231290802401 [VISHAY]

RESISTOR, THIN FILM, 0.4 W, 2 %, 50 ppm, 240 ohm, THROUGH HOLE MOUNT, AXIAL LEADED, ROHS COMPLIANT;
231290802401
型号: 231290802401
厂家: VISHAY    VISHAY
描述:

RESISTOR, THIN FILM, 0.4 W, 2 %, 50 ppm, 240 ohm, THROUGH HOLE MOUNT, AXIAL LEADED, ROHS COMPLIANT

电阻器
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MBA/SMA 0204 HF  
Vishay Beyschlag  
High Frequency Thin Film Leaded Resistors  
FEATURES  
Speciality product for RF applications  
Low-inductance non-helical trimmed product  
Suitable for more than 3 GHz  
MBA/SMA 0204 HF leaded thin film resistors for RF  
applications are the perfect choice in high frequency circuit  
designs; where the impedance change due to the parasitic  
inductance of regular and professional resistors can not  
be accepted. Typical applications are in the fields of  
telecommunication equipment and industrial electronics.  
Resistance range: 1.5 Ω to 470 Ω  
Lead (Pb)-free solder contacts  
Pure tin plating provides compatibility with lead (Pb)-free  
and lead containing soldering processes  
Compliant to RoHS directive 2002/95/EC  
METRIC SIZE  
DIN  
APPLICATIONS  
Telecommunication equipment  
Industrial electronics  
0204  
A
CECC  
TECHNICAL SPECIFICATIONS  
DESCRIPTION  
MBA/SMA 0204 HF  
A
CECC Size  
Resistance Range  
1.5 Ω to 470 Ω  
1 %; 2 %  
50 ppm/K  
Resistance Tolerance  
Temperature Coefficient  
Operation Mode  
Long term  
55/125/56  
0.25 W  
Standard  
Climatic Category (LCT/UCT/Days)  
Rated Dissipation, P70  
Operating Voltage, Umax. AC/DC  
Film Temperature  
55/155/56  
0.4 W  
Limited by P70  
1.5 Ω to 470 Ω  
125 °C  
155 °C  
Max. Resistance Change at P70  
for Resistance Range, ΔR/R max., After:  
1000 h  
8000 h  
0.25 %  
0.5 %  
1.5 %  
0.5 %  
1.0 %  
-
225 000 h  
Permissible Voltage Against Ambient:  
1 Minute; Uins  
300 V  
75 V  
Continuous  
Failure Rate  
0.7 x 10- 9/h  
Note  
• These resistors do not feature a limited lifetime when operated within the permissible limits. However, resistance value drift increasing over  
operating time may result in exceeding a limit acceptable to the specific application, thereby establishing a functional lifetime.  
www.vishay.com  
158  
For technical questions, contact: filmresistorsleaded@vishay.com  
Document Number: 28769  
Revision: 16-Oct-09  
MBA/SMA 0204 HF  
High Frequency Thin Film Leaded Resistors  
Vishay Beyschlag  
PART NUMBER AND PRODUCT DESCRIPTION  
PART NUMBER: MBA0204AC5109GCT00  
M
B
A
0
2
0
4
A
C
5
1
0
9
G
C
T
0
0
MODEL/SIZE  
MBA0204 = MBA/SMA 0204  
VARIANT  
TCR/MATERIAL  
VALUE  
TOLERANCE  
PACKAGING (1)  
SPECIAL  
A = HF High  
Frequency  
C = 50 ppm  
3 digit value  
1 digit multiplier  
MULTIPLIER  
8 = *10- 2  
F = 1.0 %  
G = 2.0 %  
CT  
C1  
RP  
00 = Standard  
9 = *10- 1  
0 = *100  
PRODUCT DESCRIPTION: MBA/SMA 0204-50 2 % HF CT 51R0  
MBA/SMA 0204  
-
50  
2 %  
HF  
CT  
51R0  
RESISTANCE  
VALUE  
MODEL/SIZE  
TCR  
TOLERANCE  
VARIANT  
PACKAGING (1)  
MBA/SMA 0204  
50 ppm  
1.0 %  
2.0 %  
HF  
CT  
C1  
RP  
51R0 = 51 Ω  
Notes  
(1) Please refer to table PACKAGING for complete information  
• The PART NUMBER shown above is to facilitate the unified part numbering system for ordering products  
PACKAGING  
REEL  
BOX  
MODEL  
PIECES  
CODE  
PIECES  
CODE  
1000  
5000  
C1  
CT  
MBA/SMA 0204  
5000  
RP  
DIMENSIONS  
L
D
M
I
I
d
DIMENSIONS - leaded resistor types, mass and relevant physical dimensions  
Dmax.  
(mm)  
Lmax.  
(mm)  
dnom.  
(mm)  
Imin.  
(mm)  
Mmin.  
(mm)  
MASS  
(mg)  
TYPE  
MBA/SMA 0204 HF  
1.6  
3.6  
0.5  
29.0  
5.0  
125  
TEMPERATURE COEFFICIENT AND RESISTANCE RANGE  
RESISTANCE VALUE (2)  
DESCRIPTION  
TCR  
50 ppm/K  
TOLERANCE  
MBA/SMA 0204 HF  
1 %; 2 %  
1.5 Ω to 470 Ω; 50 Ω  
Note  
(2) Resistance values to be selected for 1 % from the E24/E96 series and for 2 % from E24 series  
Document Number: 28769  
Revision: 16-Oct-09  
For technical questions, contact: filmresistorsleaded@vishay.com  
www.vishay.com  
159  
MBA/SMA 0204 HF  
High Frequency Thin Film Leaded Resistors  
Vishay Beyschlag  
wave or dipping. The encapsulation is resistant to all  
DESCRIPTION  
cleaning solvents commonly used in the electronics industry,  
including alcohols, esters and aqueous solutions. The  
resistors are completely lead (Pb)-free, the pure tin plating  
Production is strictly controlled and follows an extensive set  
of instructions established for reproducibility.  
A
homogeneous film of metal alloy is deposited on a high grade  
ceramic body (85 % Al2O3) and conditioned to achieve the  
desired temperature coefficient. Nickel plated steel  
termination caps are firmly pressed on the metallised rods. A  
special laser is used to achieve the target value by smoothly  
cutting a low-inductivity non-helical groove in the resistive  
layer without damaging the ceramics. Connecting wires of  
electrolytic copper plated with 100 % pure tin are welded to  
the termination caps. The resistors are covered by protective  
coating designed for electrical, mechanical and climatic  
protection.The terminations receive a final pure tin on nickel  
plating. Four colour code rings designate the resistance  
value and tolerance in accordance with IEC 60062.  
Additional black dots near the 3rd colour ring identify the  
special HF product.  
provides  
compatibility  
with  
lead  
(Pb)-free  
and  
lead-containing soldering processes. The immunity of the  
plating against tin whisker growth has been proven under  
extensive testing. All products comply with GADSL (1) and  
the CEFIC-EECA-EICTA  
hazardous substances. This includes full compatibility with  
the following directives:  
(2)  
list of legal restrictions on  
2000/53/EC End of Vehicle Life Directive (ELV) and  
Annex II (ELVII)  
2002/95/EC Restriction of the use of Hazardous  
Substances Directive (RoHS)  
2002/96/EC Waste Electrical and Electrical Equipment  
Directive (WEEE)  
The result of the determined production is verified by an  
extensive testing procedure performed on 100 % of the  
individual resistors. Only accepted products are stuck  
directly on the adhesive tapes in accordance with  
IEC 60286-1.  
APPROVALS  
Where applicable, the resistors are tested in accordance with  
CECC 40101-806 which refers to EN 60115-1 and  
EN 140100.  
Vishay Beyschlag has achieved “Approval of  
Manufacturer” in accordance with IEC QC 001002-3,  
clause 2. The release certificate for “Technology Approval  
Schedule” in accordance with CECC 240001 based on  
IEC QC 001002-3, clause 6 is granted for the Vishay  
Beyschlag manufacturing process.  
ASSEMBLY  
The resistors are suitable for processing on automatic  
insertion equipment and cutting and bending machines.  
Excellent solderability is proven, even after extended  
storage. They are suitable for automatic soldering using  
Notes  
(1)  
Global Automotive Declarable Substance List, see www.gadsl.org  
(2)  
CEFIC (European Chemical Industry Council), EECA (European Electronic Component Manufacturers Association), EICTA (European  
trade organisation representing the information and communications technology and consumer electronics), see  
www.eicta.org/index.php?id=1053&id_article=340  
FUNCTIONAL PERFORMANCE  
P
1
MBA/SMA 0204 HF  
W
0.5  
0
- 50  
0
5
0
100  
°C  
150  
70  
Ambient Temperatureϑamb  
Derating - Standard Operation  
www.vishay.com  
160  
For technical questions, contact: filmresistorsleaded@vishay.com  
Document Number: 28769  
Revision: 16-Oct-09  
MBA/SMA 0204 HF  
High Frequency Thin Film Leaded Resistors  
Vishay Beyschlag  
P
1
MBA/SMA 0204 HF  
W
0.5  
0
- 50  
0
5
0
100  
150  
°C  
70  
Ambient Temperatureϑamb  
Rise of the Surface Temperature  
T
MBA/SMA 0204 HF  
80  
K
60  
40  
20  
0
0
0.1  
0.2  
0.3  
0.4  
0.5  
0.6  
0.7  
W
0.8  
Load  
P
Temperature Rise  
2.0  
6.8 Ω  
27 Ω  
.,  
1.5  
50 Ω  
1.0  
0.5  
100 Ω  
220 Ω  
470 Ω  
0.1  
0.3  
1
10  
20  
GHz  
|Z|/R for MBA/SMA 0204 HF  
Frequency  
f
RF - Behaviour  
Document Number: 28769  
Revision: 16-Oct-09  
For technical questions, contact: filmresistorsleaded@vishay.com  
www.vishay.com  
161  
MBA/SMA 0204 HF  
High Frequency Thin Film Leaded Resistors  
Vishay Beyschlag  
TESTS AND REQUIREMENTS  
Essentially all tests are carried out in accordance with the  
following specifications:  
Unless otherwise specified the following values apply:  
Temperature: 15 °C to 35 °C  
EN 60115-1, generic specification (includes tests)  
Relative humidity: 45 % to 75 %  
EN 140100, sectional specification (includes schedule for  
qualification approval)  
Air pressure: 86 kPa to 106 kPa (860 mbar to 1060 mbar).  
For testing the components are mounted on a test board in  
accordance with IEC 60115-1, 4.31 unless otherwise  
specified.  
CECC 40101-806, detail specification (includes schedule for  
conformance inspection)  
The following table contains the applicable tests selected  
from the documents listed above.  
In the Test Procedures and Requirements table only the  
tests and requirements are listed with reference to the  
relevant clauses of IEC 60115-1 and IEC 60068-2 test  
methods. A short description of the test procedure is also  
given.  
The tests are carried out in accordance with IEC 60068-xx  
test method and under standard atmospheric conditions in  
accordance with IEC 60068-1, 5.3. Climatic category  
LCT/UCT/56 (rated temperature range: Lower Category  
Temperature, Upper Category Temperature; damp heat,  
long term, 56 days) is valid.  
TEST PROCEDURES AND REQUIREMENTS  
IEC  
IEC  
REQUIREMENTS  
PERMISSIBLE CHANGE (ΔR max.)  
60068-2-xx  
60115-1  
TEST  
PROCEDURE  
TEST  
METHOD  
CLAUSE  
Stability for product types:  
MBA/SMA 0204 HF  
1.5 Ω to 470 Ω  
4.5  
4.8  
-
-
Resistance  
1 %; 2 %  
Temperature  
coefficient  
At (20/LCT/20) °C and  
(20/UCT/20) °C  
50 ppm/K  
U = P70 x R or  
U = Umax.;  
1.5 h ON; 0,5 h OFF  
-
Endurance at  
70 °C: standard  
operation mode  
70 °C; 1000 h  
(0.5 % R + 0.05 Ω)  
(1 % R + 0.1 Ω)  
70 °C; 8000 h  
4.25.1  
U = P70 x R or  
-
U = Umax.  
;
Endurance at  
70 °C: long term  
operation mode  
1.5 h ON; 0.5 h OFF  
70 °C; 1000 h  
(0.25 % R + 0.05 Ω)  
(0.5 % R + 0.05 Ω)  
70 °C; 8000 h  
Endurance at  
upper category  
temperature  
4.25.3  
4.24  
-
125 °C; 1000 h  
155 °C; 1000 h  
(0.25 % R + 0.05 Ω)  
(0.5 % R + 0.05 Ω)  
Damp heat,  
steady state  
(40 2) °C; 56 days;  
78 (Cab)  
(0.5 % R + 0.05 Ω)  
(93 3) % RH  
Climatic  
sequence:  
4.23  
4.23.2  
4.23.3  
2 (Ba)  
Dry heat  
155 °C; 16 h  
Damp heat,  
cyclic  
55 °C; 24 h; 90 % to 100 % RH;  
30 (Db)  
1 cycle  
4.23.4  
4.23.5  
1 (Aa)  
13 (M)  
Cold  
- 55 °C; 2 h  
Low air pressure  
8.5 kPa; 2 h; 15 °C to 35 °C  
Damp heat,  
cyclic  
55 °C; 5 days;  
(0.5 % R + 0.05 Ω)  
4.23.6  
-
30 (Db)  
1 (Aa)  
95 % to 100 % RH; 5 cycles  
no visible damage  
Cold  
- 55 °C; 2 h  
(0.1 % R + 0.01 Ω)  
www.vishay.com  
162  
For technical questions, contact: filmresistorsleaded@vishay.com  
Document Number: 28769  
Revision: 16-Oct-09  
MBA/SMA 0204 HF  
High Frequency Thin Film Leaded Resistors  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
IEC  
IEC  
60115-1  
CLAUSE  
REQUIREMENTS  
PERMISSIBLE CHANGE (ΔR max.)  
60068-2-xx  
TEST  
TEST  
PROCEDURE  
METHOD  
Stability for product types:  
MBA/SMA 0204 HF  
1.5 Ω to 470 Ω  
Room temperature;  
U = 2.5 x P70 x R or  
U = 2 x Umax.; 5 s  
Short time  
overload  
(0.1 % R + 0.01 Ω)  
no visible damage  
4.13  
-
Rapid change of  
temperature  
30 min at LCT and  
30 min at UCT; 5 cycles  
(0.1 % R + 0.01 Ω)  
4.19  
14 (Na)  
45 (XA)  
20 (Tb)  
no visible damage  
Component  
solvent  
resistance  
Isopropyl alcohol + 23 °C;  
marking legible;  
no visible damage  
4.29  
toothbrush method  
Resistance to  
soldering heat  
Unmounted components;  
(260 3) °C; (10 1) s  
(0.1 % R + 0.01 Ω)  
no visible damage  
4.18.2  
+ 235 °C; 2 s  
solder bath method;  
SnPb40  
Good tinning (95 % R covered);  
4.17  
4.22  
20 (Ta)  
6 (B4)  
Solderability  
no visible damage  
+ 245 °C; 3 s  
solder bath method;  
SnAg3Cu0.5  
6 h; 10 Hz to 2000 Hz 1.5 mm  
or 196 m/s2  
Vibration  
(0.1 % R + 0.01 Ω)  
21 (Ua1)  
21 (Ub)  
21 (Uc)  
Robustness of  
terminations  
(0.1 % R + 0.01 Ω);  
4.16  
4.7  
Tensile, bending and torsion  
no visible damage  
-
Voltage proof  
URMS = Uins; 60 s  
No flashover or breakdown  
12NC INFORMATION FOR HISTORICAL CODING REFERENCE  
Ordering Example (For historical coding reference of  
MBA 0204 HF)  
Last Digit of 12NC Indicating Resistance Decade  
RESISTANCE DECADE  
1 Ω to 9.99 Ω  
LAST DIGIT  
The ordering code of a MBA 0204 HF resistor, value 51 Ω  
and TCR 50 with 2 % tolerance, supplied on bandolier  
ammopack, in a box units is: 2312 908 05109.  
8
9
1
10 Ω to 99.9 Ω  
100 Ω to 999 Ω  
12NC CODE FOR HISTORICAL CODING REFERENCE OF MBA 0204 HF  
2312 ... .....  
DESCRIPTION  
BANDOLIER IN BOX  
AMMOPACK  
C1  
1000  
units  
CT  
5000  
units  
TYPE  
TCR  
TOL.  
MBA 0204 HF  
50 ppm/K  
2 %  
903 0....  
908 0....  
Document Number: 28769  
Revision: 16-Oct-09  
For technical questions, contact: filmresistorsleaded@vishay.com  
www.vishay.com  
163  
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  
www.vishay.com  
1

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