PHILIPS DLEL-101

DLE L-1 0 1
P O W E R E D
B Y
C H R O M A C O R E
Color Kinetics® DLE L-101 digital light engine is a complete, networkable illumination module
for integration into a wide variety of OEM lighting products and custom installations. On-board
intelligence drives the light emitting diodes (LEDs) and stores configuration data. With simple control
and power input, DLE L-101 delivers a broad range of color control. Separate red, green, and blue
(RGB) control channels enable smooth color mixing across a generous gamut.
DLE L-101 accepts commands using the DMX512 packet format. Three sequential channels are used:
one for red, one for green, and one for blue. These three 8-bit channels provide full 24-bit control of
the emitted color. Thus, DLE L-101 can be instructed to produce over 16 million different colors. Color
changes are virtually instantaneous.
DLE L-101 uses surface mount LEDs driven by precision current sources that are tolerant of wide
variations in temperature and supply voltage, and whose intensity is controlled by an advanced pulse
width modulation (PWM) algorithm. DLE L-101 uses 14-bit PWM natively. The 16,384 intensities
available on each channel are non-linearly mapped to incoming 8-bit DMX data to better match the
human eye's perception of brightness.
DLE L-101’s on-board processor has non-volatile memory that stores configuration and performance
data. Each DLE module is uniquely and permanently serialized at the time of manufacture, and this
serial number can be used to identify the module in an installation or network, even if that installation
contains other Color Kinetics lights or fixtures from other OEMs that use Color Kinetics DLEs.
DLE L-101 specifications
color range
16.7 million (24-bit) additive red, green, and blue colors; continuously variable intensity output range
High brightness colored light emitting diodes (LEDs)
12": 1.5 oz. (43g); 6": 1.0 oz. (28g)
source
weight
CO M M U NICATION s p e c i f i c a t i o n s
data interface
control
CKDMX
Color Kinetics full line of controllers or DMX512 (RS485) compatible when using Color Kinetics power/data supply
E L E CT R ICA L s p e c i f i c a t i o n s
power requirement
power consumption
24VDC Regulated, +/- 0.5V
6-inch: 4.2W Max. at full intensity (full RGB), 35 mA (min.)/0.22 A (max.)
12-inch: 6W Max. at full intensity (full RGB), 35 mA (min.)/0.30 A (max.)
E n v i r o n me n t a l S p e c i f i c a t i o n s
maximum temperature
minimum temperature
environment
humidity
ITEM# 118-000046-00 (6-inch)
118-000047-00 (12-inch)
This product is protected by one or more of the following patents:
U.S. Patent Nos. 6,016,038, 6,150,774 and other patents listed at
http://colorkinetics.com/patents/. Other patents pending.
©2004-2006 Color Kinetics Incorporated. All rights reserved.
Chromacore, Chromasic, Color Kinetics, the Color Kinetics
logo, ColorBlast, ColorBlaze, ColorBurst, ColorCast, ColorPlay,
ColorScape, Direct Light, iColor, iColor Cove, iPlayer, Optibin,
Powercore, QuickPlay, Sauce, the Sauce logo, and Smartjuice are
registered trademarks and DIMand, EssentialWhite, IntelliWhite, and
Light Without Limits are trademarks of Color Kinetics Incorporated.
All other brand or product names are trademarks
or registered trademarks of their respective owners.
BRO123 Rev 02
Specifications subject to change without notice. Refer to
www.colorkinetics.com for the most recent data sheet versions.
Housing dependent. Design should provide adequate heat transfer such that
no individual component exceeds maximum levels specified in the Thermal
Management Section of the Digital Light Engine Integration Guide.
-20°C
Non-corrosive
0-95% non-condensing
LED Source Life
In traditional lamp sources, lifetime is defined as the point at which 50% of the lamps fail. This is also termed Mean
Time Between Failure [MTBF]. LEDs are semiconductor devices and have a much longer MTBF than conventional
sources. However, MTBF is not the only consideration in determining useful life. Color Kinetics uses the concept of
useful light output for rating source lifetimes. Like traditional sources, LED output degrades over time (lumen depreciation) and this is the metric for SSL lifetime.
LED lumen depreciation is affected by numerous environmental conditions such as ambient temperature, humidity,
and ventilation. Lumen depreciation is also affected by means of control, thermal management, current levels, and
a host of other electrical design considerations. Color Kinetics systems are expertly engineered to optimize LED life
when used under normal operating conditions. Lumen depreciation information is based on LED manufacturers’
source life data as well as other third party testing. Low temperatures and controlled effects have a beneficial effect
on lumen depreciation. Overall system lifetime could vary substantially based on usage and the environment in
which the system is installed.
Temperature and effects will affect lifetime. Color Kinetics rates product lifetime using lumen depreciation to 50% of
original light output. When the fixture is running at room temperature using a color wash effect, the range of lifetime
is in the range of 30,000-50,000 hours. This is LED manufacturers’ test data. For more detailed information on
source life, please see www.colorkinetics.com/lifetime.
Philips Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com
DLE L-101 — 6”
photometric performance
The photometric data below is based on the following constraints: DLE L-101 mounted into a 6-inch, linear tube fixture with clear lens. For more
information, refer to the iColor Cove NXT-12.IES file located on www.colorkinetics.com/support.
Photometric data is based on test results from an independent testing lab.
source specifications
Optics: Clear polycarbonate
Source:
24 surface mount LEDs (8 Red, 8 Green, 8 Blue)
Beam Angle:
120° x 120° (at 50% of peak illuminance)
Distribution:
Symmetric direct illumination
CCT:
Adjustable 1,000–10,000K
CRI:
Not measurable (CIE 13.3-1995)
illuminance distribution
0.0
0.5
0.1
0.1
0.3
0.0
0.1
0.5
1.5’/0.5m
0.7
0.7
0.2
7.5
34.4
7.5
1.0
0.7
3.2
0.7
3.2
34.4
34.4
3.2
0.3
3.2
3.2
1.0
7.5
34.4
7.5
1.0
0.7
3.2
0.7
0.1
2.1
7.5
7.5
2.1
0.7
0.7
0.2
0.2
2.1
3.2
2.1
0.3
0.2
0.2
1.0
1.0
0.1
candle power distribution
7.5
0.3
7.5
0.2
2.1
3.2
0.1
2.1
1.0
white
0.1
blue
3’
Side view
1.0
0.2
2.1
0’/0m
-90
0.2
90
0
38
57
75
End View (solid line) and side view (dashed line) (Candelas)
2.1
Measured on:
Beam center:
Thin dashed lined:
Multipliers:
0.1
1.0
0.0
0.5
19
White (Full Red, Green, and Blue)
75 cd
Indicates 50% of peak
0.33 Red, 0.29 Green, 0.38 Blue
1.5’/0.5m
Footcandles (top)/Lux (bottom)
White (Full Red, Green, and Blue)
1’/.3m (from center of grid)
0.33 Red, 0.29 Green, 0.38 Blue
6’
1m
8.9
green
End view
typical light output
2.2
31.2
0.3
3.2
6.5
1.1
0.1
3.2
0.4
8.6
3.2
0.1
0.3
0.8
36.6
5m
10.8
0.3
0.6
3.4
1.0
7.5
26.9
15’
3m
23.7
0.7
2.5
9’
2m
95.8
2.9
red
120º
0.5
Illuminance
color
120º
1.5’/0.5m
0’/0m
Units:
Measured on:
Distance from surface:
Multipliers:
1.5’/0.5m
0.0
1.1
color
(nm)
(lumens)
power
(watts)
na
23.9
3.6
6.6
red
610 - 635
7.8
0.9
8.6
green
515 - 535
6.9
1.6
4.3
blue
460 - 480
9.1
1.6
5.6
white
wave length total output
efficacy
(lm/w)
0.1
4.3
1.1
Measured in Footcandles (top)/Lux (bottom) on axis.
OPTIBIN®
There are inherent variations in the fabrication processes of all semiconductor materials. For LEDs, this variance results in differences in the color and intensity of
light output as well as electrical characteristics. Due to these differences, LED manufacturers sort production into “bins,” but insuring the availability of a single bin
is very difficult. To minimize this issue and achieve optimal color consistency in its products, Color Kinetics has developed and uses a proprietary technology called
Optibin. Optibin is an advanced production binning optimization process that minimizes the effects of LED variance for the best possible output uniformity in the
final product. Color Kinetics Optibin technology gives the most consistent control of color and intensity from product to product.
Philips
C Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
T Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com
DLE L-101 — 12”
photometric performance
The photometric data below is based on the following constraints: DLE L-101 mounted into a 12-inch, linear tube fixture with clear lens. For
more information, refer to the iColor Cove NXT-12.IES file located on www.colorkinetics.com/support.
Photometric data is based on test results from an independent testing lab.
source specifications
Optics: Clear polycarbonate
Source:
45 surface mount LEDs (15 Red, 15 Green, 15 Blue)
Beam Angle:
120° x 120° (at 50% of peak illuminance)
Distribution:
Symmetric direct illumination
CCT:
Adjustable 1,000–10,000K
CRI:
Not measurable (CIE 13.3-1995)
illuminance distribution
candle power distribution
1.5’/0.5m
0.1
0.2
1.0
0.2
2.1
0.3
0.2
6.0
15.0
6.0
6.0
15.0
64.5
6.0
64.5
0.6
1.4
6.4
64.5
1.4
15.0
0.2
1.0
15.0
64.5
1.4
2.1
0.1
1.4
15.0
1.4
3.2
3.2
1.4
6.4
3.2
0.3
3.2
0.6
2.1
0.3
0.3
0.3
2.1
15.0
0.3
3.2
1.5’/0.5m
3.2
0.2
2.1
0.6
6.4
0.3
15.0
1.4
3.2
0’/0m
-90
0.3
15.0
0.6
6.4
white
red
green
blue
38
75
113
150
End View (solid line) and side view (dashed line) (Candelas)
3.2
Measured on:
Beam center:
Thin dashed line:
Multipliers:
0.2
0.2
90
0
2.1
White (Full Red, Green, and Blue)
150 cd
Indicates 50% of peak
0.33 Red, 0.29 Green, 0.38 Blue
0.1
2.1
1.5’/0.5m
1.0
1.5’/0.5m
Footcandles/Lux
White (Full Red, Green, and Blue)
1’/.33m (from center of grid)
0.33 Red, 0.29 Green, 0.38 Blue
typical light output
Illuminance
color
Side view
End view
2.1
0’/0m
Units:
Measured on:
Distance from surface:
Multipliers:
120º
1.0
0.2
1.4
0
120º
0.1
3’
6’
1m
16.7
59.2
1.9
6.4
0.2
0.5
0.2
0.7
17.2
2.2
5.4
(nm)
(lumens)
power
(watts)
na
45.0
5.6
8.1
red
610 - 635
14.8
1.6
9.2
green
515 - 535
13.0
2.2
5.96
blue
460 - 480
17.2
2.2
7.8
white
7.5
6.5
12.9
1.6
68.9
0.7
0.6
1.2
51.7
5m
20.5
15.1
color
15’
3m
45.2
1.4
4.8
4.2
179.8
5.5
9’
2m
wave length total output
2.2
0.3
7.5
3.2
Measured in Footcandles/Lux on axis.
Philips Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com
efficacy
(lm/w)
DLE L-101
physical dimensions
ovERaLL anD MoUnting DiMEnsions (Shown with LEDs)
6“
top
5.75"
R0.11"
1.00"
0.14"
5.04"
6“
siDE
0.06"
0.71"
12”
top
11.75"
R0.11"
1.00”
0.17"
3.18"
5.68"
8.90"
11.08"
12”
siDE
0.06"
0.71"
Philips Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com
DLE L-101
THERMAL MEASUREMENT
thERMaL MEasUREMEnt tEst points
fRont
D39, LED CATHODE, 80C MAX.
BacK
U1, VOLTAGE REGULATOR, 80C MAX.
Q1, DRIVE TRANSISTOR,
MIDDLE PIN, 105C MAX.
fRont
D45, LED CATHODE, 80C MAX.
D27, LED CATHODE, 80C MAX.
BacK
Q3, DRIVE TRANSISTOR,
MIDDLE PIN, 100C MAX.
U1, VOLTAGE REGULATOR,
80C MAX.
Thermal Measurement
DLE L-101 generates a maximum amount of heat when set to white (full red, green, and blue). Set the board to full white and allow
everything to warm up and stabilize before testing. Thermal tests must be performed at the system’s highest rated operating temperature.
For elevated ambient temperatures, test the system in an environmental chamber or similar test apparatus that can maintain the desired
ambient temperature for the duration of the test.
Using a thermocouple, measure the locations indicated above on the DLE L-101 and ensure they are below the maximum temperature.
Note: Refer to DLE Integration Guide for complete integration instructions and warnings.
Philips Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com
DLE L-101
functional flow diagram
DLE L-101 (12”)
Maximum 12” DLE L-101
per PDS-150: 24, 12 per run.
Power/Data Cable
Cove Wire Harness
Maximum cable run from PDS-150e
to last light: 50 feet (15 m)
RED
BLK
RED
WHT
BLK
WHT
FUSE BLOCK
RED
RED
BLK
WHT
RED
BLK
WHT
BLK
FUSE BLOCK
RED
WHT
BLK
WHT
100-240VAC
LOOP OUT
DATA
TERMINATOR
DATA IN
Power
Data
Ground
DATA OUT
FUSE BLOCK
PDS-150e
AUX IN
ETHERNET
RED
BLK
DMX
LOOP OUT
CAT 5/RJ45
Data Cable
DMX IN
DMX512
DATA
WHT
RED
RED
BLK
WHT
FUSE BLOCK
RED
BLK
WHT
BLK
FUSE BLOCK
FUSE BLOCK
100-240VAC
DMX OUT
REPEATER
WHT
RED
BLK
WHT
RED
BLK
PDS-150e
WHT
Loop out connection
for multiple
power/data supplies
AUX IN
ETHERNET
DLE L-101 (6”)
Maximum 6” DLE L-101
per PDS-150: 32, 16 per run.
Refer to the DLE Integration Guide for complete
integration instructions and warnings.
Philips Solid-State Lighting Solutions • 3 Burlington Woods Drive • Burlington, MA 01803 • USA
Tel 888 FULL RGB • Tel 617 423 9999 • Fax 617 423 9998 • [email protected] • www.colorkinetics.com