NICHIA NDU4116E

[ UTZ-SC0320_2 ]
2012/10/02
Ultra Violet Laser Diode
NDU4116E
Engineering Sample
Features
Outline Dimension
• Optical Output Power: CW 70mW (@Tc=25°
°C)
• Peak Wavelength: 370~380nm
• Can Type: φ 5.6 Floating Mounted with Photo Diode and Zener Diode
Unit (mm)
(
0
+ .03
0
6 5.
1.
6)
Φ
Absolute Maximum Ratings
Φ
(90°)
Emitting Point
85
mW
Allowable Reverse Current
Ir (LD)
85
mA
PD Reverse Voltage
Vr (PD)
5
V
Storage Temperature
Tstg
-40 ~ 85
°C
Operating Case Temperature
Tc
10 ~ 40
°C
Z+
Φ 4.2±0.2
Φ 3.55±0.1
0.25±0.03
Po
1.0±0.1
Glass Thickness
Optical Output Power (Tc=25°C)*
(0.4)
Emitting Point
Reference Plane
(1.3)
Unit
0.4±0.1
Absolute
Maximum Ratings
1.2± 0.1
2.3±0.2
Symbol
6.5±1.0
Item
4×Φ 0.43±0.08
(Tc=25°C)
Max Unit
70
mW
Item
Optical Output Power*
Condition
CW
Symbol
Po
Min
-
Typ.
-
Peak Wavelength
Po=70mW
λp
370
-
380
nm
Threshold Current
CW
Ith
-
50
75
mA
Operating Current
Po=70mW
Iop
-
110
140
mA
Slope Efficiency
CW
η
0.9
1.2
-
W/A
Operating Voltage
Po=70mW
Vop
-
5.4
6.0
V
Parallel
Beam
Divergence** Perpendicular
Po=70mW
θ//
6.0
9.0
11.0
°
Po=70mW
θ⊥
19.0
22.5
26.0
°
Parallel
Beam Pointing
Accuracy
Perpendicular
Po=70mW
∆θ//
-3.0
-
3.0
°
Po=70mW
∆θ⊥
-3.0
-
3.0
°
Monitor Current***
Po=70mW
Im
0.05
0.2
2.0
mA
* Refer graph of Optical Output Power vs. Case Temperature.
** Full angle at 50% from peak intensity
*** Monitor Current is short time power reference purpose only.
Not guaranteed for accuracy.
All figures in this specification are measured by Nichia's method and may
contain measurement deviations.
3
X+
1
2
4
Φ 2.0±0.2
Y+
( ) are reference figures
Pin Connection
This model has a Zener Diode built in
as a protection circuit against static
electricity.
Optical Output Power vs. Case Temperature
Optical Output Power [mW]
Initial Electrical/Optical Characteristics
100
85
70
60
50
0
This model is Engineering Sample for evaluation or design purpose only.
10 15 20 25 30 35 40 45
Case Temperature [℃]
Life time is not guaranteed.
The above specifications are for reference purpose only and subjected to change without prior notice.
NICHIA CORPORATION
http://www.nichia.co.jp
50
HEADQUARTERS
491 Oka, Kaminaka-Cho, Anan-Shi, TOKUSHIMA 774-8601, JAPAN
PHONE: +81-884-22-2311
FAX: +81-884-21-0148
CONTACT
TOKYO SALES OFFICE
13F Tamachi Center Building 34-7, Shiba 5-Chome, Minato-Ku, TOKYO 108-0014, JAPAN
PHONE: +81-3-3456-3108
FAX: +81-3-5440-7330
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[ UTZ-SC0320_2 ]
2012/10/02
Typical Characteristics
Optical Output Power vs. Forward Current
Forward Voltage vs. Forward Current
7
80
6
Tc = 20ºC
70
Forward Voltage [V]
Optical Output Power [mW]
90
Tc = 40ºC
60
50
40
30
20
5
4
3
2
10
1
0
0
0
20
40
60
80
100
Forward Current [mA]
120
Tc = 20ºC
Tc = 40ºC
0
Threshold Current vs. Case Temperature
40
60
80
100
Forward Current [mA]
120
Peak Wavelength vs. Case Temperature
70
381
65
Peak Wavelength [nm]
Threshold Current [mA]
20
60
55
50
45
40
35
30
380
379
378
377
376
375
10
20
30
Case Temperature [ºC]
40
10
Far Field Pattern
20
30
Case Temperature [ºC]
40
Spectrum
Relative Optical Intensity
Relative Optical Intensity
θ//
⊥
θ⊥
-40
-30
-20
-10
0
10
20
30
40
377
377.5
378
378.5
379
Wavelength [nm]
Angle [°]
-2-
379.5
380
[ UTZ-SC0320_2 ]
2012/10/02
Cautions
(1) Safety of Laser light
Laser beam are extremely dangerous to human eyes. Never look at laser
beam directly and/or through optical lens. When handling the LDs, wear
appropriate safety glasses to prevent laser light, even any reflections from
entering to the eye. Focused laser beam through optical instruments will
increase the chance of eye hazard.
Nichia LDs are classified in Class 3B of IEC60825-1 and 21 CFR Part
1040.10 Safety Standards. It is absolutely necessary to take overall safety
measures against User's modules, equipment and systems into which Nichia
LDs are incorporated and/or integrated.
(2) Operating method
The LD shall change its forward voltage requirement and optical output power according to temperature change. Also,
the LD will require more operation current to maintain same output power as it degrades.
Confirm that the optical output power generated by spike current when switching on and off does not exceed the
maximum absolute rating.
Also, employ appropriate countermeasures to reduce chattering and/or overshooting in
the Circuit.
(3) Static Electricity
Static electricity or electrical surges will reduce and degrade the reliability of the LDs. It is recommended to use a wrist
strap or anti-electrostatic glove when handling the Product.
(4) Absolute Maximum Rating
Active layer of LDs shall have high current density and generate high electric field during its operation.
prevent excessive damage, the LD must be operated strictly below Absolute Max Rating.
In order to
(5) Others
Nichia LDs described in this brochure are intended to be used for ordinary electronic equipment (such as office
equipment, communications equipment, measurement instruments and household appliances). Consult Nichia’s sales
staff in advance for information on the applications in which exceptional quality and reliability are required,
particularly when the failure or malfunction of the LDs may directly jeopardize life or health (such as for airplanes,
aerospace, submersible repeaters, nuclear reactor control systems, automobiles, traffic control equipment, life support
systems and safety devices).
The Purchaser must acknowledge that any LD can be failed statically and must design its equipments fail safe design.
Prior to use of the LD, please confirm that the LD, as described in Nichia’s specifications, meets the life expectancy
needs of, and provides the features required by the Circuit and any related modules, equipment and/or systems.
Due to its short wavelength and high optical output power, optical depositions on optical path may occur depending on
surrounding conditions. Appropriate design or countermeasures should be used to avoid optical depositions.
Nichia prohibit Purchaser from reverse engineering, disassembling, or taking any other steps to derive the structure or
design of the LD.
The appearance and specifications of the product may be modified for improvement without notice. The formal
specifications must be exchanged and signed by both parties before large volume purchase begins.
No unauthorized transmission or reproduction of this document, either in whole or in part, is permitted.
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