VRBG5614S [STANLEY]

Bi-color φ5 Round Shape Type; 双色φ5圆形形状类型
VRBG5614S
型号: VRBG5614S
厂家: STANLEY ELECTRIC CO.,LTD.    STANLEY ELECTRIC CO.,LTD.
描述:

Bi-color φ5 Round Shape Type
双色φ5圆形形状类型

光电
文件: 总18页 (文件大小:300K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
5614S Series  
Bi-color φ5 Round Shape Type  
Features  
Package  
Bi-color φ5 Round shape type,  
Milky White Diffused epoxy  
Outer Dimension φ5 Round shape type  
Operation temperature range.  
Product features  
Storage Temperature  
Operating Temperature  
Lead–free soldering compatible  
RoHS compliant  
:-30℃~100℃  
:-30℃~85℃  
Green  
: 558nm (BG)  
: 567nm (PG)  
Dominant wavelength  
Yellow Green : 572nm (PY)  
Red : 624nm (VR)  
Half Intensity Angle  
BG,PG,PY : 24 deg.  
VR : 21 deg.  
Die materials  
BG,PG,PY : GaP VR : GaAsP  
Rank grouping parameter  
Sorted by luminous intensity per rank taping  
Soldering methods  
TTW (Through The Wave) soldering and manual soldering  
ESD  
More than 2kV(HBM)  
Bulk : 200pcs(MIN.)  
Packing  
Recommended Applications  
Amusement Equipment, Electric Household Appliances, OA/FA, Other General Applications  
2006.7.31  
Page 1  
5614S Series  
Bi-color φ5 Round Shape Type  
Color and Luminous Intensity  
(Ta=25)  
Dominant  
Wavelength  
Luminous Intensity  
Iv (mcd)  
Emitted  
Color  
Lens  
Color  
Part No.  
Die Name Material  
d (nm)  
λ
TYP.  
558  
IF  
MIN.  
TYP.  
IF  
BG  
VR  
PG  
VR  
PY  
GaP  
GaAsP  
GaP  
20  
8
16  
20  
Green  
Red  
Milky  
White  
VRBG5614S  
VRPG5614S  
VRPY5614S  
Diffused  
Diffused  
Diffused  
624  
567  
624  
572  
624  
20  
20  
20  
20  
20  
15  
15  
15  
25  
15  
30  
30  
30  
50  
30  
20  
20  
20  
20  
20  
Green  
Milky  
White  
GaAsP  
GaP  
Red  
Yellow  
Green  
Milky  
White  
VR  
GaAsP  
Red  
Page 2  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Absolute Maximum Ratings  
(Ta=25)  
Absolute Maximum Ratings  
Item  
Symbol  
Unit  
BG  
75  
PG  
75  
PY  
75  
VR  
75  
Power Dissipation  
Pd  
IF  
mW  
mA  
Forward Current  
Pulse Forward  
30  
30  
30  
30  
IFRM  
100  
100  
100  
100  
mA  
1
Current  
Derating  
(Ta=25 or higher)  
I
F
0.33  
4
0.33  
4
0.33  
4
0.33  
4
mA/  
Reverse Voltage  
VR  
V
Operating  
Temperature  
Topr  
Tstg  
-30 +85  
Storage Temperature  
-30 +100  
1 IFRM Measurement condition : Pulse Width1ms., Duty1/20.  
The ratings specified above are under the condition that only one diode is lit.  
50% Max. of each rating shall be applied when two diodes are lit simultaneously.  
Page 3  
2007.8.31  
5614S Series  
Bi-color φ5 Round Shape Type  
Electro-Optical Characteristics  
(Ta=25)  
Characteristics  
Item  
Symbol  
VF  
Unit  
V
Conditions  
IF=20mA  
BG  
2.1  
PG  
2.1  
PY  
VR  
2.0  
TYP.  
MAX.  
MAX.  
TYP.  
2.1  
Forward Voltage  
2.5  
100  
555  
558  
30  
2.5  
100  
560  
567  
30  
2.5  
100  
570  
572  
30  
2.5  
100  
630  
624  
30  
Reverse Current  
Peak Wavelength  
VR=4V  
IR  
A
μ
IF=20mA  
IF=20mA  
IF=20mA  
IF=20mA  
nm  
nm  
λp  
λd  
⊿λ  
Dominant  
Wavelength  
Spectral Line Half  
Width  
Half Intensity  
Angle  
TYP.  
TYP.  
nm  
2
θ
1/2 TYP.  
24  
24  
24  
21  
deg.  
Page 4  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
(Ta=25)  
Luminous Intensity Rank  
IV mcd  
VRBG5614S  
Rank  
VRPG5614S  
VRPY5614S  
PY VR  
Condition  
IF = 20mA  
BG  
VR  
PG  
VR  
MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX. MIN. MAX.  
AA  
AB  
BA  
BB  
8.0 22.4 15.0 42.0  
16.0 44.8 15.0 42.0  
8.0 22.4 30.0 84.0  
16.0 44.8 30.0 84.0  
15  
30  
15  
30  
42  
84  
42  
84  
15  
15  
30  
30  
42  
42  
84  
84  
25  
50 140  
25 70  
50 140  
70  
15  
15  
30  
30  
42  
42  
84  
84  
Please contact our sales staff concerning rank designation.  
Page 5  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRBG)  
Spectral Distribution  
Relative Intensity vs. Wavelength  
Condition : Ta = 25, IF = 20mA  
Spatial Distribution Example  
Condition : Ta = 25℃  
Wavelength [nm]  
Forward Voltage vs. Forward Current  
Forward Current vs. Relative Intensity  
Condition : Ta = 25℃  
Condition : Ta = 25℃  
Forward Voltage VF(V)  
Forward Current IF(mA)  
Page 6  
2007.11.6  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRBG)  
Derating  
Ambient Temperature vs. Relative Intensity  
Ambient Temperature vs. Maximum Forward Current  
Repetition Frequency : f 50Hz  
Condition : IF=20mA  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Page 7  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRBG)  
Power Dissipation vs. Ambient Temperature  
Dynamic Drive Rating  
Duty cycle vs. Maximum Forward Current  
Condition : Ta = 25℃  
Duty (%)  
Ambient Temperature : Ta()  
Pulse Width vs. Maximum Tolerable Peak Current  
Condition : Ta = 25℃  
Pulse Width : tw (μs)  
Page 8  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPG)  
Spectral Distribution  
Relative Intensity vs. Wavelength  
Condition : Ta = 25, IF = 20mA  
Spatial Distribution Example  
Condition : Ta = 25℃  
Wavelength [nm]  
Forward Voltage vs. Forward Current  
Forward Current vs. Relative Intensity  
Condition : Ta = 25℃  
Condition : Ta = 25℃  
Forward Voltage VF(V)  
Forward Current IF(mA)  
Page 9  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPG)  
Derating  
Ambient Temperature vs. Relative Intensity  
Ambient Temperature vs. Maximum Forward Current  
Repetition Frequency : f 50Hz  
Condition : IF=20mA  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Page 10  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPG)  
Power Dissipation vs. Ambient Temperature  
Dynamic Drive Rating  
Duty cycle vs. Maximum Forward Current  
Condition : Ta = 25℃  
Duty (%)  
Ambient Temperature : Ta()  
Pulse Width vs. Maximum Tolerable Peak Current  
Condition : Ta = 25℃  
Pulse Width : tw (μs)  
Page 11  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPY)  
Spectral Distribution  
Relative Intensity vs. Wavelength  
Condition : Ta = 25, IF = 20mA  
Spatial Distribution Example  
Condition : Ta = 25℃  
Wavelength [nm]  
Forward Voltage vs. Forward Current  
Forward Current vs. Relative Intensity  
Condition : Ta = 25℃  
Condition : Ta = 25℃  
Forward Voltage VF(V)  
Forward Current IF(mA)  
Page 12  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPY)  
Derating  
Ambient Temperature vs. Relative Intensity  
Ambient Temperature vs. Maximum Forward Current  
Repetition Frequency : f 50Hz  
Condition : IF=20mA  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature vs. Forward Voltage  
Ambient Temperature : Ta()  
Ambient Temperature : Ta()  
Page 13  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
Technical Data(VRPY)  
Power Dissipation vs. Ambient Temperature  
Dynamic Drive Rating  
Duty cycle vs. Maximum Forward Current  
Condition : Ta = 25℃  
Duty (%)  
Ambient Temperature : Ta()  
Pulse Width vs. Maximum Tolerable Peak Current  
Condition : Ta = 25℃  
Pulse Width : tw (μs)  
Page 14  
2004.10.29  
5614S Series  
Bi-color φ5 Round Shape Type  
(Unit: mm)  
Package Dimensions  
Page 15  
2007.10.12  
5614S Series  
Bi-color φ5 Round Shape Type  
TTW (Through The Wave) soldering Conditions  
100 ℃  
(MAX.)  
Pre-heating  
Solder Bath Temp.  
Dipping Time  
(MAX.)  
(MAX.)  
265℃  
5 s  
1) The dip soldering process shall be 2 times maximum.  
2) The product shall be cooled to room temp. before the second dipping process.  
The detail is described to LED and Photodetector handling precautions of home page:  
"Mounting through-hole Type Devices“ and "Soldering", and use it after the confirmation, please.  
Manual Soldering Conditions  
Iron tip temp.  
Soldering time and frequency  
(MAX.)  
(MAX.)  
400℃  
3 s  
2 times (MAX.)  
The detail is described to LED and Photodetector handling precautions of home page:  
"Mounting through-hole Type Devices“ and "Soldering", and use it after the confirmation, please.  
Page 16  
2006.3.31  
5614S Series  
Bi-color φ5 Round Shape Type  
Reliability Testing Result  
Reliability Testing  
Applicable Standard  
Testing Conditions  
Duration  
Failure  
Result  
Room Temp.  
Operating Life  
EIAJ ED-  
4701/100(101)  
F
Ta = 25, I = Maxium Rated Current  
1,000 h  
0/25  
0/25  
Resistance to  
Soldering Heat  
EIAJ ED-  
4701/300(302)  
260±5, 3mm from package base  
10s  
Minimum Rated Storage Temperature(30min)  
Normal Temperature(15min)  
Maximum Rated Storage Temperature(30min)  
Normal Temperature(15min)  
EIAJ ED-  
4701/100(105)  
Temperature Cycling  
5 cycles  
0/25  
Wet High Temp.  
Storage Life  
EIAJ ED-  
4701/100(103)  
Ta = 60±2, RH = 90±5%  
1,000 h  
1,000 h  
1,000 h  
10s  
0/25  
0/25  
0/25  
0/10  
0/10  
High Temp.  
Storage Life  
EIAJ ED-  
4701/200(201)  
Ta = Maximum Rated Storage Temperature  
Ta = Minimum Rated Storage Temperature  
10N,1time (0.4 and Flat Package : 5N)  
Low Temp.  
Storage Life  
EIAJ ED-  
4701/200(202)  
EIAJ ED-  
4701/400(401)  
Lead Tension  
98.1m/s2 (10G), 100 2KHz sweep for 20min.,  
XYZ each direction  
Vibration,  
Variable Frequency  
EIAJ ED-  
4701/400(403)  
2 h  
Failure Criteria  
Items  
Symbols  
Conditions  
Failure criteria  
F
I Value of each product  
Luminous Intensity  
Luminous Intensity  
Iv  
Testing Min. Value Spec. Min. Value x 0.5  
Testing Max. Value Spec. Max. Value x 1.2  
Testing Max. Value Spec. Max. Value x 2.5  
F
I Value of each product  
F
Forward Voltage  
Reverse Current  
V
Forward Voltage  
R
V = Maximum Rated  
R
I
Reverse Voltage V  
Occurrence of notable decoloration,  
deformation and cracking  
Cosmetic Appearance  
-
-
2007.8.31  
Page 17  
5614S Series  
Bi-color φ5 Round Shape Type  
Special Notice to Customers Using the Products and  
Technical Information Shown in This Data Sheet  
1) The technical information shown in the data sheets are limited to the typical characteristics and circuit  
examples of the referenced products. It does not constitute the warranting of industrial property nor the  
granting of any license.  
2) For the purpose of product improvement, the specifications, characteristics and technical data described in  
the data sheets are subject to change without prior notice. Therefore it is recommended that the most  
updated specifications be used in your design.  
3) When using the products described in the data sheets, please adhere to the maximum ratings for operating  
voltage, heat dissipation characteristics, and other precautions for use. We are not responsible for any  
damage which may occur if these specifications are exceeded.  
4) The products that have been described to this catalog are manufactured so that they will be used for the  
electrical instrument of the benchmark (OA equipment, telecommunications equipment, AV machine, home  
appliance and measuring instrument).  
The application of aircrafts, space borne application, transportation equipment, medical equipment and  
nuclear power control equipment, etc. needs a high reliability and safety, and the breakdown and the wrong  
operation might influence the life or the human body. Please consult us beforehand if you plan to use our  
product for the usages of aircrafts, space borne application, transportation equipment, medical equipment  
and nuclear power control equipment, etc. except OA equipment, telecommunications equipment, AV  
machine, home appliance and measuring instrument.  
5) In order to export the products or technologies described in this data sheet which are under the  
“Foreign Exchange and Foreign Trade Control Law,” it is necessary to first obtain an export permit from the  
Japanese government.  
6) No part of this data sheet may be reprinted or reproduced without prior written permission from Stanley  
Electric Co., Ltd.  
7) The most updated edition of this data sheet can be obtained from the address below:  
http://www.stanley-components.com  
Page 18  
2007.8.31  

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