ROHM MNR34

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MNR34
Resistors
Chip resistor networks
MNR34 (3216×4 size)
!Features
1) Convex electrodes
Easy to check the fillet after soldering is finished.
2) Compatible with a wide range of mounting equipment.
Squared corners make it excellent for mounting using image recognition devices.
3) High-density mounting
Can be mounted even more densely than four 3216 chips (MCR18). Also, the number of parts and cost of mounting
have been reduced.
4) ROHM resistors have approved ISO-9001 certification.
Design and specifications are subject to change without notice. Carefully check the specification sheet supplied with
the product before using or ordering it.
!Ratings
Item
Rated power
Conditions
Specifications
Power must be derated according to the power derating curve in
Figure 1 when ambient temperature exceeds 70°C.
0.125W (1 / 8W)
at 70°C
100
POWER LOAD (%)
80
60
40
20
0
−55
0
70
100 125
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= P×R
P: Rated power (W)
R: Nominal resistance (Ω)
Nominal resistance
Operating temperature
Limiting element voltage
See Table 1.
−55°C~+125°C
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200V
Data downloaded from http://www.angliac.com - the website of Anglia - tel: 01945 474747
MNR34
Resistors
Jumper type
Table 1
Max. 50mΩ
Resistance
Resistance range
(Ω)
Resistance tolerance
2A
Rated current
J (±5%)
Operating temperature −55°C~+125°C
10≤R≤1M
Resistance temperature coefficient
(ppm / °C)
±200
(E24)
•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.
!Characteristics
Guaranteed value
Resistor type
Jumper type
Item
J : ±5%
Resistance
Max. 50mΩ
Variation of resistance
with temperature
See Table.1
± (2.0%+0.1Ω)
Overload
Max. 50mΩ
A new uniform coating of minimum of
95% of the surface being immersed
and no soldering damage.
Solderability
Resistance to
soldering heat
Rapid change of
temperature
JIS C 5201-1 4.5
JIS C 5201-1 4.8
Measurement : −55 / +25 / +125°C
JIS C 5201-1 4.13
Rated voltage (current) ×2.5, 2s.
Limiting Element Voltage×2 : 400V
JIS C 5201-1 4.17
Rosin·Ethanol (25%WT)
Soldering condition : 235±5°C
Duration of immersion : 2.0±0.5s.
± (1.0%+0.05Ω)
Max. 50mΩ
No remarkable abnormality on the appearance.
JIS C 5201-1 4.18
Soldering condition : 260±5°C
Duration of immersion : 10±1s.
± (1.0%+0.05Ω)
Max. 50mΩ
JIS C 5201-1 4.19
Test temp. : −55°C~+125°C 5cyc
± (3.0%+0.1Ω)
Max. 50mΩ
JIS C 5201-1 4.24
40°C, 93%RH
Test time : 1,000h~1,048h
± (3.0%+0.1Ω)
Max. 50mΩ
JIS C 5201-1 4.25.1
Rated voltage (current), 70°C
1.5h : ON − 0.5h : OFF
Test time : 1,000h~1,048h
± (3.0%+0.1Ω)
Max. 50mΩ
JIS C 5201-1 4.25.3
125°C
Test time : 1,000h~1,048h
± (1.0%+0.05Ω)
Max. 50mΩ
JIS C 5201-1 4.29
23±5°C, Immersion cleaning, 5±0.5min.
Solvent : 2-propanol
Damp heat, steady state
Endurance at 70°C
Endurance
Resistance to solvent
Bend strength of
the end face plating
Test conditions (JIS C 5201-1)
Max. 50mΩ
± (1.0%+0.05Ω)
Without mechanical damage such as breaks.
JIS C 5201-1 4.33
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Data downloaded from http://www.angliac.com - the website of Anglia - tel: 01945 474747
MNR34
Resistors
0.5±0.3
5.2±0.4
∗1.27
Max.0.5
!External dimensions (Units : mm)
B
6
Cross section A-A'
1
A103
A
3.1±0.2
5
A'
Cross section B-B'
6
1
5
0.55±0.1
B'
0.5±0.2
1.0±0.2
2
3
Material
No.
4
1
Thick dielectric glaze of ruthenium
(only silver used for jumper)
2
Thick film of silver for primary electrode
3
Nickel-coated secondary electrode
4
External electrode coated with Sn/Pb or Sn
5
Alumina substrate
6
Overcoating
0.8±0.2
∗ Pitch of the upper electrode.
!Equivalent circuit
R1
R2
R3
R4
R1=R2=R3=R4
!Packaging
Reel
Taping
P2
E
B0
02
04
06
08
06
D
04
B
02
A
08
W
F
φD
0
P0
A0
K
P1
C
(Units: mm)
Label
EIAJ ET-7200A compliant
W
F
E
A0
B0
12.0±0.3
5.5±0.05
1.75±0.1
3.4±0.1
5.6±0.1
D0
(Units: mm)
A
φ180
B
0
−3
φ60
+1
0
C
D
13±0.3
φ13±0.2
φ1.5
+0.1
0
P0
P1
P2
K
4.0±0.1
4.0±0.1
2.0±0.05
1.0±0.1
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MNR34
Resistors
!Product designation
Part No.
Packaging / Processing specifications
Code
J5
Packaging
Taping
Part No.
MNR34
Circuit
configuration
code
Package style
Embossed reel
Resistance
tolerance
J
AB MNR04/12/14/32/34
Nominal
resistance
±5%
3-digit IEC coding system
JIS C 5201-1 4.5
SAMPLE SIZE : n=40pcs
20°C 65%RH
2.0
0
−2.0
−4.0
−6.0
10
100
1k
10k
100k
1M
300
4.0
2.0
100
0
−100
0
−2.0
−200
−4.0
−300
−400
10
100
1k
10k
100k
−6.0
1M
100
1k
10k
100k
RESISTANCE (Ω)
RESISTANCE (Ω)
Fig.2 Resistance
Fig.3 Variation resistance with
temperature
Fig.4 Overload
3.0
JIS C 5201-1 4.18
SAMPLE SIZE : n=20pcs
SOLDERING CONDITION
: 260°C 10s
∆R/R (%)
2.0
0
0
−1.0
−1.0
−2.0
−2.0
−2.0
−4.0
100
1k
10k
100k
1M
−3.0
JIS C 5201-1 4.24
SAMPLE SIZE : n=20pcs
40°C 93%RH WITH NO LOAD
1,000h
4.0
1.0
0
1M
6.0
JIS C 5201-1 4.19
SAMPLE SIZE : n=20pcs
−55°C / 125°C 5cyc
2.0
1.0
10
10
RESISTANCE (Ω)
2.0
−3.0
JIS C 5201-1 4.13
SAMPLE SIZE : n=20pcs
RATED VOLTAGE × 2.5TIMES 2s
LIMITING ELEMENT
VOLTAGE×2 : 400V
200
3.0
∆R/R (%)
6.0
JIS C 5201-1 4.8
SAMPLE SIZE : n=20pcs
25°C / −55°C 25°C / 125°C
∆R/R (%)
DC RESISTANCE (%)
4.0
400
∆R/R (%)
6.0
TEMPERATURE COEFFICIENT (ppm / °C)
!Electrical characteristics
10
100
1k
10k
100k
RESISTANCE (Ω)
RESISTANCE (Ω)
Fig.5 Resistance to soldering heat
Fig.6 Rapid change of
temperature
1M
−6.0
10
100
1k
10k
100k
1M
RESISTANCE (Ω)
Fig.7 Damp heat, steady state
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Data downloaded from http://www.angliac.com - the website of Anglia - tel: 01945 474747
MNR34
Resistors
4.0
2.0
∆R/R (%)
2.0
0
0
−2.0
−2.0
−4.0
−4.0
−6.0
−6.0
10
100
1k
10k
100k
1M
JIS C 5201-1 4.25.3
SAMPLE SIZE : n=20pcs
125°C WITH NO LOAD 1,000h
JIS C 5201-1 4.29
SAMPLE SIZE : n=20pcs
IPA, 5min.
1.5
RESISTANCE CHANGE (%)
JIS C 5201-1 4.25.1
SAMPLE SIZE : n=20pcs
70°C 1,000h
OVERLOAD : THE RATED
VOLTAGE
4.0
∆R/R (%)
2.0
6.0
6.0
1.0
0.5
0
−0.5
−1.0
−1.5
10
100
1k
10k
100k
1M
−2.0
10
100
1k
10k
100k
1M
RESISTANCE (Ω)
RESISTANCE (Ω)
RESISTANCE (Ω)
Fig.8 Endurance at 70°C
Fig.9 Endurance
Fig.10 Resistance to solvents
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