2019-01241. Energy Conservation Program: Petition for Waiver of Beghelli North America From the Department of Energy Illuminated Exit Signs Test Procedure
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AGENCY:
Office of Energy Efficiency and Renewable Energy, Department of Energy.
ACTION:
Notice of petition for waiver, and request for comments.
SUMMARY:
This document announces receipt of and publishes a petition for waiver from Beghelli North America (“Beghelli”), which seeks a waiver from the U.S. Department of Energy (“DOE”) test procedure used for determining the energy consumption of specified illuminated exit sign basic models. Beghelli seeks to use an alternate test procedure to address issues involved in testing the basic models identified in its petition. Beghelli contends that the design characteristics of its combination illuminated exit signs prevent them from being accurately tested using the currently applicable DOE test procedure. Beghelli has suggested an alternate test procedure to test and rate the Beghelli basic models specified in its petition. For the reasons discussed in this document DOE is proposing a different alternate test procedure. DOE solicits comments, data, and information concerning Beghelli's petition, its suggested alternate test procedure, and DOE's proposed alternate test procedure to inform its decision on Beghelli's waiver request.
DATES:
Written comments and information are requested and will be accepted on or before March 8, 2019.
ADDRESSES:
Interested persons are encouraged to submit comments using the Federal eRulemaking Portal at http://www.regulations.gov. Alternatively, interested persons may submit comments, identified by case number “2018-007,” and Docket number “EERE-2018-BT-WAV-0011,” by any of the following methods:
- Federal eRulemaking Portal: http://www.regulations.gov. Follow the instructions for submitting comments.
- Email: Beghelli2018WAV0011@ee.doe.gov. Include the case number [Case No. 2018-007] in the subject line of the message.
- Postal Mail: Appliance and Equipment Standards Program, U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy, Building Technologies Office, Mailstop EE-5B, Petition for Waiver Case No. 2018-007, 1000 Independence Avenue SW, Washington, DC 20585-0121. If possible, please submit all items on a compact disc (“CD”), in which case it is not necessary to include printed copies.
- Hand Delivery/Courier: Appliance and Equipment Standards Program, U.S. Department of Energy, Building Technologies Office, 950 L'Enfant Plaza SW, 6th floor, Washington, DC 20024. If possible, please submit all items on a “CD”, in which case it is not necessary to include printed copies.
No telefacsimilies (faxes) will be accepted. For detailed instructions on submitting comments and additional information on this process, see section V of this document.
Docket: The docket, which includes Federal Register notices, comments, and other supporting documents/materials, is available for review at http://www.regulations.gov. All documents in the docket are listed in the http://www.regulations.gov index. However, some documents listed in the index, such as those containing information that is exempt from public disclosure, may not be publicly available.
The docket web page can be found at http://www.regulations.gov/docket?D=EERE-2018-BT-WAV-0011. The docket web page contains simple instruction on how to access all documents, including public comments, in the docket. See section V for information on how to submit comments through http://www.regulations.gov.
Start Further InfoFOR FURTHER INFORMATION CONTACT:
Ms. Lucy deButts, U.S. Department of Energy, Office of Energy Efficiency and Renewable Energy, Building Technologies Office, Mailstop EE-5B, 1000 Independence Avenue SW, Washington, DC 20585-0121. Email: AS_Waiver_Request@ee.doe.gov.
Mr. Michael Kido, U.S. Department of Energy, Office of the General Counsel, Mail Stop GC-33, Forrestal Building, 1000 Independence Avenue SW, Washington, DC 20585-0103. Telephone: (202) 586-8145. Email: Michael.Kido@hq.doe.gov.
End Further Info End Preamble Start Supplemental InformationSUPPLEMENTARY INFORMATION:
I. Background and Authority
The Energy Policy and Conservation Act of 1975, as amended (“EPCA”),[1] authorizes the U.S. Department of Energy (“DOE”) to regulate the energy efficiency of a number of consumer products and industrial equipment. (42 U.S.C. 6291-6317) Title III, Part B of EPCA established the Energy Conservation Program for Consumer Products Other Than Automobiles, which sets forth a variety of provisions designed to improve energy efficiency for certain types of consumer products. These products include illuminated exit signs, the focus of this document. (42 U.S.C. 6291(37); 42 U.S.C. 6295(w))
Under EPCA, DOE's energy conservation program consists essentially of four parts: (1) Testing, (2) labeling, (3) Federal energy conservation standards, and (4) certification and enforcement procedures. Relevant provisions of EPCA include definitions (42 U.S.C. 6291), energy conservation standards (42 U.S.C. 6295), test procedures (42 U.S.C. 6293), labeling provisions (42 U.S.C. 6294), and the authority to require information and reports from manufacturers (42 U.S.C. 6296).
The Federal testing requirements consist of test procedures that manufacturers of covered products must use as the basis for: (1) Certifying to DOE that their products comply with the applicable energy conservation Start Printed Page 2195standards adopted pursuant to EPCA (42 U.S.C. 6295(s)), and (2) making representations about the efficiency of that product (42 U.S.C. 6293(c)). Similarly, DOE must use these test procedures to determine whether the product complies with relevant standards promulgated under EPCA. (42 U.S.C. 6295(s))
Under 42 U.S.C. 6293, EPCA sets forth the criteria and procedures DOE is required to follow when prescribing or amending test procedures for covered products. EPCA requires that any test procedures prescribed or amended under this section must be reasonably designed to produce test results which reflect the energy efficiency, energy use or estimated annual operating cost of a covered product during a representative average use cycle or period of use and requires that test procedures not be unduly burdensome to conduct. (42 U.S.C. 6293(b)(3)) The test procedure for illuminated exit signs is contained in the Code of Federal Regulations (“CFR”) at 10 CFR 431.204, “Uniform test method for the measurement of energy consumption of illuminated exit signs.” [2]
Under 10 CFR 431.401, any interested person may submit a petition for waiver from DOE's test procedure requirements. DOE will grant a waiver from the test procedure requirements if DOE determines either that the basic model for which the waiver was requested contains a design characteristic that prevents testing of the basic model according to the prescribed test procedures, or that the prescribed test procedures evaluate the basic model in a manner so unrepresentative of its true energy consumption characteristics as to provide materially inaccurate comparative data. 10 CFR 431.401(f)(2). A petitioner must include in its petition any alternate test procedures known to the petitioner to evaluate the basic model in a manner representative of its energy consumption characteristics. 10 CFR 431.401(b)(1)(iii).
DOE may grant the waiver subject to conditions, including adherence to alternate test procedures. 10 CFR 431.401(f)(2). As soon as practicable after the granting of any waiver, DOE will publish in the Federal Register a notice of proposed rulemaking to amend its regulations so as to eliminate any need for the continuation of such waiver. 10 CFR 431.401(l) As soon thereafter as practicable, DOE will publish in the Federal Register a final rule. Id.
When DOE amends the test procedure to address the issues presented in a waiver, the waiver will automatically terminate on the date on which use of that test procedure is required to demonstrate compliance. 10 CFR 431.401(h)(2).
II. Beghelli's Petition for Waiver
On June 26, 2018, Beghelli filed a petition for waiver from the test procedure applicable to illuminated exit signs set forth in 10 CFR 431.204. (Beghelli, No. 1 at pp. 1-6 [3] ) Beghelli has requested a waiver for basic models [4] that provide the dual function of exit signage and lighting for emergency egress (combination illuminated exit signs [5] ), stating that the battery used in combination illuminated exit signs requires a substantially larger capacity to provide a minimum of 90 minutes of egress lighting, as required by safety codes. Beghelli has further stated that it is not feasible to separate the power measurement associated with the exit signage and the egress lighting because a single battery and charging circuit supplies power for both functions.
III. Requested Alternate Test Procedure
EPCA requires that manufacturers use DOE test procedures when making representations about the energy consumption and energy consumption costs of products covered by the statute. (42 U.S.C. 6293(c)) Consistent representations are important for manufacturers to use in making representations about the energy efficiency of their products and to demonstrate compliance with applicable DOE energy conservation standards. Pursuant to its regulations applicable to waivers from applicable test procedures at 10 CFR 431.401, and after consideration of public comments on the petition, DOE will consider setting an alternate test procedure for the products identified by Beghelli's petition in a subsequent Decision and Order.
Beghelli seeks to use an alternate test procedure to test and rate specific combination illuminated exit sign basic models. As an alternate to the test procedure currently in place at 10 CFR part 431, subpart L, Beghelli has requested that it determine the power for its combination illuminated exit signs using the following procedure:
1. Measure AC input power of the complete unit of combination illuminated exit sign with a fully charged battery.
2. Measure the DC output voltage and current to the light source of the unit.
3. Calculate the AC power consumption of the light source of the unit by applying a power factor correction of 30 percent as worst-case scenario. (Beghelli asserted that based on the circuitry design the loss would not exceed 30 percent.)
4. If needed, calculate the stand-by power for the unit when the battery is fully charged. Stand-by power = input power (from item 1)−power of basic exit sign light source (from item 3).
The alternate test procedure suggested by Beghelli in its petition would measure the output power of the exit sign and apply conversion losses to back-calculate the input power to the exit sign. This approach requires assumptions that will likely result in an uncertainty of measured values. Beghelli contends that the input to output power conversion losses of all basic models under consideration are at maximum 30 percent. However, Beghelli's petition does not provide a sufficient basis for the 30-percent value. With the differences in battery types and sizes in the various basic models for which the waiver is being requested, it is not evident from the petition that the 30-percent value would apply across all the basic models of illuminated exit sign models identified in Beghelli's petition. Additionally, it is unclear whether the DC output voltage and current measurement in step 2 of Beghelli's suggested alternative testing method would result in a power measurement that could only be attributable to the light sources of the exit sign, without resorting to additional steps such as cutting wires or otherwise modifying the equipment's circuitry. Based on the limited information contained in Beghelli's petition, in DOE's view, the Start Printed Page 2196alternative test procedure suggested by Beghelli to use the estimated conversion losses in conjunction with a measurement that does not clearly isolate the power consumption to the light source(s) of the exit sign would be unlikely to accurately calculate the combination illuminated exit sign input power demand of the affected basic models.
As an alternative to Beghelli's suggested approach, this interim waiver will require the company to apply an alternate testing method that does not require application of conversion losses and, instead, relies on a more direct measurement of the input power consumption attributable to the light source(s) of the exit sign. This alternative approach, as noted in Section IV of this document, is consistent with one that DOE has permitted to be used in similar test procedure waiver circumstances. Although Beghelli would be required to use this approach for the purposes of this interim waiver, as discussed in Section V of this document, DOE seeks comment on both the applicability of Beghelli's suggested method as well as the one required as part of this grant of interim waiver.
IV. DOE's Proposed Alternate Test Procedure
DOE investigated various approaches to isolate the input power used to illuminate only the exit sign portion of a combination exit sign including: Scaling or prorating the portion of the input power demand associated with the battery; and measuring alternative power quantities as a proxy for input power demand. DOE tentatively concluded that these methods would require isolating the battery power used to illuminate the faces of the exit sign from the battery power used to operate auxiliary features. Based on DOE's understanding of combination exit sign circuitry, DOE has tentatively determined that it is either not possible to measure the required quantities or that doing so would require cutting wires and modifying the circuitry of the combination exit sign. However, DOE has determined that the basic models identified by Beghelli in its petition for waiver have equivalent non-combination illuminated exit sign models. For the specified basic models, DOE proposes the following alternate test method be used in the context of this interim waiver grant to Beghelli:
(1) Identify an equivalent non-combination illuminated exit sign for the combination illuminated exit sign under test. A unit is an equivalent non-combination illuminated exit sign only if it consists entirely of electricity-consuming components identical to all of those of the unit whose input power demand is being determined, but does not include any auxiliary features, and contains an electrically connected battery. The equivalent non-combination illuminated exit sign must also have the same manufacturer and number of faces as the unit whose input power demand is being determined.
(2) Test the equivalent non-combination illuminated exit sign using the DOE test procedure at 10 CFR, part 431, subpart L. Assign the input power demand of the combination illuminated exit sign under test as the input power demand of the equivalent non-combination illuminated exit sign.
This alternate test procedure permits Beghelli to use the same approach that DOE permitted Acuity Brands to use as part of a prior Decision and Order granting that company a waiver from the DOE test procedure for evaluating similar equipment. 83 FR 11740 (March 16, 2018). Because the alternate procedure granted to Acuity Brands offers a more direct measurement of the actual energy use of the lighting sources in the exit sign—rather than an estimated power factor correction value—DOE is applying an approach that it believes offers a more accurate method in evaluating the energy usage of the lighting equipment at issue.
V. Request for Comments
DOE is publishing Beghelli's petition for waiver in its entirety, pursuant to 10 CFR 431.401(b)(1)(iv). The petition includes the basic models for which Beghelli is requesting the waiver and Beghelli's suggested alternate test procedure to determine the efficiency of Beghelli's those specified illuminated exit signs. DOE is particularly interested in the merits of Beghelli's suggested alternative testing method, including data supporting the suggested or another power factor, as well as comments comparing the accuracy of that approach against the one that DOE is requiring as part of this interim waiver—i.e., the Acuity Brands-based alternative test method.
DOE invites all interested parties to submit in writing by March 8, 2019, comments and information on all aspects of the petition, including the alternate test procedure. Pursuant to 10 CFR 431.401(d), any person submitting written comments to DOE must also send a copy of such comments to the petitioner. The contact information for the petitioner is Wenceslao Garro, wenceslao.garro@beghellinorthamerica.com, 3250 Corporate Way, Miramar, FL 33025 USA.
Submitting comments via http://www.regulations.gov. The http://www.regulations.gov web page will require you to provide your name and contact information. Your contact information will be viewable to DOE Building Technologies staff only. Your contact information will not be publicly viewable except for your first and last names, organization name (if any), and submitter representative name (if any). If your comment is not processed properly because of technical difficulties, DOE will use this information to contact you. If DOE cannot read your comment due to technical difficulties and cannot contact you for clarification, DOE may not be able to consider your comment.
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Start SignatureSigned in Washington, DC, on January 31, 2019.
Steve Chalk,
Acting Deputy Assistant Secretary for Energy Efficiency, Energy Efficiency and Renewable Energy.
Date: 6/26/2018
To Whom It May Concern
Subject: Beghelli Petition for Test Procedure Waiver for Specified Combination Illuminated Exit Signs
Following the waiver granted to Acuity Brands in reference to illuminated exit signs combo units (Case Number IES-001) for Test Procedure Waiver for Illuminated Exit Signs, Pursuant to 10 CFR § 430.27; Beghelli is petitioning under the provision 10 C.F.R. § 431.401 a waiver for specified combination illuminated exit signs basic models on the grounds that contain design characteristics which prevent testing the basic models as per the prescribed test procedures.
1) Test procedure sought to be waived
The test procedure to be waived is in 10 CFR part 431, subpart L, 431.203 & 431.204 that requires the measurement of power including the internal battery. Since the power limits were not established using a baseline for units that provide the dual function associated with a combo unit, it is not possible to separate the power measurement for the exit sign and the egress lighting at the same time since a single battery and charging circuit supplies power for both functions.
2) Manufacturers of all other basic models distributed in commerce in the United States and known to the petitioner to incorporate design characteristic(s) similar to those found in the basic model that is the subject of the petition.
Vernon J. Nagel, Acuity Brands, 1170 Peachtree Street NE, Suite 2300, Atlanta, GA 30309-7676, Waiver 83FR11740.
Mr. David Woodward, Standards and Regulations Manager Americas, Philips Lighting, 938 South Green Street, Tupelo, MS 38802-1687, david.r.woodward@philips.com.
Mr. Bob Howard-Anderson, Fulham Co., Inc., 12705 S. Van Ness Ave., Hawthorne, CA 90250.
Jessica Stanek, Con-Tech Lighting, 2783 Shermer Road, Northbrook, IL 60062, jstanek@con-techlighting.com.
3) Alternative test procedure known to the petitioner to evaluate the performance of the equipment type in a manner representative of the energy and/or water consumption characteristics of the basic model.
For combination exit and egress lighting units (combo units), the power shall be determined by the following procedure:
1. Measure AC input power of the complete combo unit for a fully charged battery
2. Measure the DC output voltage and current to the light source of the exit sign
3. Calculate the AC power consumption of the light source of the exit sign by applying a power factor correction of 30% as worst case scenario. Based on our circuitry design the loss couldn't be more than 30%
4. If needed calculate the stand-by power for the combo unit when the battery is fully charged
Stand-by power = input power (from item 1)−power of basic exit sign light source (from item 3)
4) Individual model name for which a waiver is requested.
Model code breakdown sample:
SAMPLE MODEL: RBO-C-6-36-LR1-U-W-2LRWP-9W
SERIES OPERATION (6V, 12V) CAPACITY LED FACE CHEVRONS MOUNTING HEADS COMPOSITE TUNGSTEN: 9W, 18W 6V, 12V Pb-A: 36, 60, 72, 100, 120, 140 NI-CD: 42, 54, 90, 130 RED, GREEN 1 (SINGLE) U (UNIVERSAL) W (WALL) 2LRWP (ONLY) COMPOSITE TUNGSTEN: 9W, 18W. HALOGEN: 8W. Start Printed Page 2198 RBO-C 6V 36 LR (RED) 1 (SINGLE) U (UNIVERSAL) W (WALL) 2LRWP 9W. LRWP: LEFT, RIGHT, WATERPROOF. NOTE: THESE MODELS ARE ALL 2 HEADS, THE 1, 3, 4 HEAD OPTIONS WILL BE CONSIDERED IN THE FUTURE. RBO-C BASIC MODELS
RBO-C-6-36-LR1-U-W-2LRWP-9W 6V, 9W (RED) (COMPOSITE TUNGSTEN). RBO-C-6-42-LR1-U-W-2LRWP-9W RBO-C-6-54-LR1-U-W-2LRWP-9W RBO-C-6-60-LR1-U-W-2LRWP-9W RBO-C-6-72-LR1-U-W-2LRWP-9W RBO-C-6-90-LR1-U-W-2LRWP-9W RBO-C-6-100-LR1-U-W-2LRWP-9W RBO-C-6-120-LR1-U-W-2LRWP-9W RBO-C-6-36-LG1-U-W-2LRWP-9W 6V, 9W (GREEN) (COMPOSITE TUNGSTEN). RBO-C-6-42-LG1-U-W-2LRWP-9W RBO-C-6-54-LG1-U-W-2LRWP-9W RBO-C-6-60-LG1-U-W-2LRWP-9W RBO-C-6-72-LG1-U-W-2LRWP-9W RBO-C-6-90-LG1-U-W-2LRWP-9W RBO-C-6-100-LG1-U-W-2LRWP-9W RBO-C-6-120-LG1-U-W-2LRWP-9W RBO-C-12-36-LR1-U-W-2LRWP-9W 12V, 9W (RED) (COMPOSITE TUNGSTEN). RBO-C-12-42-LR1-U-W-2LRWP-9W RBO-C-12-60-LR1-U-W-2LRWP-9W RBO-C-12-90-LR1-U-W-2LRWP-9W RBO-C-12-120-LR1-U-W-2LRWP-9W RBO-C-12-130-LR1-U-W-2LRWP-9W RBO-C-12-140-LR1-U-W-2LRWP-9W RBO-C-12-36-LG1-U-W-2LRWP-9W 12V, 9W (GREEN) (COMPOSITE TUNGSTEN). RBO-C-12-42-LG1-U-W-2LRWP-9W RBO-C-12-60-LG1-U-W-2LRWP-9W RBO-C-12-90-LG1-U-W-2LRWP-9W RBO-C-12-120-LG1-U-W-2LRWP-9W RBO-C-12-130-LG1-U-W-2LRWP-9W RBO-C-12-140-LG1-U-W-2LRWP-9W RBO-C-6-36-LR1-U-W-2LRWP-18W 6V, 18W (RED) (COMPOSITE TUNGSTEN). RBO-C-6-42-LR1-U-W-2LRWP-18W RBO-C-6-54-LR1-U-W-2LRWP-18W RBO-C-6-60-LR1-U-W-2LRWP-18W RBO-C-6-72-LR1-U-W-2LRWP-18W RBO-C-6-90-LR1-U-W-2LRWP-18W RBO-C-6-100-LR1-U-W-2LRWP-18W RBO-C-6-120-LR1-U-W-2LRWP-18W RBO-C-6-36-LG1-U-W-2LRWP-18W 6V, 18W (GREEN) (COMPOSITE TUNGSTEN). RBO-C-6-42-LG1-U-W-2LRWP-18W RBO-C-6-54-LG1-U-W-2LRWP-18W RBO-C-6-60-LG1-U-W-2LRWP-18W RBO-C-6-72-LG1-U-W-2LRWP-18W RBO-C-6-90-LG1-U-W-2LRWP-18W RBO-C-6-100-LG1-U-W-2LRWP-18W RBO-C-6-120-LG1-U-W-2LRWP-18W RBO-C-12-36-LR1-U-W-2LRWP-18W 12V, 18W (RED) (COMPOSITE TUNGSTEN). RBO-C-12-42-LR1-U-W-2LRWP-18W RBO-C-12-60-LR1-U-W-2LRWP-18W RBO-C-12-90-LR1-U-W-2LRWP-18W RBO-C-12-120-LR1-U-W-2LRWP-18W RBO-C-12-130-LR1-U-W-2LRWP-18W RBO-C-12-140-LR1-U-W-2LRWP-18W RBO-C-12-36-LG1-U-W-2LRWP-18W 12V, 18W (GREEN) (COMPOSITE TUNGSTEN). RBO-C-12-42-LG1-U-W-2LRWP-18W RBO-C-12-60-LG1-U-W-2LRWP-18W RBO-C-12-90-LG1-U-W-2LRWP-18W RBO-C-12-120-LG1-U-W-2LRWP-18W RBO-C-12-130-LG1-U-W-2LRWP-18W RBO-C-12-140-LG1-U-W-2LRWP-18W RBO-C-6-36-LR1-U-W-2LRWP-8W 6V, 8W (RED) (HALOGEN). RBO-C-6-42-LR1-U-W-2LRWP-8W RBO-C-6-54-LR1-U-W-2LRWP-8W RBO-C-6-60-LR1-U-W-2LRWP-8W RBO-C-6-72-LR1-U-W-2LRWP-8W RBO-C-6-90-LR1-U-W-2LRWP-8W RBO-C-6-100-LR1-U-W-2LRWP-8W RBO-C-6-120-LR1-U-W-2LRWP-8W RBO-C-6-36-LG1-U-W-2LRWP-8W 6V, 8W (GREEN) (HALOGEN). RBO-C-6-42-LG1-U-W-2LRWP-8W RBO-C-6-54-LG1-U-W-2LRWP-8W Start Printed Page 2199 RBO-C-6-60-LG1-U-W-2LRWP-8W RBO-C-6-72-LG1-U-W-2LRWP-8W RBO-C-6-90-LG1-U-W-2LRWP-8W RBO-C-6-100-LG1-U-W-2LRWP-8W RBO-C-6-120-LG1-U-W-2LRWP-8W RBO-C-12-36-LR1-U-W-2LRWP-8W 12V, 8W (RED) (HALOGEN). RBO-C-12-42-LR1-U-W-2LRWP-8W RBO-C-12-60-LR1-U-W-2LRWP-8W RBO-C-12-90-LR1-U-W-2LRWP-8W RBO-C-12-120-LR1-U-W-2LRWP-8W RBO-C-12-130-LR1-U-W-2LRWP-8W RBO-C-12-140-LR1-U-W-2LRWP-8W RBO-C-12-36-LG1-U-W-2LRWP-8W 12V, 8W (GREEN) (COMPOSITE TUNGSTEN). RBO-C-12-42-LG1-U-W-2LRWP-8W RBO-C-12-60-LG1-U-W-2LRWP-8W RBO-C-12-90-LG1-U-W-2LRWP-8W RBO-C-12-120-LG1-U-W-2LRWP-8W RBO-C-12-130-LG1-U-W-2LRWP-8W RBO-C-12-140-LG1-U-W-2LRWP-8W Our basic combo models are a combination of egress and emergency lighting in which the sign portion is identical to our DOE listed illuminated exit signs.
The supporting information is provided in the following appendixes:
- Appendix A: Basic models table
- Appendix B: Test report RBO-C12 on illuminated exit signs for combo
- Appendix C: Test report RBO-C6 on illuminated exit signs for combo units
- Appendix D: for the test report on illuminated exit signs.
TEST PROCEDURE ISSUES:
A combo unit utilizes a higher capacity battery to power both the exit sign face(s) as well as emergency egress lighting during a power outage. While § 431.202 indicates that the input power demand shall be measured with batteries at full charge, the higher capacity dual function battery for a combo unit results in a higher power than a smaller battery utilized in a unit that provides only the exit signage functionality.
The performance specification for the input power described in the Energy Star 2.0 specifications limits the power to illuminate the face of the exit sign with no reference to power associated with the emergency egress lighting. The test procedure for Energy Star 2.0 requires the measurement of power including the internal battery, but the power limits were not established using a baseline for units that provide the dual function associated with a combo unit. For a combo unit, it is not feasible to separate the power measurement associated with the exit signage and the egress lighting since a single battery and charging circuit supplies power for both functions.
CONCLUSION:
Beghelli is submitting this request for a test procedure waiver for combo units that provide the dual function of exit signs and emergency egress lighting. This requests under the provision 10 C.F.R. § 431.401 is for illuminated exit signs combo that contain design characteristics which prevent testing the basic models as per the prescribed test procedures.
Thank you in advance for your prompt consideration of this waiver request.
Best regards,
Wenceslao Garro,
Engineering Manager | Beghelli North America, wenceslao.garro@beghellinorthamerica.com, Beghelli North America, 3250 Corporate Way, Miramar, FL 33025 USA, Ph +1 954 442 6600 | Fax +1 954 442 6677.
References: 2013-07-17 Acuity Brands original petition for test procedure waiver, https://www.regulations.gov/docket?D=EERE-2017-BT-WAV-0033.
Start Printed Page 2200 Start Printed Page 2201According to IECEE-CTL Guide001 Part1 5.1, if all accuracy of instruments is within the range limit stated in IEC/ISO17025, the measurement result can be directly compared with the test limit to determine conformance with the requirement.
As mentioned in Part1 5.2, in situations where the above “accuracy method” does not apply, uncertainty of measurement values are needed to be calculated and reported along with the variables results obtained during testing.
Follow the procedures in IECEE-CTL Guide001 Part2 to calculate uncertainty of measurement.
1. Condition for Test: Clause 6.2
Start Printed Page 2202Charger and transformer model 12V High Power Charger #451002100, Transformer #400000101. Battery model Sigmas Lead-acid #SP6-12-T2, Beghelli #500000008. Rating of battery 6V12Ah × 4. Input Voltage 120\277\347VAC. Nominal Voltage of battery 12V. Min. end of discharge voltage 10.0V at circuit board. Recharge time 1.5A. Time rating 48 hours. Charge current 90 mins. Lamp type/load 140W, Electronic load. 21. Tests for Energy Performance—Actual Input Power: TIL B-75, Clause 2—Type 3 exit signs containing an integral battery-charging system shall be tested with the charging system connected and the battery fully charged.
Sample #1: RBO-C-12-140-LR-1U-W-2LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 120 0.075 7 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 7 Yes. Sample #2: RBO-C-12-140-LG-1U-W-2LRWP
Measured Voltage (Vrms) Measured current (Arms) Actual Power (W) 119 0.074 7 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 7 Yes. Sample #3: RBO-C-12-140-LR-1U-W-4LRWP
Measured voltage (Vrms) Measured current (Arms) Actual Power (W) 120 0.074 7 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 7 Yes. Sample #4: RBO-C-12-140-LG-1U-W-4LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 120 0.075 7 Start Printed Page 2203Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 7 Yes. According to IECEE-CTL Guide001 Part1 5.1, if all accuracy of instruments is within the range limit stated in IEC/ISO17025, the measurement result can be directly compared with the test limit to determine conformance with the requirement.
As mentioned in Part1 5.2, in situations where the above “accuracy method” does not apply, uncertainty of measurement values are needed to be calculated and reported along with the variables results obtained during testing.
Follow the procedures in IECEE-CTL Guide001 Part2 to calculate uncertainty of measurement.
1. Condition for Test: Clause 6.2
Start Printed Page 2204Charger and transformer model 6V High Power Charger #451002000, Transformer #400000100. Battery model Sigmas Lead-acid #SP6-12-T2, Beghelli #500000008. Rating of battery 6V12Ah x 4. Input Voltage 120\277\347VAC. Nominal Voltage of battery 6V. Min. end of discharge voltage 5.0V at circuit board. Recharge time 1.5A. Time rating 48 hours. Charge current 90 mins. Lamp type/load 120W, Electronic load. 21. Tests for Energy Performance—Actual Input Power: TIL B-75, Clause 2—Type 3 exit signs containing an integral battery-charging system shall be tested with the charging system connected and the battery fully charged.
Sample #1: RBO-C-6-120-LR-1U-W-2LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 120 0.083 8 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 8 Yes Sample #2: RBO-C-6-120-LG-1U-W-2LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 119 0.083 8 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 8 Yes Sample #3: RBO-C-6-120-LR-1U-W-4LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 120 0.083 8 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 8 Yes Sample #4: RBO-C-6-120-LG-1U-W-4LRWP
Measured voltage (Vrms) Measured current (Arms) Actual power (W) 120 0.082 8 Start Printed Page 2205Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W N/A Single-sided EXIT w/charging circuit 10 W 8 Yes According to IECEE-CTL Guide001 Part1 5.1, if all accuracy of instruments is within the range limit stated in IEC/ISO17025, the measurement result can be directly compared with the test limit to determine conformance with the requirement.
As mentioned in Part1 5.2, in situations where the above “accuracy method” does not apply, uncertainty of measurement values are needed to be calculated and reported along with the variables results obtained during testing.
Follow the procedures in IECEE-CTL Guide001 Part2 to calculate uncertainty of measurement.
1. Condition for Test: Clause 6.2
Start Printed Page 2206Charger and transformer model LED board models tested: RBO-E-SALG1, RBO-E-HTLG1, RBO-E HTLG1UDC. Battery model Rating of battery Input Voltage 120\277\347VAC. Nominal Voltage of battery 4.8V Ni-Cd. Min. end of discharge voltage 4.0V at circuit board. Recharge time 48 hours. Time rating 90 mins. Charge current 65mA. Lamp type/load W, Electronic load. 21. Tests for Energy Performance—Actual Input Power: TIL B-75, Clause 2—Type 3 exit signs containing an integral battery-charging system shall be tested with the charging system connected and the battery fully charged.
Single or double faces use the same power consumptions
Sample #1: RBO-E-SALG1
Measured voltage (Vrms) Measured current (Arms) Actual power (W) Battery- powered sign 120 0.12 1.4 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W 1.4 Yes Single-sided EXIT w/charging circuit 10 W N/A Sample #2: RBO-E-HTLG1
Measured voltage (Vrms) Measured current (Arms) Actual power (W) AC only sign 119 0.029 0.67 Type of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W 0.67 Yes Single-sided EXIT w/charging circuit 10 W N/A Sample #3: RBO-E HTLG1UDC
Measured voltage (Vrms) Measured current (Arms) Actual power (W) Universal DC sign 120 0.028 0.55 End Supplemental InformationType of sign Max actual input power Measured input power Compliance Single-sided EXIT 5 W 0.55 Yes Single-sided EXIT w/charging circuit 10 W N/A Footnotes
1. All references to EPCA in this document refer to the statute as amended through the EPS Improvement Act of 2017, Public Law 11-115 (January 12, 2018).
Back to Citation2. Although illuminated exit signs are covered products pursuant to EPCA, as a matter of administrative convenience and to minimize confusion among interested parties, DOE codified illuminated exit sign provisions into subpart L of 10 CFR part 431 (the portion of DOE's regulations dealing with commercial and industrial equipment) because typically businesses, rather than individuals, purchase them. 70 FR 60407, 60409 (Oct. 18, 2005). DOE refers to illuminated exit signs as either “products” or “equipment.”
Back to Citation3. A notation in this form provides a reference for information that is in the docket for this test procedure waiver (Docket No. EERE-2018-BT-WAV-0011) (available at https://www.regulations.gov/document?D=EERE-2018-BT-WAV-0011-0001) This notation indicates that the statement preceding the reference is document number 1 in the docket and appears at pages 2-4 of that document.
Back to Citation4. Due to the lengthy list of affected illuminated exit sign basic models covered by Beghelli's June 26, 2018 petition, DOE is making the complete list publicly available in the relevant regulatory docket. The specific basic models identified on pages 2-4 of the petition can be found in the docket at http://www.regulations.gov/docket?D=EERE-2018-BT-WAV-0011.
Back to Citation5. DOE uses the term “combination illuminated exit sign” in this notice to mean an illuminated exit sign that includes or is packaged with (1) at least one auxiliary feature and (2) a battery electrically connected to the illumination source for the face.
Back to CitationBILLING CODE 6450-01-P
BILLING CODE 6450-01-C
[FR Doc. 2019-01241 Filed 2-5-19; 8:45 am]
BILLING CODE 6450-01-P
Document Information
- Published:
- 02/06/2019
- Department:
- Energy Department
- Entry Type:
- Notice
- Action:
- Notice of petition for waiver, and request for comments.
- Document Number:
- 2019-01241
- Dates:
- Written comments and information are requested and will be accepted on or before March 8, 2019.
- Pages:
- 2194-2206 (13 pages)
- Docket Numbers:
- Case Number 2018-007, EERE-2018-BT-WAV-0011
- PDF File:
- 2019-01241.pdf