Measurement at same location as “Initial breakdown voltage” section.
750 Vrms for 1min. (Detection current: 10mA)
1,500 Vrms for 1min. (Detection current: 10mA)
Max. 50°C (By resistive method, nominal voltage applied to the coil, contact carrying
power: 1W/at 1.8GHz)
Max. 3ms (Approx. 1.5ms) (Nominal operating voltage applied to the coil, excluding
contact bounce time.)
Max. 2ms (Approx. 1ms) (Nominal operating voltage applied to the coil, excluding contact
bounce time.) (without diode)
Min. 500 m/s
2
{Approx. 50G} (Half-wave pulse of sine wave: 11ms; detection time: 10µs.)
Min. 1,000 m/s
2
{Approx. 100G} (Half-wave pulse of sine wave: 6ms.)
10 to 55 Hz at double amplitude of 3mm (Detection time: 10µs.)
10 to 55 Hz at double amplitude of 5mm
Min. 5×10
6
(at 180 cpm)
Min. 10
5
(0.1A 30V DC resistive load, 1W (at 1.8GHz, V.S.W.R. max. 1.3 at 20 cpm)
Ambient temperature: –40°C to +70°C
–40°F to +158°F
Humidity: 5 to 85% R.H. (Not freezing and condensing at low temperature)
20 cpm (at rated load)
Approx. 1 g
.04 oz
Mechanical
characteristics
Expected life
Conditions
Note: * The upper operation ambient temperature limit is the maximum temperature that can satisfy the coil temperature rise value. Refer to [6] AMBIENT ENVIRONMENT
in GENERAL APPLICATION GUIDELINES.
REFERENCE DATA
1. High frequency characteristics
Sample: RP1-6V
Measuring method: Impedance 50Ω
Measuring tool:
6–1.60 dia
.063 dia
6–1.00 dia
.039 dia
26–0.80 dia
.031 dia
6–2.30 dia
.090 dia
1.94
.076
4.22 9.82
.166 .387
mm
inch
PC board
• Double-sided through hole
• Material: Glass-epoxy resin
• t = 1.0mm
.039 inch
• Copper plated thickness: 35
µm
0.60
.024
18.92
.745
18.00 7.62
.709 .300
5.08
.200
Soldering
SMA connector
• V.S.W.R
3.0
2.8
• Insertion loss
5
• Isolation
100
90
Isolation, dB
N.O. (Terminal Nos. 5-6)
N.C. (Terminal Nos. 4-5)
0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0
Frequency, GHz
V.S.W.R.
2.4
2.2
2.0
1.8
1.6
1.4
1.2
1.0
0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0
Frequency, GHz
NC (Terminal Nos. 4-5)
NO (Terminal Nos. 5-6)
Insertion loss, dB
2.6
4
80
70
60
50
40
30
20
10
3
2
1
0
0
0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 2.0
Frequency, GHz
ASCTB72E 201201-T
Panasonic Corporation
Automation Controls Business Unit
industrial.panasonic.com/ac/e
RP
2. Coil temperature rise
Sample: RP1-6V; No. of samples: n = 5
Carrying current: 0.1 A
Ambient temperature: 25°C
77°F
100
90
Temperature rise,
°C
80
70
60
50
40
30
20
10
0
80
100
120
150
0
70 80
100
4
2
Max.
Max.
Min.
Min.
120
150
Coil applied voltage, %V
4
2
0
Max.
Min.
Max.
Min.
70 80
Time, ms
10
8
6
3. Operate/release time
Sample: RP1-9V; No. of samples: n = 50
• With diode
12
Operate time
Release time
• Without diode
12
Operate time
Release time
10
8
6
Time, ms
Coil applied voltage, %V
100
120
150
Coil applied voltage, %V
4. Mechanical life
Sample: RP1-5V; No. of samples: n = 8
5. Electrical life (0.1 A 30 V DC)
Sample: RP1-6V; No. of samples: n = 6
• Change of pick-up, drop-out voltage
12
Pick-up/drop-out voltage, V
• Change of pick-up/drop-out voltage
12
Pick-up/drop-out voltage, V
10
8
6
Pick-up voltage
4
2
Drop-out voltage
0
10
20
No. of operations,
×10
4
30
Max.
Min.
Max.
Min.
• Change of contact resistance
120
Contact resistance, mΩ
100
80
60
40
20
10
8
6
4
2
Pick-up voltage
Max.
Min.
Max.
Min.
Max.
Min.
50
Drop-out voltage
100
500 1,000
4
0
No. of operations,
×10
10
20
No. of operations,
×10
4
30
6. Ambient temperature characteristics
Sample: RP1-6V; No. of samples: n = 5
7. Contact resistance distribution (initial)
Sample: RP1-12V; No. of samples: n = 25
50
Rate of change, %
40
20
Pick-up
voltage
20 40 60 80
Ambient
–20 temperature,
°C
–40
Drop-out
voltage
Quantity
40
30
–40 –20
0
20
10
0
22 24 26 28 30 32 34 36 38 40
Contact resistance, mΩ
8.-(1) Influence of adjacent mounting
Sample: RP1-12V; No. of samples: n = 6
Rate of change, %
8.-(2) Influence of adjacent mounting
Sample: RP1-12V; No. of samples: n = 6
Rate of change, %
8.-(3) Influence of adjacent mounting
Sample: RP1-12V; No. of samples: n = 6
Rate of change, %
5
Pick-up voltage
0
–5
OFF
5
Pick-up voltage
0
–5
OFF
OFF
5
Pick-up voltage
0
–5
OFF
OFF
OFF
OFF
Rate of change, %
Rate of change, %
5
Drop-out voltage
0
ON
5
Drop-out voltage
0
–5
0
ON
ON
Rate of change, %
5
Drop-out voltage
0
–5
ON
ON
–5
ON
ON
0
5
10
.197
.394
Inter-relay distance, (mm,
inch)
5
10
.197
.394
Inter-relay distance, (mm,
inch)
0
5
10
.197
.394
Inter-relay distance, (mm,
inch)
Panasonic Corporation
Automation Controls Business Unit
industrial.panasonic.com/ac/e
ASCTB72E 201201-T
RP
9. High frequency switching test (1.2 GHz, 1 W)
Sample: RP1-6V; No. of samples: n = 6
Ambient temperature: 20°C
68°F
• Change of pick-up/drop-out voltage
12
Pick-up/drop-out voltage, V
• Change of contact resistance
120
Contact resistance, mΩ
100
80
60
40
Max.
Min.
20
RP relay
Trans-
mission
T1
T2
Dummy load (50Ω)
WD-2351
Transmission: RF Tranceiver
IC-1201 (ICOH)
10
8
6
Pick-up voltage
4
2
Drop-out voltage
Max.
Min.
0
5
10
4
T1
T2
0.2s
ON
OFF
0.2s
1.5s
Max.
Min.
1.5s
15
0
No. of operations,
×10
5
10
No. of operations,
×10
4
15
DIMENSIONS
(mm
inch)
CAD Data
The CAD data of the products with a
CAD Data
mark can be downloaded from: http://industrial.panasonic.com/ac/e
Standard PC board terminal
3.75
.148
4
.157
3.5
.138
(0.25)
(.010)
2.54
.100
0.5
.020
2.54
.100
0.25
.010
7.62
.300
10.6
.417
9
.354
PC board pattern (Bottom view)
5.08
.200
2.54
.100
7.62
.300
6-1 dia.
6-.039 dia.
Self-clinching terminal
3.75
.148
4
.157
3.5
.138
(0.25)
(.010)
2.54
.100
0.5
.020
2.54
.100
0.25
.010
7.62
.300
10.6
.417
9
.354
Tolerance:
±0.1
±.004
Schematic (Bottom view)
+
1 2 3
−
6 5 4
Direction indication
General tolerance:
±0.3
±.012
Deenergized condition
ASCTB72E 201201-T
Panasonic Corporation
Automation Controls Business Unit
industrial.panasonic.com/ac/e
RP
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. The nominal operating voltage
should be applied to the coil for more
than 20 ms to set/reset the latching type
relay.
2. Coil connection
When connecting coils, refer to the wiring
diagram to prevent mis-operation or
malfunction.
3. External magnetic field
Since RP relays are highly sensitive
polarized relays, their characteristics will
be affected by a strong external magnetic
field. Avoid using the relay under that
condition.
4. Packing direction
Relays are packed in a tube with the
orientation stripe (PIN NO. 1) toward the
green stopper.
Stopper (gray)
Stopper (green)
Orientation (indicates PIN No.1) stripe
5. Automatic mounting
To maintain the internal function of the
relay, the chucking pressure should
not exceed the values below.
Chucking pressure* in the direction A:
4.9 N {500 gf} or less
Chucking pressure* in the direction B:
9.8 N {1 kgf} or less
Chucking pressure* in the direction C:
9.8 N {1 kgf} or less
Please chuck the
portion.
Avoid chucking the center of the relay. In
addition, excessive chucking pressure to
the pinpoint of the relay should be
avoided.
A
(4)
(5)
(6)
For general cautions for use, please
refer to the “General Application
Guidelines”.
*Value of chucking pressure is shown by the value of weight
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