value of forward slope resistance
(up to 1200 V)
Value of forward slope resistance
(for 1400 V/1600 V)
Maximum forward voltage dropV
I
F(AV)
F(RMS)
I
FSM
V
F(TO)
V
F(TO)
r
f
r
f
FM
180° conduction, half sine wave
t = 10 ms
t = 8.3 ms595
t = 10 ms
t = 8.3 ms500
t = 10 ms
t = 8.3 ms1450
t = 10 ms
t = 8.3 ms1050
No voltage
reapplied
100 % V
RRM
reapplied
No voltage
reapplied
100 % V
RRM
reapplied
TJ = TJ maximum
TJ = TJ maximum
Ipk = 125 A, TJ = 25 °C, tp = 400 µs rectangular wave1.301.50V
Sinusoidal half wave,
initial T
= TJ maximum
J
40HF(R)
10 TO 120 140/160
4040A
140110°C
62A
570
480
1600
1150
0.65
0.76
4.29
3.8
UNITS
A
2
A
s
V
mΩ
THERMAL AND MECHANICAL SPECIFICATIONS
PARAMETERSYMBOLTEST CONDITIONS
Maximum junction operating and
storage temperature range
Maximum thermal resistance,
junction to case
Maximum thermal resistance,
case to heatsink
Maximum allowable mounting
torque (+ 0 %, - 10 %)
, T
T
J
Stg
R
thJC
R
thCS
DC operation0.95
Mounting surface, smooth, flat and greased0.25
Not lubricated thread, tighting on nut
Lubricated thread, tighting on nut
Not lubricated thread, tighting on hexagon
Lubricated thread, tighting on hexagon
(1)
(1)
(2)
(2)
Approximate weight
Case styleSee dimensions - link at the end of datasheetDO-203AB (DO-5)
Notes
(1)
Recommended for pass-through holes
(2)
Recommended for holed threaded heatsinks
40HF(R)
10 TO 120 140/160
- 65 to 190 - 65 to 160°C
3.4 (30)
2.3 (20)
4.2 (37)
3.2 (28)
17g
0.6oz.
UNITS
K/W
N · m
(lbf · in)
40HF(R) Series
Standard Recovery Diodes,
Vishay High Power Products
(Stud Version), 40 A
ΔR
CONDUCTION ANGLESINUSOIDAL CONDUCTIONRECTANGULAR CONDUCTIONTEST CONDITIONS UNITS
Note
• The table above shows the increment of thermal resistance R
CONDUCTION
thJC
180°0.140.10
120°0.160.17
90°0.210.22
60°0.300.31
30°0.500.50
when devices operate at different conduction angles than DC
thJC
190
180
170
160
40HF(R) Series (100V to 1200V)
Conduction Angle
160
150
140
130
T
= TJ maximumK/W
J
40HF(R) Series (1400V, 1600V)
Conduction Angle
150
30°
140
Maximum Allowable Case Temperature (°C)
130
0 5 10 15 20 25 30 35 40 45
Average Forward Current (A)
60°
90°
120°
Fig. 1 - Current Ratings Characteristics
190
180
170
160
150
140
130
Maximum Allowable Case Temperature (°C)
120
40HF(R) Series (100V to 1200V)
Conduction Period
30°
60°
90°
120°
180°
0 10203040506070
Average Forward Current (A)
Fig. 2 - Current Ratings Characteristics
DC
180°
120
110
Maximum Allowable Case Temperature (°C)
100
0 5 10 15 20 25 30 35 40 45
30°
60°
90°
120°
Average Forward Current (A)
Fig. 3 - Current Ratings Characteristics
160
150
140
130
120
110
100
90
Maximum Allowable Case Temperature (°C)
80
40HF(R) Series (1400V, 1600V)
Conduction Period
30°
60°
90°
120°
180°
0 10203040506070
Average Forward Current (A)
Fig. 4 - Current Ratings Characteristics
180°
DC
40HF(R) Series
Vishay High Power Products
60
50
40
30
20
10
Maximum Average Forward Power Loss (W)
0
05 10 15 20 25 30 35 40
60
50
40
RMS Limit
30
20
10
Maximum Average Forward Power Loss (W)
0
0 10203040506070
180°
120°
90°
60°
30°
RMS Limit
Average Forward Current (A)
DC
180°
120°
90°
60°
30°
Average Forward Current (A)
Standard Recovery Diodes,
(Stud Version), 40 A
RthSA = 1 K/W - Delta R
1.5 K/W
2 K/W
3 K/W
5 K/W
7 K/W
Conduction Angle
40HF(R) Series
(100V to 1200V)
Tj = 190°C
Fig. 5 - Forward Power Loss Characteristics
Conduction Period
40HF(R) Series
(100V to 1200V)
Tj = 190°C
Fig. 6 - Forward Power Loss Characteristics
10 K/W
04080120160200
Maximum Allowable Ambient Temperature (°C)
RthSA = 1 K/W - Delta R
1.5 K/W
2 K/W
3 K/W
5 K/W
7 K/W
10 K/W
04080120160200
Maximum Allowable Ambient Temperature (°C)
50
45
40
35
30
180°
120°
90°
60°
30°
RMS Limit
25
20
15
10
5
Maximum Average Forward Power Loss (W)
0
0 10203040
Average Forward Current (A)
Conduction Angle
40HF(R) Series
(1400V, 1600V)
Tj = 160°C
Fig. 7 - Forward Power Loss Characteristics
1.5 K/W
2 K/W
3 K/W
5 K/W
7 K/W
10 K/W
RthSA = 1 K/W - Delta R
0 25 50 75 100 125 150 175 200
Maximum Allowable Ambient Temperature (°C)
40HF(R) Series
Standard Recovery Diodes,
(Stud Version), 40 A
70
60
50
40
30
20
10
Maximum Average Forward Power Loss (W)
550
At Any Rated Load Condition And With
Rated Vrrm Applied Following Surge.
500
450
400
350
300
250
200
40HF(R) Series
150
Peak Half Sine Wave Forward Current (A)
100
110100
Number Of Equal Amplitude Half Cycle Current Pulses (N)
Fig. 9 - Maximum Non-Repetitive Surge Current
DC
180°
120°
90°
60°
30°
RMS Limit
Conduction Period
40HF(R) Series
(1400V, 1600V)
Tj = 160°C
0
0 10203040506070
Average Forward Current (A)
Fig. 8 - Forward Power Loss Characteristics
Initial Tj = Tj Max.
@ 60 Hz 0.0083 s
@ 50 Hz 0.0100 s
Vishay High Power Products
RthSA = 1 K/W - Delta R
1.5 K/W
2 K/W
3 K/W
5 K/W
7 K/W
10 K/W
04080120160
Maximum Allowable Ambient Temperature (°C)
1000
100
Tj = 25°C
10
Instantaneous Forward Current (A)
1
0.5 1 1.5 2 2.5 3 3.5 4 4.5 5
Instantaneous Forward Voltage (V)
Fig. 11 - Forward Voltage Drop Characteristics
Tj = Tj Max.
40HF(R) Series
up to 1200V
(Up To 1200 V)
600
Maximum Non Repetitive Surge Current
550
500
450
Versus Pulse Train Duration.
Initial Tj = Tj Max.
No Voltage Reapplied
Rated Vrrm Reapplied
400
350
300
250
200
40HF(R) Series
150
Peak Half Sine Wave Forward Current (A)
100
0.010.11
Pulse Train Duration (s)
Fig. 10 - Maximum Non-Repetitive Surge Current
1000
Tj = Tj Max
100
Tj = 25°C
10
Instantaneous Forward Current (A)
1
00.511.522.533.54
Instantaneous Forward Voltage (V)
40HF (R) Series
Fig. 12 - Forward Voltage Drop Characteristics
(For 1400 V/1600 V)
40HF(R) Series
A
Vishay High Power Products
(K/W)
thJC
0.1
Transient Impedance Z
0.01
Fig. 13 - Thermal Impedance Z
ORDERING INFORMATION TABLE
Device code
Standard Recovery Diodes,
(Stud Version), 40 A
1
Steady State Value
(DC Operation)
40HF(R) .. Series
0.0001 0.001 0.010.1110
Square Wave Pulse Duration (s)
Characteristics
thJC
40HFR160M
51324
1- 40 = Standard device
41 = Not isolated lead
42 = Isolated lead with silicone sleeve
(red = Reverse polarity)
(blue = Normal polarity)
2-HF = Standard diode
3- None = Stud normal polarity (cathode to stud)
R = Stud reverse polarity (anode to stud)
4-Voltage code x 10 = V
(see Voltage Ratings table)
RRM
5- None = Stud base DO-203AB (DO-5) 1/4" 28UNF-2
M = Stud base DO-203AB (DO-5) M6 x 1
DO-203AB (DO-5) for 40HF(R) and 41HF(R) Series
DIMENSIONS FOR 40HF(R) SERIES in millimeters (inches)
Ø 14.6 (0.57)
6.1/7
(0.24/0.27)
4 (0.16)
4 (0.16) MIN.
25.4 (1) MAX.
10.8 (0.42)
11.4 (0.45)
Outline Dimensions
Vishay High Power Products
11.1 ± 0.4
(0.44 ± 0.02)
1.20 (0.04)
1/4" 28UNF-2A
for metric devices: M6 x 1
17.40 (0.68)
Outline Dimensions
Vishay High Power Products
DO-203AB (DO-5) for
40HF(R) and 41HF(R) Series
DIMENSIONS FOR 41HF(R) SERIES in millimeters (inches)
11 (0.43) MAX.
107 (4.21)
118.5 (4.67)
MAX.
MAX.
Ø 6.3 (0.25) MAX.
Legal Disclaimer Notice
Vishay
Disclaimer
All product specifications and data are subject to change without notice.
Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf
(collectively, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained herein
or in any other disclosure relating to any product.
Vishay disclaims any and all liability arising out of the use or application of any product described herein or of any
information provided herein to the maximum extent permitted by law. The product specifications do not expand or
otherwise modify Vishay’s terms and conditions of purchase, including but not limited to the warranty expressed
therein, which apply to these products.
No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this
document or by any conduct of Vishay.
The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications unless
otherwise expressly indicated. Customers using or selling Vishay products not expressly indicated for use in such
applications do so entirely at their own risk and agree to fully indemnify Vishay for any damages arising or resulting
from such use or sale. Please contact authorized Vishay personnel to obtain written terms and conditions regarding
products designed for such applications.
Product names and markings noted herein may be trademarks of their respective owners.
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