Compact Chip Resistor Networks
MNR02 (1005
2 size)
Features
1) Extremely small and light
Area ratio is 60% smaller than that of chip 1616 (MNR12), while weight ratio has been cut 75%.
2) High-density mounting
Can be mounted even more densely than two 1005 chips (MCR01). Also, the cost of mounting has been reduced.
3) Compatible with a wide range of mounting equipment.
Squared corners make it excellent for mounting using image recognition devices.
4) Convex electrodes
Easy to check the fillet after soldering is finished.
5) ROHM resistors have obtained ISO9001- / ISO/TS 16949- certification.
Ratings
Design and specifications are subject to change without notice. Carefully check the specification sheet before using or ordering
it.
Item
Rated power
Conditions
Power must be derated according to the power derating curve in
Figure 1 when ambient temperature exceeds 70°C.
100
80
POWER LOAD (%)
Specifications
0.063W (1 / 16W)
at 70°C
60
40
20
0
−55
0
70
100
125
155
AMBIENT TEMPERATURE (°C)
Fig.1
Rated voltage
The voltage rating is calculated by the following equation.
If the value obtained exceeds the limiting element voltage,
the voltage rating is equal to the maximum operating voltage.
E: Rated voltage (V)
E
=
Nominal resistance
Operating temperature
P×R
P: Rated power (W)
R: Nominal resistance (Ω)
See Table 1.
−55°C
to
+155°C
Limiting element voltage
25V
Jumper type
Resistance
Rated current
Operating temperature
Max. 50mΩ
1A
−55°C
to
+155°C
Table 1
Resistance tolerance
J (±5%)
Resistance range
(Ω)
10 to 1M
(E24)
Resistance temperature coefficient
(ppm /
°C)
±200
Before
using components in circuits where they will be exposed to transients such as pulse loads (short-duration, high-level loads), be certain to evaluate the
component in the mounted state. In addition, the reliability and performance of this component cannot be guaranteed if it is used with a steady state voltage that
is greater than its rated voltage.
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MNR02 (1005
2 size)
Characteristics
Items
Resistance
Variation of resistance
with temperature
Overload
A new uniform coating of minimum of
95% of the surface being immersed
and no soldering damage.
±
(1.0%+0.05Ω)
MAX.50mΩ
Guaranteed value
Resistor type
Jumper type
J :
±5%
See Table.1
±
(2.0%+0.1Ω)
MAX.50mΩ
MAX.50mΩ
Test conditions (JIS C 5201-1)
JIS C 5201-1 4.5
JIS C 5201-1 4.8
Measurement :
+25
/
+125°C
JIS C 5201-1 4.13
Rated voltage (current)
×2.5,
2s.
Limiting Element Voltage×2 : 50V
JIS C 5201-1 4.17
Rosin·Ethanol (25%WT)
Soldering condition : 235±5°C
Duration of immersion : 2.0±0.5s.
JIS C 5201-1 4.18
Soldering condition : 260±5°C
Duration of immersion : 10±1s.
JIS C 5201-1 4.19
Test temp. :
−55°C
to
+125°C
5cyc
JIS C 5201-1 4.24
40°C, 93%RH
Test time : 1,000h to 1,048h
JIS C 5201-1 4.25.1
Rated voltage (current), 70°C
1.5h : ON
−
0.5h : OFF
Test time : 1,000h to 1,048h
JIS C 5201-1 4.25.3
125°C
Test time : 1,000h to 1,048h
JIS C 5201-1 4.29
23±5°C, Immersion cleaning, 5±0.5min.
Solvent : 2-propanol
JIS C 5201-1 4.33
Data Sheet
Solderability
Resistance to
soldering heat
Rapid change of
temperature
Damp heat, steady state
No remarkable abnormality on the appearance.
±
(1.0%+0.05Ω)
±
(3.0%+0.1Ω)
MAX.50mΩ
MAX.100mΩ
±
(3.0%+0.1Ω)
Endurance at 70°C
±
(3.0%+0.1Ω)
MAX.100mΩ
Endurance
MAX.100mΩ
±
(1.0%+0.05Ω)
Resistance to solvent
±
(1.0%+0.05Ω)
MAX.50mΩ
Bend strength of
the end face plating
MAX.50mΩ
Without mechanical damage such as breaks.
Dimensions
(Unit: mm)
1.0±0.1
6
1
0.25±0.1
B
Cross section A-A'
No.
1
5
2
3
4
5
Material
Resistive element (Oxide metal thick film)
Silver thick film electrode
Nickel electrode
Sn electrode
Alumina substrate
Overcoating (Resin)
0.2±0.1
1.0±0.1
A
A'
Cross section B-B'
6
1
5
B'
+0.1
0.33
−0.05
+0.05
0.34
−0.1
0.35±0.1
2
3
4
6
0.68
Equivalent
circuit
R1
R2
R1
=
R2
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Notice
Notes
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The content specified herein is subject to change for improvement without notice.
The content specified herein is for the purpose of introducing ROHM's products (hereinafter
"Products"). If you wish to use any such Product, please be sure to refer to the specifications,
which can be obtained from ROHM upon request.
Examples of application circuits, circuit constants and any other information contained herein
illustrate the standard usage and operations of the Products. The peripheral conditions must
be taken into account when designing circuits for mass production.
Great care was taken in ensuring the accuracy of the information specified in this document.
However, should you incur any damage arising from any inaccuracy or misprint of such
information, ROHM shall bear no responsibility for such damage.
The technical information specified herein is intended only to show the typical functions of and
examples of application circuits for the Products. ROHM does not grant you, explicitly or
implicitly, any license to use or exercise intellectual property or other rights held by ROHM and
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use of such technical information.
The Products specified in this document are intended to be used with general-use electronic
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R1120A