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Электронный компонент: BY9310

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DATA SHEET
Product specification
Supersedes data of 1998 Jul 29
2000 Jan 10
DISCRETE SEMICONDUCTORS
BY9300 series
Fast high-voltage soft-recovery
controlled avalanche rectifiers
M3D350
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2000 Jan 10
2
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
FEATURES
Plastic package
Glass passivated
High maximum operating temperature
Low leakage current
Excellent stability
40% overvoltage allowed during 5 seconds
Guaranteed avalanche energy absorption capability
Very low reverse recovery time
Soft-recovery switching characteristics
Compact construction.
APPLICATIONS
For colour television and monitors up to 32 kHz
(indication)
High-voltage applications for:
Multipliers
Diode-split-transformers (FBTs).
DESCRIPTION
Plastic package, using glass passivation and a high
temperature alloyed construction.
This package is hermetically sealed and fatigue free as
coefficients of expansion of all used parts are matched.
The package should be used in an insulating medium such
as resin, oil or SF6 gas.
handbook, halfpage
k
a
MAM402
Fig.1 Simplified outline (SOD118A/B) and symbol.
MARKING
Cathode band colour codes.
TYPE NUMBER
PACKAGE CODE
OUTER BAND
INNER BAND
BY9304
SOD118A
white
-
BY9306
SOD118A
white
green
BY9308
SOD118A
white
red
BY9310
SOD118B
white
violet
BY9312
SOD118B
white
orange
BY9314
SOD118B
white
lilac
BY9316
SOD118B
white
grey
BY9318
SOD118B
white
brown
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2000 Jan 10
3
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL
PARAMETER
CONDITIONS
MIN.
MAX.
UNIT
V
RRM1
repetitive peak reverse voltage
BY9304
-
4
kV
BY9306
-
6
kV
BY9308
-
8
kV
BY9310
-
10
kV
BY9312
-
12
kV
BY9314
-
14
kV
BY9316
-
16
kV
BY9318
-
18
kV
V
RRM2
repetitive peak reverse voltage
max. 5 seconds
BY9304
-
5.6
kV
BY9306
-
8.4
kV
BY9308
-
11.2
kV
BY9310
-
14.0
kV
BY9312
-
16.8
kV
BY9314
-
19.6
kV
BY9316
-
22.4
kV
BY9318
-
25.2
kV
V
RSM
non-repetitive peak reverse voltage
BY9304
-
5.6
kV
BY9306
-
8.4
kV
BY9308
-
11.2
kV
BY9310
-
14.0
kV
BY9312
-
16.8
kV
BY9314
-
19.6
kV
BY9316
-
22.4
kV
BY9318
-
25.2
kV
I
FSM
non-repetitive peak forward current
t = 10 ms half sinewave;
T
j
= T
j max
prior to surge
-
0.5
A
I
F(AV)
average forward current
averaged over any 20 ms period
BY9304
-
20
mA
BY9306
-
10
mA
BY9308
-
5
mA
BY9310
-
5
mA
BY9312
-
5
mA
BY9314
-
5
mA
BY9316
-
5
mA
BY9318
-
5
mA
I
FRM
repetitive peak forward current
note 1
-
500
mA
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2000 Jan 10
4
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
Note
1. Withstands peak currents during flash-over in a picture tube.
ELECTRICAL CHARACTERISTICS
T
j
= 25
C; unless otherwise specified.
T
stg
storage temperature
-
65
+175
C
T
j
junction temperature
BY9304
-
65
+160
C
BY9306
-
65
+160
C
BY9308
-
65
+155
C
BY9310
-
65
+150
C
BY9312
-
65
+145
C
BY9314
-
65
+140
C
BY9316
-
65
+140
C
BY9318
-
65
+135
C
SYMBOL
PARAMETER
CONDITIONS
TYP.
MAX.
UNIT
V
F
forward voltage
I
F
= 10 mA
BY9304
-
10
V
BY9306
-
14
V
BY9308
-
20
V
BY9310
-
24
V
BY9312
-
30
V
BY9314
-
34
V
BY9316
-
40
V
BY9318
-
44
V
I
R
reverse current
V
R
= V
RRM1
-
1
A
V
R
= V
RRM1
; T
j
= 120
C
-
3
A
Q
r
recovery charge
when switched from I
F
= 100 mA
to V
R
100 V and
dI
F
/dt =
-
200 mA/
s
0.7
-
nC
t
rr
reverse recovery time
when switched from I
F
= 2 mA to
I
R
= 4 mA; measured at I
R
= 1 mA
-
80
ns
C
d
diode capacitance
V
R
= 0; f = 1 MHz
BY9304
1.20
-
pF
BY9306
0.80
-
pF
BY9308
0.60
-
pF
BY9310
0.50
-
pF
BY9312
0.40
-
pF
BY9314
0.35
-
pF
BY9316
0.30
-
pF
BY9318
0.25
-
pF
SYMBOL
PARAMETER
CONDITIONS
MIN.
MAX.
UNIT
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2000 Jan 10
5
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
GRAPHICAL DATA
handbook, halfpage
0
200
Tamb (
C)
20
0
4
8
12
16
40
80
120
IF(AV)
(mA)
160
MBK916
a = 6.32
a = 1.57
Fig.2
Maximum permissible average forward
current as a function of ambient temperature.
BY9304.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
handbook, halfpage
0
200
10
0
2
4
6
8
40
80
120
IF(AV)
(mA)
160
MDA853
Tamb (
C)
a = 6.32
1.57
BY9306.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.3
Maximum permissible average forward
current as a function of ambient temperature.
handbook, halfpage
0
200
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MDA854
Tamb (
C)
a = 6.32
1.57
BY9308.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.4
Maximum permissible average forward
current as a function of ambient temperature.
handbook, halfpage
0
200
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MDA859
Tamb (
C)
a = 6.32
1.57
BY9310.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.5
Maximum permissible average forward
current as a function of ambient temperature.
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2000 Jan 10
6
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
handbook, halfpage
0
200
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MDA860
Tamb (
C)
a = 6.32
1.57
BY9312.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.6
Maximum permissible average forward
current as a function of ambient temperature.
handbook, halfpage
0
200
Tamb (
C)
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MBL114
a = 6.32
a = 1.57
BY9314.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
Fig.7
Maximum permissible average forward
current as a function of ambient temperature.
handbook, halfpage
handbook, halfpage
0
200
Tamb (
C)
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MBL115
a = 6.32
a = 1.57
Fig.8
Maximum permissible average forward
current as a function of ambient temperature.
BY9316.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
handbook, halfpage
0
200
Tamb (
C)
5
0
1
2
3
4
40
80
120
IF(AV)
(mA)
160
MBL116
a = 6.32
a = 1.57
Fig.9
Maximum permissible average forward
current as a function of ambient temperature.
BY9318.
a = I
F(RMS)
/I
F(AV)
; V
R
= V
RWmax
; R
th j-a
120 K/W.
a = 1.57: half sinewave.
a = 6.32: line output transformer application.
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2000 Jan 10
7
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
handbook, halfpage
0
50
200
0
40
MBD314
80
120
160
10
20
30
40
V (V)
F
I F
(mA)
60
Fig.10 Forward current as a function of maximum
forward voltage.
BY9304.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
handbook, halfpage
0
50
200
0
40
MBD316
80
120
160
10
20
30
40
V (V)
F
I F
(mA)
60
Fig.11 Forward current as a function of maximum
forward voltage.
BY9306.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
handbook, halfpage
0
100
200
0
40
MBD318
80
120
160
20
40
60
80
V (V)
F
I F
(mA)
120
Fig.12 Forward current as a function of maximum
forward voltage.
BY9308.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
handbook, halfpage
0
100
200
0
40
MBD320
80
120
160
20
40
60
80
V (V)
F
I F
(mA)
120
BY9310.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
Fig.13 Forward current as a function of maximum
forward voltage.
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2000 Jan 10
8
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
handbook, halfpage
0
200
0
40
MBD322
80
120
160
40
80
120
160
V (V)
F
I F
(mA)
200
BY9312.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
Fig.14 Forward current as a function of maximum
forward voltage.
handbook, halfpage
0
200
0
40
MBD324
80
120
160
40
80
120
160
V (V)
F
I F
(mA)
200
BY9314.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
Fig.15 Forward current as a function of maximum
forward voltage.
handbook, halfpage
0
200
0
40
MBD326
80
120
160
40
80
120
160
V (V)
F
I F
(mA)
200
BY9316.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
Fig.16 Forward current as a function of maximum
forward voltage.
handbook, halfpage
0
200
0
40
MBD328
80
120
160
40
80
120
160
V (V)
F
I F
(mA)
200
BY9318.
Dotted line: T
j
= 120
C.
Solid line: T
j
= 25
C.
Fig.17 Forward current as a function of maximum
forward voltage.
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2000 Jan 10
9
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
PACKAGE OUTLINES
REFERENCES
OUTLINE
VERSION
EUROPEAN
PROJECTION
ISSUE DATE
IEC
JEDEC
EIAJ
SOD118A
98-05-28
Hermetically sealed plastic package; axial leaded; 2 leads
SOD118A
UNIT
b
mm
0.5
D
G
31
6.7
6.3
2.6
2.4
L
min.
DIMENSIONS (mm are the original dimensions)
G
L
D
L
b
0
2.5
5 mm
scale
Note
1. The marking bands indicate the cathode.
(1)
k
a
REFERENCES
OUTLINE
VERSION
EUROPEAN
PROJECTION
ISSUE DATE
IEC
JEDEC
EIAJ
SOD118B
98-05-28
Hermetically sealed plastic package; axial leaded; 2 leads
SOD118B
DIMENSIONS (mm are the original dimensions)
G
L
D
L
b
0
2.5
5 mm
scale
UNIT
b
mm
0.5
D
G
29
10.5
9.5
2.6
2.4
L
min.
Note
1. The marking bands indicate the cathode.
(1)
k
a
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2000 Jan 10
10
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
DEFINITIONS
LIFE SUPPORT APPLICATIONS
These products are not designed for use in life support appliances, devices, or systems where malfunction of these
products can reasonably be expected to result in personal injury. Philips customers using or selling these products for
use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such
improper use or sale.
Data sheet status
Objective specification
This data sheet contains target or goal specifications for product development.
Preliminary specification
This data sheet contains preliminary data; supplementary data may be published later.
Product specification
This data sheet contains final product specifications.
Limiting values
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or
more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation
of the device at these or at any other conditions above those given in the Characteristics sections of the specification
is not implied. Exposure to limiting values for extended periods may affect device reliability.
Application information
Where application information is given, it is advisory and does not form part of the specification.
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2000 Jan 10
11
Philips Semiconductors
Product specification
Fast high-voltage soft-recovery
controlled avalanche rectifiers
BY9300 series
NOTES
background image
Philips Electronics N.V.
SCA
All rights are reserved. Reproduction in whole or in part is prohibited without the prior written consent of the copyright owner.
The information presented in this document does not form part of any quotation or contract, is believed to be accurate and reliable and may be changed
without notice. No liability will be accepted by the publisher for any consequence of its use. Publication thereof does not convey nor imply any license
under patent- or other industrial or intellectual property rights.
Internet: http://www.semiconductors.philips.com
2000
69
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Printed in The Netherlands
135002/02/pp
12
Date of release:
2000 Jan 10
Document order number:
9397 750 06638