H-1000L中文资料

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2006.3.31
Page 9
H-□000L Series
Single Color Ultra High Brightness φ5 Type
Reliability Testing Result
Reliability Testing Result Room Temp. Operating Life Resistance to Soldering Heat Temperature Cycling Wet High Temp. Storage Life High Temp. Storage Life Low Temp. Storage Life Lead Tension Vibration, Variable Frequency Applicable Standard EIAJ ED4701/100(101) EIAJ ED4701/300(302) EIAJ ED4701/100(105) EIAJ ED4701/100(103) EIAJ ED4701/200(201) EIAJ ED4701/200(202) EIAJ ED4701/400(401) EIAJ ED4701/400(403) Testing Conditions Ta = 25℃, IF = Maxium Rated Current 260±5℃, 3mm from package base Minimum Rated Storage Temperature(30min) ~Normal Temperature(15min) ~Maximum Rated Storage Temperature(30min) ~Normal Temperature(15min) Ta = 60±2℃, RH = 90±5% Ta = Maximum Rated Storage Temperature Ta = Minimum Rated Storage Temperature 10N,1time ( 0.4 and Flat Package : 5N) 98.1m/s (10G), 100 ~ 2KHz sweep for 20min., XYZ each direction
Maximum Forward Current : IF MAX. (mA)
Pulse Width vs. Maximum Tolerable Peak Current
Condition : Ta = 25℃
Duty (%)
IF peak Max./IF DC MAX.
Pulse Width : tw (μs)
H-□000L Series
Single Color Ultra High Brightness φ5 Type
Features
Package φ5 Round shape type, Water Clear epoxy
Product features
・Outer Dimension φ5 Round shape type ・Operation temperature range. Storage Temperature :-30℃~100℃ Operating Temperature :-30℃~85℃ ・Lead–free soldering compatible ・RoHS compliant
2 □
Duration 1,000 h 10s
Dominant wavelength
647 nm
Half Intensity Angle
10 deg.
Die materials Soldering methods ESD Packing
GaAlAs TTW (Through The Wave) soldering and manual soldering More than 2kV(HBM) Bulk : 200pcs(MIN.)
Relative Intensity vs. Wavelength Condition : Ta = 25℃, IF = 20mA
Spatial Distribution Example
Condition : Ta = 25℃
Relative Intensity
Wavelength [nm]
Forward Voltage vs. Forward Current
※The detail is described to LED and Photodetector handling precautions of home page: "Mounting through-hole Type Devices“ and "Soldering", and use it after the confirmation, please.
Condition : Ta = 25℃
Forward Current vs. Relative Intensity
Condition : Ta = 25℃
Forward Current IF(mA)
Forward Voltage VF(V)
Relative Intensity
Forward Current IF(mA)
Manual Soldering Conditions
Iron tip temp. Soldering time and frequency 400℃ 3 s 2 times (MAX.) (MAX.) (MAX.)
※The detail is described to LED and Photodetector handling precautions of home page: "Mounting through-hole Type Devices“ and "Soldering", and use it after the confirmation, please.
H-□Ultra High Brightness φ5 Type
Absolute Maximum Ratings
Ite m P ow e r Dissipa tion F orwa rd Curre nt P ulse F orwa rd Curre nt ※ 1 De rating (T a =25℃ or hig he r) Re ve rse Volta g e Ope ra ting T e mpe ra ture S tora g e T e mpe ra ture S ymbol Absolute Ma x imum Ra ting s Pd IF IF R M ⊿ IF VR T opr T s tg 125 50 300 0.67 4 -30~ +85 -30~ +100 Unit mW mA mA mA/℃ V ℃ ℃
Color and Luminous Intensity
Emitted Color Lens Color Dominant Wavelength λ d (nm)
T YP. IF MIN.
(Ta=25℃)
Luminous Intens ity Iv (mc d)
T YP. IF
Part No.
Material
2004.10.27
Page 5
H-□000L Series
Single Color Ultra High Brightness φ5 Type
Technical Data
Derating
Ambient Temperature vs. Maximum Forward Current Repetition Frequency : f ≧ 50Hz
Ambient Temperature : Ta(℃)
2004.10.27
Page 6
H-□000L Series
Single Color Ultra High Brightness φ5 Type
Technical Data
Dynamic Drive Rating
Duty cycle vs. Maximum Forward Current Condition : Ta = 25℃
(Ta=25℃)
Item Conditions
Symbol
Characteristics
Unit
TYP. Forward Voltage IF=20mA VF MAX. Reverse Current Peak Wavelength Dominant Wavelength Spectral Line Half Width Half Intensity Angle VR =4V IF=20mA IF=20mA IF=20mA IF=20mA IR λp λd ⊿λ 2θ1/2 MAX. TYP. TYP. TYP. TYP.
(Ta=25℃)
※1 IFRM Measurement condition : Pulse Width≦1ms., Duty≦1/20.
2004.10.27
Page 3
H-□000L Series
Single Color Ultra High Brightness φ5 Type
Electro-Optical Characteristics
Ambient Temperature vs. Forward Voltage
Power Dissipation vs. Ambient Temperature
Ambient Temperature : Ta(℃)
Power Dissipation : Pd (mW)
Forward Voltage VF(V)
Ambient Temperature vs. Relative Intensity
Condition : IF=20mA
Maximum Forward Current : IF MAX. (mA)