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PDF ( 数据手册 , 数据表 ) TQ2-L2-6V

零件编号 TQ2-L2-6V
描述 2-pole 5 mm Surface Mount Relay
制造商 Panasonic
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TQ2-L2-6V 数据手册, 描述, 功能
TQ
2-pole 5 mm Surface
Mount Relay, JIS C0806
compliant
TQ RELAYS
RoHS compliant
FEATURES
1. Flat compact size
14.0(L) × 9.0(W) × 5.0(H) .551(L) ×
.354(W) × .197(H)
2. Nominal operating power:
High sensitivity of 140mW (2 Form
C single side stable type)
By using the highly efficient polar
magnetic circuit “seesaw balance
mechanism”, a nominal operating
power of 140 mW (minimum operating
power of 79 mW) has been achieved.
3. Suitable for SMD automatic
insertion (SA type)
With a height of 5.6 mm .220 inch, the
relays meet JIS C 0806 specifications.
4. High density mounting possible
High-efficiency magnetic circuits
ensure low magnetic flux leakage.
Because characteristics are little
changed by proximity mounting, high-
density mounting is possible.
5. The use of gold-clad twin crossbar
contacts ensures high contact
reliability.
6. DIL terminal array enables use of IC
sockets
7. Low thermal electromotive force
As well as low power consumption of
140 mW, use of a structure with
separate coil and contact sections has
reduced thermal electromotive force to
the low level of approximately 5 µV.
Surface mount types achieve
approximately 2 µV.
8. Latching types also available
9. Self-clinching terminal also
available
10. A range of surface-mount types is
also available.
SA: Low-profile surface-mount
terminal type
SL: High connection reliability surface-
mount terminal type
SS: Space saving surface-mount
terminal type
11. M.B.B. contact types available
TYPICAL APPLICATIONS
1. Communications
2. Measurement equipment
3. OA equipment
4. Industrial machines
ORDERING INFORMATION
TQ 2
Contact arrangement
2: 2 Form C
Terminal shape
Nil: Standard PC board terminal
H: Self-clinching terminal
SA: SA type
SL: SL type
SS: SS type
Operating function
Nil: Single side stable
L: 1 coil latching
L2: 2 coil latching
MBB function
Nil: Standard (B.B.M.) type
2M: 2M.B.B. type
Nominal coil voltage (DC)*
1.5 (SMD only), 3, 4.5, 5, 6, 9, 12, 24, 48V
Packing style
Nil: Tube packing
X: Tape and reel (picked from 1/2/3/4/5-pin side)
Z: Tape and reel packing (picked from the 6/7/8/9/10-pin side)
Notes: 1. *48 V coil type: Single side stable only
2. In case of 5 V transistor drive circuit, it is recommended to use 4.5 V type relay.
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/
ASCTB14E 201209-T







TQ2-L2-6V pdf, 数据表
9.-(1) Influence of adjacent mounting
9.-(2) Influence of adjacent mounting
10
0
–10
10
0
–10
0
Pick-up voltage
ON ON
Drop-out voltage
ON
OFF OFF
OFF
5
.197
Inter-relay distance , mm inch
10
0
–10
10
0
–10
0
11. Actual load test (35 mA 48 V DC wire spring relay load)
Pick-up voltage ON
ON
ON
OFF
Drop-out voltage
OFF
5
.197
Inter-relay distance
OFF
, mm inch
Circuit
20Hz
220
57 V
DC
220
Wire spring relay Circuit diagram
Change of pick-up and drop-out voltage
100
90
80
70
Pick-up voltage
Max.
60 Min.
50
40
30 Drop-out voltage
20 Max.
Min.
10
0 10 20 30 40 50
No. of operations, ×104
TQ
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
70.0
50.0
30.0
10.0
5.0
2.0
1.0
0.5
0.2
0.1
1.0
m=2.15
µ=2.7×107
95% reliability limit =
7.6×106
(Weibull probability paper)
10 100
No. of operations, ×106
Change of contact resistance
100
90
80
70
60
50
40
30
20
10
0 10 20 30 40
No. of operations, ×104
Max.
Min.
50
12. 0.1 A 53 V DC resistive load test
Change of pick-up and drop-out voltage
100
90
80
70
60
50
40
30
20
10
0
Pick-up voltage
Max.
Min.
Drop-out voltage
Max.
Min.
500 1,000 1,500 2,000
No. of operations, ×104
Change of contact resistance
100
90
80
70
60
50
40
30
20
10
0
Max.
Min.
500 1,000 1,500 2,000
No. of operations, ×104
13. Distribution of M.B.B. time
Tested sample: TQ2-2M-5V, 85 pcs.
60
50
40
30
20 19
15
10
0 10
50
Terminal
xN: os.
2-3-4: ON
105.6 µs
3σn-1: 163.8 µs
Min.: 23 µs
Max.: 243 µs
Terminal
xN: os.
7-8-9: ON
115.6 µs
30
3σn-1: 167.3 µs
Min.: 35 µs
26 Max.: 254 µs
21 19 17
11
6
42
50 100 150 200 250 300 µs min.
100 150 200 250 300 350 µs max.
60
50
41
40
31
30
35
27
Terminal
Nxo: s.
2-3-4: OFF
71.6 µs
3σn-1: 127.1 µs
Min.: 17 µs
Max.: 187 µs
Terminal
Nxo: s.
7-8-9: OFF
80.7 µs
3σn-1: 156.7 µs
Min.: 29 µs
Max.: 298 µs
20
10
0 10
50
12
10
7
4
1
2
50 100 150 200 250 300 µs min.
100 150 200 250 300 350 µs max.
ASCTB14E 201209-T
Panasonic Corporation Automation Controls Business Unit industrial.panasonic.com/ac/e/














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