GW7GMP**FGC SPECIFICATIONS

ZENIGATA LED
Feb 10, 2014
SPECIFICATIONS
GIGA ZENIGATA-LED
GW7GMP**FGC
**:30,40,50
Notice
Contents in this technical document be changed without any notice due to the product modification.
In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any
defects that may occur in wquipment using any SHARP devices shown in catalogs, data books, etc.
Development DepartmentⅡ
Lighting Device Division
Electronic Components And Devices Group
http://www.sharp-world.com/products/device/
SHARP CORPORATION
sharp LD-E1-2-14-B
Model No. GW7GMP**FGC
Contents in this technical document be changed without any notice due to the product modification.
http://www.sharp-world.com/products/device/
● Handle this document carefully for it contains material protected by international
copyright law. Any reproduction, full or in part, of this material is prohibited
without the express written permission of the company.
● When using the products covered herein, please observe the conditions written herein
and the precautions outlined in the following paragraphs. In no event shall the
company be liable for any damages resulting form failure to strictly adhere to these
conditions and precautions.
(1) Please do verify the validity of this part after assembling it in customerʼs products, when customer
wants to make catalogue and instruction manual based on the specification sheet of this part.
(2) The products covered herein are designed and manufactured for the following
application areas. When using the products covered herein for the equipment
listed in paragraph (3), even for the following application areas, be sure
to observe the precautions given in Paragraph (3). Never use the products
for the equipment listed in Paragraph (4).
・Office electronics
・Instrumentation and measuring equipment
・Machine tools
・Audiovisual equipment
・Home appliances
・Communication equipment other than for trunk lines
(3) These contemplating using the products covered herein for the following
equipment which demands high reliability, should first contact a sales
representative of the company and then accept responsibility for incorporating
into the design fail-safe operation, redundancy, and other appropriate
measures for ensuring reliability and safety of the equipment and the overall system.
・Control and safety devices for airplanes, trains, automobiles, and other transportation equipment
・Mainframe computers
・traffic control systems
・Gas leak detectors and automatic cutoff devices
・Rescue and security equipment
・Other safety devices and safety equipment, etc.
(4) Do not use the products covered herein for the following equipment which
demands extremely high performance in terms of functionality, reliability, or accuracy.
・Aerospace equipment
・Communications equipment for trunk lines
・Control equipment for the nuclear power industry
・Medical equipment related to life support, etc.
(5) please direct all queries and comments regarding the interpretation of the
above four Paragraphs to a sales representative of the company.
● Please direct all queries regarding the products covered herein to a sales
representative of the company.
sharp LD-E1-2-14-B
Model No. GW7GMP**FGC
Contents in this technical document be changed without any notice due to the product modification.
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GW7GMP**FGC Specifications
1. Application
These specifications apply to the light emitting diode module Model No. GW7GAP50FGC.
[ LED module (InGaN Blue LED chip + Phosphor) ]
Main application : Lighting
2. External dimensions and equivalent circuit
Refer to Page 2.
3. Ratings and characteristics
Refer to Page 3-6.
3-1.
3-2.
3-3.
3-4.
Absolute maximum ratings
Electro-optical characteristics
Derating curve
Characteristics diagram (TYP.)
4. Reliability
Refer to Page 7.
4-1. Test items and test conditions
4-2. Failure criteria
5. Quality level
Refer to Page 8.
5-1. Applied standard
5-2. Sampling inspection
5-3. Inspection items and defect criteria
6. Supplements
6-1.
6-2.
6-3.
6-4.
Refer to Page 9-11.
Chromaticity rank table
Packing
Label
Indication printed on product
7. Precautions
Refer to Page 12-15.
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2.External dimensions and equivalent circuit
①65
(Unit:mm)
31.5 ±0.1
(0.3)
※1
(6.3)
Top view
(7.1)
54.5 ±0.1
②75
Label
Tc point
4-R1.6
65
(2.3)
※2
(Φ37.0)
(6.2)
※3
(Φ35.5)
3.1 ±0.1
(1.6)
Side view
(3.9)
(37)
The value inside parentheses are reference value.
*1 Offset value between alminium substrate and surface coarting.
*2 Offset value of screw cramp point. Screw design must be smaller than this area.
*3 Minimum creepage distance of insulation.
*4 As for the rest, no parantheses means generally tolerance +/- 0.3mm.
x12
x12
x12
x12
x12
x12
x12
x12
x12
+connection
terminal
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
x12
-connection
terminal
x12
x12
48 series × 7 parallel = 336 pcs of LEDs
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3.Ratings and characteristics
3-1.Absolute maximum ratings
Item
Symbol
Rating
Unit
Power Dissipation(※1,4)
P
148.0
W
Forward Current(※1,4)
IF
910
mA
Reverse Current(※2,4)
VR
100
mA
Operating Temperature(※3)
Topr
-30 ~ +100
℃
Storage Temperature
Tstg
-40 ~ +100
℃
Junction Temperature
Tj
140
℃
*1 Power dissipation and forward current are the values in case the module temperature
is set lower than the rating by using an adequate heat sink.
*2 The maximum rating of reverse current is assumed, after considering the current that occur
due to initial connection error that may occur suddenly.
(Not dealing with the possibility of always-on reverse voltage.)
*3 Operating temperature is measured at the point of case temperature "Tc"
(Refer to measuring point of case temperature on page 5.)
Refer to "Derating curve" on page 5 as for operating current.
*4 Tc = 25 ℃
3
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3-2.Electro-optical characteristics
CCT
30
Item
MAX.
Unit
(140.0)
153.0
V
Luminous Flux※6
Φ
9 639
(10710)
-
lm
-
(0.434)
-
-
-
(0.403)
-
-
Chromaticity
x
Coordinates※7
y
Color Temperature
-
-
(3 000)
-
K
Ra
80
(82)
-
-
Item
Symbol
IF=700mA
Condition
MIN.
TYP.
MAX.
Unit
Forward Voltage※5
VF
123.0
(140.0)
153.0
V
Luminous Flux※6
Φ
10 436
(11 595)
-
lm
-
(0.3818)
-
-
-
(0.3797)
-
-
Chromaticity
x
Coordinates※7
y
Color Temperature
-
-
(4 000)
-
K
Ra
80
(82)
-
-
MIN.
TYP.
MAX.
Unit
Rendering Index※8
50
TYP.
123.0
General Color
CCT
MIN.
VF
Rendering Index※8
40
Condition
Forward Voltage※5
General Color
CCT
Symbol
(Tj=90℃)
Item
Symbol
IF=700mA
Condition
Forward Voltage※5
VF
123.0
(140.0)
153.0
V
Luminous Flux※6
Φ
10 620
(11 800)
-
lm
-
(0.3453)
-
-
-
(0.3557)
-
-
Chromaticity
x
Coordinates※7
y
Color Temperature
-
-
(5 000)
-
K
Ra
80
(82)
-
-
General Color
Rendering Index※8
IF=700mA
※5 (After 20 ms drive, Measurement tolerance: ± 3 %)
(Note) Values inside parentheses are shown for reference purpose only.
※6 Monitored by Sharp's 8 inch integrating sphere and Otsuka electronics SR-2000A
(After 20 ms drive, Measurement tolerance: ± 10 %)
※7 Monitored by Sharp's 8 inch integrating sphere and Otsuka electronics SR-2000A
(After 20 ms drive, Measurement tolerance: ± 0.005)
※8 Monitored by Sharp's 8 inch integrating sphere and Otsuka electronics SR-2000A
(After 20 ms drive, Measurement tolerance: ± 2)
※ 9 Minimal drive current should be 21mA, if less than that LED die may not emit light.
※10 The value of typical would be shifted due to each lot characteristics.
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3-3.Derating curve
Forward Current Derating Curve
1100
1000
Forward Current I F [mA]
900
800
700
600
500
400
300
200
100
0
-30
-20
-10
0
10
20
30
40
50
60
70
80
90
100
110
Case Temperature T [℃]
(Note) To keep the case temperature lower than the rating, enough heat-radiation performance needs to
be secured by using an adequate heat sink (refer to note *3).
Please ensure the maintenance of heat radiation does not exceed case temperature over the rating
in operation.
(Measuring point for case temperature)
Please take note of the following, when measuring Tc.
* LED device must be set on flat.
* Substrate surface must be even temperature.
measuring point
Thermal Resistance: 0.37 ℃/W (Typical value)
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3-4.Characteristics diagram(TYP.)
Forward Current
Forward Current vs Relative Luminous Flux
Tj = 90℃
120
900
Forward Current IF [mA]
Relative Luminous Flux [%]
100
80
60
40
20
0
Tj = 90℃
1000
800
700
600
500
400
300
200
100
100 200 300 400 500 600 700 800 900 1000
130
132
Forward Current IF [mA]
If = 700 mA
Relative Luminous Flux [%]
Forward Voltage VF [V]
140
138
10
20
30
40
50
60
70
140
142
144
80
If = 700 mA
120
142
0
138
Case Temperature vs. Relative Luminous Flux
144
136
136
Forward Voltage VF [V]
Case Temperature vs. Forward Voltage
146
134
100
80
60
40
20
0
90
Case Temperature Tc [℃]
0
10
20
30
40
50
60
70
80
90
Case Temperature Tc [℃]
(Note) Characteristics data shown here are for reference purpose only. (Not guaranteed data)
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4.Reliability
4-1.Test items and test conditions
Confidence level:90%
No.
Test item
Test conditions
1
Temperature Cycle
2
Temperature Humidity
Storage
Samples Defective
LTPD
(%)
n
C
- 40 ℃(30 min) ~ + 100 ℃(30 min), 100 cycles
5
0
50
Tstg = + 60 ℃, RH = 90 %, Time = 1000 h
5
0
50
3
High Temperature
storage
Tstg = + 100℃, Time = 1000 h
5
0
50
4
Low Temperature
storage
Tstg = - 40 ℃, Time = 1000 h
5
0
50
5
Steady State
operating Life
Tc = 60 ℃, IF = 700 mA, Time = 1000 h
5
0
50
3
0
50
3
0
50
6
Acceleration: 15000 m/s2, Pulse width: 0.5 ms
Shock
Direction: 3 directions (X, Y and Z)
3 trials in each direction
Frequency: 100 to 2000 Hz for 4 minutes per trial
7
Vibration
Acceleration: 200 m/s2
Direction: 3 directions (X, Y and Z)
4 trials in each direction
4-2. Failure criteria
No.
1
2
Parameter
Symbol
Forward Voltage
VF
Φ
Luminous Flux
Failure criteria
V F > Initial value × 1.1
Φ < Initial value × 0.7
7
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5.Quality level
5-1. Applied standard (ISO2859-1)
5-2. Sampling inspection (A single normal sampling plan, level S-4.)
5-3. Inspection items and defect criteria
No.
Item
Defect criteria
1
No radiation
2
Electro-optical Not conforming to the specification
characteristics (Forward voltage, Luminous flux and Chromaticity)
3
External
dimensions
Not conforming to the specified dimensions
(External dimensions of ① and ② shown in Page 2)
Appearance
Nonconformity observed in product appearance is determined
as defective only when electro-optical characteristics is affected by.
<If any question arises regardless of above mentioned criterion>
■Foreign material, scratch, or bubble at emitting area: 0.8 mm φ
■Fiber generation at emitting area: 0.2 mm in width and 2.5 mm
in length
■Foreign material at connection terminal: 0.8 mm φ
■Substrate burr on edge: Over dimension tolerance
4
No light emitting
Classification
AQL
Major
defect
0.1
Minor
defect
0.4
(Note) Products with removable foreign material attached on is not determined to be defective.
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6.Supplements
6-1.Chromaticity rank table
**:30
(Tolerance:x,y±0.005)
x
y
(IF=700mA,Tj=90℃)
Chromaticity coordinates
Point 1 Point 2 Point 3 Point 4
0.4259 0.4361 0.4421 0.4313
0.3951 0.3987 0.4109 0.4069
x
y
(IF=700mA,Tj=90℃)
Chromaticity coordinates
Point 1 Point 2 Point 3 Point 4
0.3407 0.3415 0.3499 0.3484
0.3459 0.3586 0.3654 0.3521
Range
**:50
Range
**:40
Range
x
y
Chromaticity Diagram (4 000K)
0.420
0.400
0.410
0.390
0.400
y
y
Chromaticity Diagram (3 000K)
1
0.390
0.380
0.410
0.380
1
0.370
0.420
0.430
0.440
0.360
0.360
0.450
x
0.380
(IF=700mA,Tj=90℃)
Chromaticity coordinates
Point 1 Point 2 Point 3 Point 4
0.3742 0.3859 0.3904 0.3777
0.3690 0.3763 0.3912 0.3832
0.370
0.380
0.390
0.400
x
Chromaticity Diagram (5 000K) 4 700K
4 900K
5 100K
y
0.370
0.360
1
0.350
5 200K
0.340
0.330
5 000K
0.340
4 800K
0.350
0.360
x
9
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6-2. Packing
・ One tray composed of 6 pieces
・ 3 trays (6 piecies) and one upper lid-tray in one moisture-proof bag
・ 2 bags (36 pieces) in one carton
Dimensions of outer carton: 235 × 220 × 90 mm (Reference value)
(Note 1) There are cases of one carton composed of one bag. (18 pieces)
(Note 2) State of packing is subject to change.
<Outer carton>
<One bag>
<One tray>
18 pieces × 2 bags = 36 pieces
6 pieces × 3 trays = 18 pieces
1 × 6 = 6 pieces
225mm
Silica gel
6
Silica gel
10
210mm
sharp LD-S1-2-14-B
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6-3. Label
1) Outer carton
・ ロット No. について
Following label is attached on outer carton.
(Note 3) Label format is subjected to change.
SHIPMENT TABLE
PART No. GW7GMP**FGC
←Model number
←(Model number+ suffix code)
(GW7GAP50FGCX)
QUANTITY:24
←Quantity
LOT No.
←Lot No.
RANK
SHARP
XX13B01
1
CORPORATION
MADE IN ***********
RC
② Shipping year(Year last 2 digits)
③ Shipping month
(from January to December in ABC order)
←Rank
④ Shipping date(01 ~ 31)
←Production country
・ MADE IN ****
SHARP LABEL
XX 12 B
01 ① ② ③
④ ① Production plant code
・ MADE IN ****
・ Lot No. indication
1) Moisture-Proof bag
Following label is attached on moisture-proof bags.
XX 2 2 G 01 001 A
① ② ③ ④ ⑤ ⑥ ⑦
(Note 3) Label format is subjected to change.
① Production plant code
SHIPMENT TABLE
PART No. GW7GMP**FGC
QUANTITY:12 RANK 1
SHARP
XX31G01001A
CORPORATION
MADE IN ***********
←Model number
←(Model number+suffix code)
(GW7GMP**FGCX)
LOT No.
② Shipping year(Year last digit)
←Quantity
SHARP LABEL
④ Fixed code G
⑤ Shipping date(01 ~ 31)
←Lot No.
RC
③ Shipping month(1 ~ 9 or O, N, D)
⑥ Serial No.
←Production country
⑦ Backup code A
・ MADE IN ****
・ MADE IN ****
Label position
- model code
6-4. Indication printed on product
- control No.
Model No. and control No. are indicated on substrate surface.
* Label size: 10mm x 5mm
1)Model No.
Abbreviated Model No. " GMP**FGC " is indicated.
**30,40,50
2)Control No.
Indicated as follows;
XX 13 J 01 - 1
① ② ③ ④ ⑤
① Production plant code (to be indicated alphabetically)
② Year of production (the last two figures of the year)
③ Month of production
(to be indicated alphabetically with January corresponding to A)
④ Date of production (01 ~ 31)
⑤ Rank: Chromaticity rank is indicated as follows;
Rank 1 → 1
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7.Precautions
① Storage conditions
Please follow the conditions below.
・ Keep in a coot and dry place, away from direct sunlight.
・ Avoid corrosive environment because it may affect bad electrical contact by degeneration of
connector parts surface.
② Usage conditions
This product is not designed for the use under any of the following conditions.
Please confirm performance and reliability well enough if you use under any of the following
conditions;
・ In a place with a lot of moisture, dew condensation, briny air, and corrosive gas.
(Cl, H2S, NH3, SO2, NOX, etc.)
・ Under the direct sunlight, outdoor exposure, and in dusty place.
・ In water, oil, medical fluid, and organic solvent.
Please do not use component parts like rubber which may contain sulfur
(gasket packing, adhesive material etc.).
③Heat radiation and Installation
LED device generally involves rise in elevated temperature on its simple body driving. And in case
fitting method between device and heat sink is inadequacy, device defect may happen.
For instance connector peeling or non-lighting due to overheat damage.
And also its peripheral components failure may happen. Therefore overall heat management
must be carefully considered and designed.
Please abide the below described and mentioned method on your handling.
・ Fitting onto a heat sink should be with the use of M3 screw.
・ Flat-washer or Spring-washer should be applied between each screw and device.
・ Drive a screw in by turns as following description from ① to ④.
At first, fitting position should be fixed with tentative fix, and after that from the position
② ~ ④ as well. The loading of screw onto the heat sink must be less than 85N cm.
②
③
④
①
Cathode mark
Set hole
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Do not touch resin and emitting area on the surface of LED.
Non light emitting may occur due to damage of resin or die wire disconnection of LED by its outer
stress. For mounting, please handle by outside of area and avoid touching resin part as following
description. Overstress onto the connector post would cause its peeling failure.
Therefore permissible stress must be less than 20N/mm2.
Particular attention should be given to in use tweezers or some of like a keen tool.
The outer edges of the substrate may be uneven in some cases.
Please avoid choosing these areas as fixing point while designing for installation.
In case of using heat radiation sheet or adhesive, light reflection or absorption of these materials may
influence the output of LED device. Especially, the color change that occur due to long term use has
direct impact on output of LED devices, and hence careful consideration is required while choosing the
radiation sheet or adhesive.
④ Connecting method
Any solder connecting can not be applied. Please refer below description and the method must be
abided to keep its connect strength.
Please choose the adequate cramping terminal as following. In case of inadequate one, breakage,
strain, bad electrical contact may happen.
Connector
Type No.ES5S001JFA
Cramping therminal
Typ No.ES5S09K5FA
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Please make sure the following before insert,
* Correctly assembled between electric cable and cramping terminal.
* Any scars, change in shape, foreign objects on the cramping terminal.
Please insert the cramping terminal to till its locking port.
If difficult to insert, do not insert by the strong hand. Please re-check its size and correct insert direction.
Insert direction
connector
Cramping
therminal
Lock plate
Please do not pull the cramping terminal by the strong hand (over 10N) for checking its lock. Connector
and cramping terminal may be broken or its performance decrement in some cases.
Check any foreign object on the connector and cramping terminal after connecting each others to avoid
some impact to insulation resistance and junction resistance.
Please do not entwist the cramping terminal to avoid breaking connector and its soldering part.
Please do not repair the connector yourself.
⑤ How to detach cramping terminal
・ Adjust jig to the connector window part.
・ Carefully press into till a knock and avoid breaking and changing in shape of connector.
・ Pull the cramping terminal carefully with pressing tooling.
Hold up the jig when lock part of cramping terminal slip through on connector window.
Connector may change in shape if keep pressing till cramping terminal is completely pulled out.
・ When pull out cramping thermal, please do not hold only electric wire, or handle it by strong hand.
・ If impossible to detach, please carefully re-check above described method and point again.
・ Detach must be less than 20 times.
Direction to detach
Jig
Stopper
Window
Connector
Cramping
therminal
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⑥ Static electricity
This product is subject to static electricity, so take measures like wearing wrist band to cope with it.
⑦ Drive method
・ Any reverse voltage cannot be applied to LEDs when they are in operation or not. Design a circuit
so that any flow of reverse or forward voltage can not be applied to LEDs when out of operation.
・ Module is composed of LEDs connected in both series and parallel. Constant voltage power
supply runs off more than specified current amount due to lowered VF caused by temperature rise.
Constant current power supply is recommended to drive.
・ Be cautious while putting on/off the power supply, as excess current, excess voltage or reverse
voltage may get injected to the device in some cases.
⑧ Cleaning
Avoid cleaning, since LED device may be effected in some cases by cleaning.
⑨ Color-tone variation
Chromaticity of this product is monitored by integrating sphere right after the operation.
Chromaticity varies depending on measuring method, light spread condition, or ambient temperature.
Please verify your actual conditions before use.
⑩ Safety
・ Looking directly at LEDs for a long time may result in hurting your eyes.
・ In case that excess current (over ratings) is supplied to the device, hazardous phenomena including
abnormal heat generation, emitting smoke, or catching fire can be caused.
Take appropriate measures to excess current and voltage.
・ In case of solder connecting method, there is a possibility of fatigue failure by heat.
・ Please fix the leads in such case to protect from short circuit or leakage of electricity caused
by contact.
・ Please confirm the safety standards or regulations of application devices.
・ Please be careful with substrate edges, that may injure your hands.
⑪ Other cautions
Guarantee covers the compliance to the quality standards mentioned in the specifications,
and usage environment.
In case any quality problems occurred in the application of end-use, details will be separately
discussed and determined between the parties hereto.
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⑫ Reference
SCANNING ANGLE [deg]
0°
30°
30°
A
B
60°
60°
90°
-100
90°
-50
0
50
100
RELATIVE INTENSITY [%]
A
θy=90°
B
θy=-90°
16
θy=90°
θy=-90°
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