NEMA LSD 74-2016 Considerations of Field LED Driver Replacement.pdf
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1、NEMA Standards PublicationNational Electrical Manufacturers AssociationNEMA LSD 74-2016Considerations of Field LED Driver Replacement 2016 National Electrical Manufacturers Association A NEMA Lighting Systems Division Document LSD 74-2016 Considerations of Field LED Driver Replacement Prepared by: N
2、EMA Ballast and Driver Section National Electrical Manufacturers Association 1300 North 17thStreet, Suite 900 Rosslyn, Virginia 22209 Approved: March 17, 2016 Published: www.nema.org The requirements or guidelines presented in this document, a NEMA Lighting Systems Division white paper, are consider
3、ed technically sound at the time they are approved for publication. They are not a substitute for a product sellers or users judgment with respect to the particular product discussed, and NEMA does not undertake to guarantee the performance of any individual manufacturers products by this document o
4、r guide. Thus, NEMA expressly disclaims any responsibility for damages arising from the use, application, or reliance by others on the information contained in these white papers, standards, or guidelines. The opinions expressed in this statement represent the consensus views of the member companies
5、 of the Lighting Systems Division of the National Electrical Manufacturers Association. The members of the Lighting Systems Division manufacture traditional technology lamps and ballasts, light-emitting diodes (LEDs and OLEDs), LED lamps and modules, LED drivers and power supplies, luminaires, light
6、ing controls and management systems. NEMA LSD 74-2016 Page 2 2016 National Electrical Manufacturers Association CONTENTS 1 Scope 4 2 References . 4 3 Definitions and Output Characteristics 4 3.1 Constant Voltage or Constant Current 4 3.2 Class 1 or Class 2 . 4 3.3 Programmability or “Tuning” 4 4 Con
7、trol Characteristics 5 5 Input Characteristics 5 6 Electromagnetic Interference Characteristics . 5 7 Programmability or Tunability Aspects 5 8 Tuning Techniques . 6 8.1 Importance of Tuning 6 8.2 Additional Related Tuning Issues 6 9 Field Replacement of Drivers. 6 9.1 Using same manufacturer replac
8、ement driver 6 9.2 Using a different manufacturer replacement driver . 6 10 Summary 7 11 Conclusion . 7 NEMA LSD 74-2016 Page 3 2016 National Electrical Manufacturers Association Introduction Because LED lighting continues to grow in the market, the need to replace failed drivers presents a unique s
9、et of requirements. Unlike fluorescent ballasts, drivers are not similarly interchangeable. Drivers vary in output characteristics and electrical safety ratings. With respect to output characteristics, a driver can be constant voltage, constant current, or other types of output. The output can also
10、vary in terms of safety rating, such as Class 1 or Class 2 outputs. The driver in question could also be programmable or tuned, and set to some output characteristic less than the maximum rating of the driver. The tuning or programming could have been done by the original equipment manufacturer (OEM
11、), driver manufacturer; the fixture manufacturer on a lot or batch basis; or by the installer in the field, especially in retrofit applications. The driver can be a dimming driver with Digital Addressable Lighting Interface (DALI), phase, 0-10VDC, wireless or other types of control. This paper makes
12、 the reader aware of driver characteristics and describes the steps necessary to ensure the correct replacement driver is obtained. This paper is written for individuals who are tasked with the field repair of LED fixtures, including contractors and building maintenance personnel. NEMA LSD 74-2016 P
13、age 4 2016 National Electrical Manufacturers Association 1 Scope The scope of this paper is a discussion of issues related to the field replacement of drivers in LED lighting fixtures. This paper explains that several aspects must be considered to ensure the replacement driver will function in the s
14、ame way as the original driver. The paper also discusses applicable safety standards related to driver replacement. 2 References NEMA LSD 73-2015 Energy Savings with Fluorescent and LED Dimming ANSI C82.15 LED Driver Robustness NFPA 70 National Electrical Code3 Definitions and Output Characteristics
15、 3.1 Constant Voltage or Constant Current The driver is designed to output a constant voltage level (such as 24V) at any current from the minimum rating up to the maximum rating of the driver, and is designed to output a constant output current (such as 700 mA) over a range of compliance voltages. T
16、he compliance voltage is typically a range, such as 16-54V, depending on the application. 3.2 Class 1 or Class 2 Drivers are rated by safety agencies as suitable for Output Power Circuit, Class 1 or Class 2. These ratings are found in the National Electrical Code, and describe the proper operating a
17、nd safety characteristics. To maintain system integrity, if a Class 1 driver exists in the field, it must be replaced with a Class 1 driver. Similarly, if a Class 2 driver exists in the field it must be replaced with a Class 2 driver. Class 1 drivers have output voltages similar to fluorescent balla
18、sts, as they are also Class 1 devices, so there is some risk of shock or arcing. Class 1 drivers have higher output voltages and output power limits than Class 2 drivers. Class 2 drivers are considered inherently safe, and are required in some fixtures that use polymeric materials that are suitable
19、for Class 2 systems only. Certain fixtures such as decorative types may have exposed wiring that must have the voltage limited to minimize risk of shock. 3.3 Programmability or “Tuning” To utilize economy of scale in the manufacture of drivers, drivers may be designed with a maximum rating based on
20、electrical components used, and then specifically programmed or tuned to set the maximum output characteristic (typically current) that is required by a specific LED load. This tuning or programming capability allows the fixture manufacturer to define light levels on the production line to meet the
21、needs of specific applications. Tuning capability is used to match the OEM light level. Tuning can be implemented digitally although the use of a programmer module connected to the driver or by an external programming resistor that is used to set an upper or lower current limit. The OEM may do the t
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