TQ
9.-(1) Influence of adjacent mounting
9.-(2) Influence of adjacent mounting
10. Contact reliability
(1 mA 5 V DC resistive load)
Tested sample: TQ2-12V
Condition: Detection level 10 W
F(t), %
99.9
99.0
95.0
ON
ON
10
0
10
0
ON ON
Pick-up voltage
Drop-out voltage
Pick-up voltage
Drop-out voltage
70.0
50.0
30.0
–10
–10
ON
ON
10.0
5.0
OFF OFF
10
0
10
0
OFF
2.0
m=2.15
1.0
0.5
7
µ=2.7×10
95% reliability limit =
OFF
6
OFF
7.6×10
–10
–10
0.2
0.1
(Weibull probability paper)
OFF
1.0
10
100
0
5
0
5
.197
.197
6
Inter-relay distance , mm inch
No. of operations, ×10
Inter-relay distance , mm inch
11. Actual load test (35 mA 48 V DC wire spring relay load)
Circuit
Change of pick-up and drop-out voltage
Change of contact resistance
100
90
100
20Hz
90
80
70
80
Pick-up voltage
70
Max.
Min.
220Ω
220Ω
60
50
40
60
50
40
30
20
10
0
57 V
DC
Max.
Min.
30
Drop-out voltage
Max.
Min.
20
10
0
Wire spring relay Circuit diagram
10
20
30
40
50
10
20
30
40
50
4
4
No. of operations, ×10
No. of operations, ×10
12. 0.1 A 53 V DC resistive load test
Change of pick-up and drop-out voltage
Change of contact resistance
100
90
100
90
80
70
60
50
40
30
20
10
80
Pick-up voltage
Max.
70
60
50
40
30
20
10
Min.
Max.
Min.
Drop-out voltage
Max.
Min.
0
500
1,000
1,500
2,000
0
500
1,000
1,500
2,000
4
4
No. of operations, ×10
No. of operations, ×10
13. Distribution of M.B.B. time
Tested sample: TQ2-2M-5V, 85 pcs.
60
60
50
40
30
20
Terminal Nos. 2-3-4: ON
Terminal Nos. 2-3-4: OFF
−
−
x:
x:
105.6 µs
71.6 µs
3σn-1: 163.8 µs
Min.: 23 µs
3σn-1: 127.1 µs
Min.: 17 µs
50
40
30
20
Max.: 243 µs
Max.: 187 µs
41
31
Terminal Nos. 7-8-9: ON
Terminal Nos. 7-8-9: OFF
−
−
35
27
x:
115.6 µs
x:
80.7 µs
3σn-1: 167.3 µs
Min.: 35 µs
3σn-1: 156.7 µs
Min.: 29 µs
30
19
26
21
Max.: 254 µs
Max.: 298 µs
19
15
17
11
12
10
7
4
10
0
10
0
6
2
1
2
4
10
50 100 150 200 250 300 µs min.
10
50 100 150 200 250 300 µs min.
50 100 150 200 250 300 350 µs max.
50 100 150 200 250 300 350 µs max.
ASCTB14E 201209-T
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/