FLUX LED SPECIFICATION
980MR2C
Fatures:
Single color
High bright output
High Current Operation
Low power consumption
High reliability and long life
? 3.0± 0.2
CATHODE
1.5mm
Descriptions:
Dice material:
Emitting Color:Super
Red
Device Outline:7.6mmX7.6mm
Lens Type:Water Clear
NOTE:
All dimensions are millimetres.
Tolerance is +/-0.25mm unless otherivise
DIRECTIVITY
Relative Luminous Intensity
1.0
0°
Ta=25° C
IF=20mA
30°
0.5
60°
0
90°
60°
30°
0°
0.5
90°
1.0
Radiation Angle
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FLUX LED SPECIFICATION
Typical electrical/optical characteristic curves:
100
Forward Current(mA)
80
60
40
20
0
1.2
2.0 2.4 2.8
1.6
Forward Voltage(V)
3.2
FORWARD CURRENT Vs
FORWARD VOLTAGE
2.5
Radiant Intensity(mW/sr)
Relative Value at IF=70mA
2.0
1.5
1.0
0.5
0
0
40
20
60
80
IF-Forward Current (mA)
100
RADIANT INTENSITY Vs.
FORWARD CURRENT
100
Forward Current(mA)
80
60
40
20
0
0
FORWARD CURRENT
DERATING CURVE
Radiant Intensity
RADIANT INTENSITY Vs.
AMBIENT TEMPERATURE
2.5
2.0
1.5
1.0
0.5
20
40
60
80
100
0
-30
-10
10
30
50
70
90
Ambient Temperature T
A
(
℃
)
Ambient Temperature T
A
(
℃
)
Relative Luminous Intensity
100
75
50
25
0
450
500
550
650
600
Wavelength
λ
(nm)
700
750
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4
LED
SOLDERING
METHOD
LAMP
APPLICATION
SOLDERING CONDITIONS
REMARK
Solder no closer than 3mm from the
base of the package
Using soldering flux,” RESIN FLUX”
is recommended.
DIP
SOLDERING
Bath temperature: 260±5℃
Immersion time: with 5 sec
During soldering, take care not to
press the tip of iron against the
Soldering iron: 30W or smaller
lead.
SOLDERING
Temperature at tip of iron: 260
℃
or lower (To prevent heat from being
IRON
Soldering time: within 5 sec.
transferred directly to the lead, hold
the lead with a pair of tweezers
while soldering
1) When soldering the lead of LED in a condition that the package is fixed with a panel (See Fig.1),
be careful not to stress the leads with iron tip.
L e a d w r i e s
P a n e l
(Fig.1)
2) When soldering wire to the lead, work with a Fig (See Fig.2) to avoid stressing the package.
L e a d
w r i e s
L e a v e
a s l i g h t
c l e a r a n c e
(Fig.2)
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