MMU 0102, MMA 0204, MMB 0207 - Precision
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Vishay Beyschlag
Revision: 16-Sep-16
1
Document Number: 28714
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Precision Thin Film MELF Resistors
MMU 0102, MMA 0204 and MMB 0207 precision 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.
FEATURES
• Approved according to EN 140401-803
• AEC-Q200 qualified
• Advanced metal film technology
• Superior stability: class 0.05
• Intrinsic sulfur resistance
• Material categorization:
for definitions of compliance please see
www.vishay.com/doc?99912
APPLICATIONS
• Automotive
• Telecommunication
• Industrial
• Medical equipment
Note
(1)
Please refer to APPLICATION INFORMATION below
APPLICATION INFORMATION
When the resistor dissipates power, a temperature rise above the ambient temperature occurs, dependent on the thermal
resistance of the assembled resistor together with the printed circuit board. The rated dissipation applies only if the permitted
film temperature is not exceeded.
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.
TECHNICAL SPECIFICATIONS
DESCRIPTION MMU 0102 MMA 0204 MMB 0207
DIN size 0102 0204 0207
Metric size code RC2211M RC3715M RC6123M
Resistance range 22 to 332 k 10 to 511 k 15 to 1 M
Resistance tolerance ±0.5 %; ± 0.25 %; ± 0.1 % ± 0.25 %; ± 0.1 %
Temperature coefficient ± 25 ppm/K; ± 15 ppm/K
Rated dissipation, P
70
(1)
0.2 W 0.25 W 0.4 W
Operating voltage, U
max.
AC
RMS
/DC 150 V 200 V 350 V
Permissible film temperature,
F max.
(1)
125 °C
Operating temperature range
(1)
-55 °C to 125 °C
Permissible voltage against ambient (insulation):
1 min, U
ins
200 V 300 V 500 V
Failure rate: FIT
observed
0.1 x 10
-9
/h