MBB0207VD1002BC100 [VISHAY]

RES 10K OHM 0.10% 0.4W AXIAL;
MBB0207VD1002BC100
型号: MBB0207VD1002BC100
厂家: VISHAY    VISHAY
描述:

RES 10K OHM 0.10% 0.4W AXIAL

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MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
Precision Metal Film Leaded Resistors  
FEATURES  
• IECQ-CECC approved according to  
EN 140101-806  
• Superior overall stability: class 0.05  
• Wide precision ohmic range: 10 to 1.5 M  
• Radial version available for MBB/SMA 0207  
• Material categorization: for definitions of  
compliance please see www.vishay.com/doc?99912  
APPLICATIONS  
• Test and measuring equipment  
• Industrial electronics  
• Medical electronics  
click logo to get started  
DESIGN SUPPORT TOOLS  
Models  
Available  
DESCRIPTION  
MBA/SMA 0204, MBB/SMA 0207, and MBE/SMA 0414  
precision leaded thin film resistors combine the proven  
reliability of the professional products with an advanced  
level of precision and stability. Therefore they are perfectly  
suited for applications in the fields of test and measuring  
equipment along with industrial and medical electronics.  
TECHNICAL SPECIFICATIONS  
DESCRIPTION  
MBA/SMA 0204  
MBB/SMA 0207  
0207  
MBE/SMA 0414  
DIN size  
0204  
A
0414  
D
CECC size  
B
Resistance range  
22 to 332 k  
10 to 1 M  
0.25 %; 0.1 %  
25 ppm/K; 15 ppm/K  
0.40 W  
22 to 1.5 M  
Resistance tolerance  
Temperature coefficient  
Rated dissipation, P70  
Operating voltage, Umax. AC/DC  
Operating temperature range (1)  
Peak permissible film temperature (1)  
Insulation voltage:  
0.25 W  
200 V  
0.65 W  
500 V  
350 V  
-55 °C to +125 °C  
125 °C  
125 °C  
125 °C  
1 min; Uins  
300 V  
75 V  
500 V  
75 V  
800 V  
75 V  
Continuous  
Failure rate: FITobserved  
0.1 x 10-9/h  
Notes  
(1)  
MB_ series has been merged with the related SMA series to form one series “MB_/SMA__”  
Please refer to APPLICATION INFORMATION below  
Revision: 11-Jul-2018  
Document Number: 28767  
1
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
APPLICATION INFORMATION  
The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heat flow  
support of the printed-circuit board (thermal resistance). The rated dissipation applies only if the permitted film temperature is  
not exceeded. Furthermore, a high level of ambient temperature or of power dissipation may raise the temperature of the solder  
joint, hence special solder alloys or board materials may be required to maintain the reliability of the assembly.  
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. The designer may estimate the performance of the particular resistor application or set certain load and  
temperature limits in order to maintain a desired stability.  
MAXIMUM RESISTANCE CHANGE AT RATED DISSIPATION  
Operation mode  
Precision  
-10 °C / +85 °C / 56 days  
0.07 W  
Standard  
-55 °C / +125 °C / 56 days  
0.25 W  
Climatic category  
MBA/SMA 0204  
MBB/SMA 0207  
MBE/SMA 0414  
Rated dissipation, P70  
0.11 W  
0.40 W  
0.17 W  
0.65 W  
Applied maximum film temperature, F max.  
85 °C  
125 °C  
MBA/SMA 0204  
1000 h  
100 to 100 k  
0.05 %  
100 to 100 k  
0.25 %  
8000 h  
0.1 %  
0.5 %  
225 000 h  
MBB/SMA 0207  
1000 h  
0.3 %  
1.5 %  
100 to 270 k  
0.03 %  
100 to 270 k  
0.15 %  
Max. resistance change at rated  
dissipation |R/R max.|, after:  
8000 h  
0.1 %  
0.5 %  
225 000 h  
MBE/SMA 0414  
1000 h  
0.3 %  
1.5 %  
100 to 470 k  
0.05 %  
100 to 470 k  
0.25 %  
8000 h  
0.1 %  
0.5 %  
225 000 h  
0.3 %  
1.5 %  
TEMPERATURE COEFFICIENT AND RESISTANCE RANGE  
TYPE  
TCR  
TOLERANCE  
0.25 %  
0.1 %  
RESISTANCE (1)  
22 to 332 k  
43 to 332 k  
22 to 221 k  
43 to 221 k  
10 to 1 M  
10 to 1 M  
10 to 1 M  
10 to 1 M  
22 to 1.5 M  
43 to 1 M  
22 to 1 M  
43 to 1 M  
E-SERIES  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
E96; E192  
25 ppm/K  
MBA/SMA 0204  
0.25 %  
0.1 %  
15 ppm/K  
25 ppm/K  
15 ppm/K  
25 ppm/K  
15 ppm/K  
0.25 %  
0.1 %  
MBB/SMA 0207  
MBE/SMA 0414  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
Notes  
(1)  
Radial version (RB, UB) cannot be qualified according to CECC so these can only be ordered with variant N or S  
Approval is according to EN 140101-806, version A  
Revision: 11-Jul-2018  
Document Number: 28767  
2
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
PART NUMBER AND PRODUCT DESCRIPTION - CECC APPROVED PRODUCTS  
PART NUMBER: MBB0207VD1001BCT00  
M
B
B
0
2
0
7
V
D
1
0
0
1
B
C
T
0
0
TYPE / SIZE  
VARIANT  
TCR  
RESISTANCE  
TOLERANCE PACKAGING  
Special  
MBA0204 =  
MBA/SMA 0204  
MBB0207 =  
MBB/SMA 0207  
MBE0414 =  
MBE/SMA 0414  
V = CECC 06  
N = RB radial  
5 mm for  
MBB/SMA 0207  
S = UB radial  
2.5 mm for  
E = 15 ppm/K  
D = 25 ppm/K  
3 digit value  
B = 0.1 %  
C = 0.25 %  
CT  
C1  
N4  
00 = standard  
1 digit multiplier  
MULTIPLIER  
L0 = welding joint  
not lacquered for  
MBB/SMA 0207  
KL = lacquered  
welding joint for  
MBA/SMA 0204  
8 = *10-2 2 = *102  
9 = *10-1 3 = *103  
0 = *100 4 = *104  
1 = *101 5 = *105  
MBB/SMA 0207  
PRODUCT DESCRIPTION: MBB/SMA 0207-25 0.1 % CECC 06 CT 1K0  
MBB/SMA 0207  
-
25  
0.1 %  
CECC 06  
CT  
1K0  
TYPE / SIZE  
TCR  
TOLERANCE  
VARIANT  
PACKAGING  
RESISTANCE  
MBA/SMA 0204  
MBB/SMA 0207  
MBE/SMA 0414  
15 ppm/K  
25 ppm/K  
0.1 %  
0.25 %  
CECC 06  
CECC 06 L0  
CECC 06 KL  
CT  
C1  
N4  
1K0 = 1 k  
51R1 = 51.1   
Note  
The products can be ordered using either the PRODUCT DESCRIPTION or the PART NUMBER  
PACKAGING  
TYPE  
CODE  
C1  
QUANTITY  
1000  
PACKAGING STYLE  
WIDTH  
PITCH  
DIMENSIONS  
184 mm x 75 mm x 42 mm  
330 mm x 75 mm x 55 mm  
184 mm x 74 mm x 42 mm  
324 mm x 77 mm x 82 mm  
Taped acc. to IEC 60286-1  
fan-folded in a box  
MBA/SMA 0204  
53 mm  
5 mm  
CT  
5000  
C1  
1000  
Taped acc. to IEC 60286-1  
fan-folded in a box  
MBB/SMA 0207  
53 mm  
5 mm  
CT  
5000  
Taped acc. to IEC 60286-2  
fan-folded in a box  
N4  
R4  
N4  
R4  
C1  
4000  
4000  
4000  
4000  
1000  
-
330 mm x 262 mm x 45 mm  
330 mm x 253 mm x 48 mm  
330 mm x 262 mm x 45 mm  
330 mm x 253 mm x 48 mm  
374 mm x 84 mm x 47 mm  
MBB/SMA 0207  
UB = 2.5 mm pitch  
Tapedacc.toIEC60286-2  
on a reel  
-
12.7 mm  
Taped acc. to IEC 60286-2  
fan-folded in a box  
-
-
MBB/SMA 0207  
UB = 5.0 mm pitch  
Tapedacc.toIEC60286-2  
on a reel  
Taped acc. to IEC 60286-1  
fan-folded in a box  
MBE/SMA 0414  
63 mm  
5 mm  
Note  
For details related to packaging specs, refer datasheet link www.vishay.com/doc?28721  
Revision: 11-Jul-2018  
Document Number: 28767  
3
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
DESCRIPTION  
Production is strictly controlled and follows an extensive  
set of instructions established for reproducibility.  
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  
wave or dipping.  
The resistors are completely lead (Pb)-free, the pure tin  
plating provides compatibility with lead (Pb)-free and  
lead-containing soldering processes. The immunity of the  
plating against tin whisker growth, in compliance with  
IEC 60068-2-82, has been proven under extensive testing.  
A
homogeneous film of metal alloy is deposited on a high  
grade ceramic body and conditioned to achieve the desired  
temperature coefficient. Plated steel termination caps are  
firmly pressed on the metallized rods. A special laser is used  
to achieve the target value by smoothly cutting a 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 resistor  
elements are covered by a light blue protective coating  
designed for electrical, mechanical and climatic protection.  
Four or five color code rings designate the resistance value  
and tolerance in accordance with IEC 60062.  
The encapsulant is resistant to cleaning solvent specified in  
IEC 60115-1 (3). The suitability of conformal coatings, if  
applied, shall be qualified by appropriate means to ensure  
the long-term stability of the whole system.  
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 or for the radial versions in accordance to  
IEC 60286-2.  
All products comply with GADSL (1) and the IEC 62474 (2) list  
of legal restrictions on hazardous substances. This includes  
full compliance with the following directives:  
• 2000/53/EC End of Vehicle Life Directive (ELV) and  
Annex II (ELVII)  
• 2011/65/EU Restriction of the use of Hazardous  
Substances Directive (RoHS)  
MATERIALS  
Vishay acknowledges the following systems for the  
regulation of hazardous substances:  
• 2002/96/EC Waste Electrical and Electrical Equipment  
Directive (WEEE)  
• IEC 62474, Material Declaration for Products of and for the  
Electrotechnical Industry, with the list of declarable  
substances given therein (1)  
APPROVALS  
The resistors (CECC version) are approved within the  
IECQ-CECC Quality Assessment System for Electronic  
Components to the detail specification EN 140101-806  
which refers to EN 60115-1 and EN 140100 and the variety  
of environmental test procedures of the IEC 60068  
series. Conformity is attested by the use of the CECC logo  
• The Global Automotive Declarable Substance List  
(GADSL) (2)  
• The REACH regulation (1907/2006/EC) and the related list  
(3)  
of substances with very high concern (SVHC)  
supply chain  
for its  
(
) as the Mark of Conformity on the package label for the  
CECC version.  
Vishay Beyschlag of  
The products do not contain any of the banned substances  
as per IEC 62474, GADSL, or the SVHC list, see  
www.vishay.com/how/leadfree.  
Hence the products fully comply with the following  
directives:  
• 2000/53/EC End-of-Life Vehicle Directive (ELV) and  
Annex II (ELV II)  
• 2011/65/EU Restriction of the Use of Hazardous  
has  
achieved  
Approval  
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.  
Substances  
Directive  
(RoHS)  
with  
amendment  
RELATED PRODUCTS  
For a corelated range of professional TCR and tolerance  
specifications see the datasheet:  
2015/863/EU  
• 2012/19/EU Waste Electrical and Electronic Equipment  
Directive (WEEE)  
Vishay pursues the elimination of conflict minerals from its  
supply chain, see the Conflict Minerals Policy at  
www.vishay.com/doc?49037.  
• “Professional  
Thin  
Film  
Leaded  
Resistors”,  
www.vishay.com/doc?28766  
For products approved to EN 140101-806, version E, with  
established reliability and failure rate level E7  
(Quality factor Q = 0.1), see the datasheet:  
• “Established Reliability Thin Film Leaded Resistors”,  
www.vishay.com/doc?28768  
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.digitaleurope.org/SearchResults.aspx?Search=eicta.  
All products comply with the IEC 62474, Material Declaration for Products of and for the Electrotechnical Industry  
Other cleaning solvents with aggressive chemicals should be evaluated in actual cleaning process for their suitability  
(3)  
Revision: 11-Jul-2018  
Document Number: 28767  
4
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
FUNCTIONAL PERFORMANCE  
100  
80  
60  
40  
20  
0
Precision Mode  
Standard Mode  
-55  
-25  
0
25  
50  
85 100  
125  
155  
180  
70  
Ambient Temperature in °C  
Derating  
T
60  
K
40  
MBE/SMA 0414  
MBB/SMA 0207  
MBA/SMA 0204  
20  
0
0
0.4  
0.6  
0.1  
0.2  
0.3  
0.5  
0.7  
0.8  
Load  
W
P
Rise of the surface temperature.  
Temperature Rise  
A
1
µV/V  
0.1  
MBE/SMA 0414  
MBB/SMA 0207  
MBA/SMA 0204  
0.01  
100  
1K  
10K  
100K  
1M  
10M  
Resistance Value  
Ω
R
Current Noise A in accordance with IEC 60195  
1
Revision: 11-Jul-2018  
Document Number: 28767  
5
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
Essentially all tests are carried out in accordance with the  
following specifications:  
• EN 60115-1, Generic specification (includes tests)  
• EN 140100, Sectional specification (includes schedule for  
qualification approval)  
• EN 140101-806 (successor of CECC 40101-806), Detail  
specification (includes schedule for conformance  
inspection)  
Most of the components are approved in accordance with  
the European CECC-system, where applicable. The Test  
Procedures and Requirements table contains only the most  
important tests. For the full test schedule refer to the  
documents listed above. The testing also covers most of the  
requirements specified by EIA/IS-703 and JIS-C-5202.  
The tests are carried out in accordance with IEC 60068-2-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,  
steady state, test duration: 56 days) is valid.  
Unless otherwise specified the following values apply:  
• Temperature: 15 °C to 35 °C  
• Relative humidity: 45 % to 75 %  
• 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.  
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-xx test  
methods. A short description of the test procedure is also  
given.  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS PERMISSIBLE CHANGE  
PROCEDURE  
(R max.)  
STABILITY  
CLASS 0.05  
STABILITY  
CLASS 0.1  
STABILITY  
CLASS 0.25  
IEC  
60068-2  
TEST  
Stability for product types:  
IEC  
60115-1  
CLAUSE  
TEST  
MBA/SMA 0204  
MBB/SMA 0207  
MBE/SMA 0414  
-
100 to 100 k  
100 to 270 k  
100 to 470 k  
43 to 221 k  
43 to 510 k  
22 to 332 k  
22 to 1 M  
22 to 1.5 M  
METHOD  
43 to 1 M  
4.5  
4.7  
-
-
Resistance  
0.25 %; 0.1 %  
Voltage proof  
U
RMS = Uins; 60 s  
No flashover or breakdown  
Temperature  
coefficient  
At 20/LCT/20 °C and  
20/UCT/20 °C  
4.8  
-
-
25 ppm/K; 15 ppm/K  
Room temperature;  
U = 2.5 x P70 x R or  
U = 2 x Umax.; 5 s  
Short time  
overload  
(0.01 % R + 0.01 )  
no visible damage  
(0.02 % R + 0.01 )  
no visible damage  
(0.05 % R + 0.01 )  
no visible damage  
4.13  
21 (Ua1)  
21 (Ub)  
21 (Uc)  
Robustness of  
terminations  
4.16  
Tensile, bending and torsion  
(0.01 % R + 0.01 )  
(0.02 % R + 0.01 )  
(0.05 % R + 0.01 )  
+235 °C; 2 s  
solder bath method;  
SnPb40  
4.17  
20 (Ta)  
20 (Tb)  
Solderability  
Good tinning (95 % covered, no visible damage)  
+245 °C; 3 s  
solder bath method;  
SnAg3Cu0.5  
Unmounted components;  
(270 3) °C;  
Resistance to  
soldering heat  
(0.01 % R + 0.01 )  
(0.02 % R + 0.01 )  
no visible damage  
(0.05 % R + 0.01 )  
no visible damage  
4.18.2  
no visible damage  
(10 1) s  
30 min at LCT = -55 °C  
30 min at UCT = 125 °C  
Rapid  
change of  
temperature  
(0.01 % R + 0.01 )  
(0.02 % R + 0.01 )  
(0.05 % R + 0.01 )  
5 cycles  
4.19  
4.22  
14 (Na)  
no visible damage  
no visible damage  
no visible damage  
MBA/SMA 0204: 500 cycles  
MBB/SMA 0207: 200 cycles  
MBE/SMA 0414: 100 cycles  
(0.25 % R + 0.05 )  
no visible damage  
(0.25 % R + 0.05 )  
no visible damage  
(0.25 % R + 0.05 )  
no visible damage  
10 sweep cycles per direction;  
10 Hz to 2000 Hz  
6
Vibration  
(0.01 % R + 0.01 )  
(0.02 % R + 0.01 )  
(0.05 % R + 0.01 )  
1.5 mm or 200 m/s2  
Revision: 11-Jul-2018  
Document Number: 28767  
6
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS PERMISSIBLE CHANGE  
PROCEDURE  
(R max.)  
STABILITY  
STABILITY  
CLASS 0.1  
STABILITY  
IEC  
60068-2  
TEST  
Stability for product types:  
IEC  
60115-1  
CLAUSE  
CLASS 0.05  
CLASS 0.25  
22 to 332 k  
22 to 1 M  
22 to 1.5 M  
TEST  
MBA/SMA 0204  
MBB/SMA 0207  
MBE/SMA 0414  
100 to 100 k  
100 to 270 k  
100 to 470 k  
43 to 221 k  
43 to 510 k  
43 to 1 M  
METHOD  
Climatic  
sequence:  
4.23  
4.23.2  
2 (Ba)  
Dry heat  
125 °C; 16 h  
55 °C; 24 h;  
90 % to 100 % RH;  
1 cycle  
Damp heat,  
cyclic  
4.23.3  
30 (Db)  
(0.05 % R + 0.01 )  
no visible damage  
(0.1 % R + 0.01 )  
no visible damage  
(0.25 % R + 0.05 )  
no visible damage  
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;  
95 % to 100 % RH; 5 cycles  
4.23.6  
4.23.7  
30 (Db)  
DC load  
Apply rated power for 1 min  
(40 2) °C;  
56 days;  
(93 3) % RH  
Damp heat,  
steady state  
4.24  
78 (Cab)  
(0.05 % R + 0.01 )  
(0.1 % R + 0.01 )  
(0.25 % R + 0.05 )  
U = P70 x R or  
Endurance  
at 70 °C:  
Precision  
operation  
mode  
U = Umax.  
;
1.5 h on; 0.5 h off  
-
-
70 °C; 1000 h  
(0.05 % R + 0.01 ) (1)  
(0.1 % R + 0.01 )  
(0.1 % R + 0.01 )  
(0.2 % R + 0.01 )  
(0.25 % R + 0.05 ) (2)  
(0.5 % R + 0.05 )  
70 °C; 8000 h  
4.25.1  
U = P70 x R or  
Endurance  
at 70 °C:  
Standard  
operation  
mode  
U = Umax.  
;
1.5 h on; 0.5 h off  
70 °C; 1000 h  
70 °C; 8000 h  
(0.25 % R + 0.05 ) (2)  
(0.5 % R + 0.05 )  
-
-
-
-
Endurance at  
upper  
category  
85 °C; 1000 h  
125 °C; 1000 h  
-
-
-
4.25.3  
4.29  
-
(0.05 % R + 0.01 )  
(0.1 % R + 0.01 )  
(0.25 % R + 0.05 )  
temperature  
Component  
solvent  
resistance  
Isopropyl alcohol  
+23 °C; toothbrush method  
Marking legible;  
No visible damage  
45 (XA)  
IEC 61340-3-1;  
3 pos. + 3 neg.  
MBA/SMA 0204: 2 kV  
MBB/SMA 0207: 4 kV  
MBE/SMA 0414: 6 kV  
Electrostatic  
discharge  
(human body  
model)  
4.40  
-
(0.5 % R + 0.05 )  
Notes  
(1)  
(0.03 % R + 0.01) for MBB/SMA 0207  
(0.15 % R + 0.05 ) for MBB/SMA 0207  
(2)  
Revision: 11-Jul-2018  
Document Number: 28767  
7
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
DIMENSIONS  
D
d
L
I
M
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  
MBB/SMA 0207 (1)  
MBE/SMA 0414  
1.6  
2.5  
4.0  
3.6  
6.3  
0.5  
0.6  
0.8  
29.0  
28.0  
31.0  
5.0  
10.0 (1)  
15.0  
125  
220  
700  
11.9  
Note  
(1)  
For 7.5 M < 10.0 mm, use version MBB/SMA 0207... L0 (welding joint not lacquered)  
MBB/SMA 0207 WITH RADIAL TAPING  
LEAD SPACING (UB = 2.5 mm), SIZE 0207  
DIMENSIONS in millimeters  
Pitch of components  
P
P
F
12.7 1.0  
2.5 + 0.6 / - 0.1  
18.0 + 1.0 / - 0.5  
18.0 2.0  
11  
Lead spacing  
Insulated  
Width of carrier tape  
Body to hole center  
Height for cutting (max.)  
Height for bending  
Height for insertion (max.)  
W
H
C
L
3 max.  
C
2.5 + 0 / - 0.5  
32  
H1  
H1  
F
H
L
W
Direction of unreeling  
LEAD SPACING (RB = 5.0 mm), SIZE 0207  
DIMENSIONS in millimeters  
Pitch of components  
Lead spacing  
P
F
12.7 1.0  
5.0 + 0.6 / - 0.1  
18.0 + 1.0 / - 0.5  
18.0 2.0  
16.0 0.5  
11  
P
Width of carrier tape  
W
H
Insulated  
C
Body to hole center  
Lead crimp to hole center  
Height for cutting (max.)  
Height for bending  
H0  
L
3 max.  
H1  
H
C
2.5 + 0 / - 0.5  
32  
Height for insertion (max.)  
H1  
F
H0  
L
W
Direction of unreeling  
Revision: 11-Jul-2018  
Document Number: 28767  
8
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MBA/SMA 0204, MBB/SMA 0207, MBE/SMA 0414 - Precision  
www.vishay.com  
Vishay Beyschlag  
HISTORICAL 12NC INFORMATION  
• The resistors had a 12-digit numeric code starting with  
2312  
Resistance Decade  
RESISTANCE DECADE  
10 to 99.9   
LAST DIGIT  
• The subsequent 4 digits indicated the resistor type,  
specification and packaging; see the 12NC table  
9
1
2
3
4
5
100 to 999   
1 kto 9.99 k  
• The remaining 4 digits indicated the resistance value:  
- The first 3 digits indicated the resistance value  
10 kto 99.9 k  
100 kto 999 k  
1 Mto 9.99 M  
- The last digit indicated the resistance decade in  
accordance with resistance decade table shown below  
Historical 12NC Example  
The 12NC code of a MBA 0204 resistor, value 47 kand  
TCR 25 with 0.1 % tolerance, supplied on bandolier in a  
box of 5000 units was: 2312 906 74703.  
HISTORICAL 12NC - Resistor type and packaging  
2312 ... ..... (BANDOLIER)  
REEL  
DESCRIPTION  
AMMOPACK  
TYPE  
TCR  
TOL.  
C1 1000 UNITS  
901 6....  
901 7....  
902 6....  
902 7....  
911 6....  
911 7....  
912 6....  
912 7....  
921 6....  
921 7....  
922 6....  
922 7....  
CT 5000 UNITS  
R1 1000 UNITS  
R2 2500 UNITS  
RP 5000 UNITS  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
0.25 %  
0.1 %  
906 6....  
906 7....  
907 6....  
907 7....  
916 6....  
916 7....  
917 6....  
917 7....  
-
701 6....  
701 7....  
702 6....  
702 7....  
711 6....  
711 7....  
712 6....  
712 7....  
-
-
806 6....  
806 7....  
807 6....  
807 7....  
816 6....  
816 7....  
817 6....  
817 7....  
-
25 ppm/K  
-
MBA 0204  
-
15 ppm/K  
25 ppm/K  
15 ppm/K  
25 ppm/K  
15 ppm/K  
-
-
-
MBB 0207  
MBE 0414  
-
-
826 6....  
826 7....  
827 6....  
827 7....  
-
-
-
-
-
-
-
-
-
Revision: 11-Jul-2018  
Document Number: 28767  
9
For technical questions, contact: filmresistorsleaded@vishay.com  
THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT  
ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
Legal Disclaimer Notice  
www.vishay.com  
Vishay  
Disclaimer  
ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE  
RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE.  
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 in any datasheet or in any other  
disclosure relating to any product.  
Vishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or  
the continuing production of any product. To the maximum extent permitted by applicable law, Vishay disclaims (i) any and all  
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Statements regarding the suitability of products for certain types of applications are based on Vishay's knowledge of typical  
requirements that are often placed on Vishay products in generic applications. Such statements are not binding statements  
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with the properties described in the product specification is suitable for use in a particular application. Parameters provided in  
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parameters, including typical parameters, must be validated for each customer application by the customer's technical experts.  
Product specifications do not expand or otherwise modify Vishay's terms and conditions of purchase, including but not limited  
to the warranty expressed therein.  
Hyperlinks included in this datasheet may direct users to third-party websites. These links are provided as a convenience and  
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© 2021 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED  
Revision: 09-Jul-2021  
Document Number: 91000  
1

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