HSDL-4420#011 Lite-On Electronics, HSDL-4420#011 Datasheet

EMITTER IR 2X2MM DOME 875NM GW

HSDL-4420#011

Manufacturer Part Number
HSDL-4420#011
Description
EMITTER IR 2X2MM DOME 875NM GW
Manufacturer
Lite-On Electronics
Series
HSDL-44xxr
Datasheet

Specifications of HSDL-4420#011

Luminous Intensity
85 mW/sr
Mounting Style
SMD/SMT
Lens Dimensions
1.91 mm X 1.91 mm X 1.4 mm
Lens Shape
Circular
Maximum Operating Temperature
+ 85 C
Minimum Operating Temperature
- 40 C
Peak Wavelength
875 nm
Package / Case
Non-Standard SMD
Viewing Angle
24°
Current - Dc Forward (if)
100mA
Radiant Intensity (ie) Min @ If
1mW/sr @ 50mA
Wavelength
875nm
Orientation
Top View
Mounting Type
Surface Mount
Lens Color/style
Colorless Non-Diffused
Radiant Intensity
85 mW/sr
Maximum Power Dissipation
100 mW
Forward Current
100 mA
Forward Voltage
2.15 V
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Voltage - Forward (vf) Typ
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
516-1264-2

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
HSDL-4420#011HSDL-4420
Manufacturer:
LITEON/光宝
Quantity:
20 000
Company:
Part Number:
HSDL-4420#011HSDL-4420#031
Manufacturer:
Lite-On Inc
Quantity:
55 896
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Part Number:
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Manufacturer:
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Quantity:
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Company:
Part Number:
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Manufacturer:
Transcom
Quantity:
5 000
HSDL-44xx IR Emitter Series
HSDL-54xx IR Detector Series
High-Performance IR Emitter and IR PIN Photodiode in
Subminiature SMT Package
Data Sheet
Description
Flat Top Package
The HSDL-4400 Series of flat top IR emitters uses an
untinted, nondiffused, truncated lens to provide a
wide radiation pattern that is useful for short distance
communication where alignment of the emitter and
detector is not critical. The HSDL-5400 Series of flat
top IR detectors uses the same truncated lens design
as the HSDL-4400 Series of IR emitters with the
added feature of a black tint that acts as an optical
filter to reduce the effects of ambient light, such as
sun, incandescent and fluorescent light from
interfering with the IR signal.
Dome Package
The HSDL-4420 Series of dome IR emitters uses an
untinted, nondiffused lens to provide a 24 degree
viewing angle with high on-axis intensity. The
HSDL-5420 Series of IR detectors uses the same lens
design as the HSDL-4420 IR emitter and optical filter
used in the HSDL-5400 IR detector.
Lead Configuration
All of these devices are made by encapsulating LED
and PIN photodiode chips on axial lead frames to
form molded epoxy subminiature packages. A variety
of lead configurations is available and includes:
surface mount gull wing, yoke lead, or Z-bend and
through hole lead bends at 2.54 mm (0.100 inch)
center spacing.
Technology
The subminiature solid state emitters utilize a highly
optimized LED material, transparent substrate
aluminum gallium arsenide, TS AlGaAs. This material
has a very high radiant efficiency, capable of pro-
ducing high light output over a wide range of drive
currents and temperature.
Features
• Subminiature flat top and dome package
• IR emitter
• Wide range of drive currents
• IR detector
• Flexible lead configurations
Applications
• Short distance IR links
• IrDA compatible
• Small handheld devices
• Diffuse LANs
• Wireless audio
Size – 2x2 mm
875 nm TS AlGaAs
Intensity – 17 mW/sr
Speed – 40 ns
500 µA to 500 mA
PIN photodiode
High sensitivity
Speed – 7.5 ns
Surface mount or through hole
Pagers
Industrial handhelds

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HSDL-4420#011 Summary of contents

Page 1

... Subminiature SMT Package Data Sheet Description Flat Top Package The HSDL-4400 Series of flat top IR emitters uses an untinted, nondiffused, truncated lens to provide a wide radiation pattern that is useful for short distance communication where alignment of the emitter and detector is not critical. The HSDL-5400 Series of flat ...

Page 2

... Emitters and detectors are supplied in bulk form in bags of 50 units. 4. The HSDL-44xx and HSDL-54xx families are not designed to be used in medical devices with life support functions or in safety equipment (or similar applications where components failures would result in loss of life or physical harm), eg. in automotive, medical or airline industries. ...

Page 3

Package Dimensions (A) Flat Top Emitters 1.14 1.40 (0.075) 1.91 2.41 (0.095) 0.76 (0.030) MAX. CATHODE STRIPE NOTE 4 0.18 (0.007) 2.08 (0.082) 0.23 (0.009) 2.34 (0.092) (B) Dome Emitters 0.76 (0.030) R. 0.89 (0.035) (0.037) 0.94 (0.049) 1.24 2.92 ...

Page 4

Flat Top Detectors 1.14 1.40 (0.075) 1.91 2.41 (0.095) 0.76 (0.030) MAX. CATHODE STRIPE NOTE 3 0.18 (0.007) 2.08 (0.082) 0.23 (0.009) 2.34 (0.092) (D) Dome Detectors 0.76 (0.030) R. 0.89 (0.035) (0.037) 0.94 (0.049) 1.24 2.92 (0.115) MAX. ...

Page 5

... HSDL-44xx IR emitters where the pro- truding support tab is closest to the cathode lead. 2. The protruding support tab of the HSDL-54xx is connected to the cathode lead. While the protruding support tab of the HSDL-44xx is connected to the anode lead. ALL DIMENSIONS ARE IN MILLIMETRES (INCHES) ...

Page 6

Z-Bend Lead, Options 031 (H) Thru Hole Lead Option 1L1 (I) Thru Hole Lead Option 1S1 6 0.76 (0.030) MAX. ...

Page 7

Package Dimensions: Surface Mount Tape and Reel Options ( Tape and Reel, Gull Wing Lead, Option 011 GULL WING LEAD SUBMINIATURE PACKAGE 7 NOTES: 1. EMPTY COMPONENT POCKETS SEALED WITH TOP COVER TAPE INCH REEL – ...

Page 8

Tape and Reel, “Yoke” Lead, Option 021 “YOKE” LEAD SUBMINIATURE PACKAGE 8 ...

Page 9

Tape and Reel, Z-Bend Lead, Option 031 Z-BEND LEAD SUBMINIATURE PACKAGE 9 ...

Page 10

Tape and Reel Convective IR Reflow Soldering For information on IR reflow soldering, refer to Application Note 1060, Surface Mounting SMT LED Components. 10 ...

Page 11

... Reflow Soldering Temperatures Convection IR Vapor Phase Note: 1. The transient peak current in the maximum nonrecurring peak current the device can withstand without damaging the LED die and the wire bonds. HSDL-44xx Electrical Characteristics at T Parameter Symbol Forward Voltage V F ∆ ...

Page 12

... HSDL-44XX Optical Characteristics at T Parameter Symbol Radiant On-Axis Intensity HSDL-4400 I E HSDL-4420 I E ∆I Radiant On-Axis Intensity E Temperature Coefficient Viewing Angle HSDL-4400 2q 1/2 HSDL-4420 2q 1/2 Peak Wavelength l PK ∆l/∆T Peak Wavelength Temperature Coefficient ∆l Spectral Width at FWHM Optical Rise and Fall ...

Page 13

... Reverse Voltage (I R Operating Temperature Storage Temperature Junction Temperature Lead Solder Temperature [1.6 mm (0.063 in.) from body] Reflow Soldering Temperatures Convection IR Vapor Phase HSDL-54xx Electrical Characteristics at T Parameter Forward Voltage Breakdown Voltage Reverse Dark Current Series Resistance Diode Capacitance Open Circuit Voltage Temperature Coefficient of V ...

Page 14

... HSDL-54xx Optical Characteristics at T Parameter Photocurrent HSDL-5400 HSDL-5420 Temperature Coefficient Radiant Sensitive Area Absolute Spectral Sensitivity Viewing Angle HSDL-5400 HSDL-5420 Wavelength of Peak Sensitivity Spectral Bandwidth Quantum Efficiency Noise Equivalent Power Detectivity Optical Rise and Fall Times, 10%-90% Bandwidth 14 = 25°C A Symbol Min ...

Page 15

° FDC 1.0 0.5 0 800 850 900 950 λ – WAVELENGTH – nm Figure 1. Relative radiant intensity vs. wavelength. 5.00 4.50 PULSE WIDTHS < 100 µs 4. ...

Page 16

... Figure 9. Relative radiant intensity vs. angular displacement HSDL-4400. 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 -50° -40° -30° -20° -10° 0° θ – ANGLE FROM OPTICAL CENTERLINE – DEGREES (CONE HALF ANGLE) Figure 10. Relative radiant intensity vs. angular displacement HSDL-4420 25° MHz - -10 1E+5 ...

Page 17

25° 0.1 0.01 0.01 0 – IRRADIANCE – mW/cm e Figure 14. Reverse light current vs. irradiance mW/ ...

Page 18

... ANGLE FROM OPTICAL CENTERLINE – DEGREES (CONE HALF ANGLE) Figure 19. Relative radiant intensity vs. angular displacement. HSDL-5420 25°C A 20° 40° 60° 80° 100° 10° 20° ...

Page 19

R2 180 160 R1 120 100 t-TIME (SECONDS HEAT SOLDER PASTE DRY UP Process Zone Symbol Heat Up P1, R1 Solder Paste Dry P2, R2 Solder Reflow P3, R3 P3, ...

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