BYM10-50 thru BYM10-1000, GL41A thru GL41Y
Vishay General Semiconductor
Surface Mount Glass Passivated Junction Rectifier
FEATURES
• Superectifier structure for high reliability
condition
• Patented glass-plastic encapsulation
technique
• Ideal for automated placement
• Low forward voltage drop
• Low leakage current
• High forward surge capability
• Meets environmental standard MIL-S-19500
• Meets MSL level 1, per J-STD-020, LF maximum
peak of 250 °C
• Solder dip 260 °C, 40 s
• Component in accordance to RoHS 2002/95/EC
and WEEE 2002/96/EC
TYPICAL APPLICATIONS
For use in general purpose rectification of
power
supplies,
inverters,
converters
and
freewheeling diodes for consumer, automotive and
telecommunication.
MECHANICAL DATA
Case:
DO-213AB, molded epoxy over glass body
Epoxy meets UL 94V-0 flammability rating
Terminals:
Matte tin plated leads, solderable per
J-STD-002 and JESD22-B102
E3 suffix for consumer grade, meets JESD 201 class
1A whisker test, HE3 suffix for high reliability grade
(AEC-Q101 qualified), meets JESD 201 class 2
whisker test
Polarity:
Two bands indicate cathode end - 1st band
denotes device type and 2nd band denotes repetitive
peak reverse voltage rating
®
ted*
aten
P
*Glass-plastic encapsulation
is covered by
Patent No. 3,996,602,
brazed-lead assembly to
Patent No. 3,930,306
DO-213AB
PRIMARY CHARACTERISTICS
I
F(AV)
V
RRM
BYM-50-1000
GL41A-Y
I
FSM
I
R
E
AS
V
F
T
J
max.
1.0 A
50 V to 1000 V
50 V to 1600 V
30 A
10 µA
5 mJ
1.1 V, 1.2 V
175 °C
MAXIMUM RATINGS
(T
A
= 25 °C unless otherwise noted)
PARAMETER
SYMBOL
STANDARD RECOVERY
DEVICE: 1ST BAND IS WHITE
Polarity color bands (2nd band)
Maximum repetitive peak
reverse voltage
Maximum RMS voltage
Maximum DC blocking voltage
Maximum average forward
rectified current (Fig. 1)
V
RRM
V
RMS
V
DC
I
F(AV)
GL41A
Gray
50
35
50
GL41B
Red
100
70
100
GL41D
Orange
200
140
200
GL41G
Yellow
400
280
400
GL41J
Green
600
420
600
1.0
GL41K
Blue
800
560
800
GL41M
Violet
1000
700
1000
GL41T
White
1300
910
1300
GL41Y
Brown
1600
1120
1600
V
V
V
A
BYM
10-50
BYM
10-100
BYM
10-200
BYM
10-400
BYM
10-600
BYM
10-800
BYM
10-1000
UNIT
Document Number: 88546
Revision: 01-Jul-08
For technical questions within your region, please contact one of the following:
PDD-Americas@vishay.com, PDD-Asia@vishay.com, PDD-Europe@vishay.com
www.vishay.com
1
BYM10-50 thru BYM10-1000, GL41A thru GL41Y
Vishay General Semiconductor
MAXIMUM RATINGS
(T
A
= 25 °C unless otherwise noted)
PARAMETER
SYMBOL
STANDARD RECOVERY
DEVICE: 1ST BAND IS WHITE
Peak forward surge current
8.3 ms single half sine-wave
superimposed on rated load
Maximum full load reverse
current full cycle average
at T
A
= 75 °C
Non-repetitive peak reverse
avalanche energy at T
J
= 25 °C,
I
AS
= 1 A, L = 10 mH
Operating junction and storage
temperature range
I
FSM
GL41A
GL41B
GL41D
GL41G
GL41J
GL41K
GL41M
GL41T
GL41Y
BYM
10-50
BYM
10-100
BYM
10-200
BYM
10-400
BYM
10-600
BYM
10-800
BYM
10-1000
UNIT
30
A
I
R(AV
)
30
µA
E
AS
5
-
mJ
T
J
, T
STG
- 65 to + 175
°C
ELECTRICAL CHARACTERISTICS
(T
A
= 25 °C unless otherwise noted)
PARAMETER
TEST
CONDITIONS
SYMBOL
BYM
10-50
GL41A
Maximum
instantaneous
forward voltage
Maximum DC
reverse current
at rated DC
blocking voltage
Typical junction
capacitance
1.0 A
V
F
BYM
10-100
GL41B
BYM
10-200
GL41D
1.1
BYM
10-400
GL41G
BYM
10-600
GL41J
BYM
10-800
GL41K
BYM
10-1000
GL41M
GL41T
GL41Y
V
UNIT
1.2
T
A
= 25 °C
T
A
= 125 °C
I
R
10
50
µA
4.0 V, 1 MHz
C
J
8.0
pF
THERMAL CHARACTERISTICS
(T
A
= 25 °C unless otherwise noted)
PARAMETER
SYMBOL
BYM
10-50
GL41A
Typical thermal resistance
Notes:
(1) Thermal resistance from junction to ambient, 0.24 x 0.24" (6.0 x 6.0 mm) copper pads to each terminal
(2) Thermal resistance from junction to terminal, 0.24 x 0.24" (6.0 x 6.0 mm) copper pads to each terminal
R
θJA
R
θJT
BYM
10-100
GL41B
BYM
10-200
GL41D
BYM
10-400
GL41G
BYM
10-600
GL41J
75
(1)
30
(2)
BYM
BYM
10-800 10-1000
GL41K
GL41M
GL41T
GL41Y
°C/W
UNIT
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For technical questions within your region, please contact one of the following:
PDD-Americas@vishay.com, PDD-Asia@vishay.com, PDD-Europe@vishay.com
Document Number: 88546
Revision: 01-Jul-08
BYM10-50 thru BYM10-1000, GL41A thru GL41Y
Vishay General Semiconductor
ORDERING INFORMATION
(Example)
PREFERRED P/N
BYM10-600-E3/96
BYM10-600-E3/97
GL41J-E3/96
GL41J-E3/97
BYM10-600HE3/96
(1)
BYM10-600HE3/97
(1)
GL41JHE3/96
(1)
GL41JHE3/97
(1)
Note:
(1) Automotive grade AEC-Q101 qualified
UNIT WEIGHT (g)
0.114
0.114
0.114
0.114
0.114
0.114
0.114
0.114
REFERRED PACKAGE
96
97
96
97
96
97
96
97
BASE QUANTITY
1500
5000
1500
5000
1500
5000
1500
5000
DELIVERY MODE
7" diameter plastic tape and reel
13" diameter plastic tape and reel
7" diameter plastic tape and reel
13" diameter plastic tape and reel
7" diameter plastic tape and reel
13" diameter plastic tape and reel
7" diameter plastic tape and reel
13" diameter plastic tape and reel
RATINGS AND CHARACTERISTICS CURVES
(T
A
= 25 °C unless otherwise noted)
1.0
10
Average Forward Rectified Current (A)
Instantaneous Forward Current (A)
GL41A thru
GL41M
0.75
GL41T thru
GL41Y
0.50
60 Hz
Resistive or
Inductive Load
GL41A thru
GL41J
1
GL41K thru
GL41Y
0.1
T
J
= 25 °C
Pulse
Width
= 300
µs
1 % Duty Cycle
0.25
0
25
50
75
100
125
150
175
0.01
0.4
0.6
0.8
1.0
1.2
1.4
1.6
Terminal Temperature (°C)
Instantaneous Forward
Voltage
(V)
Figure 1. Forward Current Derating Curve
Figure 3. Typical Instantaneous Forward Characteristics
30
10
25
20
GL41A thru
GL41M
Instantaneous Reverse Current (µA)
Peak Forward Surge Current (A)
T
j
= T
j
max.
8.3
ms Single Half Sine-Wave
1
T
J
= 100 °C
15
10
0.1
T
J
= 25 °C
5.0
0
1
10
100
0.01
0
20
40
60
80
100
Number
of Cycles at 60 Hz
Percent of Rated Peak Reverse
Voltage
(%)
Figure 2. Maximum Non-Repetitive Peak Forward Surge Current
Figure 4. Maximum Non-Repetitive Peak Forward Surge Current
Document Number: 88546
Revision: 01-Jul-08
For technical questions within your region, please contact one of the following:
PDD-Americas@vishay.com, PDD-Asia@vishay.com, PDD-Europe@vishay.com
www.vishay.com
3
BYM10-50 thru BYM10-1000, GL41A thru GL41Y
Vishay General Semiconductor
100
100
Transient Thermal Impedance (°C/W)
Junction Capacitance (pF)
T
J
= 25 °C
f = 1.0 MHz
V
sig
= 50 mVp-p
Mounted on 0.20 x 0.27" (5 x 7 mm)
(
Copper Pad Areas
10
10
1
1
1
10
100
0.1
0.01
0.1
1
10
100
Reverse
Voltage
(V)
t - Pulse Duration (s)
Figure 5. Typical Junction Capacitance
Figure 6. Typical Transient Thermal Impedance
PACKAGE OUTLINE DIMENSIONS
in inches (millimeters)
DO-213AB
Solderable Ends
Mounting Pad Layout
0.138 (3.5) MAX.
1
st
Band
0
D2 = D1
+ 0.008 (0.20)
-
D2
D1 =
0.105 (2.67)
0.095 (2.41)
0.118 (3.0) MIN.
0.022 (0.56)
0.018 (0.46)
0.205 (5.2)
0.185 (4.7)
0.022 (0.56)
0.018 (0.46)
0.049 (1.25) MIN.
0.238 (6.0) REF.
1
st
band
denotes type and positive end (cathode)
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For technical questions within your region, please contact one of the following:
PDD-Americas@vishay.com, PDD-Asia@vishay.com, PDD-Europe@vishay.com
Document Number: 88546
Revision: 01-Jul-08
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.
Document Number: 91000
Revision: 18-Jul-08
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