TN2-H-5V [NAIS]

SLIM POLARIZED RELAY; SLIM极化继电器
TN2-H-5V
型号: TN2-H-5V
厂家: NAIS(MATSUSHITA ELECTRIC WORKS)    NAIS(MATSUSHITA ELECTRIC WORKS)
描述:

SLIM POLARIZED RELAY
SLIM极化继电器

继电器 光电二极管
文件: 总4页 (文件大小:79K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
SLIM POLARIZED RELAY  
FEATURES  
TN-RELAYS  
5.6  
.220  
14  
.551  
• Small size for minimal PC board  
mounting requirements  
• Surge voltage withstand: 1500 V FCC  
Part 68  
9.8  
.386  
• Small header area makes higher den-  
sity mounting possible  
• Sealed construction allows automatic  
cleaning  
• High sensitivity: 140 mW nominal op-  
erating power (single side stable 3-12  
V type)  
• Self-clinching terminal also available  
mm inch  
SPECIFICATIONS  
Contact  
Characteristics  
Arrangement  
2 Form C  
60 mΩ  
Initial insulation resistance*1  
Min. 1,000 M(at 500 V DC)  
Initial contact resistance, max.  
(By voltage drop 6 V DC 1A)  
Between open  
750 Vrms for 1 min.  
(Detection current: 10 mA)  
contacts  
Initial  
Contact material  
Gold-clad silver  
Between contact and  
coil  
1,000 Vrms for 1 min.  
(Detection current: 10 mA)  
breakdown  
voltage  
Nominal switching capacity  
(resistive load)  
1 A 30 V DC,  
0.5 A 125 V AC  
1,000 Vrms for 1 min.  
(Detection current: 10 mA)  
Between contact sets  
Max. switching power  
(resistive load)  
30 W, 62.5 VA  
FCC surge voltage between open  
contacts  
Temperature rise*2 (at 20°C)  
Rating  
1,500 V  
Max. switching voltage  
Max. switching current  
Min. switching capacity 1  
110 V DC,125 V AC  
1 A  
Max. 50°C  
Max. 3 ms (Approx. 2 ms)  
[Max. 3 ms (Approx. 2 ms)]  
Operate time [Set time]*3 (at 20°C)  
10 µA 10 mV DC  
140 mW (3 to 12 V DC)  
200 mW (24 V DC)  
300 mW (48 V DC)  
Release time [Reset time]*4  
(at 20°C)  
Max. 3 ms (Approx. 1 ms)  
[Max. 3 ms (Approx. 2 ms)]  
Min. 490 m/s2 {50G}  
Min. 980 m/s2 {100G}  
176.4 m/s2 {18G}, 10 to 55 Hz  
at double amplitude of 3 mm  
Single side stable  
Nominal  
operating  
power  
Functional*5  
Destructive*6  
100 mW (3 to 12 V DC)  
150 mW (24 V DC)  
Shock resistance  
1 coil latching  
2 coil latching  
200 mW (3 to 12 V DC)  
300 mW (24 V DC)  
Functional*7  
Vibration resistance  
Mechanical (at 180 cpm)  
1 A 30 V DC  
108  
294 m/s2 {30G}, 10 to 55 Hz  
at double amplitude of 5 mm  
Destructive  
Expected  
life (min.  
operations)  
2 × 105  
resistive load  
Conditions for oper- Ambient  
ation, transport and temperature  
storage*8  
–40°C to +70°C  
–40°F to +158°F  
Electrical  
(at 20 cpm)  
0.5 A 125V AC  
resistive load  
105  
(Not freezing and  
condensing at low  
Humidity  
5 to 85% R.H.  
Note:  
1This value can change due to the switching frequency, environmental conditions,  
and desired reliability level, therefore it is recommended to check this with the ac-  
tual load.  
temperature)  
Unit weight  
Approx. 1.5 g .053 oz  
Remarks  
* Specifications will vary with foreign standards certification ratings.  
*1 Measurement at same location as "Initial breakdown voltage" section.  
*2 By resistive method, nominal voltage applied to the coil; contact carrying current:  
1 A.  
*3 Nominal voltage applied to the coil, excluding contact bounce time.  
*4 Nominal voltage applied to the coil, excluding contact bounce time without diode.  
*5 Half-wave pulse of sine wave: 11 ms; detection time: 10 µs.  
*6 Half-wave pulse of sine wave: 6 ms.  
*7 Detection time: 10 µs.  
*8 Refer to 4. Conditions for operation, transport and storage mentioned in Cautions  
for use (Page 178).  
ORDERING INFORMATION  
Ex. TN  
2
L2  
H
12V  
Contact arrangement  
2: 2 Form C  
Operating function  
Terminal shape  
Coil voltage(DC)  
Nil: Single side stable Nil: Standard PC board terminal  
L: 1 coil latching  
L2: 2 coil latching  
3,4.5,5,6,9,12,  
24,48*V  
H: Self-clinching terminal  
*48 V coil type: Single side stable only  
Note:  
AgPd stationary contact types available for high resistance against contact sticking.  
When ordering, please add suffix “–3” like TN2–12V–3.  
150  
TN  
TYPES AND COIL DATA (at 20°C 68°F)  
1. Single side stable  
Part No.  
Nominal  
operating  
current,  
Nominal  
operating  
power,  
mW  
Max.  
Nominal  
voltage,  
V DC  
Pick-up  
voltage,  
V DC (max.)  
Drop-out  
voltage,  
V DC (min.)  
Coil  
resistance,  
(±10%)  
allowable  
voltage,  
V DC  
Standard PC  
Self-clinching  
terminal  
board terminal  
mA (±10%)  
TN2-3 V  
TN2-4.5 V  
TN2-5 V  
TN2-6 V  
TN2-9 V  
TN2-12 V  
TN2-24 V  
TN2-48 V  
TN2-H-3 V  
TN2-H-4.5 V  
TN2-H-5 V  
TN2-H-6 V  
TN2-H-9 V  
TN2-H-12 V  
TN2-H-24 V  
TN2-H-48 V  
3
4.5  
5
2.25  
3.38  
3.75  
4.5  
6.75  
9
0.3  
0.45  
0.5  
0.6  
0.9  
1.2  
2.4  
4.8  
46.7  
31.1  
28.1  
23.3  
15.5  
11.7  
8.3  
64.3  
145  
140  
140  
140  
140  
140  
140  
200  
300  
4.5  
6.7  
7.5  
9
178  
6
257  
9
579  
13.5  
18  
12  
24  
48  
1,028  
2,880  
7,680  
18  
36  
36  
6.25  
57.6  
2. 1 Coil latching  
Part No.  
Nominal  
operating  
current,  
Nominal  
operating  
power,  
mW  
Max.  
allowable  
voltage,  
V DC  
Nominal  
voltage,  
V DC  
Coil  
resistance,  
(±10%)  
Set voltage, Resetvoltage,  
Standard PC  
Self-clinching  
terminal  
V DC (max.)  
V DC (max.)  
board terminal  
mA (±10%)  
TN2-L-3 V  
TN2-L-4.5 V  
TN2-L-5 V  
TN2-L-6 V  
TN2-L-9 V  
TN2-L-12 V  
TN2-L-24 V  
TN2-L-H-3 V  
TN2-L-H-4.5 V  
TN2-L-H-5 V  
TN2-L-H-6 V  
TN2-L-H-9 V  
TN2-L-H-12 V  
TN2-L-H-24 V  
3
4.5  
5
2.25  
3.38  
3.75  
4.5  
2.25  
3.38  
3.75  
4.5  
33.3  
22.2  
20  
90  
100  
100  
100  
100  
100  
100  
150  
4.5  
6.7  
7.5  
9
202.5  
250  
6
16.7  
11.1  
8.3  
360  
9
6.75  
9
6.75  
9
810  
13.5  
18  
12  
24  
1,440  
3,840  
18  
18  
6.3  
36  
3. 2 Coil latching  
Part No.  
Nominal  
operating  
current,  
Nominal  
operating  
power,  
mW  
Max.  
allowable  
voltage,  
V DC  
Nominal  
voltage,  
V DC  
Coil  
resistance,  
(±10%)  
Set voltage, Resetvoltage,  
Standard PC  
Self-clinching  
terminal  
V DC (max.)  
V DC (max.)  
board terminal  
mA (±10%)  
TN2-L2-3 V  
TN2-L2-4.5 V  
TN2-L2-5 V  
TN2-L2-6 V  
TN2-L2-9 V  
TN2-L2-12 V  
TN2-L2-24 V  
Notes:  
TN2-L2-H-3 V  
TN2-L2-H-4.5 V  
TN2-L2-H-5 V  
TN2-L2-H-6 V  
TN2-L2-H-9 V  
TN2-L2-H-12 V  
TN2-L2-H-24 V  
3
4.5  
5
2.25  
3.38  
3.75  
4.5  
2.25  
3.38  
3.75  
4.5  
66.7  
44.4  
40  
45  
101.2  
125  
200  
200  
200  
200  
200  
200  
300  
4.5  
6.7  
7.5  
9
6
33.3  
22.2  
16.7  
12.5  
180  
9
6.75  
9
6.75  
9
405  
13.5  
18  
12  
24  
720  
18  
18  
1,920  
28.8  
1. Specified value of the pick-up, drop-out, set and reset voltage is with the condition of square wave coil pulse.  
2. Standard packing: Tube: 50 pcs.; Case: 1,000 pcs.  
3. In case of 5 V drive circuit, it is recommended to use 4.5 V type relay.  
4. AgPd stationary contact types available for high resistance against contact sticking. When ordering, please add suffix "–3" like TN2-12V-3.  
mm inch  
DIMENSIONS  
Standard PC board terminal  
PC board pattern (Copper-side view)  
14  
551  
5.6  
.220  
10.16  
.400  
2.54  
.100  
9.5  
9.8  
.374  
.386  
2.54  
.100  
3.5  
.138  
10-1.0 dia. hole  
0.25  
.010  
10-.039 dia. hole  
Tolerance: ±0.1 ±.004  
2.54  
.100  
0.5  
.020  
1.385  
.055  
2.54  
.100  
Schematic (Bottom view)  
• 1-coil latching  
Self-clinching terminal  
• Single side stable  
• 2-coil latching  
(Reset condition)  
14  
5.6  
.220  
(Deenergized condition)  
(Reset condition)  
551  
9.5  
1 2 3 4 5  
1 2 3 4 5  
1 2 3 4 5  
9.8  
.374  
.386  
3.5  
.138  
10 9 8 7 6  
10 9 8 7 6  
10 9 8 7 6  
0.25  
.010  
Direction indication*  
Direction indication*  
Direction indication*  
2.54  
.100  
0.5  
.020  
1.385  
.055  
2.54  
.100  
*Orientation stripe located on top of relay  
General tolerance: ±0.3 ±.012  
151  
TN  
REFERENCE DATA  
1. Maximum switching capacity  
2. Life curve  
3. Mechanical life  
Tested sample: TN2-12V, 10 pcs.  
100  
90  
80  
DC load (cosϕ=1)  
30 V DC resistive load  
125 V AC resistive load  
AC load (cosϕ=1)  
100  
1.0  
70  
Pick-up voltage  
Max.  
Min.  
60  
50  
40  
0.5  
0.4  
10  
0.3  
30  
20  
Drop-out voltage  
Max.  
Min.  
0.2  
10  
0
0
1.0  
10  
0.5  
100  
No. of operations, ×10  
30  
100  
200  
Switching voltage,V  
1,000  
10,000  
4
Switching current, A  
4. Electrical life (DC load)  
5. Coil temperature rise  
Tested sample: TN2-12V, 10 pcs.  
Tested sample: TN2-12V  
Condition: 1 A 30 V DC resistive load, 20 cpm  
Point measured: Inside the coil  
Ambient temperature: Room temperature (25° to  
26°C), 70°C (77° to 79°F), 158°F  
Change of pick-up and drop-out voltage  
Change of contact resistance  
70  
100  
100  
90  
80  
70  
60  
50  
Carrying current  
0 A (Room temp.)  
1 A (Room temp.)  
0 A (70°C)  
1 A (70°C)  
90  
60  
50  
40  
30  
20  
10  
80  
Pick-up voltage  
Max.  
Min.  
70  
60  
50  
Terminal No.2–3–4  
Terminal No.7–8–9  
40  
30  
20  
10  
0
40  
30  
20  
10  
0
Drop-out voltage  
Max.  
Min.  
0
5
10  
15  
20  
80 90 100 110 120 130 140 150  
Coil applied voltage, %V  
5
10  
15  
20  
4
4
No. of operations, ×10  
No.of operations, ×10  
6. Operate/release time characteristics  
7. Set/reset time characteristics  
8. Distribution of pick-up and drop-out voltages  
Tested sample: TN2-12V, 5 pcs.  
Tested sample: TN2-L2-12V, 5 pcs.  
Tested sample: TN2-12V, 40 pcs.  
6
6
30  
Set time  
Reset time  
5
4
3
5
4
3
2
1
0
Pick-up voltage  
20  
Drop-out voltage  
Operate time  
2
10  
Max.  
Min.  
Max.  
Min.  
Max.  
Min.  
1
0
Release time  
80  
90  
100  
110  
120  
0
10 20 30 40 50 60 70 80 90 100  
Ratio against the rated voltage, %V  
80  
90  
100  
110  
120  
Coil applied voltage, %V  
Coil applied voltage, %V  
9. Distribution of set and reset voltage  
Tested sample: TN2-L2-12V, 32 pcs.  
10. Ambient temperature characteristics  
Tested sample: TN2-12V, 5 pcs.  
11. Distribution of contact resistance  
Tested sample: TN2-12V, 38 pcs. (38×4 contacts)  
40  
30  
1
2
3
4
5
x
Drop-out  
40  
Set voltage  
Reset voltage  
voltage  
30  
Terminal  
No.  
6
7
8
9
10  
30  
20  
10  
7,8,9  
Side  
Terminal No.  
2,3,4 side  
20  
x
20  
10  
10  
0
Pick-up voltage  
20 40 60 80  
–40 –20 –10  
Ambient  
temperature, °C  
–10  
–20  
–30  
–40  
0
10 20 30 40 50 60 70 80 90 100  
Ratio against the rated voltage, %V  
0
30  
40  
50  
Contact resistance,mΩ  
152  
TN  
12-(1). Malfunctional shock (single side stable)  
Tested sample: TN2-12V, 6 pcs.  
12-(2). Malfunctional shock (latching)  
Tested sample: TN2-L2-12V, 6 pcs.  
Deenergized condition  
Energized condition  
Deenergized condition  
Energized condition  
Y
Y
2
2
980m/s  
980m/s  
X
X
X
X
,
,
X
X
Z
Z
2
2
2
2
980m/s  
980m/s  
980m/s  
980m/s  
,
,
,
,
X
X
Z
Z
2
2
2
2
980m/s  
980m/s  
980m/s  
980m/s  
2
2
980m/s  
,
980m/s  
,
Y
Y
13-(1). Influence of adjacent mounting  
13-(2). Influence of adjacent mounting  
10  
10  
ON  
ON  
ON  
ON  
Pick-up voltage  
Pick-up voltage  
0
0
–10  
–10  
ON  
OFF OFF  
ON  
OFF OFF  
10  
0
20  
10  
0
Drop-out voltage  
Drop-out voltage  
OFF  
OFF  
–10  
0
5
0
5
.197  
.197  
Inter-relay distance , mm inch  
Inter-relay distance , mm inch  
14. Actual load test  
(35 mA 48 V DC wire spring relay load)  
Change of pick-up and drop-out voltage  
Change of contact resistance  
100  
100  
90  
80  
70  
60  
50  
90  
80  
Circuit  
Pick-up voltage  
70  
Max.  
Min.  
500Ω  
60  
50  
0.1  
3
2
µF  
48 V  
DC  
0.1  
µF  
Terminal No. 2–3  
40  
30  
20  
10  
40  
Max.  
Min.  
Drop-out voltage  
500Ω  
Max.  
Min.  
30  
20  
10  
Wire spring relay Circuit diagram  
0
10  
20  
30  
40  
50  
0
10  
20  
30  
40  
50  
4
4
No. of operations, ×10  
No. of operations,×10  
15-(1). High-frequency characteristics  
15-(2). High-frequency characteristics  
15-(3). High-frequency characteristics  
Tested sample: TN2-xxV  
Isolation characteristics  
Tested sample: TN2-xxV  
Insertion loss characteristics  
Tested sample: TN2-xxV  
V.S.W.R.  
2.2  
2.1  
2.0  
1.6  
1.4  
1.2  
1.0  
1.9  
1.8  
1.7  
1.6  
1.5  
100  
Terminal No. 7–8–9  
Terminal No. 2–3–4  
0.8  
0.6  
50  
1.4  
Terminal No. 2-3-4  
1.3  
Terminal No. 2–3–4  
0.4  
Terminal No. 7-8-9  
1.2  
Terminal No. 7–8–9  
0.2  
1.1  
1.0  
10  
100  
1000  
10  
100  
1000  
10  
100  
1000  
Frequency, MHz  
Frequency, MHz  
Frequency, MHz  
For Cautions for Use, see Page 178 and 179.  
9/1/2000  
All Rights Reserved, © Copyright Matsushita Electric Works, Ltd.  
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