TQ2-5V Panasonic Electric Works, TQ2-5V Datasheet - Page 8

RELAY STD DPDT 1A 5VDC PC MNT

TQ2-5V

Manufacturer Part Number
TQ2-5V
Description
RELAY STD DPDT 1A 5VDC PC MNT
Manufacturer
Panasonic Electric Works
Series
TQr
Type
General Purpose Relayr
Datasheets

Specifications of TQ2-5V

Relay Type
Telecom
Circuit
DPDT (2 Form C)
Contact Rating @ Voltage
1A @ 30VDC
Coil Type
Standard
Coil Current
28.1mA
Coil Voltage
5VDC
Control On Voltage (max)
3.75 VDC
Control Off Voltage (min)
0.5 VDC
Mounting Type
Through Hole
Termination Style
PC Pin
Brand/series
TQ Series
Contact Form
DPDT
Current, Rating
0.5⁄1 AAC⁄ADC
Diameter, Mounting
0.039 in. Dia. (Hole)
Dimensions
0.551 in. L x 0.354 in. W x 0.197in. + 0.016 in. - 0.008 in. H
Function
General Purpose
Latch Type
Single Side Stable
Material, Contact
Gold-Clad Silver
Number Of Pins
10
Standards
UL, CSA
Termination
Solder
Voltage, Control
5 VDC
Voltage, Rating
125 VAC
Surge Voltage Withstand
1500 V FCC Part 68
Relay Construction
Non-Latching
Contact Arrangement
DPDT
Coil Voltage Dc
5V
Voltage Rating (vdc)
110V
Voltage Rating (vac)
125V
Dropout Volt (min)
0.5VDCV
Coil Resistance
178Ohm
Pick-up Voltage (max)
3.75VDC
Maximum Power Rating
30W/62.5VA
Operate Time
3ms
Contact Current Rating
1A
Contact Material
Ag/Au Clad
Coil Suppression Diode
No
Push To Test Button
No
Led Indicator
No
Seal
Unsealed
Product Height (mm)
5mm
Product Depth (mm)
9mm
Product Length (mm)
14mm
Operating Temp Range
-40C to 70C
Pin Count
8
Mounting Style
Through Hole
Package / Case
DIP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
255-1001
255-1001-5
255-1001
TQ2E-5V

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TQ
9.-(1) Influence of adjacent mounting
11. Actual load test (35 mA 48 V DC wire spring relay load)
Circuit
12. 0.1 A 53 V DC resistive load test
Change of pick-up and drop-out voltage
13. Distribution of M.B.B. time
Tested sample: TQ2-2M-5V, 85 pcs.
57 V
–10
–10
100
DC
10
10
90
80
70
60
50
40
30
20
10
60
50
40
30
20
10
0
0
0
0
0
19
15
10
50
Wire spring relay Circuit diagram
100 150
26
21
50
Drop-out voltage
500
Inter-relay distance
Pick-up voltage
Drop-out voltage
Pick-up voltage
220
220
No. of operations, 10
100
.197
30
19
5
1,000
Terminal Nos. 2-3-4: ON
Terminal Nos. 7-8-9: ON
150
200
17
11
200
250
x:
3
Min.: 23 s
Max.: 243 s
x:
3
Min.: 35 s
Max.: 254 s
6
4
1,500
n-1
n-1
OFF OFF
ON
, mm
: 163.8 s
: 167.3 s
250
300
OFF
ON
2
105.6 s
115.6 s
ON
4
20Hz
inch
300
350
2,000
Max.
Min.
Max.
Min.
s min.
s max.
All Rights Reserved © COPYRIGHT Panasonic Electric Works Co., Ltd.
9.-(2) Influence of adjacent mounting
Change of pick-up and drop-out voltage
Change of contact resistance
–10
–10
100
100
90
80
70
60
50
40
30
20
10
10
10
90
80
70
60
50
40
30
20
10
60
50
40
30
20
10
0
0
0
0
0
0
41
31
10
50
10
100 150
35
27
50
Drop-out voltage
500
Inter-relay distance
Pick-up voltage
No. of operations, 10
.197
100
No. of operations, 10
12
10
5
20
Terminal Nos. 2-3-4: OFF
Terminal Nos. 7-8-9: OFF
Pick-up voltage
Drop-out voltage
1,000
150
200
7
4
30
200
250
x:
3
Min.: 17 s
Max.: 187 s
x:
3
Min.: 29 s
Max.: 298 s
1
1,500
OFF
OFF
n-1
n-1
ON
ON
, mm
: 127.1 s
: 156.7 s
250
300
ON
OFF
40
2
71.6 s
80.7 s
4
4
inch
300
350
2,000
50
Max.
Min.
Max.
Min.
Max.
Min.
s min.
s max.
10. Contact reliability
(1 mA 5 V DC resistive load)
Tested sample: TQ2-12V
Condition: Detection level 10 W
Change of contact resistance
F(t), %
99.9
99.0
95.0
70.0
50.0
30.0
10.0
100
5.0
2.0
1.0
0.5
0.2
0.1
90
80
70
60
50
40
30
20
10
0
1.0
10
No. of operations, 10
No. of operations, 10
(Weibull probability paper)
20
10
m=2.15
95% reliability limit =
=2.7 10
30
7
7.6 10
40
4
6
6
100
50
Max.
Min.

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