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SZ5-M2-WW-00 Datasheet(PDF) 8 Page - Seoul Semiconductor

Part # SZ5-M2-WW-00
Description  Superior Efficacy & Lumen output with Small Form Factor
Download  33 Pages
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Manufacturer  SEOUL [Seoul Semiconductor]
Direct Link  http://www.seoulsemicon.com
Logo SEOUL - Seoul Semiconductor

SZ5-M2-WW-00 Datasheet(HTML) 8 Page - Seoul Semiconductor

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www.seoulsemicon.com
SZ5-M2-WX-XX - High-power LED
 “제품 명 – 제품 군” 을 기입하십시오.
제품 군은 홈페이지 응용분야 분류기준을 참고한다.
(예) SZ5M0WWC9 – High-power LED
8
글씨체는 : Arial, 10pt
 Revision numbering 기준:
• 가스펙은 0.0 부터 시작 0.x….
• Final 승인원: 1.0 부터 시작
• 기존에서 일부 수정: +0.1
• 새로운 Data 추가 /또는 기존 것 삭제: +1.0
 수정일자 표기형식; YYYY-MM-DD
(예) 2013-04-01
Rev5.0, Sep 13, 2016
Product Data Sheet
Characteristics Graph
 차트 사각형에 차트의 X축/ Y축을 맞춘다.
* Intensity vs Forward Current
-. Linear graph
-. X축 : Forward current[mA]
전류는 peak forward current 까지 측정할것
-. Y축 : Relative Luminous Intensity [%]
정격전류에서 100이 되도록
-. T
a=25℃
* Forward Current vs. Forward Voltage
-. Linear graph
-. X축 : Forward Voltage[V]
-. Y축 : Forward current[mA]
전류는 peak forward current 까지 측정할것
-. T
a=25℃
•차트는 반드시
“Fig 번호#. 차트 설명” 을 제목으로 한다.
Performance Characteristics (Chart)
하기와 같은 차트 사용시 해당 슬라이드 사용하시면 됩니다.
- ex) Color Spectrum
- ex) Radiant pattern
- ex) Forward Voltage vs. Forward Current
- ex) Forward Current vs. Relative Luminous Flux
- ex) Forward Current vs. CIE X, Y Shift
- ex) Relative Light Output vs. Junction Temperature.
- ex) Junction Temp. vs. CIE X, Y Shift
- ex) Relative Forward vs. Junction Temperature
- ex) Maximum Forward Current vs. Ambient Temperature
- ex) Allowable Forward Current vs. Duty Ratio
- ex) Allowable Forward Current vs. Ambient Temperature
 하기 예시와 같이 테이블에 맞는 조건을 기입
Fig #. Color Spectrum,
IF=350mA, Tj=25℃
- 전기적 특성 – 아래첨자/대문자 예
) IF VF ФV
- 온도적 특성 – 아래첨자/소문자 예) Ta/j Topr0 Tstg
* Radiation
-. Linear graph
-. X축은 실선, Y축은 점선
-. X축 : Radiation angle [deg.]
-. Y축 : Relative Intensity [a.u.]
-. T
a=25℃
* Spectrum
-. Linear graph
-. X축 : Wavelength [nm]
350~800nm 표시
-. Y축 : Normalized Intensity [a.u.]
-. T
a=25℃
I
F = 정격전류 기재
* Allowable Forward Current vs. Ambient Temperature
-. Linear graph
-. X축 : Ambient Temperature [℃]
-. Y축 : Allowable Forward Current [mA]
온도는 0~85℃까지
-. R
th, Tjmax 기준으로 산출한다. Graph slope에 Rth를 기재한
다.
* Allowable Forward Current vs. Duty Ratio
-. Log graph
-. X축 : Duty ratio [%]
-. Y축 : Allowable Forward Current [mA]
-. Duty 10% : peak max current
Duty 100% : DC max current
* Color coordinate vs. Ambient Temperature
-. Linear graph (점+선)
-. X축 : Color coordinate x
-. Y축 : Color coordinate y
온도는 -30, 0, 25, 50, 85℃ 표시
-. I
F=정격전류 기재
* Color Coordinate vs. Forward Current
-. Linear graph (점+선)
-. 전류는 peak forward current까지 측정
-. 측정조건(최소 6조건)
:1mA, ¼정격전류, ½정격전류, 정격전류, max DC전류,
peak 전류
-. X축 : Color coordinate x
-. Y축 : Color coordinate y
-. T
a=25℃
* Relative Luminosity vs. Ambient Temperature
-. Linear graph
-. X축 : Ambient Temperature [℃]
-. Y축 : IV / IV @25℃ [a.u.]
온도는 operating temp. 영역 (-30~85℃)
-. I
F=정격전류 기재
* Forward Current vs. Ambient Temperature
-. Linear graph
-. X축 : Ambient Temperature [℃]
-. Y축 : V
F / VF @25℃ [a.u.]
온도는 operating temp. 영역 (-30~85℃)
-. I
F=정격전류 기재
Fig 5. Forward Current vs CIE x, y Shift
25
50
75
100
125
150
-0.02
-0.01
0.00
0.01
0.02
CIE(X)
CIE(Y)
Junction Temperature
[
o
C
]
Fig 6. Junction Temp. vs. CIE x, y Shift
200
400
600
800
1000
1200
1400
-0.02
-0.01
0.00
0.01
0.02
CIE x
CIE y
Forward Current [mA]
ΔCIE x
ΔCIE y
ΔCIE x
ΔCIE y
ΔCIE x
ΔCIE y


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