S2-L1-5V [PANASONIC]

4 A CAPACITY, THE VARIETY OF CONTACT ARRANGEMENTS; 4 ,容量,触点排列的种类
S2-L1-5V
型号: S2-L1-5V
厂家: PANASONIC    PANASONIC
描述:

4 A CAPACITY, THE VARIETY OF CONTACT ARRANGEMENTS
4 ,容量,触点排列的种类

文件: 总5页 (文件大小:149K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
4 A CAPACITY,  
THE VARIETY OF CONTACT  
ARRANGEMENTS  
S RELAYS  
FEATURES  
12.0  
.472  
• The variety of contact arrangements  
2 Form A 2 Form B, 3 Form A 1 Form  
B, 4 Form A  
• Wide switching range From 100µA  
28.0  
1.102  
100 mV DC to 4 A 250 V AC  
10.4  
.409  
• Low thermal electromotive force  
• Latching types available  
Approx. 3 µV  
• High sensitivity in small size 100 mW  
pick-up and 200 mW nominal  
operating power  
• Dual-In-Line packaging arrangement  
• High shock and vibration resistance  
Shock: 50 G Vibration: 10 to 55 Hz at  
mm inch  
double amplitude of 3 mm .118 inch  
SPECIFICATIONS  
Contacts  
Characteristics (at 25°C 77°F 50% Relative humidity)  
2 Form A 2 Form B,  
3 Form A 1 Form B,  
4 Form A  
20 cpm for maximum load,  
Arrangement  
Max. operating speed  
50 cps for low-level load  
(1 mA 1 V DC)  
10,000 Mat 500 V DC  
750 Vrms  
1
Initial contact resistance, max.  
(By voltage drop 6 V DC 1 A)  
Initial contact pressure  
Contact material  
Initial insulation resistance*  
50 mΩ  
Between open contacts  
Between contact sets  
Initial  
Approx. 12 g .42 oz  
Gold clad silver alloy  
Approx. 3pF  
1,000 Vrms  
breakdown  
2
Between contacts and  
voltage*  
1,500 Vrms  
Electrostatic capacitance  
coil  
3
Thermal electromotive force  
Operate time*  
Approx. 3µV  
Max. 15 ms (Approx. 8 ms)  
Max. 10 ms (Approx. 5 ms)  
Max. 15 ms (Approx. 8 ms)  
(at nominal coil voltage)  
(at nominal voltage)(at 20°C)  
3
Nominal switching capacity 4 A 250 V AC, 3 A 30 V DC  
Release time (without diode)*  
(at nominal voltage)(at 20°C)  
Maximum switching power  
Maximum switching voltage  
Max. switching current  
Min. switching capacity**  
Mechanical (at 50 cps)  
1,000 VA, 90 W  
3
Set time* (latching)  
Rating  
250 V AC, 30 V DC  
(at nominal voltage)(at 20°C)  
(resistive)  
(48 VDC at less than 0.5 A)  
3
Reset time* (latching)  
4 A (AC), 3 A (DC)  
Max. 15 ms (Approx. 8 ms)  
1 ms  
(at nominal voltage)(at 20°C)  
1
100µA 100 m V DC  
Initial contact bounce, max.  
8
10  
10  
Expected  
life (min.  
Max. 35°C with nominal coil  
voltage and at maximum  
switching current  
5
Temperature rise  
4 A 250 V AC  
3 A 30 V DC  
Electrical  
(at nominal voltage)(at 20°C)  
operations)  
5
(at 20 cpm)  
2 × 10  
4
2
Functional*  
Destructive*  
Min. 490 m/s {50 G}  
Coil (polarized) (at 20°C 68°F)  
Shock resistance  
5
2
Min. 980 m/s {100 G}  
Minimum operating power  
Nominal operating power  
Minimum set and reset  
Nominal set and reset  
Approx. 100 mW  
Approx. 200 mW  
Approx. 100 mW  
Approx. 200 mW  
Single side  
2
176.4 m/s {18 G}, 10 to 55 Hz  
6
stable  
Functional*  
at double amplitude of 3 mm  
Vibration resistance  
2
235.2 m/s {24 G}, 10 to 55 Hz  
Latching  
Destructive  
at double amplitude of 4 mm  
Notes:  
Conditions for operation,  
Ambient  
temp.  
–40°C to +65°C  
1
7
** This value can change due to the switching frequency, environmental  
conditions, and desired reliability level, therefore it is recommended to check this  
with the actual load.  
transport and storage*  
–40°F to +149°F  
(Not freezing and condens-  
ing at low temperature)  
Unit weight  
Humidity  
5 to 85% R.H.  
Remarks  
Approx. 8 g .28 oz  
* Specifications will vary with foreign standards certification ratings.  
1
* Measurement at same location as “Initial breakdown voltage” section  
2
* Detection current: 10mA  
3
* Excluding contact bounce time  
4
* Half-wave pulse of sine wave: 11ms; detection time: 10µs  
5
* Half-wave pulse of sine wave: 6ms  
6
* Detection time: 10µs  
7
* Refer to 6. Conditions for operation, transport and storage mentioned in  
AMBIENT ENVIRONMENT (see catalog).  
TYPICAL APPLICATIONS  
Telecommunications equipment, data processing equipment,  
facsimiles, alarm equipment, measuring equipment.  
en_ds_61105_0000: 130804D  
1
S
ORDERING INFORMATION  
Ex.  
2
S
L2  
48 V  
Product name  
S
Contact arrangement  
Operating function  
Nil: Single side stable  
L: 1 coil latching  
Coil voltage, V DC  
3, 5, 6,12, 24, 48  
2: 2 Form A 2 Form B  
3: 3 Form A 1 Form B  
4: 4 Form A  
L2: 2 coil latching  
Notes: 1) Standard packing; Carton 50 pcs. Case 500 pcs.  
2) UL/CSA approved type is standard.  
TYPES AND COIL DATA at 20°C 68°F  
Single side stable  
Maximum  
allowable  
voltage,  
Nominal  
operating  
current,  
mA  
Nominal  
operating  
power,  
mW  
Nominal  
voltage,  
V DC  
Pick-up  
voltage,  
Drop-out  
voltage,  
Coil resistance,  
(±10%)  
Inductance,  
mH  
Type  
V DC (max.)  
V DC (min.)  
V DC (40°C)  
ST-3V  
ST-5V  
ST-6V  
ST-12V  
ST-24V  
ST-48V  
3
5
6
12  
24  
48  
2.1  
3.5  
4.2  
8.4  
16.8  
33.6  
0.3  
0.5  
0.6  
1.2  
2.4  
4.8  
66.7  
38.5  
33.3  
16.7  
8.4  
45  
130  
180  
720  
2,850  
8,500  
23  
65  
93  
370  
1,427  
3,410  
200  
192  
200  
200  
202  
271  
5.5  
9.0  
11.0  
22.0  
44.0  
75.0  
5.6  
1 coil latching  
Maximum  
allowable  
voltage,  
Nominal  
operating  
power,  
mW  
Coil resis-  
tance, Ω  
(±10%)  
Nominal  
voltage,  
V DC  
Pick-up  
voltage,  
Drop-out  
voltage  
Nominal oper-  
ating current,  
mA  
Inductance,  
mH  
Type  
V DC (max.)  
V DC (min.)  
V DC (40°C)  
ST-L1-3V  
ST-L1-5V  
ST-L1-6V  
ST-L1-12V  
ST-L1-24V  
ST-L1-48V  
2 coil latching  
3
5
6
12  
24  
48  
2.1  
3.5  
4.2  
8.4  
16.8  
33.6  
0.3  
0.5  
0.6  
1.2  
2.4  
4.8  
33  
16  
16  
8
4
3
90  
300  
360  
1450  
5700  
16,000  
0.04  
0.14  
0.14  
0.6  
2.05  
8.9  
99  
80  
96  
96  
96  
8.4  
15.3  
16.8  
33.7  
66.7  
111  
144  
Nominal  
operating  
power,  
mW  
Maximum  
allowable  
voltage,  
Coil resistance,  
Inductance,  
mH  
Set and reset  
Nominal operating  
current,  
Nominal voltage,  
V DC  
(±10%)  
Type  
voltage,  
V DC (max.)  
mA  
Coil I Coil II Coil I Coil II  
V DC (40°C)  
ST-L2-3V  
ST-L2-5V  
ST-L2-6V  
ST-L2-12V  
ST-L2-24V  
ST-L2-48V  
3
5
6
12  
24  
48  
2.1  
3.5  
4.2  
8.4  
16.8  
33.6  
66.7  
38.5  
33.7  
16.7  
8.4  
45  
45  
10  
31  
40  
170  
680  
10  
31  
40  
170  
680  
200  
192  
200  
200  
202  
355  
5.5  
9.0  
11.0  
22.0  
44.0  
65.0  
130  
180  
720  
130  
180  
720  
2,850 2,850  
6,500 6,500 1,250 1,250  
7.4  
Note: Insert 2, 3 or 4 in T for contact form required.  
mm inch  
DIMENSIONS  
28±0.5  
12  
PC board pattern (Copper-side view)  
1.102±0.02  
.472  
1
10±0.5  
.039  
.394±0.02  
2.54  
4
0.5  
.100  
.157  
0.4  
.020  
1.0  
.016  
1.4  
7.62  
.300  
.039  
.055  
12-1.3 DIA.  
.047-.051 DIA.  
3
.118  
1
2
3
4
9
5
8
6
7
2.54  
.100  
12  
7.62  
.300  
.472  
12  
11  
10  
0.5  
5.08  
.200  
.020  
General tolerance: ±0.3 ±.012  
Tolerance: ±0.1 ±.003  
en_ds_61105_0000: 130804D  
2
S
Schematic (Bottom view)  
Single side stable  
2a2b  
3a1b  
3a1b  
4a  
4a  
1
2
3
4
5
6
1
2
3
4
5
6
1
2
3
4
5
6
Deenergized position  
+
+
+
-
-
-
12  
1
11  
2
10  
3
9
4
8
5
7
6
12  
1
11  
2
10  
3
9
4
8
5
7
6
12  
1
11  
2
10  
3
9
4
8
5
7
6
2 coil latching  
2a2b  
Diagram shows the “reset”  
position when terminals 6  
and 7 are energized.  
Energize terminals 1 and  
12 to transfer contacts.  
+
+
Reset  
-
+
+
Reset  
-
+
+
Set  
Set  
Set  
Reset  
-
-
-
-
12  
11  
10  
9
8
7
12  
11  
10  
9
8
7
12  
11  
10  
9
8
7
REFERENCE DATA  
1. Maximum switching power  
2. Life curve  
3. Contact reliability  
Condition: 1V DC, 1mA  
Detection level 10 Ω  
Tasted Sample: S4-24V, 10pcs  
1,000  
500  
1,000  
99.9  
99.0  
DC resistive load  
AC resistive load  
95.0  
70.0  
50.0  
30.0  
100  
10  
100  
10.0  
5.0  
50  
30  
2.0  
m = 1.6  
µ: 79 million time  
σ: 51 million time  
95% reliability limit:  
14.6 million times  
(weibul probability paper)  
125 V AC  
1.0  
0.5  
(cosϕ = 1.0)  
10  
0
250 V AC  
(cosϕ = 1.0)  
0.2  
0.1  
0.1  
1
10  
1
2
3
4
5
1.0  
10.0  
No. of operations, ×107  
Contact current, A  
Contact current, A  
4.-(1) Coil temperature rise  
4.-(2) Coil temperature rise  
5. Operate and release time  
(Single side stable type)  
Tested Sample: S4-24V, 10pcs  
Tested Sample: S4-24V, 4 Form A  
Tested Sample: S4-24V, 4 Form A  
100  
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
100  
90  
80  
70  
60  
50  
20  
18  
16  
14  
12  
4A  
0A  
Release time (with diode)  
10  
8
Max.  
Min.  
40  
Coil operating  
Operate time  
30  
6
power, 0.2 W  
Max.  
Min.  
20  
10  
0
4
Max.  
Min.  
2
Release time  
80 100  
Coil applied voltage, %V  
0
120  
140  
1
2
3
4
5
6
0.2  
0.4  
0.6  
0.8  
1.0  
1.2  
Coil operating power, W  
Contact current, A  
6. Influence of adjacent mounting  
7. Thermal electromotive force  
Note: When installing an S-relay near another, and there is no effect  
from an external magnetic field, be sure to leave at least 10 mm  
.394 inch between relays in order to achieve the performance  
listed in the catalog.  
200  
(1) & (3) relays  
are energized  
(1)  
(2)  
(3)  
NR-H  
Single side stable  
2 coil latching  
+30  
100  
+30  
Drop-out voltage  
0
0
NF relay  
S relay  
Pick-up voltage  
5
Pick-up voltage  
–30  
–30  
10  
5
10  
2
4
6
8
10  
12  
Inter-relay distance, mm  
Inter-relay distance, mm  
Minute  
en_ds_61105_0000: 130804D  
3
S
8. Effect from an external magnetic field  
Single side stable  
Single side stable  
+30  
+30  
0
φ
φ
Drop-out voltage  
Pick-up voltage  
Pick-up voltage  
0
Drop-out voltage  
G
–30  
+30  
–30  
+30  
50  
100  
50  
100  
G
2 coil latching  
2 coil latching  
0
0
Pick-up voltage  
Pick-up voltage  
–30  
–30  
50  
100  
50  
100  
G
G
ACCESSORIES  
Specifications  
Breakdown voltage  
Insulation resistance  
Heat resistance  
1,500 Vrms between terminals  
More than 100 Mbetween terminals at 500 V DC Mega  
150 ±3°C (302 ±5.4°F) for 1 hour.  
Maximum continuous current  
(Note: Don't insert or remove relays while in the energized condition.)  
4 A  
S Relay Socket,  
S-PS  
mm inch  
Dimensions  
PC board pattern (Copper-side view)  
12.4±0.6  
.488±.024  
7.6  
.299  
5.08 5.08 5.08 5.08 5.08  
.200.200.200.200.200  
18.3±0.6  
.720±.024  
12-1.6 DIA. HOLE  
12-.063 DIA. HOLE  
1.2±0.3  
15.5±0.6  
.610±.024  
.047±.012  
0.4±0.1  
.016±.004  
4.85±0.3  
3.4±0.3  
.134±.012  
.191±.012  
5.08±0.3  
7.62±0.3  
.300±.012  
.200±.012  
32.4±0.6  
Terminal width: 1.3 .051  
Terminal thickness: 1.2 .047  
1.5±0.3  
.059±.012  
1.5±0.3  
.059±.012  
1.276±.024  
Inserting and removing method  
Inserting method: Insert the relay as  
shown in Fig. 1 unit the rib of the relay  
snaps into the clip of the socket.  
Rib  
Fig. 1  
Removing method:  
(1) Remove the relay straight from the  
socket holding the shaded portion of the  
relay as shown in Fig. 2.  
Fig. 2  
(2) When sockets are mounted in close  
proximity, use a slotted screw driver as  
shown in Fig. 3.  
Fig. 3  
en_ds_61105_0000: 130804D  
4
S
NOTES  
1. Special use of 2 coil latching types: 2  
ways can be considered if 2 coil latching  
types are used as 1 coil latching types.  
(A) Reverse polarity is applied to the set  
coil of 2 coil latching type.  
Reset position of 2a2b type  
2. Soldering operations should be  
accomplished as quick as possible;  
within 10 seconds at 250°C 482°F solder  
temperature or 3 seconds at 350°C  
662°F. The header portion being sealed  
with epoxy resin, undue subjection to  
heat may cause loss of seal. Solder  
should not be permitted to remain on the  
header.  
1
2
3
4
9
5
8
6
+
-
(B) By shorting terminals 12 and 7, apply  
plus to 1, minus to 6 at set and plus to 6,  
minus to 1 at reset. Applied coil voltage  
should be the same as the nominal.  
Operating power will be reduced to one-  
half.  
12  
11  
10  
7
CAUTIONS FOR USE  
Based on regulations regarding insulation distance, there is a  
2
3
4
9
5
restriction on same-channel load connections between terminals  
No. 2, 3 and 4, 5, as well as between No. 8, 9 and 10, 11. See  
the figure below for an example.  
3
4
9
2
5
8
11 10  
8
11  
10  
O
Between 2, 3 and 4, 5: different channels, therefore not possible  
Between 10, 11 and 8, 9:different channels, therefore not possible  
O
O
Between 2, 3 and 4, 5: same channels, therefore possible  
Between 10, 11 and 8, 9:same channels, therefore possible  
O
No good  
Good  
For Cautions for Use, see Relay Technical Information (see catalog).  
en_ds_61105_0000: 130804D  
5

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