Hi-lume A-Series Driver Overview EcoSystem or 3-wire control

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1 Hi-lume A-Series Driver Overview EcoSystem or 3-wire control 36932f Hi-lume A-Series Driver is a high-performance LED driver that provides smooth, continuous 1% dimming for virtually any LED fixture, whether it requires constant-current or constant-voltage. It is the most versatile LED driver offered today due to its compatibility with a wide variety of LED arrays, multiple form factors, and numerous control options. Features Continuous, flicker-free dimming from 1% to 1%. Compatible with Energi Savr Node unit with EcoSystem, GRAFIK Eye QS control unit, PowPak dimming module with EcoSystem, and Quantum systems, allowing for integration into a planned or existing EcoSystem lighting control solution. Please see chart at the end of this document or contact Lutron for details regarding compatible controls. Standard 3-wire line-voltage phase-control technology for consistent dimming performance and compatibility with all Lutron 3-wire fluorescent controls. Line voltage miswire protection on EcoSystem control inputs. 1% performance tested at factory. A rated lifetime of, t c = C. UL recognized for United States and Canada. FCC Part compliant for commercial applications at 12 V ~ or 277 V ~. Pulse Width Modulation (PWM) or Constant-Current Reduction (CCR) dimming methods available. See Application Note #3 for details. RoHS Compliant. For more information please go to: Hi-lume A-Series, case type K 3. in (76 mm) W x 1. in (2 mm) H x 4. in (124 mm) L Hi-lume A-Series, case type M 1.18 in (3 mm) W x 1. in (2 mm) H x 14.2 in (362 mm) L 1

2 Specifications 36932f Performance Dimming Range: 1% to 1% Operating Voltage: V ~ at / Hz A rated lifetime of, t c = C. Contact Lutron for derating information. Patented thermal foldback protection. LEDs turn on to any dimmed level without going to full brightness. Non-volatile memory restores all driver settings after power failure. Power Factor: >. for loads greater than 2 W Standby Power Consumption: < 1. W Total Harmonic Distortion (THD): < 2% for loads greater than 2 W Inrush Current: < 2 A Inrush Current Limiting Circuitry: eliminates circuit breaker tripping, switch arcing and relay failure. Open circuit protected Short circuit protected Turn-on time: 1 second PWM Dimming Frequency: Hz Environmental Sound Rating: Class A. Relative Humidity: Maximum % non-condensing. Minimum operating ambient temperature t a = 32 F ( C). Standards Meets ANSI C62.41 category A surge protection standards up to and including 4 kv. FCC Part compliant for commercial applications at 12 V ~ or 277 V ~. Manufacturing facilities employ ESD reduction practices that comply with the requirements of ANSI/ESD S2.2. LutronR Quality Systems registered to ISO UL 8 recognized. Class 2 output available. Models available to meet LED Driver requirements for Energy Star 1.1. Driver Wiring & Mounting Driver is grounded by a mounting screw to the grounded fixture (or by terminal connection on the K case). Terminal blocks on the driver accept one solid wire per terminal from 18 to 16 AWG (. to 1. mm 2 ). Fixture must be grounded in accordance with local and national electrical codes. Maximum driver to LED light engine wire length for Constant-Current Drivers: Maximum Lead Length Wire Gauge 2 ma to 7 ma 71 ma to 1. A 1.1 A to 2.1 A 18 AWG (. mm() 3 ft (9 m) ft (4. m) 1 ft (3 m) 16 AWG (1. mm() 3 ft (1. m) 2 ft (7. m) ft (4. m) 14 AWG (2. mm() ft ( m) 4 ft (12 m) 2 ft (7. m) 12 AWG (4. mm() 1 ft (3 m) ft (18 m) 4 ft (12 m) Maximum driver to LED light engine wire length for Constant-Voltage Drivers: Maximum Lead Length Wire Gauge 1 V to 2 V 2. V to 4 V 4. V to V 18 AWG (. mm() 1 ft (3 m) ft (4. m) 3 ft (9 m) 16 AWG (1. mm() ft (4. m) 2 ft (7. m) ft ( m) 14 AWG (2. mm() 2 ft (7. m) 4 ft (12 m) ft (22. m) 12 AWG (4. mm() 4 ft (12 m) ft (18 m) 1 ft (3 m) 2

3 How to Build a Model Number: Hi-lume A-Series 36932f L3DA4U1U - Case Size: example: L3DA4U1UKS-HC7 For further assistance selecting your model number, contact our LED Center of Excellence at or LEDs@lutron.com K = Compact M = Stick Current Level (for Constant-Current): 2 =.2 A; 21 =.21 A... 7 =.7 A = 2.1 A Voltage Level (for Constant-Voltage): 1 = 1. V; = 1. V... =. V Case Style: S = Studded (K case only) N = Non-Studded Driver Output: C = Constant-current driver with pulse width modulation (PWM) dimming A = Constant-current driver with constant-current reduction (CCR) dimming V = Constant-voltage driver with pulse width modulation (PWM) dimming LED Load Output Range (see the following pages for more detail): Class 2 Constant-Voltage A = 1. V 12. V B = 12. V 2. V C = 2. V 24. V D = 24. V 38. V Isolated Non-Class 2 Constant-Voltage X = 38. V. V Class 2 Constant-Current E =.2 A. A 3 V 4 V F =.1 A 1. A 3 V 4 V G =.2 A.7 A 8 V 2 V H =.2 A.7 A V 38 V I =.71 A 1. A 8 V 2 V J =.71 A 1. A V 38 V K = 1.6 A 1. A 8 V 2 V L = 1.6 A 1. A V 38 V M = 1.1 A 2.1 A 8 V 2 V Isolated Non-Class 2 Constant-Current Y =.2 A. A 3 V V Z =.1 A 1. A 3 V V 3

4 A Output Range, Voltage Driver Models 36932f Constant-Voltage Driver Pulse Width Modulation (PWM) V PWM A 4 W Voltage Driver Operation Range: Output Current vs. Output Voltage A Max. Output Power vs. Output Voltage A A 1. W Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 3 ma 21 ma 17 ma t a = 2 C, Power Factor V 4 W load, THD 14% 17% 16% Driver Efficiency 81% 83% 83% Driver Efficiency vs. Output Power at 12 V~ 8 1. V 12. V 8 1. V 12. V

5 B Output Range, Voltage Driver Models 36932f Constant-Voltage Driver Pulse Width Modulation (PWM) V PWM A 4 W Voltage Driver Operation Range: 3. Output Current vs. Output Voltage Output Power vs. Output Voltage W Max B B 1. W Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 3 ma 2 ma 17 ma t a = 2 C, Power Factor V 4 W load, THD 1% 8% 9% Driver Efficiency % 86% 87% Driver Efficiency vs. Output Power at 12 V~ 2. V 2. V V 12. V V 12. V

6 C Output Range, Voltage Driver Models 36932f Constant-Voltage Driver Pulse Width Modulation (PWM) V PWM A 4 W Voltage Driver Operation Range: 3. Output Current vs. Output Voltage Output Power vs. Output Voltage W Max C 1. 2 C 1 1. W Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 37 ma 1 ma 17 ma t a = 2 C, Power Factor V 4 W load, THD 1% 1% 12% Driver Efficiency 86% 87% 88% Driver Efficiency vs. Output Power at 12 V~ 24 V 24 V 8 2. V 8 2. V

7 D Output Range, Voltage Driver Models 36932f Constant-Voltage Driver Pulse Width Modulation (PWM) V PWM A 4 W Voltage Driver Operation Range: 3. Output Current vs. Output Voltage Output Power vs. Output Voltage W Max. D D 1. W Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 37 ma 1 ma 17 ma t a = 2 C, Power Factor V 4 W load, THD 6% 9% 11% Driver Efficiency 87% 88% 88% Driver Efficiency vs. Output Power at 12 V~ 36 V 38 V 24. V 24. V V 36 V

8 E Output Range, Current Driver Models 36932f Constant-Current Driver Constant-Current Reduction (CCR) 3 4 V-.2. A 6 27 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current E V Max. E V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 2 ma 14 ma 11 ma t a = 2 C, Power Factor A 27 W load, THD 1% 1% 12% Driver Efficiency % % % Driver Efficiency vs. Output Power at 12 V~. A. A 8.2 A.3 A 8.2 A.3 A

9 F Output Range, Current Driver Models 36932f Constant-Current Driver Constant-Current Reduction (CCR) 3 4 V A 4 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current 4 4 W Max V Max F F 3 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 38 ma 2 ma 1 ma t a = 2 C, Power Factor A 4 W load, THD 8% 9% 11% Driver Efficiency 84% 86% 86% Driver Efficiency vs. Output Power at 12 V~ 8.1 A.7 A 1. A 8.1 A.7 A 1. A

10 G Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 8 2 V PWM Constant-Current Reduction (CCR) 8 2 V-.2.7 A 2 14 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current G V Max. 1 G 8 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 14 ma ma 7 ma t a = 2 C, Power Factor A 14 W load, THD 11% 16% 2% Driver Efficiency 8% 8% 79% Driver Efficiency vs. Output Power at 12 V~ 8.2 A.3 A. A.7 A 8.2 A.3 A. A.7 A

11 H Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 38 V PWM Constant-Current Reduction (CCR) 38 V-.2.7 A 3 26 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current H V Max. H V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 27 ma 14 ma 12 ma t a = 2 C, Power Factor A 26 W load, THD 7% 1% 12% Driver Efficiency 84% % % Driver Efficiency vs. Output Power at 12 V~ A. A.7 A 7.3 A. A.7 A.2 A.2 A

12 I Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 8 2 V PWM Constant-Current Reduction (CCR) 8 2 V A 6 21 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current I V Max. I 8 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 21 ma 12 ma 1 ma t a = 2 C, Power Factor A 21 W load, THD % 13% 14% Driver Efficiency 82% 81% 81% Driver Efficiency vs. Output Power at 12 V~ 8.71 A 1. A 8.71 A 1. A

13 J Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 38 V PWM Constant-Current Reduction (CCR) 38 V A 11 4 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current V Max J 2 2 J V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 3 ma 2 ma 17 ma t a = 2 C, Power Factor A 4 W load, THD 6% 9% 1% Driver Efficiency % 86% 86% Driver Efficiency vs. Output Power at 12 V~ A 1. A.71 A 1. A

14 K Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 8 2 V PWM Constant-Current Reduction (CCR) 8 2 V A 9 3 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current V Max K K 8 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 31 ma 1 ma 13 ma t a = 2 C, Power Factor A 3 W load, THD % 17% % Driver Efficiency 81% 83% 82% Driver Efficiency vs. Output Power at 12 V~ A 1.2 A 1. A A 1.2 A 1. A

15 L Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) 38 V PWM Constant-Current Reduction (CCR) 38 V A 16 4 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current L 4 W Max L V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 3 ma 2 ma 18 ma t a = 2 C, Power Factor A 4 W load, THD 9% 13% 12% Driver Efficiency 83% % % Driver Efficiency vs. Output Power at 12 V~ A 1.2 A 1. A 1.6 A 1.2 A 1. A

16 M Output Range, Current Driver Models 36932f Constant-Current Driver Pulse Width Modulation (PWM) V PWM Constant-Current Reduction (CCR) V A 12 3 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current W Max. 2 2 M 1 8 M 1 8 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 31 ma 1 ma 14 ma t a = 2 C, Power Factor A 3 W load, THD 12% 12% 12% Driver Efficiency 8% 81% 81% Driver Efficiency vs. Output Power at 12 V~ A 1. A 2.1 A 1.1 A 1. A 2.1 A

17 X Output Range, Voltage Driver Models 36932f Constant-Voltage Driver (Isolated, Non-Class 2) Pulse Width Modulation (PWM) 38.. V PWM A 4 W Voltage Driver Operation Range: Output Current vs. Output Voltage Output Power vs. Output Voltage W Max. 2 2 X 1 1. W Min X Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 38 ma 1 ma 17 ma t a = 2 C, Power Factor V 4 W load, THD 7% 6% 8% Driver Efficiency 88% 89% 89% Driver Efficiency vs. Output Power at 12 V~ V V. V 48. V. V 48. V

18 Y Output Range, Current Driver Models 36932f Constant-Current Driver (Isolated, Non-Class 2) Pulse Width Modulation (PWM) 3 V PWM Constant-Current Reduction (CCR) 3 V-.2. A 6 3 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current Y V Max. Y V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 28 ma ma 12 ma t a = 2 C, Power Factor A 3 W load, THD 8% 9% 9% Driver Efficiency % 86% 86% Driver Efficiency vs. Output Power at 12 V~ 8.2 A.3 A. A 8.2 A.3 A. A

19 Z Output Range, Current Driver Models 36932f Constant-Current Driver (Isolated, Non-Class 2) Pulse Width Modulation (PWM) 3 V PWM Constant-Current Reduction (CCR) 3 V A 16 4 W Current Driver Operation Range: Output Voltage vs. Output Current Output Power vs. Output Current Z 4 W Max V Max. Z 3 V Min Parameter 12 V~ 24 V~ 277 V~ Test Conditions Input Current 38 ma 2 ma 1 ma t a = 2 C, Power Factor A 4 W load, THD 1% 8% 8% Driver Efficiency 84% 86% 86% Driver Efficiency vs. Output Power at 12 V~.1 A.7 A 1. A 8.1 A.7 A 1. A

20 K Case: Case Dimensions 36932f B F G A H* I* J* C E D K Case: Connector Location Dimensions K* L K* L O 8-32 Threaded Studs* P Q M N Q R* A B C D E 4.2 in (17 mm) 1. in (2 mm) 3. in (76 mm) 4. in (124 mm) 4. in (117 mm) (mounting center) F 1.42 in (36 mm) G 1.99 in (1 mm) H* 1.11 in (28 mm) I* 2. in (1 mm) J* 1. in (41 mm) K*.33 in (8.3 mm) L. in (16. mm) M. in (19 mm) N 1.73 in (44 mm) O 1.33 in (34 mm) P.74 in (19 mm) Q.32 in (8 mm) R*.29 in (7 mm) * Applies to studded K case only. 2

21 K Case: Side Entry Connector Location Dimensions (Non-Studded) 36932f S T S T U V 1.38 in (3 mm).64 in (16 mm).88 in (22 mm) 1.3 in (39 mm) U V M Case: Case Dimensions C B A A B C D in (39 mm) in (347 mm) (mounting center) 1.18 in (3 mm) 1. in (2 mm) D 21

22 Wiring Diagram for 3-Wire Control 36932f Switched Hot (Black) +V 3 (Red) To 3-wire Dimming Control Dimmed Hot (Orange) Neutral (White) Hi-lume A-Series Ground 2 -V 3 (Black) LED light engine Ground 1 (Green) Wiring Diagram for EcoSystem Digital Control Switched Hot (Black) +V 3 (Red) To Line Voltage Neutral (White) Ground 1 (Green) Hi-lume A-Series LED light engine -V 3 (Black) Ground 2 To E1 (Purple) EcoSystem Digital Link E2 (Purple) Note: Colors shown correspond to terminal blocks on driver. 1 Ground wire connection available on K case models only. 2 Fixture and driver case must be grounded in accordance with local and national electrical codes. 3 For maximum driver-to-led light engine wire length, see charts in Specifications Driver Wiring & Mounting section. 22

23 Compatible Controls 36932f Guaranteed performance specifications with the controls listed in the chart below. For assistance selecting controls, contact our LED Center of Excellence at or Product Part Number Drivers per Control 12 V~ 277 V~ 12 V~ 277 V~ 3-wire Controls: Requires 3rd wire for control signal, see 3-wire diagram on previous page Measured Light Output Range Nova T* NTF-1- NTF % 1% NTF-13P- NTF-13P % 1% Nova NF-1- NF % 1% NF-13P- NF-13P % 1% Vareo VF % 1% Skylark SF-1P- SF-12P % 1% SF-13P- SF-12P % 1% Diva DVF-13P- DVF-13P % 1% DVSCF-13P- DVSCF-13P % 1% Ariadni AYF-13P- AYF-13P % 1% Vierti VTF-6A % 1% Maestro MAF-6AM- MAF-6AM % 1% MSCF-6AM- MSCF-6AM % 1% Maestro Wireless MRF2-F6AN-DV % 1% RadioTouch RTA-RX-F % 1% Spacer System SPSF-6A- SPSF-6A % 1% SPSF-6AM- SPSF-6AM % 1% Lyneo Lx LXF-13PL- LXF-13PL % 1% RadioRA 2 RRD-F6AN-DV % 1% HomeWorks QS HQRD-F6AN-DV % 1% Interfaces 1 PHPM-3F % 1% PHPM-3F-DV % 1% GRX-FDBI-16A % 1% GP Dimming Panels Various % 1% EcoSystem Controls: See EcoSystem Controls wiring diagram on previous page PowPak dimming module with RMJ-ECO32-DV-B 32 per EcoSystem link 1% 1% EcoSystem Energi Savr Node with QSN-1ECO-S, QSN-2ECO-S 64 per EcoSystem link 1% 1% EcoSystem GRAFIK Eye QS with QSGRJ-_E, 64 per EcoSystem link 1% 1% EcoSystem QSGR-_E Quantum Various 64 per EcoSystem link 1% 1% 1 For use with 3-wire controls or Commercial Systems, RadioRA 2 Systems or Home Systems applications. NOTE: Contact Lutron Technical Support for derating rules when using wallbox controls on the Hi-lume A-Series LED Driver in multi-gang applications. 23

24 EcoSystem Wiring Diagrams 36932f EcoSystem Digital Link Overview The EcoSystem Digital Link wiring (E1 and E2) connects the digital ballasts and drivers together to form a lighting control system. Each EcoSystem Digital Link supports up to 64 digital ballasts, LED drivers or EcoSystem Modules (e.g. C-BMJ-16A, C-XPJ-16A), 32 occupancy sensors (64 occupancy sensors with Energi Savr Node with EcoSystem ), 16 daylight sensors, and 64 wallstations or IR receivers.* Sensors do not directly connect to Hi-lume A-Series LED drivers. E1 and E2 (EcoSystem digital link wires) are polarity insensitive and can be wired in any topology. An Energi Savr Node unit with EcoSystem, GRAFIK E2 E1 Driver Terminals E2 E1 Eye QS control unit with EcoSystem, PowPak dimming module with EcoSystem, or Quantum system provides power for the EcoSystem Digital Link and supports system programming.* All EcoSystem Digital Link programming is completed by using the Energi Savr app for Apple ipad, ipod Touch or iphone mobile digital devices, GRAFIK Eye QS with EcoSystem, PowPak dimming module with EcoSystem, or Quantum system. EcoSystem Digital Link Wiring Driver EcoSystem Digital Link terminals only accept one 18 to 16 AWG (. to 1. mm() solid copper wire per terminal. Make sure that the supply breaker to the Digital Driver and EcoSystem Digital Link Supply is OFF when wiring. Connect the two conductors to the two Digital Driver terminals E1 and E2 as shown. Using two different colors for E1 and E2 will reduce confusion when wiring several drivers together. The EcoSystem Digital Link may be wired Class 1 or Class 2. Consult applicable electrical codes for proper wiring practices. * PowPak dimming module with EcoSystem provides power for the EcoSystem Digital Link and can support 32 digital ballasts, LED drivers or EcoSystem Modules, 6 Wireless Occupancy Sensors, 1 Wireless Daylight Sensor, and 9 Pico Wireless Controllers. Apple, ipad, ipod Touch, and iphone are trademarks of Apple Inc., registered in the U.S. and other countries. Driver Terminals To the EcoSystem Digital Bus and additional drivers and/or ballasts Notes The EcoSystem Digital Link Supply does not have to be located at the end of the Digital Link. EcoSystem Digital Link length is limited by the wire gauge used for E1 and E2 as follows: Digital Link Length Wire Gauge (max) 12 AWG 22 ft 14 AWG 14 ft 16 AWG ft 18 AWG ft Digital Link Length Wire Size (max) 4. mm( 828 m 2. mm( 17 m 1. mm( 31 m 1. mm( 27 m. mm( m 24

25 36932f ELECTRICIANS AND CONTRACTORS FACILITIES MANAGERS Driver Leads Maximum driver to LED light engine wire length for Constant-Current Drivers: Maximum Lead Length Wire Gauge 2 ma to 7 ma 71 ma to 1. A 1.1 A to 2.1 A 18 AWG (. mm() 3 ft (9 m) ft (4. m) 1 ft (3 m) 16 AWG (1. mm() 3 ft (1. m) 2 ft (7. m) ft (4. m) 14 AWG (2. mm() ft ( m) 4 ft (12 m) 2 ft (7. m) 12 AWG (4. mm() 1 ft (3 m) ft (18 m) 4 ft (12 m) Maximum driver to LED light engine wire length for Constant-Voltage Drivers: Maximum Lead Length Wire Gauge 1 V to 2 V 2. V to 4 V 4. V to V 18 AWG (. mm() 1 ft (3 m) ft (4. m) 3 ft (9 m) 16 AWG (1. mm() ft (4. m) 2 ft (7. m) ft ( m) 14 AWG (2. mm() 2 ft (7. m) 4 ft (12 m) ft (22. m) 12 AWG (4. mm() 4 ft (12 m) ft (18 m) 1 ft (3 m) SERVICE Warranty For warranty information, please visit Ballast%2and%2Driver%2Warranty.pdf Replacement Parts When ordering Lutron replacement parts please provide the full model number. Consult Lutron if you have any questions. Further Information For further information, please visit us at or contact our LED Control Center of Excellence at or LEDs@lutron.com Wiring and Grounding Driver and lighting fixture must be grounded. Drivers must be installed per national and local electrical codes. LED Load Replacement For Class 2 rated drivers, the LED load can be changed while the driver is installed and powered. Maximum Driver Operating Temperature Driver case temperature (t c ) must not exceed UL conditions of acceptability in end product. For, hour lifetime, driver case temperature (t c ) must not exceed C. 2

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