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NR-HLD-6V

Description
LONG LIFE RELAY
File Size118KB,8 Pages
ManufacturerNais ( Matsushita Electric Works )
Websitehttp://www.nais-e.com/
Download Datasheet View All

NR-HLD-6V Overview

LONG LIFE RELAY

UL
pending
CSA
pending
LONG LIFE RELAY
NR-RELAYS
FEATURES
20
.787
10
.394
10
.394
mm
inch
• Sealed construction for automatic wave soldering and cleaning
• Latching types available
• High sensitivity — TTL direct drive possible
• High speed — Up to 500 cycle/sec. operations
• Wide switching range and high welding resistance
Gold cobalt (AuCo) contact permits
• Wider switching range from low level up to high current: 10
µ
A to 1 A
• Higher sticking resistance to inrush current
• Stable contact resistance from initial stage throughout life
SPECIFICATIONS
Contact
Arrangement
Initial contact resistance, max.
(By voltage drop 6 V DC 1 A)
Initial contact pressure
Contact material
Contact-
Contact
Sealed type
Magnetically
sealed type
Sealed type
1 Form C
60 m
Approx. 5 g
.18 oz
Gold cobalt
3 pF
4 pF
4 pF
5 pF
5 pF
6 pF
1A 20 VDC,
0.3A 110 VAC
33 VA, 20 W
110 V AC, 30 V DC
AC 0.3 A, DC 1 A
Approx. 100 mV 10
µ
A
10
9
10
6
(at 1 cps.)
3
×
10
6
(at 2 cps.)
5
×
10
6
(at 5 cps.)
10
7
(at 25 cps.)
5
×
10 (at 50 cps.)
7
Characteristics (at 25
°
C
77
°
F)
Max. operating speed
Initial insulation resistance*
1
Between live parts
and ground
Between open
contact
500 cps. (mechanical)
Min. 1000 M
at 500 V DC*
2
1,000 Vrms
350 Vrms (500 V DC)
1,000 Vrms
Max. 3 ms (Approx. 1 ms)
Max. 2 ms (Approx. 0.5 ms)
Approx. 0.5 ms
Approx. 0.3 ms
Max. 35
°
C at 0.5 W operating power
Max. 65
°
C at 1 W operating power
Min. 980 m/s
2
{100 G}
Min. 980 m/s
2
{100 G}
98 m/s
2
{10 G}, 10 to 55 Hz
at double amplitude of 1.6 mm*
8
117.6 m/s
2
{12 G}, 10 to 55 Hz
at double amplitude of 2 mm
–55
°
C to +65
°
C*
10
–67
°
F to +149
°
F
5 to 85% R.H.
Approx. 7 g
.25 oz
Initial
breakdown
voltage*
3
Electrostatic
capacitance
N.O.
contact-coil Magnetically
sealed type
Sealed type
N.C.
contact-coil Magnetically
sealed type
Nominal switching capacity
Max. switching power
Max. switching voltage
Max. switching current
Min. switching power
Mechanical (at 500 cps.)
1 A 20 V DC/
0.3 A 110 V AC
0.5 A 30 V DC/
0.1 A 110 V AC
0.25 A 30 V DC/
0.25 A 30 V AC
0.2 A 24 V DC/
0.2 A 24 V AC
0.1 A 12 V DC/
0.1 A 12 V AC
0.1 A 9 V DC/
0.1 A 9 V AC
Between contact
and coil
Operate time*
4
(at nominal voltage)
Release time (without diode)*
4
(at nominal voltage)
Contact Single side stable
bounce
1-coil /2-coil latching
time
Temperature rise
Shock resistance
Functional*
5
Destructive*
6
Functional*
7
Destructive
Rating
(resistive)
Vibration
resistance
Expected
life (min.
operations)
Electrical
(resistive)
Conditions for opera- Ambient
tion, transport and
temp.
storage*
9
(Not freez-
ing and condensing
Humidity
at low temperature)
Unit weight
Remarks
*
*
1
*
2
*
3
*
4
*
5
*
6
*
7
*
8
10
8
(at 100 cps.)
Coil (polarized) (at 25
°
C
77
°
F)
Minimum operting power
Single side stable
1 coil latching
2 coil latching
Single side stable
1 coil latching
2 coil latching
72 to 133 mW
41 to 45 mW
72 to 107 mW
147 to 300 mW
74 to 153 mW
147 to 331 mW
*
9
*
10
Nominal operating power
Specifications will vary with foreign standards certification ratings.
Measurement at same location as "Initial breakdown voltage" section
Min. 500M
at 100 V DC between coils of 2 coil latching type
Detection current: 10mA, Except for between coils of 2 coil latching type
Excluding contact bounce time
Half-wave pulse of sine wave: 6ms; detection time: 10
µ
s
Half-wave pulse of sine wave: 6ms
Detection time: 10
µ
s
Although NR relays are rated at 10 G/55 cps. vibration resistance, they will with-
stand up to 60 G/2,000 cps., provided they receive additional support such as
anchoring to the PC board with epoxy resin.
Refer to 5. Conditions for operation, transport and storage mentioned in
AMBIENT ENVIRONMENT (Page 61)
Total temperature (ambient temperature plus temperature rise in coil) should not
exceed 90
°
C
194
°
F
for single side stable, and 105
°
C
221
°
F
for latching relays.
See Reference Data for determination of coil voltage versus temperature.
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