MMB02070B1000FB200 [VISHAY]

Professional MELF Resistors;
MMB02070B1000FB200
型号: MMB02070B1000FB200
厂家: VISHAY    VISHAY
描述:

Professional MELF Resistors

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MMU 0102, MMA 0204, MMB 0207 - Professional  
Vishay Beyschlag  
Professional MELF Resistors  
FEATURES  
Approved to EN 140401-803  
AEC-Q200 qualified  
Advanced thin film technology  
Excellent overall stability: Exceeds class 0.25  
Matte Sn termination on Ni barrier layer  
Compliant to RoHS Directive 2011/65/EU  
APPLICATIONS  
Automotive  
Telecommunication  
Industrial  
Medical equipment  
MMU 0102, MMA 0204 and MMB 0207 professional thin film  
MELF resistors are the perfect choice for most fields of  
modern professional electronics where reliability and stability  
is of major concern. The typical applications in the fields of  
automotive, telecommunication and medical equipment  
reflect the outstanding level of proven reliability.  
METRIC SIZE  
DIN  
0102  
0204  
0207  
CECC  
RC 2211M  
RC 3715M  
RC 6123M  
TECHNICAL SPECIFICATIONS  
DESCRIPTION  
MMU 0102  
RC 2211M  
MMA 0204  
RC 3715M  
MMB 0207  
CECC size  
RC 6123M  
Resistance range  
Resistance tolerance  
0.22 to 2.21 M; 0   
5 %; 2 %; 1 %; 0.5 %  
0.22 to 10 M; 0   
0.1 to 15 M; 0   
5 %; 2 %; 1 %; 0.5 %  
5 %; 1 %; 0.5 %  
100 ppm/K; 50 ppm/K;  
25 ppm/K  
Temperature coefficient  
50 ppm/K; 25 ppm/K  
Operation mode  
Standard  
0.2 W  
Power  
0.3 W  
Standard  
0.25 W  
Power  
0.4 W  
Standard  
0.4 W  
Power  
1.0 W (2)  
(1)  
Rated dissipation, P70  
Operating voltage, Umax. AC/DC  
Permissible film temperature, F max.  
150 V  
200 V  
300 V  
125 °C  
155 °C  
125 °C  
155 °C  
125 °C  
155 °C  
- 55 °C  
to 125 °C  
- 55 °C  
to 155 °C  
- 55 °C  
to 125 °C  
- 55 °C  
to 155 °C  
- 55 °C  
to 125 °C  
- 55 °C  
to 155 °C  
Operating temperature range  
Max. resistance change at P70  
for resistance range,  
0.22 to 221 k  
0.22 to 332 k  
0.22 to 1 M  
R/R max., after:  
1000 h  
8000 h  
0.15 %  
0.25 %  
0.5 %  
-
0.15 %  
0.25 %  
0.5 %  
-
0.15 %  
0.25 %  
0.5 %  
-
0.3 %  
1 %  
0.3 %  
1 %  
0.3 %  
1 %  
225 000 h  
Permissible voltage  
against ambient (insulation):  
1 min; Uins  
Continuous  
200 V  
75 V  
300 V  
75 V  
500 V  
75 V  
Failure rate: FITobserved  
0.1 x 10-9/h  
Notes  
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.  
(1) The power dissipation on the resistor generates a temperature rise against the local ambient, depending on the heatflow 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.  
(2) Specified power rating requires dedicated heat-sink pads.  
www.vishay.com  
14  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
DIMENSIONS  
L
K
L1  
D
D1  
DIMENSIONS AND MASS  
L
D
(mm)  
L1 min.  
(mm)  
D1  
(mm)  
K
(mm)  
MASS  
(mg)  
TYPE  
(mm)  
MMU 0102  
MMA 0204  
MMB 0207  
2.2 + 0/- 0.1  
3.6 + 0/- 0.2  
5.8 + 0/- 0.15  
1.1 + 0/- 0.1  
1.4 + 0/- 0.1  
2.2 + 0/- 0.2  
1.2  
1.8  
3.2  
D + 0/- 0.1  
D + 0/- 0.15  
D + 0/- 0.2  
0.4 0.05  
0.8 0.1  
1.15 0.1  
8
22  
80  
Note  
• Color code marking is applied according to IEC 60062 (3) in four bands (E24 series) or 5 bands (E96 or E192 series). Each color band appears  
as a single solid line, voids are permissible if at least 2/3 of the band is visible from each radial angle of view. The last color band for tolerance  
is approximately 50 % wider than the other bands. An interrupted yellow band between the 4th and 5th full band indicates TC25.  
PATTERN STYLES FOR MELF RESISTORS  
X
G
Y
Z
RECOMMENDED SOLDER PAD DIMENSIONS  
WAVE SOLDERING  
REFLOW SOLDERING  
TYPE  
G
Y
X
Z
G
Y
X
Z
(mm)  
(mm)  
(mm)  
(mm)  
(mm)  
(mm)  
(mm)  
(mm)  
MMU 0102  
MMA 0204  
MMB 0207  
0.7  
1.5  
2.8  
1.2  
1.5  
2.1  
1.5  
1.8  
2.6  
3.1  
4.5  
7.0  
1.1  
1.7  
3.2  
0.8  
1.2  
1.7  
1.3  
1.6  
2.4  
2.7  
4.1  
6.6  
Note  
• The given solder pad dimensions reflect the considerations for board design and assembly as outlined e.g. in standards IEC 61188-5-x, or in  
publication IPC-7351. They do not guarantee any supposed thermal properties, however, they will be found adequate for most general  
applications.  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
www.vishay.com  
15  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
PART NUMBER AND PRODUCT DESCRIPTION  
Part Number: MMB02070D5620DB200  
Part Number: MMB02070Z0000ZB200  
M
M
M
M
B
B
0
0
2
2
0
0
7
7
0
0
D
Z
5
0
6
0
2
0
0
0
D
Z
B
B
2
2
0
0
0
0
TYPE/SIZE  
VERSION  
TCR  
RESISTANCE  
3 digit value  
TOLERANCE  
PACKAGING  
MMU0102  
MMA0204  
MMB0207  
0
= EN 140401-803,  
“Version A”  
D = 25 ppm/K  
C = 50 ppm/K  
B = 100 ppm/K  
Z = Jumper  
D = 0.5 %  
F = 1 %  
G = 2 %  
J = 5 %  
Z = Jumper  
B3  
B0  
B2  
B7  
M3  
M8  
1 digit multiplier  
Multiplier  
7 = *10-3  
8 = *10-2  
9 = *10-1  
0 = *100  
1 = *101  
2 = *102  
3 = *103  
4 = *104  
5 = *105  
0000 = Jumper  
Product Description: MMB 0207 - 25 0.5 % B2 562R  
Product Description: MMB 0207 B2 0R0  
MMB  
MMB  
0207  
0207  
- 25  
-
0.5 %  
-
B2  
B2  
562R  
0R0  
TYPE  
SIZE  
TCR  
TOLERANCE  
PACKAGING  
RESISTANCE  
MMU  
MMA  
MMB  
0102  
0204  
0207  
25 ppm/K  
50 ppm/K  
100 ppm/K  
0.5 %  
1 %  
2 %  
BL  
B0  
B2  
B7  
M3  
M8  
562R = 562   
0R0 = Jumper  
5 %  
Note  
• Products can be ordered using either the PART NUMBER or the PRODUCT DESCRIPTION.  
PACKAGING  
TYPE  
CODE  
B3 = BL  
B0  
QUANTITY  
3000  
CARRIER TAPE  
WIDTH  
PITCH  
REEL DIAMETER  
180 mm/7"  
Antistatic blister tape acc.  
IEC 60286-3 type II  
8 mm  
4 mm  
10 000  
330 mm/13"  
MMU 0102  
Bulk case acc.  
IEC 60286-6  
M8  
8000  
-
-
-
B3 = BL  
B0  
3000  
180 mm/7"  
Antistatic blister tape acc.  
IEC 60286-3 type II  
8 mm  
-
4 mm  
-
10 000  
330 mm/13"  
MMA 0204  
MMB 0207  
Bulk case acc.  
IEC 60286-6  
M3  
3000  
-
B2  
B7  
2000  
7000  
180 mm/7"  
Antistatic blister tape acc.  
IEC 60286-3 type II  
12 mm  
4 mm  
330 mm/13"  
www.vishay.com  
16  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
TEMPERATURE COEFFICIENT AND RESISTANCE RANGE  
DESCRIPTION  
RESISTANCE  
MMA 0204  
TCR  
100 ppm/K  
TOLERANCE  
5 %  
MMU 0102  
-
MMB 0207  
0.1 to 0.2   
0.22 to 0.91   
0.2 to 0.91   
1 to 15 M  
-
-
5 %  
2 %  
1 %  
0.5 %  
1 %  
0.22 to 0.91   
1 to 9.1   
0.22 to 0.91   
-
50 ppm/K  
10 to 2.21 M  
10 to 221 k  
10 to 221 k  
10 to 221 k  
10 m; Imax. = 2 A  
1 to 10 M  
10 to 2.21 M  
10 to 511 k  
10 to 511 k  
10 m, Imax. = 3 A  
-
25 ppm/K  
0.5 %  
10 to 1 M  
10 m; Imax. = 5 A  
Jumper  
Notes  
Resistance ranges printed in bold are preferred TCR/tolerance combinations with optimized availability.  
Resistance values to be selected for 5 % and 2 % tolerance from E24, for 1 % tolerance from E24 and E96 and for 0.5 % tolerance  
from E24 and E192.  
(1)  
All products comply with the GADSL  
CEFIC-EECA-EICTA  
and the  
DESCRIPTION  
Production is strictly controlled and follows an extensive  
(2)  
list of legal restrictions on  
set of instructions established for reproducibility.  
A
hazardous substances. This includes full compliance with  
the following directives:  
2000/53/EC End of Vehicle Life Directive (ELV) and  
Annex II (ELV II)  
2011/65/EU Restriction of the use of Hazardous  
Substances Directive (RoHS)  
2002/96/EC Waste Electrical and Electronic Equipment  
Directive (WEEE)  
homogeneous film of metal alloy is deposited on a high grade  
ceramic body (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 helical  
groove in the resistive layer without damaging the ceramics.  
The resistor elements are covered by a protective coating  
designed for electrical, mechanical and climatic protection.  
The terminations receive a final pure tin on nickel plating.  
Four or five color code rings designate the resistance value  
APPROVALS  
The resistors are approved within the IECQ-CECC Quality  
Assessment System for Electronic Components to the detail  
specification EN 140401-803 which refers to EN 60115-1,  
EN 140400 and the variety of environmental test procedures  
of the IEC 60068 (3) series.  
and tolerance in accordance with IEC 60062 (3)  
.
The result of the determined production is verified by an  
extensive testing procedure performed on 100 % of the  
individual resistors. This includes pulse load screening (for R  
10 ) and additional non-linearity screening (for R 30 )  
for the elimination of products with a potential risk of early life  
failures according to EN 140401-803, 2.1.2.2. Only accepted  
products are laid directly into the blister tape in accordance  
with IEC 60286-3, Type II (3) or bulk case in accordance with  
Conformity is attested by the use of the CECC logo (  
) as  
the mark of conformity on the package label.  
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 60286-6 (3)  
.
ASSEMBLY  
The resistors are suitable for processing on automatic SMD  
assembly systems. They are suitable for automatic soldering  
using wave, reflow or vapour phase as shown in  
IEC 61760-1 (3). Solderability is specified for 2 years after  
production or requalification, however, excellent solderability  
is proven after extended storage in excess of 10 years. The  
permitted storage time is 20 years.  
IEC QC 001002-3, clause  
6
is granted for the  
Vishay Beyschlag manufacturing process.  
The resistors are qualified according to AEC-Q200.  
RELATED PRODUCTS  
For products with precision specification see the datasheet:  
• “Precision MELF Resistors”  
(www.vishay.com/doc?28714)  
• “High Precision MINI-MELF Resistor”  
(www.vishay.com/doc?28715)  
The resistors are completely lead (Pb)-free, the pure tin  
plating provides compatibility with lead (Pb)-free soldering  
processes. The immunity of the plating against tin whisker  
growth has been proven under extensive testing.  
The encapsulation is resistant to all cleaning solvents  
commonly used in the electronics industry, including  
alcohols, esters and aqueous solutions. The suitability of  
conformal coatings, if applied, shall be qualified by  
appropriate means to ensure the long-term stability of the  
whole system.  
Resistors are available with established reliability in  
accordance with EN 140401-803 Version E. Please refer to  
datasheet “MELF Resistors with Established Reliability”  
(www.vishay.com/doc?28707).  
Notes  
(1)  
(2)  
Global Automotive Declarable Substance List, see www.gadsl.org.  
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=995  
issues environment policy chemicals chemicals for electronics.  
(3)  
The quoted IEC standards are also released as EN standards with the same number and identical contents.  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
www.vishay.com  
17  
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  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
FUNCTIONAL PERFORMANCE  
1
MMB 0207  
MMA 0204  
MMU 0102  
W
0.5  
0
C
- 50  
0
50  
70  
100  
150  
ϑamb  
Ambient Temperature  
Derating - Standard Operation  
P
MMB 0207 (1)  
1
MMA 0204  
MMU 0102  
W
0.5  
0
- 50  
0
50  
70  
100  
C
150  
Ambient Temperatureϑamb  
Note  
(1) Specified power rating requires dedicated heat sink pads  
Derating - Power Operation  
MMB 0207  
MMA 0204  
MMU 0102  
P
100  
W
10  
1
0.1  
10 µs  
100 µs  
1 ms  
10 ms  
100 ms  
1 s  
10 s  
Pulse Duration ti  
Maximum pulse load, single pulse; applicable if P 0 and n 1000 and U Umax.  
;
for permissible resistance change equivalent to 8000 h operation  
Single Pulse  
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For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
MMB 0207  
MMA 0204  
MMU 0102  
P
100  
W
10  
1
0.1  
10 µs  
100 µs  
1 ms  
10 ms  
100 ms  
1 s  
10 s  
Pulse Duration ti  
Maximum pulse load, continuous pulses; applicable if P P ( amb) and U Umax.  
for permissible resistance change equivalent to 8000 h operation  
;
Continuous Pulse  
MMB 0207  
MMA 0204  
MMU 0102  
U
1 kV  
100 V  
10 µs  
100 µs  
1 ms  
10 ms  
100 ms  
1 s  
10 s  
Pulse Duration ti  
Maximum pulse voltage, single and continuous pulses; applicable if P Pmax.  
for permissible resistance change equivalent to 8000 h operation  
;
Pulse Voltage  
10 kV  
1 kV  
100 V  
MMB 0207  
MMA 0204  
MMU 0102  
10 V  
10 Ω  
100 Ω  
1 kΩ  
10 kΩ  
100 kΩ  
1 MΩ  
10 MΩ  
Resistance Value R  
Pulse load rating in accordance with IEC 60 115-1, 4.27; 1.2 µs/50 µs;  
5 pulses at 12 s intervals; for permissible resistance change 0.5 %  
1.2/50 Pulse  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
www.vishay.com  
19  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
MMB 0207  
MMA 0204  
MMU 0102  
10 kV  
1 kV  
100 V  
10 V  
10 Ω  
100 Ω  
1 kΩ  
10 kΩ  
100 kΩ  
1 MΩ  
10 MΩ  
Resistance Value R  
Pulse load rating in accordance with IEC 60115-1, 4.27; 10 µs/700 µs;  
10 pulses at 1 minute intervals; for permissible resistance change 0.5 %  
10/700 Pulse  
1
µV/V  
0.1  
MMB 0207  
MMA 0204  
MMU 0102  
0.01  
100  
Ω
1 k  
Ω
10 k  
Ω
100 k  
Ω
1 MΩ  
10 MΩ  
Resistance Value R  
Accordance with IEC 60195  
Current Noise - A  
1
1.8  
1.5  
1.0  
MMB 0207  
MMA 0204  
MMU 0102  
0.5  
0.1  
0.3  
3
1
GHz  
Frequency f  
|Z|/R for 49.9 Ω MELF resistors  
RF - Behaviour  
www.vishay.com  
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For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
TEST AND REQUIREMENTS  
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  
EN 140400, sectional specification  
EN 140401-803, detail specification  
Relative humidity: 45 % to 75 %  
Air pressure: 86 kPa to 106 kPa (860 mbar to 1060 mbar).  
The components are mounted for testing on printed-circuit  
boards in accordance with EN 140400, 2.3.3, unless  
otherwise specified.  
The components are approved in accordance with the  
IECQ-CECC-system, where applicable. 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 requirements stated in the Test Procedures and  
Requirements table are based on the required tests and  
permitted limits of EN 140401-803. However, some  
additional tests and a number of improvements against those  
minimum requirements have been included. The stated  
requirements for long-term tests are typically fulfilled with a  
statistical safety of at least x + 5 s.  
The tests are carried out under standard atmospheric  
conditions in accordance with IEC 60068-1, 5.3 (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.  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS  
PERMISSIBLE CHANGE (R)  
IEC  
EN  
60068-2(2)  
60115-1  
CLAUSE  
TEST  
PROCEDURE  
STABILITY  
CLASS 0.25  
OR BETTER  
STABILITY  
CLASS 0.5  
OR BETTER  
STABILITY  
CLASS 1  
OR BETTER  
STABILITY  
CLASS 2  
OR BETTER  
TEST  
METHOD  
Stability for  
product types:  
MMU 0102  
MMA 0204  
MMB 0207  
-
10 to 221k  
10 to 332 k  
10 to 1 M  
1to < 10   
1to < 10   
1to < 10   
2 % R; 1 % R  
< 1   
< 1   
< 1   
5 % R  
> 221 k  
> 332 k  
> 1 M  
1 % R  
4.5  
-
-
Resistance  
1 % R; 0.5 % R  
At (20/- 55/20) °C  
and  
(20/125/20) °C  
Temperature  
coefficient  
4.8.4.2  
50 ppm/K; 25 ppm/K  
U = P70 x R   
Endurance  
at 70 °C:  
Standard  
operation  
mode  
Umax.  
;
1.5 h on; 0.5 h off;  
70 °C; 1000 h  
(0.15 % R + 10 m)  
(0.3 % R + 10 m)  
(0.5 % R + 10 m)  
(1 % R + 10 m)  
4.25.1  
-
70 °C; 8000 h  
U = P70 x R   
Endurance  
at 70 °C:  
Power  
Umax.  
;
1.5 h on; 0.5 h off;  
operation  
mode  
70 °C; 1000 h  
(0.25 % R + 10 m)  
(0.5 % R + 10 m)  
(0.5 % R + 10 m)  
(1 % R + 10 m)  
70 °C; 8000 h  
Endurance at  
upper  
category  
125 °C; 1000 h  
155 °C; 1000 h  
(0.15 % R + 5 m) (0.25 % R + 5 m) (0.5 % R + 5 m) + (1 % R + 5 m)  
4.25.3  
4.24  
-
(0.3 % R + 5 m) (0.5 % R + 5 m)  
(1 % R + 5 m) + (2 % R + 5 m)  
temperature  
(40 2) °C;  
56 days;  
(93 3) % RH  
Damp heat,  
steady state  
78 (Cab)  
(0.15 %  
R
+ 10 m  
)  
(0.5 % R + 10 m) (1 % R + 10 m)  
(1 % R + 10 m)  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
www.vishay.com  
21  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS  
PERMISSIBLE CHANGE (R)  
IEC  
EN  
60115-1  
CLAUSE  
60068-2(2)  
TEST  
TEST  
PROCEDURE  
STABILITY  
CLASS 0.25  
OR BETTER  
STABILITY  
CLASS 0.5  
OR BETTER  
STABILITY  
CLASS 1  
OR BETTER  
STABILITY  
CLASS 2  
OR BETTER  
METHOD  
Stability for  
product types:  
MMU 0102  
MMA 0204  
MMB 0207  
10 to 221k  
10 to 332 k  
10 to 1 M  
1to < 10   
1to < 10   
1to < 10   
< 1   
< 1   
< 1   
> 221 k  
> 332 k  
> 1 M  
(85 2) C;  
(85 5) % RH;  
U = 0.3 x  
Damp heat,  
steady state,  
accelerated  
4.39  
67 (Cy)  
(0.25 % R + 10 m) (0.5 % R + 10 m) (1 % R + 10 m) (2 % R + 10 m)  
P70 x R   
100 V; 1000 h  
Climatic  
sequence:  
4.23  
4.23.2  
4.23.3  
4.23.4  
4.23.5  
2 (Bb)  
30 (Db)  
1 (Ab)  
13 (M)  
dry heat  
UCT; 16 h  
damp heat,  
cyclic  
55 °C; 24 h;  
90 % RH; 1 cycle  
cold  
LCT; 2 h  
low air  
pressure  
8.5 kPa; 2 h;  
(25 10) °C  
(0.15 %  
R
+ 10 m)  
(0.5 % R + 10 m) (1 % R + 10 m) (1 % R + 10 m)  
55 °C; 24 h;  
90 % RH;  
5 cycles  
damp heat,  
cyclic  
4.23.6  
4.23.7  
30 (Db)  
-
U = P70 x R  
Umax; 1 min.  
DC load  
LCT = - 55 °C;  
UCT = 155 °C  
-
1 (Ab)  
Cold  
- 55 °C; 2 h  
(0.05 % R + 5 m)  
(0.1 % R + 5 m)  
(0.1 % R + 10 m)  
30 min at LCT;  
30 min at UCT;  
LCT = - 55 °C;  
UCT = 125 °C  
Rapid  
change of  
temperature  
5 cycles  
(0.05 % R + 10 m)  
(0.15 % R + 10 m)  
4.19  
14 (Na)  
1000 cycles  
(0.25 %  
R + 10 m)  
LCT = - 55 °C;  
UCT = 155 °C  
1000 cycles  
(0.25 % R + 10 m)  
(0.5 % R + 10 m)  
Short time  
overload:  
standard  
operation  
mode  
(0.03 % R + 5 m)  
(0.15 % R + 5 m)  
(0.15 % R + 5 m)  
U = 2.5 x  
P70 x R  
2 x Umax; 5 s  
4.13  
-
Short time  
overload:  
power  
(0.05 % R + 5 m)  
operation  
mode  
www.vishay.com  
22  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS  
PERMISSIBLE CHANGE (R)  
IEC  
EN  
60068-2(2)  
TEST  
60115-1  
CLAUSE  
TEST  
PROCEDURE  
STABILITY  
CLASS 0.25  
OR BETTER  
STABILITY  
CLASS 0.5  
OR BETTER  
STABILITY  
CLASS 1  
OR BETTER  
STABILITY  
CLASS 2  
METHOD  
OR BETTER  
Stability for  
product types:  
MMU 0102  
MMA 0204  
MMB 0207  
10 to 221k  
10 to 332 k  
10 to 1 M  
1to < 10   
1to < 10   
1to < 10   
< 1   
< 1   
< 1   
> 221 k  
> 332 k  
> 1 M  
Single pulse  
high voltage  
overload;  
standard  
operation  
mode  
(0.25 % R + 5 m)  
Severity no. 4:  
U = 10 x  
P70 x R  
4.27  
-
2 x Umax.  
;
Single pulse  
high voltage  
overload;  
power  
operation  
mode  
10 pulses  
10 µs/700 µs  
(0.5 % R + 5 m)  
(0.5 % R + 5 m)  
(1 % R + 5 m)  
Periodic  
electric  
overload;  
standard  
operation  
mode  
U =  
15 x P70 x R  
2 x Umax.;  
0.1 s on; 2.5 s off;  
4.37  
-
Periodic  
electric  
overload;  
power  
1000 cycles  
operation  
mode  
Endurance by  
sweeping;  
10 Hz to 2000 Hz;  
no resonance;  
amplitude  
4.22  
4.40  
6 (Fc)  
Vibration  
(0.05 % R + 5 m)  
(0.1 % R + 5 m)  
1.5 mm or  
200 m/s2; 7.5 h  
IEC 61340-3-1 (2)  
3 pos. + 3 neg.  
discharges  
;
Electrostatic  
discharge  
-
(0.5 % R + 50 m)  
(Human Body MMU 0102: 1.5 kV  
Model)  
MMA 0204: 2 kV  
MMB 0207: 4 kV  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
www.vishay.com  
23  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
TEST PROCEDURES AND REQUIREMENTS  
REQUIREMENTS  
PERMISSIBLE CHANGE (R)  
IEC  
EN  
60115-1  
CLAUSE  
60068-2(2)  
TEST  
TEST  
PROCEDURE  
STABILITY  
CLASS 0.25  
OR BETTER  
STABILITY  
CLASS 0.5  
OR BETTER  
STABILITY  
CLASS 1  
OR BETTER  
STABILITY  
CLASS 2  
OR BETTER  
METHOD  
Stability for  
product types:  
MMU 0102  
MMA 0204  
MMB 0207  
10 to 221k  
10 to 332 k  
10 to 1 M  
1to < 10   
1to < 10   
1to < 10   
< 1   
< 1   
< 1   
> 221 k  
> 332 k  
> 1 M  
Solder bath  
method; SnPb40;  
non-activated flux;  
(215 3) °C;  
Good tinning (95 % covered); no visible damage  
(3 0.3) s  
Solder bath  
method;  
4.17.2  
58 (Td)  
Solderability  
SnAg3Cu0.5 or  
SnAg3.5;  
Good tinning (95 % covered); no visible damage  
non-activated flux;  
(235 3) °C;  
(2 0.2) s  
Solder bath  
method;  
(260 5) °C;  
(10 1) s  
(0.05 %  
(0.02 %  
R
R
+ 10 m  
)
)
(0.1 %  
R
+ 10 m  
)
(0.25 %  
(0.05 %  
R
R
+ 10 m  
+ 10 m  
)
)
(0.25 % R + 10 m)  
Resistance to  
soldering heat  
4.18.2  
4.29  
58 (Td)  
45 (XA)  
Reflow method 2  
(IR/forced gas  
convection);  
(260 5) °C;  
(10 1) s  
+ 10 m  
(0.05 %  
R
+ 10 m  
)
(0.1 % R + 10 m)  
Component  
solvent  
Isopropyl alcohol;  
50 C; method 2  
No visible damage  
resistance  
Solvent  
Isopropyl alcohol;  
Marking legible;  
no visible damage  
4.30  
4.32  
45 (XA)  
resistance of 50 °C; method 1,  
marking  
toothbrush  
Shear  
(adhesion)  
21 (Ue3)  
45 N  
No visible damage  
Substrate  
bending  
Depth 2 mm,  
3 times  
No visible damage, no open circuit in bent position  
4.33  
4.7  
21 (Ue1)  
-
(0.05 % R + 5 m) (1)  
Voltage proof URMS = Uins; 60 s  
No flashover or breakdown  
IEC 60695-11-5 (2)  
,
4.35  
-
Flammability needle flame test;  
10 s  
No burning after 30 s  
Notes  
(1) Special requirements apply to MICRO-MELF, MMU 0102:  
- R < 100  (0.25 % R +10 m).  
- 100   R 221 k 0.1 % R.  
- 221 k< R: 0.25 % R.  
(2) The quoted IEC standards are also released as EN standards with the same number and identical contents.  
www.vishay.com  
24  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
Document Number: 28713  
Revision: 05-Mar-12  
THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000  
MMU 0102, MMA 0204, MMB 0207 - Professional  
Professional MELF Resistors  
Vishay Beyschlag  
Last Digit of 12NC Indicating Resistance Decade  
HISTORICAL 12NC INFORMATION  
• The resistors had a 12-digit numeric code starting with  
2312.  
RESISTANCE DECADE  
LAST DIGIT  
0.1 to 0.999   
1 to 9.99   
7
8
9
1
2
3
4
5
6
• The subsequent 4 digits indicated the resistor type,  
specification and packaging; see the 12NC table.  
10 to 99.9   
100 to 999   
1 kto 9.99 k  
10 kto 99.9 k  
100 kto 999 k  
1 Mto 9.99 M  
10 Mto 99.9 M  
• The remaining 4 digits indicated the resistance value:  
- The first 3 digits indicated the resistance value.  
- The last digit indicated the resistance decade in  
accordance with the 12NC Indicating Resistance Decade  
table.  
Historical 12NC Example  
The 12NC of a MMU 0102 resistor, value 47 kand TCR 50  
with 1 % tolerance, supplied in blister tape of 3000 units per  
reel was: 2312 165 14703.  
HISTORICAL 12NC - Resistor type and packaging  
2312... .....  
DESCRIPTION  
BLISTER TAPE ON REEL  
BULK CASE  
BL  
B0  
M8  
8000 UNITS  
TYPE  
TCR  
TOL.  
3000 UNITS  
10 000 UNITS  
MMU 0102  
5 %  
2 %  
165 3....  
165 2....  
165 1....  
165 5....  
166 1....  
166 5....  
165 90001  
175 3....  
175 2....  
175 1....  
175 5....  
176 1....  
176 5....  
175 90001  
060 3....  
060 2....  
060 1....  
060 5....  
061 1....  
061 5....  
060 90001  
50 ppm/K  
1 %  
0.5 %  
1 %  
25 ppm/K  
0.5 %  
Jumper  
BL  
B0  
M3  
3000 UNITS  
TCR  
TYPE  
TOL.  
3000 UNITS  
10 000 UNITS  
MMA 0204  
5 %  
1 %  
155 3....  
155 1....  
155 5....  
156 1....  
156 5....  
155 90001  
145 3....  
145 1....  
145 5....  
146 1....  
146 5....  
145 90001  
040 3....  
040 1....  
040 5....  
041 1....  
041 5....  
040 90001  
50 ppm/K  
0.5 %  
1 %  
25 ppm/K  
0.5 %  
Jumper  
B2  
B7  
TCR  
TYPE  
TOL.  
2000 UNITS  
7000 UNITS  
MMB 0207  
100 ppm/K  
5 %  
5 %  
2 %  
195 3....  
195 3....  
195 2....  
195 1....  
196 5....  
195 90001  
185 3....  
185 3....  
185 2....  
185 1....  
186 5....  
185 90001  
50 ppm/K  
1 %  
25 ppm/K  
0.5 %  
Jumper  
Document Number: 28713  
Revision: 05-Mar-12  
For technical questions, contact: melf@vishay.com  
This document is subject to change without notice.  
www.vishay.com  
25  
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  
liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special,  
consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular  
purpose, non-infringement and merchantability.  
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  
about the suitability of products for a particular application. It is the customer’s responsibility to validate that a particular  
product with the properties described in the product specification is suitable for use in a particular application. Parameters  
provided in datasheets and/or specifications may vary in different applications and performance may vary over time. All  
operating 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.  
Except as expressly indicated in writing, Vishay products are not designed for use in medical, life-saving, or life-sustaining  
applications or for any other application in which the failure of the Vishay product could result in personal injury or death.  
Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please  
contact authorized Vishay personnel to obtain written terms and conditions regarding products designed for such applications.  
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. Product names and markings noted herein may be trademarks of their respective owners.  
Material Category Policy  
Vishay Intertechnology, Inc. hereby certifies that all its products that are identified as RoHS-Compliant fulfill the  
definitions and restrictions defined under Directive 2011/65/EU of The European Parliament and of the Council  
of June 8, 2011 on the restriction of the use of certain hazardous substances in electrical and electronic equipment  
(EEE) - recast, unless otherwise specified as non-compliant.  
Please note that some Vishay documentation may still make reference to RoHS Directive 2002/95/EC. We confirm that  
all the products identified as being compliant to Directive 2002/95/EC conform to Directive 2011/65/EU.  
Vishay Intertechnology, Inc. hereby certifies that all its products that are identified as Halogen-Free follow Halogen-Free  
requirements as per JEDEC JS709A standards. Please note that some Vishay documentation may still make reference  
to the IEC 61249-2-21 definition. We confirm that all the products identified as being compliant to IEC 61249-2-21  
conform to JEDEC JS709A standards.  
Revision: 02-Oct-12  
Document Number: 91000  
1

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