YB215CWCKW01-5D-JB NKK Switches, YB215CWCKW01-5D-JB Datasheet - Page 8

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YB215CWCKW01-5D-JB

Manufacturer Part Number
YB215CWCKW01-5D-JB
Description
PB SW SPDT NO AMBER SOLDER LUG
Manufacturer
NKK Switches
Series
YB2r
Type
Illuminatedr
Datasheet

Specifications of YB215CWCKW01-5D-JB

Circuit
SPDT
Switch Function
On-Mom
Contact Rating @ Voltage
3A @ 125VAC
Actuator Type
Flush Round Button
Illumination Type, Color
LED, Amber
Illumination Voltage (nominal)
2 VDC
Mounting Type
Panel Mount
Termination Style
Solder, Quick Connect - .110" (2.8mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
YB215CWCKW01/CUL-5D-JB
YB215CWCKW01/CUL-5D-JB
Series YB2
8
If the source voltage is greater than the rated
voltage of a lamp or LED, a ballast resistor
must be connected in series with the lamp.
The following circuit diagram and formula
will assist in calculating the value of the
required ballast resistor.
AT3017 Cap for Bright LEDs
Lens/Insert
Colors Available:
Round • Panel Seal
YB215CWCKW01-6F-JB
CB
DB
FB
Panel Thickness
.020” ~ .197”
(0.5mm ~ 5.0mm)
Red/White
Amber/White
Green/White
(19.0) Dia
.748
(19.0)
(25.0)
.984
.748
.165
Dia
Dia
(4.2)
Flush Panel Seal Pushbuttons
(13.1)
.516
BALLAST RESISTOR CALCULATION FOR LEDS
www.nikkaiswitches.com • Nihon Kaiheiki • Phone 81-44-813-8008 • Fax 81-44-813-8038
TYPICAL SWITCH DIMENSIONS
PANEL THICKNESS & CUTOUT
Lens/Insert
Colors Available:
AT3018 Cap for Super Bright LEDs
Material: Polycarbonate (Lens & Insert)
JB
(25.4) Min
(10.5)
.413
.071
1.0
(1.8)
CAPS & CAP COLORS
Clear/White
E
(33.6)
1.323
(25.4) Min
.067
(1.7)
1.0
R
M16 P1
.288
+
(7.3)
(19.0) Dia
.748
V
F
I
(22.0)
.866
.020
F
(0.5)
.047 x .079
.165
(4.2)
(1.2) x (2.0) Typ
(2.8)
.110
Typ
+0.3
(13.1)
.516
-0.0
Typ
Dia Typ
Anode
Cathode
Side-by-side Mounting
.382
(9.7)
AT3019 Cap for Nonilluminated
Cap Color
Available:
Note: AT3017 and AT3018 can also be
Single Pole
S
(5.55)
2
.219
3
1
Where: R
- +
COM
NC
L
used without illumination.
(3.0)
.118
.146
Metallic Silver
(3.7)
R =
E
V
I
F
F
= Resistor Value (Ohms)
= Source Voltage (V)
= Forward Voltage (V)
= Forward Current (A)
E – V
Double Pole
I
F
(19.0) Dia
.748
2
F
3
1
.437
.236
(4.2)
.165
(6.0)
(11.1)
COM
- +
NC
L
(13.1)
.516
6
4
.146
(3.7)
5
.382
(9.7)

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