Series LB
IP65 Panel Seal Pushbutton with Legend & Splash Cover
LB15VA002
Bushing Mount • Solder Lug/Quick Connect
Splash Cover
and O-ring
Dimensions in mm/inch
(5.5)
.217
(1.2) x (2.0) Typ
.047 x .079
M22 P1
(1.7)
.067
(0.5) Typ
.020
3
NC
START
NO
(10.5)
.413
L (+)
(15.8) Sq
.622
2
COM
1
(2.54) Typ
.100
L (-)
(22.0) Dia
.866
Keyway
(31.3) Dia
1.232
(12.0)
.472
(1.8)
.071
(21.5)
.846
(3.2)
.126
BASE SWITCH
(7.5)
.295
CAP FOR SUPER BRIGHT LED
Clear Lens
White Diffuser
Transparent
Clear Lens
(19.0) Dia
.748
Transparent
White Diffuser
LB15WKW01/CUL
(5.1)
.201
Material:
Polycarbonate
AT631B
White Super Bright
Single Element LED
Finish:
Glossy
Note: Overtightening the
mounting nut AT074 may
damage the switch housing.
LEGEND SPECIFICATIONS
AT4131J B Cap
Part Number
Panel Thickness
.039 ~ .138” (1.0 ~ 3.5mm)
(2.8) Typ
.110
(5.08)
.200
(25.0) Dia
.984
Legend
START
Type Style
Helvetica Bold
Type Size
12 Point
Legend Color
Black
Print Method
Laser Etch on
Inside of Lens
Legend shown is illustrative only.
Actual art may vary.
Round Splash Cover for Panel Seal
AT9410
Splash Cover
Lid
Panel
Materials:
Lid: PVC (loses pliability below 0°C/32°F)
Base: Polyethylene
O-ring: NBR
Base
O-ring Supplied
with Switch
O-ring Supplied
with AT9410
Splash Cover
Splash Cover
O-ring
(21.0) Dia
.827
(10.6)
.417
(31.3) Dia
1.232
(7.8)
.307
(3.0)
.118
(1.6)
.063
(23.0) Dia
.906
www.nkkswitches.com
(22.0) Dia
.866
(31.3) Dia
1.232
(0.5)
.020
1
01/28/21
Series LB
IP65 Panel Seal Pushbutton with Legend & Splash Cover
Base Switch Specifications
Electrical Capacity (Resistive Load)
Power Level: 3A @ 125V AC or 3A @ 250V AC or 3A @ 30V DC
Other Ratings
Contact Resistance: 50 milliohms maximum
Insulation Resistance: 200 megohms minimum @ 500V DC
Dielectric Strength: 1,000V AC minimum between contacts for 1 minute minimum;
1,500V AC minimum between contacts & case for 1 minute minimum
Mechanical Life: 1,000,000 operations minimum
Electrical Life: 100,000 operations minimum
Nominal Operating Force: 5.39N
Contact Timing: Nonshorting (break-before-make)
Travel: Pretravel .059” (1.5mm); Overtravel .059” (1.5mm); Total Travel .118” (3.0mm)
Materials & Finishes
Housing: Glass fiber reinforced polyamide (UL94V-0)
O-ring: Nitrile butadiene rubber
Inner Seal: Silicone rubber
Movable Contact: Silver alloy
Stationary Contacts: Silver alloy
Base: Liquid crystal polymer (UL94V-0)
Switch Terminals: Phosphor bronze with silver plating
Lamp Terminals: Brass with silver plating
Environmental Data
Operating Temperature Range: –25°C ~ +50°C (–13°F ~ +122°F). With polyvinyl chloride splash cover, the lowest limit is 0°C (32°F).
Humidity: 90 ~ 95% humidity for 96 hours @ 40°C (104°F)
Vibration: 10 ~ 55Hz with peak-to-peak amplitude of 1.5mm traversing the frequency range & returning in 1 minute;
3 right angled directions for 2 hours
Shock: 50G (490m/s2) acceleration (tested in 6 right angled directions, with 5 shocks in each direction)
Sealing: IP65 of IEC 60529 standard (similar to NEMA 4 & 13)
RoHS Compliant:
Installation
Mounting Torque: 1.96Nm (17.35 lb•in) maximum
Cap Installation Force: 3.92N maximum downward force on cap
Quick Connect Force: 52.95N maximum downward force on connector
Soldering Time & Temperature: Manual Soldering: 390°C for 4 seconds, 2 cycles
Standards & Certifications
Flammability Standards: UL94V-0 housing & base
POLES & CIRCUITS
Plunger Position
( ) = Momentary
Pole
Model
LB15
SP
Connected Terminals
Normal
Down
Normal
Down
ON
(ON)
1-3
1-2
Throw & Switch/Lamp Schematics
Notes: Switch is marked with NC, NO, COM, L+, L–.
Lamp circuit is isolated and requires an external
power source.
SPDT
1
COM
NC
2
L (+)
3
(-) L
NO
ELECTRICAL SPECIFICATIONS FOR LED
ATTENTION
ELECTROSTATIC
SENSITIVE DEVICES
AT631B
White Super Bright
Single Element LED
Color
Maximum Forward Current
IFM
30mA
Typical Forward Current
IF
20mA
Forward Voltage
VF
3.3V
Maximum Reverse Voltage
VRM
7V
Current Reduction Rate Above 25°C
T-1 Bi-pin
White
Ambient Temperature Range
∆IF
0.40mA/°C
The electrical specifications shown are determined at a basic temperature of 25°C. For best results and safe use of LEDs, the supply voltage
should be more than the LED forward voltage. Also, an appropriately
valued ballast resistor should be used, or the LED will be damaged or
destroyed. The resistor value can be calculated by using the formula
shown here.
R
+
IF
Anode
VF
E
–25°C ~ +50°C
www.nkkswitches.com
Cathode
–
R =
Where: R =
E =
VF =
IF =
E – VF
IF
Resistor Value (Ohms)
Source Voltage (V)
Forward Voltage (V)
Forward Current (A)
2
01/28/21
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