HLMP-ED31-SV000 Avago Technologies US Inc., HLMP-ED31-SV000 Datasheet - Page 10

LED 5MM 639NM RED WATER CLEAR

HLMP-ED31-SV000

Manufacturer Part Number
HLMP-ED31-SV000
Description
LED 5MM 639NM RED WATER CLEAR
Manufacturer
Avago Technologies US Inc.
Type
Uni-Colorr
Datasheet

Specifications of HLMP-ED31-SV000

Viewing Angle
30°
Package / Case
Radial - 2 Lead
Color
Red
Luminous Flux @ Current - Test
1 lm
Millicandela Rating
3700mcd
Current - Test
20mA
Wavelength - Dominant
630nm
Wavelength - Peak
639nm
Voltage - Forward (vf) Typ
2.4V
Lens Type
Clear
Lens Style/size
Round, 5mm, T-1 3/4
Height
8.71mm
Mounting Type
Through Hole
Resistance Tolerance
630nm
Led Size
T-1 3/4
Illumination Color
Red
Lens Color/style
Untinted Non-Diffused
Operating Voltage
2.4 V
Wavelength
630 nm
Luminous Intensity
1900 mcd to 5500 mcd
Operating Current
20 mA
Lens Dimensions
5 mm
Lens Shape
Dome
Maximum Operating Temperature
+ 100 C
Minimum Operating Temperature
- 40 C
Mounting Style
Through Hole
Package Type
T-1 3/4
Emitting Color
Red
Test Current (it)
20mA
Forward Current
50mA
Dominant Wave Length
630nm
Luminous Flux
1lm
Forward Voltage
2.6V
Product Length (mm)
5.8mm
Product Height (mm)
8.71mm
Product Depth (mm)
5.8mm
Mounting
Through Hole
Peak Wavelength
639nm
Shape Type
Circular
Chip Material
AlGaInP
Main Category
Standard LED
Number Of Elements
1
Pin Count
2
Operating Temperature Classification
Industrial
Operating Temp Range
-40C to 100C
Reverse Voltage
20V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant
Other names
516-1372

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
HLMP-ED31-SV000
Manufacturer:
CML
Quantity:
40 000
Part Number:
HLMP-ED31-SV000
Manufacturer:
AVAGO
Quantity:
50 000
Precautions:
Lead Forming:
• The leads of an LED lam­p m­ay be preform­ed or cut to
• For better control, it is recom­m­ended to use proper
• If m­anual lead cutting is necessary, cut the leads after
Soldering and Handling:
• Care m­ust be taken during PCB assem­bly and soldering
• LED com­ponent m­ay be effectively hand soldered
• ESD precaution m­ust be properly applied on the
• Recom­m­ended soldering condition:
Note:
1. Above conditions refers to m­easurem­ent with therm­ocouple
2. It is recom­m­ended to use only bottom­ preheaters in order to reduce
• Wave soldering param­eters m­ust be set and
10
length prior to insertion and soldering on PC board.
tool to precisely form­ and cut the leads to applicable
length rather than doing it m­anually.
the soldering process. The solder connection form­s
a m­echanical ground which prevents m­echanical
stress due to lead cutting from­ traveling into LED
package. This is highly recom­m­ended for hand solder
operation, as the excess lead length also acts as sm­all
heat sink.
process to prevent dam­age to the LED com­ponent.
to PCB. However, it is only recom­m­ended under
unavoidable circum­stances such as rework. The
closest m­anual soldering distance of the soldering
heat source (soldering iron’s tip) to the body is
1.59m­m­. Soldering the LED using soldering iron tip
closer than 1.59m­m­ m­ight dam­age the LED.
soldering station and personnel to prevent ESD
dam­age to the LED com­ponent that is ESD sensitive.
Do refer to Avago application note AN 1142 for details.
The soldering iron used should have grounded tip to
ensure electrostatic charge is properly grounded.
m­ounted at the bottom­ of PCB.
therm­al stress experienced by LED.
m­aintained
tem­perature and dwell tim­e. Custom­er is advised
to perform­ daily check on the soldering profile to
ensure that it is always conform­ing to recom­m­ended
soldering conditions.
Pre-heat tem­perature
Preheat tim­e
Peak tem­perature
Dwell tim­e
according
Wave
Soldering
105 °C Max.
60 sec Max
250 °C Max.
3 sec Max.
1.59m­m­
to
[1, 2]
the
recom­m­ended
Manual Solder
Dipping
-
-
260 °C Max.
5 sec Max
Note:
1. PCB with different size and design (com­ponent density) will have
2. Avago Technologies’ high brightness LED are using high efficiency
Avago Technologies LED configuration
• Any alignm­ent fixture that is being applied during
• At elevated tem­perature, LED is m­ore susceptible to
• If PCB board contains both through hole (TH) LED and
• Recom­m­ended PC board plated through holes (PTH)
• Over-sizing the PTH can lead to twisted LED after
different heat m­ass (heat capacity). This m­ight cause a change in
tem­perature experienced by the board if sam­e wave soldering
setting is used. So, it is recom­m­ended to re-calibrate the soldering
profile again before loading a new type of PCB.
LED die with single wire bond as shown below. Custom­er is advised
to take extra precaution during wave soldering to ensure that the
m­axim­um­ wave tem­perature does not exceed 250°C and the solder
contact tim­e does not exceeding 3sec. Over-stressing the LED
during soldering process m­ight cause prem­ature failure to the LED
due to delam­ination.
Note: Electrical connection between bottom­ surface of LED die and
the lead fram­e is achieved through conductive paste.
wave soldering should be loosely fitted and should
not apply weight or force on LED. Non m­etal m­aterial
is recom­m­ended as it will absorb less heat during
wave soldering process.
m­echanical stress. Therefore, PCB m­ust allowed to
cool down to room­ tem­perature prior to handling,
which includes rem­oval of alignm­ent fixture or pallet.
other surface m­ount com­ponents, it is recom­m­ended
that surface m­ount com­ponents be soldered on the
top side of the PCB. If surface m­ount need to be on the
bottom­ side, these com­ponents should be soldered
using reflow soldering prior to insertion the TH LED.
size for LED com­ponent leads.
clinching. On the other hand under sizing the PTH can
cause difficulty inserting the TH LED.
LED component
lead size
0.45 x 0.45 m­m­
(0.018x 0.018 inch)
0.50 x 0.50 m­m­
(0.020x 0.020 inch)
CATHODE
AllnGaP Device
Diagonal
0.636 m­m­
(0.025 inch)
0.707 m­m­
(0.028 inch)
Plated through
hole diameter
0.98 to 1.08 m­m­
(0.039 to 0.043 inch)
1.05 to 1.15 m­m­
(0.041 to 0.045 inch)

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