MURATA IRA-E420

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Pyroelectric Infrared
Sensors
Murata
Manufacturing Co., Ltd.
Cat.No.S21E-4
S21E.pdf 05.11.16
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CONTENTS
S21E.pdf 05.11.16
HIC® in this catalog are the trademarks of
Murata Manufacturing Co., Ltd.
Part Numbering
1
1
Dual Type Pyroelectric Infrared Sensor IRA-E700 Series
2
2
Quad Type Pyroelectric Infrared Sensor IRA-E900 Series
3
3
Quad Type Pyroelectric Infrared Sensor IRA-E940ST1 Series
4
4
Temperature Compensation Single Type Pyroelectric Infrared Sensor
IRA-E420 Series
Pyroelectric Infrared Sensor IRA Series Characteristics Data
5
7
Fresnel Lens
10
Notice
13
Recycled Paper
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S21E.pdf 05.11.16
o Part Numbering
Pyroelectric Infrared Sensor
(Part Number)
IR
A-
E710ST
q
w
e
1
r
qProduct ID
wType
eCharacteristics
rIndividual Specification Code
* Part Number shows only an example which might be different
from actual part number.
* "eCharacteristics" and "rIndividual Specification Code" might
have different digit number from actual Part Number.
1
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1
Pyroelectric Infrared Sensors
Dual Type Pyroelectric Infrared Sensor IRA-E700 Series
Pyroelectric infrared sensors, IRA series, exhibit high
sensitivity and reliable performance made possible by
Murata's ceramic technology and Hybrid IC technique
expertise developed over many years.
IRA-E700 series realizes cost benefits and higher
performance with a new infrared sensor element of
improved material parameters and fabrication.
IRA-E700 series is available in two types.
IRA-E710ST0 has enhanced immunity to RFI (Radio
Frequency Interference).
! Features
! Dimensions & Circuit Diagrams
4.7±0.1
45°
3.7±0.1
9.2
1. High sensitivity and excellent S/N ratio
2. High stability to temperature changes
3. Slight movement can be detectable.
4. High immunity to external noise (Vibration, RFI etc.)
5. Custom design is available.
6. Higher in cost-performance
! Applications
45°
φ0.45
±0.05
IRA-E710ST0
4.3mVp-p (Typ.)
Field of View
θ1=θ2=45°
Optical Filter
5µm long-pass
Electrode
(2.0Z1.0mm)Z2
d
g
2 to 15V
Operating Temperature
-40 to 70D
Storage Temperature
-40 to 85D
s
General Tolerance : ±0.2
(in mm)
Pyroelectric element
2.0
Supply Voltage
∗
IRA-E700ST0
05
0.
0±
Part Number
∗Specified on the bottom of stem
5.
!Rating (25˚C)
Responsivity (500K, 1Hz, 1Hz)
11.0±2
3.6
4.7
1. Security
2. Lighting appliances
3. Household or other appliances
1.0 1.0 1.0
(in mm)
d
IRA-E700ST0
s
RG
g
IRA-E710ST0
d
s
RG
g
2
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Pyroelectric Infrared Sensors
Quad Type Pyroelectric Infrared Sensor IRA-E900 Series
2
Pyroelectric infrared sensors, IRA series, exhibit high
sensitivity and reliable performance made possible by
Murata's ceramic technology and Hybrid IC technique
expertise developed over many years.
IRA-E900 series realizes cost benefits and higher
performance with a new infrared sensor element of
improved material parameters and fabrication.
IRA-E900 series is available in two types.
IRA-E910ST1 has enhanced immunity to RFI (Radio
Frequency Interference).
! Features
! Dimensions & Circuit Diagrams
4.7±0.1
41°
9.2
1. High sensitivity and excellent S/N ratio
2. High stability to temperature changes
3. Slight movement can be detectable.
4. Non directional sensing with wide F.O.V.
5. High immunity to external noise (Vibration, RFI etc.)
6. Custom design is available.
7. Higher in cost-performance
41°
1. Security
2. Lighting appliances
3. Household or other appliances
φ0.45
±0.05
11.0±2
3.6
4.7
! Applications
∗Specified on the bottom of stem
5.08±0.05∗
! Rating (25˚C)
Responsivity (500K, 1Hz, 1Hz)
Field of View
IRA-E900ST1
s
General Tolerance : ±0.2
g
3.3mVp-p (Typ.)
(in mm)
θ1=θ2=41°
Optical Filter
5µm long-pass
Electrode
(1.1Z1.1mm)Z4
Supply Voltage
d
IRA-E910ST1
Pyroelectric element
1.1 1.0 1.1
Part Number
3 to 15V
Operating Temperature
-25 to 55D
Storage Temperature
-40 to 85D
(in mm)
1.1 1.0 1.1
d
IRA-E900ST1
W
Y
Y
W
W
Y
Y
W
Y
W
W
Y
Y
W
W
Y
s
RG
g
IRA-E910ST1
d
W
Y
Y
W
W
Y
Y
W
Y
W
W
Y
Y
W
W
Y
s
RG
g
3
S21E.pdf 05.11.16
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Pyroelectric Infrared Sensors
Quad Type Pyroelectric Infrared Sensor IRA-E940ST1 Series
! Features
! Dimensions & Circuit Diagrams
4.7±0.1
50°
9.2
1. High sensitivity and excellent S/N ratio
2. High stability to temperature changes
3. High immunity to external noise (Vibration, RFI etc.)
4. Higher in cost-performance
5. Custom design is available.
! Applications
55°
3.6
4.7
1. Security
2. Lighting appliances
3. Household or other appliances
φ0.45
±0.05
11.0±2
∗Specified on the bottom of stem
! Rating (25˚C)
∗
Part Number
IRA-E940ST1
Responsivity (500K, 1Hz, 1Hz)
3.3mVp-p (Typ.)
Field of View
θ1=55°, θ2=50°
Optical Filter
5µm long-pass
Electrode
Supply Voltage
5.08±0.05
s1 d
g s2
General Tolerance : ±0.2
(in mm)
(1.35Z1.0mm)Z4
2 to 15V
Operating Temperature
-25 to 55D
Storage Temperature
-40 to 85D
Pyroelectric element
(Y) W
Y (W)
(Y) W
Y (W)
1.35 0.3 1.35
3
Pyroelectric infrared sensors, IRA series, exhibit high
sensitivity and reliable performance made possible by
Murata's ceramic technology and Hybrid IC technique
expertise developed over many years.
IRA-E940ST1 realizes cost benefits and higher performance
with a new infrared sensor element of improved material
parameters and fabrication.
IRA-E940ST1 which has quad elements and 2 outputs will
detect the human body more correctly with OR/AND logic
circuit.
(in mm)
1.0 0.8 1.0
d
RG
s1
g
RG
s2
4
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S21E.pdf 05.11.16
Pyroelectric Infrared Sensors
Temperature Compensation Single Type Pyroelectric Infrared Sensor IRA-E420 Series
Single type pyroelectric infrared sensors IRA-E420 series
have a temperature compensation element.
They are suitable for flame detection and gas detection.
! Features
1. High stability against abrupt ambient temperature changes
2. High immunity to external noise (Vibration, RFI etc.)
3. Custom design is available with varying optical filter.
4
! Applications
Optical Filter
Applications
Silicon
1-15µm infrared detection
IRA-E420QW1
4.3µm band-pass
Flame detection
IRA-E420SW1
4.45µm band-pass
Flame detection
Part Number
IRA-E420S1
! Dimensions & Circuit Diagrams
(IRA-E420S1, IRA-E420QW1)
(IRA-E420SW1)
1.5 max.
2.4±0.1
3.0±0.1
9.2
9.2
17°
17°
11.0±2
ø0.45±0.05
5.08±0.05∗
d
s
4.5
11±2
ø0.45
±0.05
3.6
3.6
4.9
50°
5.08±0.05
∗
∗Specified on the bottom of stem
∗Specified on the bottom of stem
d
General Tolerance : ±0.2
(in mm)
g
s
g
General Tolerance : ±0.2
(in mm)
Pyroelectric element
1.8
Pyroelectric element
1.6
(in mm)
(in mm)
d
RG
s
g
5
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S21E.pdf 05.11.16
! Rating (25˚C)
Part Number
Responsivity (500K, 1Hz, 1Hz)
IRA-E420S1
IRA-E420QW1
IRA-E420SW1
3.4mVp-p (Typ.)
1.3mVp-p (Typ.)*
0.45mVp-p (Typ.)
4.3µm band-pass
4.45µm band-pass
Optical Filter
Silicon
3 to 15V
Supply Voltage
Storage Temperature
* 700K, 5Hz, 1Hz
4
6
ø1.8mm
ø1.6mm
Electrode
Operating Temperature
θ1=θ2=50°
θ1=θ2=17°
Field of View
-25 to 70D
-25 to 55D
-30 to 100D
-25 to 70D
S21E.pdf 05.11.16
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Pyroelectric Infrared Sensor IRA Series Characteristics Data
! Spectral Response of Window Materials
Wave length (µm)
2.5
3.0
4.0
5.0
6.0
7.0
8.0
10.0
12.0
100
5µm Long-Pass Filter
80
Transmittance (%)
4.3µm Band-Pass Filter
60
40
Silicon Filter
20
7µm Long-Pass Filter
4
0
4000
3500
3000
2500
2000
1800
1600
1400
1200
1000
800
Wave number (cm-1)
! Frequency Characteristics
Relative Responsivity (RV)
10
1
1.0
10
Chopping Frequency (Hz)
7
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Pyroelectric Infrared Sensor IRA Series Characteristics Data
! Test Method of Sensitivity
Lock-in Amplifier (1Hz)
140mm
W5V
d
Black Body
47kΩ
s
500K*1
W
22µF
g
Mechanical Chopper
1Hz*1
Infrared Sensor
Oscilloscope
Mechanical Chopper
Black Body
*1
IRA-E420QW1
700K
5Hz
IRA-E420SW1
400K
2.5Hz
IRA-E700/E900 Series
500K
1Hz
4
! Typical Application Circuit (Human Detection)
3 Terminal Regulater
78L05
B102K
D
LM358
120k
S
g
100k
1
120k
W 4.7µ
16V
B102K
B102K
10M
B222K
1S184
330k
3.3µ
16V 100k
W
100k
260k
B222K
220k
10M
4
2
1S184
NJM
2903M
R
6
100k
LM358
330k
B102K
220k
8
100k 2SD596
10µ
16V
W10µ
16V
C
W
1
µPD5555G
W 100µ
W 100µ
16V
16V
Relay
1k
5
B103K
GND
TH=1.1ZC (µF) Z R (MΩ) second
8
Photo Coupler
3
7
W
9Y15
100k
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Pyroelectric Infrared Sensor IRA Series Characteristics Data
! Reliability Test
IRA-E700 series, IRA-E900 series
100D for 500 hrs.
Low Temperature
Y40D for 500 hrs.
Humidity
60D, 95% RH for 500 hrs.
After test completion, leave for three hours in
normal humidity temperature conditions, and
then measure.
20 times of following cycle.
Heat Cycle
Y25D, 30 min.eRoom temp., 30 min.h
gRoom temp., 30 min.f55D, 30 min.
Apply vibration of amplitude of 1.5mm with 10 to 55Hz band to each of 3
Vibration
perpendicular directions for 60 min.
Apply shock of 100G sinewave by standard shock tester to each of 3
Shock
perpendicular directions.
Soldering Heat
Immerse up to 3.0mm from can case in solder bath of 260T5D for 10T1 s.
Conform to MIL-STD-202F chapter 112D, condition D.
Hermetic Sealing
Criteria
Test Conditions
Item
High Temperature
Immerse in fluorocarbon bath (FC-40) of 125T5D for 20 s.
1. External appearance:
No significant damage
2. Sensitivity:
Tolerance within 20% deviation from original
value
3. Noise:
Maximum tolerance W100mV of original value
No generation of bubbles
4
IRA-E420 series
100D for 500 hrs.
Low Temperature
Y30D for 500 hrs.
Humidity
60D, 95% RH for 500 hrs.
20 times of following cycle.
Heat Cycle
Y25D, 30 min.eRoom temp., 30 min.h
gRoom temp., 30 min.f55D, 30 min.
Apply vibration of amplitude of 1.5mm with 10 to 55Hz band to each of 3
Vibration
perpendicular directions for 60 min.
Apply shock of 100G sinewave by standard shock tester to each of 3
Shock
Soldering Heat
perpendicular directions.
Immerse up to 3.0mm from can case in solder bath of 260T5˚C for 10T1 s.
Conform to MIL-STD-202F chapter 112D, condition D.
Hermetic Sealing
Criteria
Test Conditions
Item
High Temperature
Immerse in fluorocarbon bath (FC-40) of 125T5D for 20 s.
After test completion, leave for three hours in
normal humidity temperature conditions, and
then measure.
1. External appearance:
No significant damage
2. Sensitivity:
Tolerance within 20% deviation from original
value
3. Noise:
Maximum tolerance W100mV of original value
No generation of bubbles
9
S21E.pdf 05.11.16
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Pyroelectric Infrared Sensors/Fresnel Lens
16.3
E'
m
3.0
C
C
C
B
E
D
A
D'
B' C'
PPGI0601
2.0
B
1.0
D
B
D
A
E
11.64 R
16.0
6.4
5.0
3.64
B
B' A
30°
1.0
E, E'
0
C'
Cross-Sectional View
1.0
2.0
3.0
4.0 5.0 m
C'
3.0
2.24
3.60
C
C'
22.5°
A
D'
B'
D'
B'
E'
2.0
φ20.0
φ21.0
D, D'
3.0
Vertical Area 2.0
Horizontal Area 0
1.0
4
m
4.0
1.0
2.0
3.0
4.0 5.0 m
(in mm)
PPGI0902
Horizontal Area
Sensor
Vertical Area
7.7m
21.5
9m
8
10
44.5
2m
R
29.6
Sensor
10m
1.6m
3.5m
9m
51.5
56.5
7.7m
(in mm)
29.6R
Lens plane
10
0.7max.
1m
12°
10m
S21E.pdf 05.11.16
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Pyroelectric Infrared Sensors/Fresnel Lens
PPGI0626
φ23T0.2
12.9SR
SR
Pyroelectric
element
A
3
12
.1
φ19.4
2
φ21.4
B
C
3.6
6
3
(in mm)
Detection area on the floor
B : 60° pitch
C : 30° pitch
4
0.5m
2.5m
Y
16.5
3 (m)
Y
C
C1
C2
2.2m
2
C12
B1
C3
B
C11
C10
C4
1
Z
A
X
0.8m
B2
0
B6
1
B3
B
B5
C9
C5
2
B4
C6
3
C
C8
C7
Y
A : 0°
B : 21.8°
C : 48°
IML-0635
6m
Tab
(4.5)
13º
5m
1.15
4.0
5.5
R4.8
5.2
5.7
1) Insert a sensor into Fresnel lens like each tab is overlapped.
(In case there are two tabs on Fresnel lens, the field of view is
determined by your choice (TabA or B on Fresnel lens).
Please see following page(s) for more details to see which
characteristic of field of view is preferable for your application.)
2) Push the sensor into Fresnel lens until the top face of sensor
reaches to the stopper inside Fresnel lens.
3) Please prepare a housing yourself that is put onto Fresnel lens
as shown in FigureA. The hatching area shown in Figure A,
must be obscured by the housing in order to prevent misdetection. Unless otherwise unexpected infrared ray comes
though the hatching area.
(in mm)
General tolerance : ±0.2
0m
1.8m
10.8m
Figure A
2m
35º
9.15
Housing
35º
Pyro-Element
(4.35)
3.4
4.35
8.65
4.5
Step
3.0
1.15
5.7
13º
ø8.2
ø9.0
0m
2m
Vertical
6m
Horizontal
*Assembled with Murata sensor IRA-700 series
11
S21E.pdf 05.11.16
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Pyroelectric Infrared Sensors/Fresnel Lens
IML-0636
0.5
0.5
Tab
13º
ø8.2
ø9.0
(4.5)
4m
13º
5m
3m
0m
1) Insert a sensor into Fresnel lens like each tab is overlapped.
(In case there are two tabs on Fresnel lens, the field of view is
determined by your choice (TabA or B on Fresnel lens).
Please see following page(s) for more details to see which
characteristic of field of view is preferable for your application.)
2) Push the sensor into Fresnel lens until the top face of sensor
reaches to the stopper inside Fresnel lens.
3) Please prepare a housing yourself that is put onto Fresnel lens as
shown in FigureA. The hatching area shown in Figure A, must be
obscured by the housing in order to prevent mis-detection. Unless
otherwise unexpected infrared ray comes though the hatching area.
4
0m
19.3º
Figure A
Focal point (Pyro-Element)
19.3º
19.3º
5.54m
ø10.4
19.3º
6.6m
Housing
9.15
(4.35)
0.5
3.4
4.5
8.65
Step
3m
Vertical
4m
Horizontal
*Assembled with Murata sensor IRA-700 series
(in mm)
General tolerance : ±0.2
IML-0637
0.5
0.5
Tab
13º
ø8.2
ø9.0
(4.5)
13º
5m
5m
2m
2m
0m
Figure A
Focal point (Pyro-Element)
1) Insert a sensor into Fresnel lens like each tab is overlapped.
(In case there are two tabs on Fresnel lens, the field of view is
determined by your choice (TabA or B on Fresnel lens).
Please see following page(s) for more details to see which
characteristic of field of view is preferable for your application.)
2) Push the sensor into Fresnel lens until the top face of sensor
reaches to the stopper inside Fresnel lens.
3) Please prepare a housing yourself that is put onto Fresnel lens as
shown in FigureA. The hatching area shown in Figure A, must be
obscured by the housing in order to prevent mis-detection. Unless
otherwise unexpected infrared ray comes though the hatching area.
2m
1.8m
ø10.4
2.7m
Housing
9.15
(4.35)
0.5
3.4
4.5
8.65
Step
0m
2m
Vertical
Horizontal
*Assembled with Murata sensor IRA-700 series
(in mm)
General tolerance : ±0.2
IML-0638
3m
6.11m
3m
42°
Tab
13º
ø8.2
ø9.0
(4.5)
13º
0m
4.91m
Pyro-Element
R4.8
1.15
4.0
5.5
5.7
3.0
1.15
5.2
5.7
Housing
9.15
(4.35)
3.4
4.35
8.65
4.5
Step
42°
3m
Figure A
1) Insert a sensor into Fresnel lens like each tab is overlapped.
(In case there are two tabs on Fresnel lens, the field of view is
determined by your choice (TabA or B on Fresnel lens).
Please see following page(s) for more details to see which
characteristic of field of view is preferable for your application.)
2) Push the sensor into Fresnel lens until the top face of sensor
reaches to the stopper inside Fresnel lens.
3) Please prepare a housing yourself that is put onto Fresnel lens
as shown in FigureA. The hatching area shown in Figure A,
must be obscured by the housing in order to prevent misdetection. Unless otherwise unexpected infrared ray comes
though the hatching area.
(in mm)
General tolerance : ±0.2
On the Floor
3m
Vertical
0m
3m
Vertical
Horizontal
45.5°
45.5°
Horizontal
Pyroelectric Element
Assembled with Murata sensor IRA-700 Series.
Freshel lens are available upon request.
12
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S21E.pdf 05.11.16
Notice
! Notice
1. Caution (Design)
(1) Please make sure that your product has been evaluated
and confirmed against your specifications when our
product is mounted to your product.
(2) Be sure to provide an appropriate fail-safe function on
your product to prevent a second damage that may be
caused by the abnormal function or the failure of our
product.
(3) In case of outdoor use, suitable optical filter and water
and humidity proof structure should be applied.
(4) To prevent failure or malfunction, please use a stabilized
power supply.
(5) Please avoid using the sensor in the following conditions
because it may cause failure or malfunction.
(a) in such a fluid as water, alcohol etc. corrosive gas
(SO2, Cl2, NOX etc.) or sea breeze
(b) in high humidity
(c) in a place exposed directly to sunlight or headlights of
automobile
(d) in a place exposed to rapid ambient temperature
change
(e) in a place exposed directly to an air-conditioner or
heat vent
(f) strong vibrations
(g) in a place exposed to strong electromagnetic field
(h) in such a place where infrared ray is shaded
(i) in any other place similar to the above (a) through (h)
2. Caution (Mounting)
(1) Soldering
(a) Hand soldering should be applied.
(b) Soldering should be done quickly as following.
Temperature of soldering iron : 350˚C
Distance from can case
Period of time
1 to 3mm
Within 3 seconds per point
Over 3mm
Within 10 seconds per point
(c) Soldering flux should be rosin flux and not contain
more than 0.2wt% chlorine.
Soldering flux should be removed after soldering.
(2) Cleaning
Soldering flux should be removed after soldering.
Soldering flux may cause malfunction or degradation of
character unless sufficiently cleaned.
3. Caution (Handling and Storage)
(1) The optical filter of the sensor should not be scratched or
soiled.
(2) Strong shock should be avoided.
(3) Electrostatics and strong electromagnetic field should be
avoided.
(4) The sensor should be kept on conductive sponge.
(5) High temperature, high humidity, fluid such as water or
alcohol etc., corrosive gas (SO2, Cl2, NOX etc.) and sea
breeze should be avoided.
13
!Note Please read rating and !CAUTION (for storage, operating, rating, soldering, mounting and handling) in this PDF catalog to prevent smoking and/or burning, etc.
This catalog has only typical specifications. Therefore, you are requested to approve our product specifications or to transact the approval sheet for product specificaions before ordering.
S21E.pdf 05.11.16
Note:
1. Export Control
For customers outside Japan
Murata products should not be used or sold for use in the development, production, stockpiling or utilization of any conventional weapons or mass-destructive
weapons (nuclear weapons, chemical or biological weapons, or missiles), or any other weapons.
For customers in Japan
For products which are controlled items subject to the “Foreign Exchange and Foreign Trade Law” of Japan, the export license specified by the law is required
for export.
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2. Please contact our sales representatives or product engineers before using the products in this catalog for the applications listed below, which require especially
high reliability for the prevention of defects which might directly damage to a third party's life, body or property, or when one of our products is intended for use
in applications other than those specified in this catalog.
q Aircraft equipment
w Aerospace equipment
e Undersea equipment
r Power plant equipment
t Medical equipment
y Transportation equipment (vehicles, trains, ships, etc.)
u Traffic signal equipment
i Disaster prevention / crime prevention equipment
o Data-processing equipment
!0 Application of similar complexity and/or reliability requirements to the applications listed in the above
3. Product specifications in this catalog are as of August 2005. They are subject to change or our products in it may be discontinued without advance notice.
Please check with our sales representatives or product engineers before ordering. If there are any questions, please contact our sales representatives or
product engineers.
4. Please read rating and
CAUTION (for storage, operating, rating, soldering, mounting and handling) in this catalog to prevent smoking and/or burning, etc.
5. This catalog has only typical specifications because there is no space for detailed specifications. Therefore, please approve our product specifications or
transact the approval sheet for product specifications before ordering.
6. Please note that unless otherwise specified, we shall assume no responsibility whatsoever for any conflict or dispute that may occur in connection with the effect
of our and/or a third party's intellectual property rights and other related rights in consideration of your use of our products and/or information described or
contained in our catalogs. In this connection, no representation shall be made to the effect that any third parties are authorized to use the rights mentioned
above under licenses without our consent.
7. No ozone depleting substances (ODS) under the Montreal Protocol are used in our manufacturing process.
http://www.murata.com/
Head Office
1-10-1, Higashi Kotari, Nagaokakyo-shi, Kyoto 617-8555, Japan
Phone: 81-75-951-9111
International Division
3-29-12, Shibuya, Shibuya-ku, Tokyo 150-0002, Japan
Phone: 81-3-5469-6123 Fax: 81-3-5469-6155 E-mail: [email protected]