EEWORLDEEWORLDEEWORLD

Part Number

Search

QRM85BYYGY12AE-X0245

Description
Dual Color LED
CategoryLED optoelectronic/LED    photoelectric   
File Size283KB,4 Pages
ManufacturerAPEM
Environmental Compliance
Download Datasheet Parametric View All

QRM85BYYGY12AE-X0245 Overview

Dual Color LED

QRM85BYYGY12AE-X0245 Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid8145906483
Reach Compliance Codecompliant
YTEOL6.9
Optoelectronic device typesDUAL COLOR LED
QRM SERIES Rear Panel Mount LED Indicators
Distinctive features and specifications
Features
Ø6mm and Ø8mm rear mounting LED indicator
5mm flush diffused LED, standard or hyper bright
Bi-color and Tri-color LED options
Black chrome finish
2VDC – 28VAC.DC
200mm wires or pin terminations
IP67 sealed (EN60529)
Epoxy sealed rear end
Supplied with fixing nut, spring washer and O-ring
(Dress nut available as an option - contact APEM)
NB: UL Recognized Component
TECHNICAL SPECIFICATIONS
Voltage
2VDC (No Resistor)
6VDC
12VDC
24VDC
28VDC
Materials
Body:
Black chrome plated brass
Nut:
Black chrome plated brass
Panel seal:
Nitrile O-ring
Standard LED Intensity
HE Red
Green
Yellow
Blue
White
Bi-color (Typical) (Red/Green)
Lock washer:
Spring steel
Terminal seal:
Epoxy
Wires:
24AWG to UL1061
MCD Output
(all voltages)
10mcd
8mcd
6mcd
200mcd
500mcd
10/8mcd
Forward Voltage
2.0V
2.2V
2.1V
3.8V
3.3V
2.0V/2.2V
Operating Voltage
(Min to Max)
1.8 to 2.5VDC
5.4 to 6.6VDC
10.8 to 13.2VDC
21.6 to 26.4VDC
25.2 to 30.8VDC
Operating Current
(Typical All Types)
20mA*
20mA
20mA
20mA
20mA
Max Reverse Voltage:
5V
Viewing Angle:
60°
Life Expectancy:
100,000 hours
Operating Temperature Range:
–40 to +85°C
Storage Temperature Range:
–55 to +100°C
Max panel thickness:
3.5mm
Torque:
60cNm
Tri-color (Typical) (Red/Green/Yellow)
10/8/6mcd
2.0V/2.2V/2.1V
The color is changed by reversing the polarity of the supply voltage.
Tri-color - The indicator has red and green LEDs, when both connected yellow is produced.
Hyper Bright
HE Red
Green
Yellow
Bi-color (Typical) (Red/Green)
Tri-color (Typical) (Red/Green/Yellow)
MCD Output
(all voltages)
980mcd
300mcd
250mcd
350/300mcd
110/30/20mcd
Forward Voltage
2.2V
3.2V
2.2V
2.2/3.2V
1.9V/2.2V/2.1V
Luminous intensity will be reduced with lower operating current.
Note: The operating voltage must not be exceeded by more that 10% as this will result in reduced life expectancy.
The company reserves the right to change specifications without notice.
* Customer to supply resistor for desired operating current.
Luminous intensity is measured at 20mA on a discrete LED unless otherwise stated.
Luminous intensities and color shades of white LEDs may vary within a batch.
APEM
www.apem.com
1
How to deduce normalized parameters from transfer functions and then design filters
[i=s]This post was last edited by VincentLee90 on 2019-5-18 22:49[/i] [align=left][size=14px][font=Tahoma][size=3]Some friends asked me how to design a filter with gain before? What if the normalized ...
VincentLee90 Analog electronics
Output swings to GND Single supply, low side, unidirectional current circuit
Please help explain the title, and if possible, write a waveform explanation by hand, thank you!...
zzw_rst Analog electronics
About the problem of converting schematic diagram to PCB when designing RF PCB circuit
I am using Altium Designer to design a Ku-band PCB. The chip package size is relatively small, and the spacing between pads is also small. If I import the schematic directly into the PCB, I will find ...
明天你好123 PCB Design
QSPI read, write and erase flash
I originally wanted to test the low power consumption, but when I saw that the board had to be cut, I decided to leave it for later and run the external flash function first. 1. Determine the hardware...
过问_小白 GD32 MCU
【CH579M-R1】+OTA principle and source code analysis
Principle Analysis First, let's talk about the program image. A complete program image can be divided into two parts: "interrupt vector table" and "logic program" (let's name it this way for the conve...
Ansersion Special Edition for Assessment Centres
[TI millimeter wave radar evaluation] 3+AWR1443 EVM board test case 2
In my second review, I was originally planning to do some hardware development on the AWR1443 EVM board, but after two days, I found that it could not be used normally, probably due to the computer or...
dingzy_2002 TI Technology Forum

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2024 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号