CV
1
CV-RELAYS
AUTOMOTIVE LOW PROFILE
MICRO-ISO/MICRO-280
RELAY
Micro ISO 1c type Micro ISO 1a type
Micro 280 plug-in type Micro 280 PCB type
FEATURES
• Low profile:
22.5 mm(L)
×
15 mm(W)
×
15.7 mm(H)
.886 inch(L)
×
.591 inch(W)
×
.618 inch(H)
• Low temperature rise
Terminal temperature has been reduced
compared with using our conventional
product
• Low sound pressure level
Noise level has been reduced
approx.10dB compared with using our
conventional product.
• Wide line-up
Micro ISO/Micro 280 terminal types and
resistor and diode inside type, PCB
terminal type (Micro 280 only).
• Plastic sealed type
Plastically sealed for automatic cleaning.
SPECIFICATIONS
Contact
Remarks
* Specifications will vary with foreign standards certification ratings.
*
1
At nominal switching capacity, operating frequency: 2s ON, 2s OFF
*
2
Measurement at same location as “Initial breakdown voltage” section.
*
3
Detection current: 10mA
*
4
Excluding contact bounce time.
*
5
Half-wave pulse of sine wave: 11 ms; detection time: 10
µ
s
*
6
Half-wave pulse of sine wave: 6 ms
*
7
Detection time: 10
µ
s
*
8
Time of vibration for each direction;
X, Y, Z direction: 4 hours
*
9
Refer to 5. Usage, transport and storage condition mentioned in NOTES
*
10
Ambient temperature 125°C 257°F type is also available. Please contact us for
details.
Characteristics
Arrangement 1 Form A 1 Form C
Contact material Silver alloy
Initial contact resistance,
max. (By voltage drop 6 V
DC 1 A) 50m
Initial contact voltage drop,
max. N.O.: 0.2 V
(at 20 A switching)
N.O.: 0.2 V
(at 20 A switching)
N.C.: 0.5 V
(at 10 A switching)
Rating
Nominal
switching
capacity N.O.: 20 A 14 V DC N.O.: 20 A 14 V DC
N.C.: 10 A 14 V DC
Max. carrying
current
(14 V DC,
at 85
°
C 185
°
F)N.O.: 20 A N.O.: 20 A
N.C.: 10 A
Expected
life (min.
operation)
Mechanical
(at 120 cpm) Min. 10
6
Electrical
(at rated load) Min. 10
5
*
1
XY
Z
Max. operating speed
(at nominal switching capacity) 15cpm
Initial insulation resistance *
2
Min. 20M
(at 500 V DC)
Initial
breakdown
voltage *
3
Between open contacts 500 Vrms for 1min.
Between contacts and coil 500 Vrms for 1min.
Operate time *
4
(at nominal voltage) (at 20
°
C 68
°
F)Max. 10ms
Release time (without diode) *
4
(at nominal voltage) (at 20
°
C 68
°
F)Max. 10ms
Shock resistance Functional *
5
Min. 100 m/s
2
{10 G}
Destructive *
6
Min. 1,000 m/s
2
{100 G}
Vibration resistance Functional *
7
10 to 100 Hz,
Min.44.1 m/s
2
{4.5 G}
Destructive *
8
10 to 500 Hz,
Min.44.1 m/s
2
{4.5 G}
Conditions in case of
operation, transport and
storage *
9
(Not freezing and condensing
at low temperature)
Ambient
temp*
10
–40 to +85
°
C
–40 to +185
°
F
Humidity 25 to 85% R.H.
Unit weight Approx. 15.0g .53 oz
TYPICAL APPLICATIONS
Automotive system
Condenser fan, Wiper, Defogger, Magnet clutch, Radiator fan,
Foglamp, Auto cruise control, Horn, Heater, Air Compressor
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CV
2
ORDERING INFORMATION
AEx. CV 1 2 0 12
Note: Standard packing; Carton (Tube): 50 pcs.; Case: 200 pcs.
CV 1: 1 Form C
3: 1 Form A 1: Micro ISO plug-in type
2: Micro 280 plug-in type
3: Micro 280 PC board type
0: Standard type
1: With diode inside
2: With resistor inside
12: 12
Product name Contact arrangement Mounting classification Type classification Coil voltage, V DC
TYPES
1. Micro ISO terminal type
2. Micro 280 terminal type
COIL DATA (at 20
°
C 68
°
F)
* Other pick-up voltage types are also available. Please contact us for details.
Coil voltage (DC) Contact arrangement Mounting classification Type classification Part No.
12 V
1 Form A
Plug-in terminal
Standard type ACV31012
With diode inside type ACV31112
With resistor inside type ACV31212
1 Form C Standard type ACV11012
With diode inside type ACV11112
With resistor inside type ACV11212
Coil voltage (DC) Contact arrangement Mounting classification Type classification Part No.
12 V
1 Form A
Plug-in terminal Standard type ACV32012
With diode inside type ACV32112
With resistor inside type ACV32212
PC board terminal Standard type ACV33012
With diode inside type ACV33112
With resistor inside type ACV33212
1 Form C
Plug-in terminal Standard type ACV12012
With diode inside type ACV12112
With resistor inside type ACV12212
PC board terminal Standard type ACV13012
With diode inside type ACV13112
With resistor inside type ACV13212
Nominal voltage,
V DC Pick-up voltage,
* V DC (max.) Drop-out voltage,
V DC (min.) Coil resistance,
(
±
10%) Nominal operating current,
mA (
±
10%) Nominal operating
power, W Usable voltage
range, V DC
12 (Initial)
7.0 (Initial)
0.6 180
142.3 (with resistor) 67
100 (with resistor) 0.8
1.0 (with resistor) 10 to 16
DIMENSIONS
1. Micro ISO terminal type
*A 6.3
.248
6
.236 8
.315 3.25
.128
4.8
.189
Sealed by epoxy resin
0.8
.031
0.8
.031
22.5
.886
9
.354
15
.591
15.7
.618
11
.433
Dimension: Tolerance
Max. 1mm .039 inch:
±
0.1
±
.004
1 to 3mm .039 to .118 inch:
±
0.2
±
.008
Min. 3mm .118 inch:
±
0.3
±
.012
* Dimensions (thickness and width) of terminal specified in this catalog is measured before pre-soldering.
Intervals between terminals is measured at A surface level.
Schematic (Bottom view)
1 Form A 1 Form C
5
1
23
Including diode type,
including resistor type also available
4
5
1
23
mm inch
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CV
3
2. Micro 280 terminal type
1). Plug-in type
0.8
.031
*A
22.5
.886
2.8
.110
85
30
87 87a
86
Sealed by epoxy resin
16.2
.638
7.8
.307
15
.591
15.7
.618
11
.433
Dimension: Tolerance
Max. 1mm .039 inch:
±
0.1
±
.004
1 to 3mm .039 to .118 inch:
±
0.2
±
.008
Min. 3mm .118 inch:
±
0.3
±
.012
* Dimensions (thickness and width) of terminal specified in this catalog is measured before pre-soldering.
Intervals between terminals is measured at A surface level.
Schematic (Bottom view)
1 Form A 1 Form C
86
8587
30
Including diode type,
including resistor type also available
3086
8587A87
mm inch
2). PC board type
1
.039 2.8
.110
1
.039
*A
85
30
87 87a
86
Sealed by epoxy resin
0.8
.031
22.5
.886
3.5
.138
16.7
.657
16.2
.638
7.8
.307
15
.591
Dimension: Tolerance
Max. 1mm .039 inch:
±
0.1
±
.004
1 to 3mm .039 to .118 inch:
±
0.2
±
.008
Min. 3mm .118 inch:
±
0.3
±
.012
* Dimensions (thickness and width) of terminal specified in this catalog is measured before pre-soldering.
Intervals between terminals is measured at A surface level.
Schematic (Bottom view)
1 Form A 1 Form C
86
8587
30
Including diode type,
including resistor type also available
86
8587A87
30
REFERENCE DATA
1. Coil temperature rise
Point measured: Inside the coil
Contact carrying current: 20A
Coil applied voltage: 13.5V
2-(1). Electrical life test (Motor load)
Tested sample: ACV11212
Quantity: n = 3
Load: Inrush 30A, Steady 14A, 13.5V DC
Ambient temperature: Room temperature
Operating frequency: ON 12s, OFF 14s
Circuit:
0
30
60
90
120
150
180
55 857565
Temperature rise, °C
Ambient temperature, °C
20A
Tested sample
M M
13.5 V DC
0
2
4
6
8
10
010
Pick-up voltage
Drop-out voltage
X
X
Max.
Max.
Min.
Min.
Pick-up and drop-out voltage, V
No. of operations, × 104
Contact welding: 0 times
Miscontact: 0 times
2-(2). Electrical life (Motor load)
Tested sample: ACV31212
Quantity: n = 3
Load: Inrush 65A, Steady 14A, 14V DC
Operating frequency: ON 2s, OFF 6s
Ambient temperature: Room temperature
Circuit:
Tested sample
Motor
120W
14 V DC M0
2
4
6
8
10
010
Pick-up voltage
Drop-out voltage
Pick-up and drop-out voltage, V
No. of operations, × 104
Contact welding: 0 times
Miscontact: 0 times
X
X
Max.
Max.
Min.
Min.
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CV
4
2-(3). Electrical life (Lamp load)
Tested sample: ACV31212
Quantity: n = 5
Load: 120W, Inrush 80A, Steady 10A, 14V DC
Operating frequency: ON 2s, OFF 13s
Ambient temperature: Room temperature
Circuit:
Tested sample
120W 0
2
4
6
8
10
010
Pick-up voltage
Drop-out voltage
Pick-up and drop-out voltage, V
No. of operations, × 104
Contact welding: 0 times
Miscontact: 0 times
X
X
Max.
Max.
Min.
Min.
NOTES
1. Coil operating power
Pure DC current should be applied to the
coil. The wave form should be rectangular.
If it includes ripple, the ripple factor should
be less than 5%. However, check it with
the actual circuit since the characteristics
may be slightly different.
2. Voltage applied to coil
To ensure reliable operation, please apply
nominal voltage to the coil. Beware of the
fact that pick-up voltage and drop-out
voltage vary depending on the ambient
temperature and conditions.
3. Operating life
Operating life varies depending on the
type and load of the coil drive circuit, as
well as factors like the operating
frequency, operating phase and ambient
atmosphere, so please check with actual
equipment.
4.Soldering
We recommend the following soldering
conditions.
1) Automatic soldering
* Preheating: 100°C 212°F, within 2 mins
(PC board solder surface)
* Soldering: 260°C 500°F, within 5 s
2) Hand soldering
* Iron tip temperature: 280 to 300°C 536
to 571°F
* Soldering iron: 30 to 60W
* Soldering time: Within 5 s
5. Usage, transport and storage
conditions
1) Ambient temperature, humidity, and
atmospheric pressure during usage,
transport, and storage of the relay:
(1) Temperature:
–40 to +85°C –40 to +185°F
(2) Humidity: 5 to 85% RH
(Avoid freezing and condensation.)
The humidity range varies with the
temperature. Use within the range
indicated in the graph below.
(3) Atmospheric pressure: 86 to 106 kPa
2) Condensation
Condensation forms when there is a
sudden change in temperature under high
temperature and high humidity conditions.
Condensation will cause deterioration of
the relay insulation.
3) Freezing
Condensation or other moisture may
freeze on the relay when the
temperatures are lower than 0°C 32°F.
This causes problems such as stic king of
movable parts or operational time lags.
4) Low temperature, low humidity
environments
The plastic becomes brittle if the relay is
exposed to a low temperature, low
humidity environment for long periods of
time.
6. Others
1) If in error the relay has been dropped,
the appearance and characteristics
should be check ed bef ore use without fail.
2) Please do not use the coating material
of organic system which contains solvents
such as xylene and toluene for this
product.
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Tolerance range
(Avoid
condensation when
used at temperatures
higher than 0°C 32°F)
(Avoid freezing when
used at temperatures
lower than 0°C 32°F)
85
5
–40
–40 0
+32 +85
+185
Temperature, °C °F
Humidity, %R.H.
12/1/2001 All Rights Reserved, © Copyright Matsushita Electric Works, Ltd.
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