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 RED HIGH FLUX LED
HR310
Technical Datasheet
This revolutionary package design allows the lighting designer to reduce the number of LEDs required and provide a more uniform and unique illuminated appearance than with other LED solutions. This package LEDs are designed for high current operation and high flux output application. But the package's design features better thermal management characteristics than other LED solutions. Because of these advantages, this product have many applications. Such as automotive tail, stop and turn signal lamps, and electronic signs etc. Application
* Automotive exterior lighting * Electronic signs and signals * Channel letter / lighting * Decorative lighting * Specialty Lighting
Features
* High flux output and high luminance * Designed for high current operation * Uniform color * Low profile and low thermal resistance * Packaged in tubes for use with automatic insertion equipment
-1-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Outline Dimensions
HR310
Unit : mm
CHAMFER 1.25 X 1.25
CATHODE 7.62 0.5 ANODE 7.62 0.5
5.0
3 0.2
1.9
4.4 2.5 0.1 1.4 MAX 0.4 0.2 1.50.2 0.5 0.76 0.1 5.08 0.2 5.08 0.3
Notes : Protruded epoxy is 1.4mm maximum.
-2-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
7.5 0.2
RED HIGH FLUX LED
Electro-Optical Characteristics ( Ta = 25C, IF=70mA )
Item Luminous Flux [1] Luminous Intensity Dominant Wavelength[3] Forward Voltage[4] View Angle Thermal Resistance Optical Efficiency Reverse Current (at VR = 5V) Symbol V[2] IV Value Min. 4.4 615 Typ. 6.0 10000 625 2.6 40 120 33 5 Max. 630 3.0
HR310
Unit lm mcd nm V deg. C /W lm/W
d
VF 2 1/2 RJ-P
opt
IR
A
Absolute Maximum Ratings ( Ta = 25C )
Item DC Forward Current Forward Peak Pulse Current Reverse Voltage Power Dissipation Operating Temperature Storage Temperature Solder Temperature Symbol IF IFP [5] VR PD Topr Tstg TS Value 70 100 5 224 -40 ~ 100 -50 ~ 105 260C for 5second [6] Unit mA mA V mW C C C
Notes : [1] SSC maintains a tolerance of 10% on flux and power measurements. [2] V is the total luminous flux output as measured with an integrated sphere. [3] Dominant wavelength is derived from the CIE 1931 Chromaticity diagram. A tolerance of 0.5nm for dominant wavelength [4] A tolerance of 0.05V on forward voltage measurements [5] t 0.1ms, D = 1/10 [6] No closer than 1.5mm from the base of the stopper.
-3-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Reliability Tests
Item
Life Test High Temperature Operating Low Temperature Operating Thermal Shock Resistance to soldering Heat ESD (Human Body Model) High Temperature Storage Low Temperature Storage Temperature Humidity Storage Temperature Humidity Operating
HR310
Condition
Ta = RT, IF = 70mA Ta = 100C, IF = 20mA Ta = -40C, IF = 70mA Ta = -50C (30min) ~ 105 (30min) (Transfer time : 5sec, 1Cycle = 1hr) Ts = 255 5C, t = 4 1sec 1kV, 1.5k ; 100pF Ta = 105C Ta = -50C Ta = 85C, RH = 85% Ta = 85C, RH = 85%, IF = 40mA
Note
1000hrs 1000hrs 1000hrs 100 cycles 1 time 1 time 1000hrs 1000hrs 1000hrs 500hrs
Failures
0/22 0/22 0/22 0/40 0/22 0/22 0/22 0/22 0/22 0/22
< Judging Criteria For Reliability Tests >
VF IR V
Notes : [1] USL : Upper Standard Level [2] LSL : Lower Standard Level.
USL[1] X 1.2 USL X 2.0 LSL [2] X 0.7
-4-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Characteristic Diagrams
Ta= 25C
HR310
70 60
1.2
Ta= 25C
Relative Luminous Flux
Forward Current(mA)
1.0
50 40 30 20 10 0 1.0
0.8
Rth(J-A) = 200 C/W o Rth(J-A) = 300 C/W o Rth(J-A) = 400 C/W o Rth(J-A) = 500 C/W
o
0.6
0.4
0.2
0.0
1.2
1.4
1.6
1.8
2.0
2.2
2.4
2.6
2.8
3.0
0
10
20
30
40
50
60
70
Forward Voltage [V]
Forward Current [mA]
Forward Voltage vs. Forward Current
Forward Current vs. Relative Flux
80
626
Ta= 25C
Dominant Wavelength [nm]
40 60 80
O
Forward Current IF [mA]
624
60
Rth(J-A) : 300 C/W
40
O
622
Rth(J-A) : 400 C/W Rth(J-A) : 500 C/W
20
O
O
620
618
0 -40
-20
0
20
100
120
616
0
20
40
60
80
100
Ambient Temperature TA [ C]
Forward Current [mA]
Ambient Temperature vs. Maximum Forward Current
-5-
Forward Current vs. Dominant Wavelength
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
HR310
1.2
IF= 70mA
2.9
IF= 70mA
1.0
Relative Luminousity Flux
0.8
Forward Voltage [V]
2.8
0.6
2.7
0.4
2.6
0.2
0.0
2.5
0 20 40 60
o
80
100
0
20
40
60
o
80
100
Ambient Temperature Ta[ C]
Ambient Temperature Ta[ C]
Ambient Temperature vs. Relative Flux
Ambient Temperature vs. Forward Voltage
1.0
Ta= 25C, IF= 70mA
1.0
Ta= 25C, IF= 70mA
Relative Emission Intensity
Relative Luminous Intensity
0.8
0.6
0.5
0.4
0.2
0.0 400
500
600
700
0.0 -90
-60
-30
0
30
60
90
Wavelength [nm]
Off Axis Angle [deg.]
Spectrum
Directivity
-6-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Bin Code Description
Bin Code Luminous Flux J Dominant Wavelength 2 Forward Voltage 6
HR310
Luminous Flux (lm) @ IF = 70mA Bin Code A B C D E F G H J K L Min. 0.5 0.7 1.0 1.4 2.0 2.6 3.4 4.4 5.8 7.6 10.0 Max. 0.7 1.0 1.4 2.0 2.6 3.4 4.4 5.8 7.6 10.0 13.0
Dominant Wavelength (nm) @ IF = 70mA Bin Code 0 1 2 Min. 615 620 625 Max. 620 625 630
Forward Voltage (V) @ IF = 70mA Bin Code 1 2 3 4 5 6 Min. 2.20 2.35 2.50 2.60 2.70 2.85 Max. 2.35 2.50 2.60 2.70 2.85 3.00
Available ranks
-7-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Packing (Tube)
9.7 5.1 2.5
HR310
Unit : mm
0.6
2.6
5.8
12
DEVICE
HR310
J14
Anode
LOT NO. 20XX.XX.XX
CAT J14
QTY 60
D/C 07XX
Cathode
SEOUL SEMICONDUCTOR CO., LTD.
made in Korea
Top view
4851
Side view
* Plastic tube 60pcs max/tube
-8-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Packing (Sealing pack & Box)
HR310
Unit : mm
* Aluminum Sealing pack (in silica gel) 1200pcs max/pack (20tubes max/pack)
HXXXX
RANK : XXXX QTY : 1200pcs LOT : 20XX.XX.XX
SEOUL SEMICONDUCTOR CO., LTD
* Cardboard box (500x220x280) (21600pcs max/box) (18packs max/box)
-9-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Soldering Profile
1) Recommended Wave Soldering Conditions / Profile * Preliminary heating to be at 85C(120 C max) for 20 seconds(60 seconds max). * Soldering heat to be at 255 C (260C max) for 4 seconds (5 seconds max.) * Soak time above 200 C is 5 seconds
300
HR310
250
PEAK 4s (5s max) 255 C (260 C max)
Temperature [ C]
200
O
150
PREHEAT 20s (60s Max) 85 C(120 C max)
100
50
0
0
2
4
6
8
10
12
14
16
18
20
22
24
26
28
30
32
34
36
T im e [s ]
2) Hand Soldering conditions * Not more than 3 seconds at max. 350C, under Soldering iron.
3) Caution * Leadframes are silver plated copper alloy. This substance has a low thermal coefficient (easily conducts heat) * No closer than 1.5mm from the base of the stopper. * The LEDs must not be repositioned after soldering. * Do not apply any stress to the lead particularly when heat.
Note : In case the soldered products are reused in soldering process, we don't guarantee the products.
-10-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
Precaution for Use
1) Storage
* Before opening the package
HR310
a. Avoid the absorption of moisture, we recommended to store High Flux LEDs in a dry box(or desiccator) with a desiccant . Otherwise, store them in the following environment: Temperature : 5~30 Humidity : 50% max. b. The products should be used in 3 months. It is recommended that the LEDs be used as soon as possible. * After opening the package a. Soldering should be done right after opening the package(within 24Hrs). b. Keeping of a fraction - Sealing - Temperature : 5 ~ 40, Humidity : less than 30% c. If the package has been opened more than 1week or the color of desiccant changes, components should be dried for 10-12hr at 605 * Any mechanical force or any excess vibration shall not be accepted to apply during cooling process to normal temp. after soldering. * Avoid quick cooling * Leadframes are silver plated copper alloy. The silver plate surface may be affected by environments which contains corrosive substances. Please avoid conditions which may cause the LEDs to corrode, tarnish or discolor. 2) Static Electricity * Static Electricity and surge voltage damage the LEDs. So it is recommended that a wrist band or an anti-electrostatic glove be used when handling the LEDs. * All devices, equipment and machinery must be grounded properly. It is recommended that precautions should be taken against surge voltage to the equipment that mounts the LEDs.
-11-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)
RED HIGH FLUX LED
3) Heat Generation
HR310
* Thermal is one of the important parameters to design the end product. Please consider the heat generation of the LEDs. * The operating current should be decided after considering the ambient maximum temperature of LEDs.
4) Others * The color of the LEDs is changed slightly an operating current and thermal. * Anti radioactive ray design is not considered for the products listed here. * Gallium arsenide is used in some of the products listed in this publication. These products are dangerous if they are burned or smashed in the process of disposal. It is also dangerous to drink the liquid or inhale the gas generated by such products when chemically disposed. * This device should not be used in any type of fluid such as water, oil, organic solvent and etc. When washing is required, IPA(Isopropyl Alcohol) should be used. * When the LEDs are illuminating, operating current should be decided after considering the junction temperature. Cf.) Please refer Ambient temperature vs. Forward Current graph on page 5 * The appearance and specifications of the product may be modified for improvement without notice.
SEOUL SEMICONDUCTOR CO., LTD. 148-29, Kasan-Dong, Keumchun-Gu, Seoul, Korea TEL : +82-2-3281-6269 FAX :+82-2-858-5537 Homepage : www.seoulsemicon.com www.zled.com E-Store : www.zledstore.com E-mail : sscsale@seoulsemicon.com
-12-
<070523> Rev. 1.5
: QP-7-03-05 (Rev.00)


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