Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super...

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Technical Application Guide for UP-SHINE LED Downlight UP-DL103-3-10W

Transcript of Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super...

Page 1: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

Technical ApplicationGuide for UP-SHINELED DownlightUP-DL103-3-10W

Page 2: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation. IP65 rating front cover design, suitable for damp environment. Traditional diamond plaited surface lens design ensures the high light transmittance and uniform lighting output. T-shape heat sink greatly increases the radiation area and improves cooling efficiency.

• Up to 70% energy saving compared to standard CFL

• Long lifetime of 40,000 hours • Triac dim, 0-10V dim, DALI dim• 36°/60° wide beam angle• Ø90-95mm cutout• CCT: 2700K 3000K 4000K 5000K• No UV/IR light• Environment friendly, without Mercury or any

other hazardous substances

Application notes• Professional electrician for installation only • Switch off before installation• Do not touch when in use• Keep away from hot steam and corrosive gas

Application AreasIt is designed for general lighting applications in office, supermarket, shop, school, hotel, etc. It is also widely used for public areas, such as stairway, lobby, reception, corridors etc.

Certificate

Introduction

www.upshine.com [email protected]

SAA

Page 3: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

Product Information

Technical SpecificationsModel Voltage Power Power

FactorLumen(±5%)

Beamangle CCT Lifespan CRI Dimmable Dimension

UP-DL103-3-10W AC230V 10W ≥0.9 860 36°/60° 2700K 40000h ≥80 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 870 36°/60° 3000K 40000h ≥80 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 1000 36°/60° 4000K 40000h ≥80 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 970 36°/60° 5000K 40000h ≥80 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 840 36°/60° 2700K 40000h ≥80 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 870 36°/60° 3000K 40000h ≥80 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 980 36°/60° 4000K 40000h ≥80 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 930 36°/60° 5000K 40000h ≥80 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 640 36°/60° 2700K 40000h ≥90 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 670 36°/60° 3000K 40000h ≥90 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 760 36°/60° 4000K 40000h ≥90 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W AC230V 10W ≥0.9 720 36°/60° 5000K 40000h ≥90 No Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 630 36°/60° 2700K 40000h ≥90 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 660 36°/60° 3000K 40000h ≥90 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 750 36°/60° 4000K 40000h ≥90 Yes Ø110*64.3mm cutout Ø90-95mm

UP-DL103-3-10W-D AC230V 10W ≥0.9 710 36°/60° 5000K 40000h ≥90 Yes Ø110*64.3mm cutout Ø90-95mm

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Driver data Sheet

Fixture CompatibilityRated

WattageElectrical

ClassificationIngress

Protection Operating

TempOperatingHumidity

Storage Temp

10W Ⅱ IP65 -20oC~45oC 0~90% -20oC~65oC

Driver data DIM Non dim

Input rated Voltage AC230V AC230V

Frequency 50Hz 50/60Hz

Input Voltage AC200-240V AC200-240V

Efficiency ≥82% ≥82%

Total load Wattage 10W±1W 10W±1W

Power Factor ≥0.9 ≥0.9

Rated input current ≤0.06A ≤0.06A

Full load output Voltage DC23-40V DC25-42V

Rated output current 230mA 230mA

Output current range 230mA±5% 230mA±5%

Power tolerance ±5% ±5%

Current output tolerance ±5% ±5%

Dimming range 8%-100% —

Dimmer Triac dimmers —

Short circuit protection PASS PASS

Over voltage protection PASS PASS

Over temperature protection PASS PASS

THD ≤18% ≤18%

Withstand voltage AC3750V AC3750V

Ø110

64.3

89

Page 4: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

Photometric Diagram

Polar intensity diagram Beam diagramCartesian intensity diagram

UNIT: cdAVERAGE BEAM ANGLE(50%): 33.1 DEG

-/+180

-120

-90

-30

120

90

30

0

500

1000

1500

2000

2500

0

Planar Illuminance Curve

Distance(m)

MH=10mE(LX)25.0

22.5

20.0

17.5

15.0

12.5

10.0

7.5

5.0

2.5

0

C0/180C90/270

-25 -20 -15 -10 -5 0 5 10 15 20 25Height Eavg, Emax Angle: 32.97deg DiameterNote: The Curves indicate the illuminated area and the average illumination when the Luminaire is at different distance.

Flux out: 419.3 lm

5000K

Polar intensity diagram Cartesian intensity diagram Beam diagram

Height Eavg, Emax Angle: 34.53deg DiameterNote: The Curves indicate the illuminated area and the average illumination when the Luminaire is at different distance.

Flux out: 500.7 lm

UNIT: cdAVERAGE BEAM ANGLE(50%): 34.7 DEG

-/+180

-120

-90

-30

120

90

30

0

500

1000

1500

2000

2500

0

Planar Illuminance Curve

Distance(m)

MH=10mE(LX)25.0

22.5

20.0

17.5

15.0

12.5

10.0

7.5

5.0

2.5

0

C0/180C90/270

-25 -20 -15 -10 -5 0 5 10 15 20 25

3000K

Polar intensity diagram Beam diagramCartesian intensity diagram

UNIT: cdAVERAGE BEAM ANGLE(50%): 34.1 DEG

-/+180

-120

-90

-30

120

90

30

0

500

1000

1500

2000

2500

0

Planar Illuminance Curve

Distance(m)

MH=10mE(LX)25.0

22.5

20.0

17.5

15.0

12.5

10.0

7.5

5.0

2.5

0

C0/180C90/270

-25 -20 -15 -10 -5 0 5 10 15 20 25Height Eavg, Emax Angle: 33.92deg DiameterNote: The Curves indicate the illuminated area and the average illumination when the Luminaire is at different distance.

Flux out: 428.1 lm

Polar intensity diagram Cartesian intensity diagram

UNIT: cdAVERAGE BEAM ANGLE(50%): 33.6 DEG

-/+180

-120

-90

-30

120

90

30

0

600

1200

1800

2400

3000

0

Planar Illuminance Curve

Distance(m)

MH=10mE(LX)30

27

24

21

18

15

12

9

6

3

0

C0/180C90/270

-25 -20 -15 -10 -5 0 5 10 15 20 25

Beam diagram

Height Eavg, Emax Angle: 33.42deg DiameterNote: The Curves indicate the illuminated area and the average illumination when the Luminaire is at different distance.

Flux out: 491.7 lm

Spectral Distribution

2700K

380 500 600 700 800Wavelength(nm)

Max=6533 [1.0=20000]

Spec

trum

0.8

0.7

0.6

0.5

0.4

0.3

0.2

0.1

0.0380 500 600 700 800

Wavelength(nm)

Max=6342 [1.0=20000]

Spec

trum

0.8

0.7

0.6

0.5

0.4

0.3

0.2

0.1

0.0

380 500 600 700 800Wavelength(nm)

Max=6626 [1.0=20000]

Spec

trum

0.8

0.7

0.6

0.5

0.4

0.3

0.2

0.1

0.0380 500 600 700 800

Wavelength(nm)

Max=6446 [1.0=20000]Sp

ectr

um0.8

0.7

0.6

0.5

0.4

0.3

0.2

0.1

0.0

3000K

4000K 5000K

2.43 SDCM F3000K

x=0.4416 y=0.4085

4.29 SDCM F2700K

x=0.4650 y=0.4134

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4.80 SDCM F4000K

x=0.3902 y=0.3871

5.75 SDCM F5000K

x=0.3567 y=0.3700

2700K

4000K

Page 5: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

80

70

60

50

40

30

20

10

0

18:3

7:46

19:0

7:44

19:3

7:44

20:0

7:44

20:3

7:44

21:0

7:44

21:3

7:44

22:0

7:44

23:0

7:44

23:3

7:44

0:07

:44

0:37

:44

1:07

:44

1:37

:44

2:07

:44

2:37

:44

3:07

:44

3:37

:44

4:07

:44

4:37

:44

5:07

:44

5:37

:44

6:07

:44

6:37

:44

7:07

:44

7:37

:44

8:07

:44

8:37

:44

9:07

:44

IC

Capacitor

MOS

PCB

LED

Fitting

Environmental temperature

Tem

pera

ture

(o C)

Time

The driver lifespan is based on capacitor working temperature.

Driver lifetime & LED light decay rate

90000

80000

70000

60000

50000

40000

30000

20000

10000

065oC 75oC 85oC 95oC 105oC

Life

time

(hou

rs)

Capacitor Tc (oC)

Driver Lifetime

% L

umin

ous

Flux

FLUX

△ U'V'

110%

105%

100%

95%

90%

85%

80%

75%

70%

0.0040

0.0035

0.0030

0.0025

0.0020

0.0015

0.0010

0.0005

0.00000 1000 2000 3000 4000 5000 6000 7000 8000 9000 10000

LifeTime (hours)

Polar Diagram Comparison

AVERAGE BEAM ANGLE (50%): 34.7DEG

500

1000

1500

2000

2500

0O

-/+180O

150O-150O

120O-120O

90O-90O

60O-60O

30O-30O

UNIT: cd

C0/180, 34.7 deg

C30/210, 34.8 deg

C60/240, 34.8 deg

C90/270, 34.6 deg

0

LED Light Decay Rate

Temperature● The testing is operated at 25°C

● The lifetime of capacitor, minimum of 5,000 hours if operated at 105°C, will be doubled whenever the temperature drops 10°C

● The highest withstand temperature of IC, MOS could be 120°C

● The highest withstand temperature of LED junction temperature is 150°C

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Page 6: Technical Application Guide for UP SHINE LED Downlight...DL103 LED recessed downlight adopts super slim and compact design, perfectly suitable for the narrow ceiling installation.

Packaging Information

SIZE(CM) N.W/pc(KGS) G.W.(KGS) Q'TY(PCS)

Carton 39*28*57 0.45 16.5 30

CTNS Q'TY(PCS) VOLUME(CBM)

20'' standardcontainer 442 13260 28

40'' standardcontainer 884 26520 56

www.upshine.com [email protected] Phone: +86 755 2919 7332Add: 2nd building Dingfeng High-Tech Zone, Fuyuan 1st road, Fu Yong Sub-district, Bao'an, Shenzhen China

Installation

Install requirements

A-gap above the fitting 25mm

B-gap to the building material 25mm

C-gap to the thermal insulation 50mm

1. Open a hole according to the cutout size of led downlight.

2. Use screw-driver to open the driver terminal cover, feed the main AC wire L. N. in terminal block respectively, then fix the cover back.

3. Connect the downlight with driver, hold back the spring clip then push the downlight into the hole.

4. Make sure the downlight fixed tightly in ceiling, turn on the power (Fig 1).

CPower supply

A B