BZG01-C10T/R [NXP]

DIODE 10 V, 1.5 W, SILICON, UNIDIRECTIONAL VOLTAGE REGULATOR DIODE, DO-214AC, PLASTIC, SMA, 2 PIN, Voltage Regulator Diode;
BZG01-C10T/R
型号: BZG01-C10T/R
厂家: NXP    NXP
描述:

DIODE 10 V, 1.5 W, SILICON, UNIDIRECTIONAL VOLTAGE REGULATOR DIODE, DO-214AC, PLASTIC, SMA, 2 PIN, Voltage Regulator Diode

稳压二极管 齐纳二极管 测试 光电二极管
文件: 总8页 (文件大小:54K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DISCRETE SEMICONDUCTORS  
DATA SHEET  
book, halfpage  
BZG01 series  
SMA voltage regulator diodes  
Product specification  
2000 Feb 17  
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
FEATURES  
DESCRIPTION  
Glass passivated  
DO-214AC surface mountable package with glass  
passivated chip.  
High maximum operating temperature  
Ideal for surface mount automotive applications  
Low leakage current  
The well-defined void-free case is of a transfer-moulded  
thermo-setting plastic. The small rectangular package has  
two J bent leads.  
Excellent stability  
UL 94V-O classified plastic package  
Zener working voltage range: 10 to 270 V for 35 types  
cathode  
olumns  
Supplied in 12 mm embossed tape and reel, 1500 and  
7500 pieces  
band  
k
a
Marking: cathode, date code, type name  
Easy pick and place.  
MBL143  
Top view  
Side view  
Fig.1 Simplified outline (DO-214AC) and symbol.  
LIMITING VALUES  
In accordance with the Absolute Maximum Rating System (IEC 134).  
SYMBOL  
PARAMETER  
CONDITIONS  
MIN.  
MAX.  
2.50  
UNIT  
Ptot  
total power dissipation  
Ttp = 100 °C; see Fig.2  
W
T
amb = 25 °C; see Fig.2; device  
1.50  
W
mounted on an Al2O3 printed-circuit  
board: see Fig.5  
PZSM  
non-repetitive peak reverse power tp = 100 µs; square pulse; Tj = 25 °C  
150  
W
dissipation  
prior to surge; see Fig.3  
Tstg  
Tj  
storage temperature  
junction temperature  
65  
65  
+175  
+175  
°C  
°C  
2000 Feb 17  
2
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
ELECTRICAL CHARACTERISTICS  
Total series  
Tj = 25 °C unless otherwise specified.  
SYMBOL  
PARAMETER  
forward voltage  
CONDITIONS  
IF = 0.1 A; see Fig.4  
MAX.  
UNIT  
VF  
1.2  
V
Per type  
Tj = 25 °C unless otherwise specified.  
DIFFERENTIAL TEMPERATURE  
TEST  
REVERSE CURRENT  
WORKING VOLTAGE  
VZ (V) at IZ  
TYPE  
No.  
RESISTANCE  
COEFFICIENT CURRENT at REVERSE VOLTAGE  
SUFFIX  
rdif () at IZ  
SZ (%/K) at IZ  
IR (µA)  
(1)  
IZ (mA)  
VR (V)  
MIN.  
NOM.  
MAX.  
TYP.  
MAX.  
MIN.  
MAX.  
MAX.  
C10  
C11  
C12  
C13  
C15  
C16  
C18  
C20  
C22  
C24  
C27  
C30  
C33  
C36  
C39  
C43  
C47  
C51  
C56  
C62  
C68  
C75  
C82  
C91  
C100  
C110  
C120  
C130  
C150  
9.4  
10.4  
11.4  
12.4  
13.8  
15.3  
16.8  
18.8  
20.8  
22.8  
25.1  
28  
10  
11  
12  
13  
15  
16  
18  
20  
22  
24  
27  
30  
33  
36  
39  
43  
47  
51  
56  
62  
68  
75  
82  
91  
100  
110  
120  
130  
150  
10.6  
11.6  
12.7  
14.1  
15.6  
17.1  
19.1  
21.2  
23.3  
25.6  
28.9  
32  
2
3
7
8
0.05  
0.05  
0.05  
0.05  
0.05  
0.06  
0.06  
0.06  
0.06  
0.06  
0.06  
0.06  
0.06  
0.06  
0.06  
0.07  
0.07  
0.07  
0.07  
0.08  
0.08  
0.08  
0.08  
0.09  
0.09  
0.09  
0.09  
0.09  
0.09  
0.09  
0.10  
0.10  
0.10  
0.10  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.11  
0.12  
0.12  
0.12  
0.12  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
25  
20  
20  
20  
15  
15  
15  
10  
10  
10  
8
10  
4
3
2
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
7.5  
8.2  
9.1  
10  
11  
12  
13  
15  
16  
18  
20  
22  
24  
27  
30  
33  
36  
39  
43  
47  
51  
56  
62  
68  
75  
82  
91  
100  
110  
3
9
3
10  
5
15  
5
15  
7
20  
8
24  
8
25  
8
25  
10  
10  
12  
13  
17  
17  
30  
40  
40  
40  
40  
40  
70  
80  
120  
150  
200  
250  
300  
30  
30  
8
31  
35  
35  
8
34  
38  
40  
8
37  
41  
50  
6
40  
46  
50  
6
44  
50  
90  
4
48  
54  
115  
120  
125  
130  
135  
200  
250  
350  
450  
550  
700  
1000  
4
52  
60  
4
58  
66  
4
64  
72  
4
70  
79  
4
77  
87  
2.7  
2.7  
2.7  
2.7  
2
85  
96  
94  
106  
116  
127  
141  
156  
104  
114  
124  
138  
2
2
2000 Feb 17  
3
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
DIFFERENTIAL TEMPERATURE  
TEST  
REVERSE CURRENT  
WORKING VOLTAGE  
VZ (V) at IZ  
TYPE  
No.  
RESISTANCE  
COEFFICIENT CURRENT at REVERSE VOLTAGE  
SUFFIX  
rdif () at IZ  
SZ (%/K) at IZ  
IR (µA)  
(1)  
IZ (mA)  
VR (V)  
MIN.  
153  
168  
188  
208  
228  
251  
NOM.  
160  
180  
200  
220  
240  
270  
MAX.  
171  
191  
212  
233  
256  
289  
TYP.  
350  
MAX.  
1100  
1200  
1500  
2250  
2550  
3000  
MIN.  
0.09  
0.09  
0.09  
0.09  
0.09  
0.09  
MAX.  
0.13  
0.13  
0.13  
0.13  
0.13  
0.13  
MAX.  
C160  
C180  
C200  
C220  
C240  
C270  
1.5  
1.5  
1.5  
1
1
1
1
1
1
1
120  
130  
150  
160  
180  
200  
400  
500  
700  
800  
1
1000  
1
Note  
1. To complete the type number the suffix is added to the basic type number, e.g. BZG01-C130.  
THERMAL CHARACTERISTICS  
SYMBOL  
PARAMETER  
CONDITIONS  
VALUE  
30  
UNIT  
K/W  
K/W  
K/W  
Rth j-tp  
Rth j-a  
thermal resistance from junction to tie-point  
thermal resistance from junction to ambient  
note 1  
note 2  
100  
150  
Notes  
1. Device mounted on an Al2O3 printed-circuit board, 0.7 mm thick; thickness of Cu-layer 35 µm, see Fig.5.  
2. Device mounted on an epoxy-glass printed-circuit board, 1.5 mm thick; thickness of Cu-layer 40 µm, see Fig.5. For  
more information please refer to the ‘General Part of associated Handbook’.  
2000 Feb 17  
4
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
GRAPHICAL DATA  
MCD826  
MCD825  
3
10  
3
handbook, halfpage  
handbook, halfpage  
P
P
tot  
ZSM  
(W)  
(W)  
2
10  
2
10  
1
1
10  
0
0
2  
1  
10  
1
10  
40  
80  
120  
160  
200  
T (°C)  
t
(ms)  
p
Solid line: tie-point temperature.  
Tj = 25 °C prior to surge.  
Dotted line: ambient temperature; device mounted on an Al2O3  
printed-circuit board as shown in Fig.5.  
Fig.3 Maximum non-repetitive peak reverse  
power dissipation as a function of pulse  
duration (square pulse).  
Fig.2 Maximum total power dissipation as a  
function of temperature.  
MCD824  
3
handbook, halfpage  
50  
I
F
(A)  
2
4.5  
50  
1
0
2.5  
1
1.1  
1.2  
1.3  
1.4  
1.5  
(V)  
1.25  
MSB213  
V
F
Tj = 25 °C.  
Dimensions in mm.  
Fig.4 Forward current as a function of forward  
voltage; typical values.  
Fig.5 Printed-circuit board for surface mounting.  
2000 Feb 17  
5
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
PACKAGE OUTLINE  
Transfer-moulded thermo-setting plastic small rectangular surface mounted package;  
2 connectors  
SOD124  
H
D
A
A
1
c
Q
E
b
(1)  
0
2.5  
5 mm  
scale  
DIMENSIONS (mm are the original dimensions)  
UNIT  
A
A
b
c
D
E
H
Q
1
1.6  
1.4  
2.3  
2.0  
4.5  
4.3  
2.8  
2.4  
5.5  
5.1  
3.3  
2.7  
mm  
0.05  
0.2  
Note  
1. The marking band indicates the cathode.  
REFERENCES  
EUROPEAN  
PROJECTION  
OUTLINE  
VERSION  
ISSUE DATE  
IEC  
JEDEC  
EIAJ  
SOD124  
DO-214AC  
99-10-22  
2000 Feb 17  
6
Philips Semiconductors  
Product specification  
SMA voltage regulator diodes  
BZG01 series  
DEFINITIONS  
Data sheet status  
Objective specification  
Preliminary specification  
Product specification  
Short-form specification  
This data sheet contains target or goal specifications for product development.  
This data sheet contains preliminary data; supplementary data may be published later.  
This data sheet contains final product specifications.  
The data in this specification is extracted from a full data sheet with the same type  
number and title. For detailed information see the relevant data sheet or data handbook.  
Limiting values  
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 60134). 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.  
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.  
2000 Feb 17  
7
Philips Semiconductors – a worldwide company  
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Tel. +31 40 27 82785, Fax. +31 40 27 88399  
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Norway: Box 1, Manglerud 0612, OSLO,  
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Belarus: Hotel Minsk Business Center, Bld. 3, r. 1211, Volodarski Str. 6,  
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Belgium: see The Netherlands  
Brazil: see South America  
Philippines: Philips Semiconductors Philippines Inc.,  
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Metro MANILA, Tel. +63 2 816 6380, Fax. +63 2 817 3474  
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Portugal: see Spain  
Romania: see Italy  
Canada: PHILIPS SEMICONDUCTORS/COMPONENTS,  
Tel. +1 800 234 7381, Fax. +1 800 943 0087  
China/Hong Kong: 501 Hong Kong Industrial Technology Centre,  
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Tel. +65 350 2538, Fax. +65 251 6500  
Slovakia: see Austria  
Slovenia: see Italy  
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Hungary: see Austria  
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Tel. +62 21 794 0040 ext. 2501, Fax. +62 21 794 0080  
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United Kingdom: Philips Semiconductors Ltd., 276 Bath Road, Hayes,  
MIDDLESEX UB3 5BX, Tel. +44 208 730 5000, Fax. +44 208 754 8421  
Korea: Philips House, 260-199 Itaewon-dong, Yongsan-ku, SEOUL,  
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Malaysia: No. 76 Jalan Universiti, 46200 PETALING JAYA, SELANGOR,  
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Uruguay: see South America  
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Middle East: see Italy  
Tel. +381 11 3341 299, Fax.+381 11 3342 553  
For all other countries apply to: Philips Semiconductors,  
Internet: http://www.semiconductors.philips.com  
International Marketing & Sales Communications, Building BE-p, P.O. Box 218,  
5600 MD EINDHOVEN, The Netherlands, Fax. +31 40 27 24825  
69  
SCA  
© Philips Electronics N.V. 2000  
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.  
Printed in The Netherlands  
613502/250/01/pp8  
Date of release: 2000 Feb 17  
Document order number: 9397 750 06779  

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