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R7PNG0R1S5Series 5 mPCIe Module

Landis+Gyr Technology, Inc.
Series 5 mPCIe Module - FCC ID R7PNG0R1S5 - Landis+Gyr Technology, Inc.
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Aug 19, 2020
Application Purpose
Original Equipment
Date of Application
Aug 19, 2020
Equipment Note
Series 5 mPCIe Module
Frequency Range
902.40000000 - 927.60000000
Company
Landis+Gyr Technology, Inc.
Country
United States

Documents & Files

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Users Manual

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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RF Exposure Info

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

© Landis+Gyr 2020 | Proprietary + Confidential Series 5 Network Node N501 & N551 Data Sheet Publication: 98-2386 Rev AA Limitation on Warranties and Liability Information in this document is subject to change without notice. This manual or any part of it thereof may not be reproduced in any form unless permitted by contract or by written permission of Landis+Gyr. In no event will Landis+Gyr be liable for any incidental, indirect, special, or consequential damages (including lost profits) arising out of or relating to this publication or the information contained in it, even if Landis+Gyr has been advised, knew, or should have known of the possibility of such damages. Covered by both issued and pending patents. For further patent information see: https://www.landisgyr.com/about/patent-notices/ © 2020 Landis+Gyr, Inc. | Proprietary + Confidential Contact Us: To provide feedback about this document, email us at [email protected] Technical Support: 1-888-390-5733 | [email protected] 98-2386 Rev AA | Series 5 Network Node N551 Data Sheet | 7/9/2020 Data Sheet98-2386 Rev AA | 1 Series 5 Network Node N501 & N551 Data Sheet Introduction Landis+Gyr’s Series 5 Network Node (RF Mesh - N501 & RF Mesh IP - 551) is key to building a single, integrated IoT network. This product is a fully-functional, Network Interface Card (NIC) that is mPCIe standard-enabled for simple network and sensor device integration. This technology is foundational to Landis+Gyr’s industry-leading utility IoT networking solution, Gridstream® Connect. Further, the Series 5 Network Node provides the flexibility to grow the value of your IoT platform over time with proven Wi-SUN FAN interoperability as you integrate today’s and future AMI or DA networking equipment and third-party IoT devices. Figure 1. Series 5 Network Node N551 2 | 98-2386 Rev AAData Sheet Series 5 Network Node N501 & N551 Data Sheet Table 1. Series 5 Network Node N551 Specification ElementDescription Radio ModelSeries 5 Network Node N551 Communication Protocol (PHY)IEEE 802.15.4g, IEEE 802.15.4e, IPv6 (RPL & 6LoWPAN) MAC/PHY Features MACAutomatic selection of ‘best’ Modulation based on Link Quality PHY Adaptive Power Control (ie. Short range output power back-off) Precision Output Power Management Clear Channel Assessment Hardware Capabilities Clock Speed120 MHz RAM Memory640 Kb FLASH Memory2 MB + 4 MB External RF ModulationIEEE 802.15.4 SUN FSK RF BandsSub-GHz RF PortSingle 50Ω U.FL Male Connector Sub-GHz Band Characteristics: North America Frequency Range (Fc)902.4 MHz – 927.6 MHz Channel Width400 KHz Number of Channels64 Multicast Modulation2-FSK 50 kbps Unicast Modulation Support2-FSK: 50 – 200 kbps Data Rate Coverage50 – 200 kbps Transmitter Output Power50 mW – 974 mW (peak) Receiver Sensitivity (IEEE 802.15.4) F2B50 = -107 dBm F2B150 = -101 dBm F2B200 = -100 dBm Sub-GHz Band Characteristics: India Frequency Range (Fc)865.1 MHz to 866.9 MHz Channel Width200 KHz Number of Channels10 Multicast Modulation2-FSK 50 kbps Unicast Modulation Support2-FSK: 50 – 150 kbps Data Rate Coverage50 kbps – 150 kbps Transmitter Output Power50 mW – 974 mW (peak) Receiver Sensitivity (IEEE 802.15.4) F2B50 = -107 dBm F2B150 = -101 dBm Sub-GHz Band Characteristics: Brazil Frequency Range (Fc)902-907.5, 915-928 MHz Channel Width400 KHz Data Sheet98-2386 Rev AA | 3 Series 5 Network Node N501 & N551 Data Sheet Number of Channels44 Multicast Modulation2-FSK 50 kbps Unicast Modulation Support2-FSK: 50 – 200 kbps Data Rate Coverage50 kbps – 150 kbps – 200 kbps Transmitter Output Power50 mW – 974 mW (peak) Receiver Sensitivity (IEEE 802.15.4) F2B50 = -107 dBm F2B150 = -101 dBm F2B200 = -100 dBm Table 1. Series 5 Network Node N551 Specification (Continued) ElementDescription 4 | 98-2386 Rev AAData Sheet Series 5 Network Node N501 & N551 Data Sheet Table 2. Series 5 Network Node N501 Specification ElementDescription Radio ModelSeries 5 Network Node N501 Communication Protocol (PHY)RF Mesh IP (Proprietary) MAC/PHY Features MACAutomatic selection of ‘best’ Modulation based on Link Quality PHYPrecision Output Power Management Hardware Capabilities Clock Speed120 MHz RAM Memory640 Kb FLASH Memory2 MB + 4 MB External RF Modulation2-FSK, 2-GFSK RF BandsSub-GHz RF PortSingle 50Ω U.FL Male Connector Sub-GHz Band Characteristics: North America Frequency Range (Fc)902.3 MHz – 927.8 MHz Channel Width100 KHz, 300 KHz Number of Channels239 (100KHz Ch width), 86 (300KHz Ch width) Transmitter Output Power50 mW – 974 mW (peak) Receiver Sensitivity (10% PER, conducted) 9.6 kbps: -114 dBm 19.2 kbps: -112 dBm 19.2 (0.5) kbps: -111 dBm 38.4 kbps: -109 dBm 115.2 kbps: -104 dBm Data Sheet98-2386 Rev AA | 5 Series 5 Network Node N501 & N551 Data Sheet Series 5 Network Node N551 Outline The PCB outline is shown below. Figure 2. Board Outline 1 6 | 98-2386 Rev AAData Sheet Series 5 Network Node N501 & N551 Data Sheet Figure 3. Board Outline 2 FCC, Industry Canada Compliance FCC Class B This device complies with Part 15 of the FCC rules. Operation is subject to the following two conditions: •This device may not cause harmful interference, and •This device must accept any interference received, including interference that may cause undesired operation. This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to Part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the Instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interfe…

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Cover Letter(s)

30000 Mill Creek Avenue, Suite 100 | Alpharetta, GA 30022 Tel: +1 678 258 1637 | Fax: +1 678 258 1681 August 19, 2020 Federal Communications Commission Equipment Authorization Branch 7435 Oakland Mills Rd. Columbia, MD 21046 Dear Sir or Madam: I hereby appoint Marlene Sealey at TÜV SÜD America to act as our agent in the preparation of an application for equipment authorization of FCC ID: R7PNG0R1S5 to the FCC Rules and Regulations. I certify that all exhibits contained within this filing properly describe the device or system for which authorization is sought. I further certify that appropriate arrangements have been made to assure that production units of this equipment bearing the name and FCC IDENTIFIER listed in this application will continue to comply with the Commission's requirements. I further certify by signature below that no party (per 47 CFR 1.2002(b)) to the application is subject to a denial of Federal benefits, including FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 853(a). This appointment also includes the authority to complete FCC Form 731 on our behalf and sign the application as an authorized agent. Sincerely, Name: James L. Stortz Title: Director of Hardware Engineering

Cover Letter(s)

30000 Mill Creek Avenue, Suite 100 | Alpharetta, GA 30022 Tel: +1 678 258 1637 | Fax: +1 678 258 1681 CONFIDENTIALITY REQUEST Federal Communications Commission Date: August 19, 2020 Equipment Authorization Branch 7435 Oakland Mills Road Columbia, MD 21046 Gentlemen: Landis+Gyr Technology, Inc. respectfully requests confidentiality of certain materials provided with the submission of the “N501” under FCC ID: R7PNG0R1S5 in accordance with FCC Regulations 0.459. The confidentiality request applies to the System Block Diagram, Schematics, Parts List, and Theory of Operation contained in this filing. The “N501” has been developed at considerable effort and expense by Landis+Gyr Technology, Inc. These items are considered as Trade Secrets and therefore public access to the proprietary material could possibly result in duplication of equipment that could severely damage the company's business advantage. I appreciate your assistance in this matter.

Cover Letter(s)

30000 Mill Creek Avenue, Suite 100 | Alpharetta, GA 30022 Tel: +1 678 258 1637 | Fax: +1 678 258 1681 To: File From: James L. Stortz Subject: N501, FCC ID: R7PNG0R1S5 Modular Approval Request August 19, 2020 Scope 47CFR 15.212 communicates requirements for products requesting modular approval. Eight requirements are enumerated along with a request that each of the eight be explained for any product requesting such approval. It is the purpose of this document to respond to those eight requirements regarding the Landis+Gyr product: N501. Modular Approval Requirements 1.1 RF Shielding The N501 module is self-shielding and is not dependent on any component or characteristic of the device into which it is embedded. Shielding is accomplished through a combination of metallic self-shielding components, copper planes, guards, and vias in the PCB. The result is a design that has been proven to be neither sensitive to outside influence nor capable of introducing interference into outside components. 1.2Buffered Modulation / Data Inputs The N501 module does not have external modulation or data inputs. Rather, the RF sections are driven by an on-board microprocessor which directly controls the RF data lines and operates so as to not allow excessive modulation. 1.3Power Supply Regulation The N501 module uses on-board filtering to provide all the electronics with a supply that is fixed, even when the input voltage is varied. 1.4Antenna Requirement The N501 module utilizes a 5.7dBi dipole antenna. 1.5Stand-Alone Testing All testing on the N501 module was conducted standalone. No shields or enclosures were used, other than those fully integrated into the modules themselves. No ferrites were used on data or power lines during testing. These devices are DC powered and exceed applicable conducted emission requirements. 1.6Labeling As indicated, each N501 module will have its own FCC ID label. In addition, devices into which they are placed will have labels indicating that this module is contained within. Exact text will be as specified in 47CFR 15.212. 1.7Specific Rules and Operating Requirements The N501 module complies with all pertinent rules for its section. 1.8RF Exposure Requirements The N501 module complies with all exposure requirements. As a component used in the Utility industry, this product is not intended for use near human operators. This module undergoes continuous, rigorous testing to ensure that full compliance is always maintained. Sincerely, James L. Stortz Title: Director of Hardware Engineering

ID Label/Location Info

C D 1234 1234 A B C D A B AH23-1650 LANDIS+GYR CONFIDENTIAL INFORMATION: THIS DOCUMENT CONTAINS INFORMATION PROPRIETARY TO LANDIS + GYR FAMILY OF COMPANIES.(WHICH INCLUDES THE COMPANIES FORMERLY KNOWN AS HUNT AND CELLNET) ANY USE OR DISCLOSURE WITHOUT WRITTEN PERMISSION IS PROHIBITED. UNLESS OTHERWISE SPECIFIED: DIMENSIONS ARE IN INCHES [MM] DIMENSIONS ARE AFTER FINISH IS APPLIED ANGLE TOLERANCE DOES NOT APPLY TO IMPLIED 90$ ANGLES TOLERANCES ON: DECIMAL FRACTION ANGLES 1PL # .1 #1/64 #1$ 2PL # .02 3PL # .005 MUST BE FREE FROM FLASH AND BURRS. BREAK ALL SHARP EDGES. () DENOTES REFERENCE ONLY. REVISION: DRAWING NO. 1 OF 1 07/17/20 P. SPOKAS THIRD ANGLE PROJECTION SHEET:DATED:DRAWN BY: C 07/17/20 M. BERKOBIN SIZE: DATED:APPROVED BY: LABEL, PCBA, LAN/ESN/IC/FCC ID TITLE:DO NOT SCALE DRAWING NOTES: 1. SEE TABLE 1 FOR CORRESPONDING DATA ENTRIES. 2. UNLESS OTHERWISE SPECIFIED, CHARACTERS SHALL BE PRINTED IN ARIAL NARROW FONT, .05 VERTICAL HEIGHT MIN. 3. THIS LABEL SHALL BE IN ACCORDANCE WITH DOCUMENT NUMBER 95-1062. SURFACES SHALL BE CONSIDERED "CLASS E" SURFACES UNLESS OTHERWISE SPECIFIED. 4. THIS LABEL SHALL BE IN ACCORDANCE WITH DOCUMENT NUMBER 95-1067 (LABEL SPECIFICATION). 5. THIS LABEL SHALL HAVE THE APPROPRIATE WHITE SPACE BETWEEN THE 2D BARCODE AND EDGE OF LABEL TO ALLOW PROPER SCANNING OF THIS LABEL. THIS LABEL SHALL BE SCANNABLE THROUGHOUT THE MANUFACTURING PROCESS. 6 . 2D BARCODE TO SHOW APPROPRIATE VERSION OF FIELD 1 CONTENTS. FORMAT IS QR CODE. 7 . FIELD 1 CONTENTS: a. LAN ID: 8 CHARACTERS. RANGE SHALL BE PROVIDED BY LANDIS+GYR SUPPLY CHAIN. THE LAN ID CHARACTERS ARE HEXIDECIMAL. b. ESN: 8 CHARACTERS. RANGE SHALL BE PROVIDED BY LANDIS+GYR SUPPLY CHAIN. THE CUSN CHARACTERS ARE HEXIDECIMAL. 7 6 FIELD 1 1.13 .23 4X R ±0.025.025 TABLE 1 PNDESCRIPTIONFIELD 1FIELD 1 ID IC ID FCC IDMODEL 25-2060 MPCI, S6 SBRLAN IDSEE NOTES 6+75294A-NG0R1S4 R7PNG0R1S4 N651 25-2065MPCI, S5 SBRLAN IDSEE NOTES 6+75294A-NG0R1S5R7PNG0R1S5N501 25-2475EICESNSEE NOTES 6+7N/AN/ADO NOT PRINT MODEL 25-2476HOSTN/ASEE NOTES 6+75294A-NG0R1S6R7PNG0R1S6DO NOT PRINT MODEL 25-2512MPCI, S5 SBR, INLAN IDSEE NOTES 6+7N/AN/ADO NOT PRINT MODEL 25-2513MPCI, S5 SBR, JPLAN IDSEE NOTES 6+7N/AN/ADO NOT PRINT MODEL

ID Label/Location Info

C D 1234 1234 A B C D A B AD73-2060 LANDIS+GYR CONFIDENTIAL INFORMATION: THIS DOCUMENT CONTAINS INFORMATION PROPRIETARY TO LANDIS + GYR FAMILY OF COMPANIES.(WHICH INCLUDES THE COMPANIES FORMERLY KNOWN AS HUNT AND CELLNET) ANY USE OR DISCLOSURE WITHOUT WRITTEN PERMISSION IS PROHIBITED. UNLESS OTHERWISE SPECIFIED: DIMENSIONS ARE IN INCHES [MM] DIMENSIONS ARE AFTER FINISH IS APPLIED ANGLE TOLERANCE DOES NOT APPLY TO IMPLIED 90$ ANGLES TOLERANCES ON: DECIMAL FRACTION ANGLES 1PL # .1 #1/64 #1$ 2PL # .02 3PL # .005 MUST BE FREE FROM FLASH AND BURRS. BREAK ALL SHARP EDGES. () DENOTES REFERENCE ONLY. REVISION: DRAWING NO. 1 OF 1 10/25/19 P. SPOKAS THIRD ANGLE PROJECTION SHEET:DATED:DRAWN BY: C 10/25/19 M. BERKOBIN SIZE: DATED:APPROVED BY: PCBA DRAWING, OFDM RADIO TITLE:DO NOT SCALE DRAWING NOTES: 1. THIS ASSEMBLY SHALL BE IN ACCORDANCE WITH DOCUMENT NUMBER 95-1062. SURFACES SHALL BE CONSIDERED "CLASS C" SURFACES UNLESS OTHERWISE SPECIFIED. 2. ONLY APPROVED SOURCES PER BILL OF MATERIAL TO BE USED. 3. THIS ASSEMBLY TO BE BUILT IN THE ORDER OF PRECEDENCE: THIS DRAWING SPECIFICATION, THEN THE IPC-A-610 LATEST REVISION CLASS 2. 4. DISREGARD SECTION 12.4 (HIGH VOLTAGE -THROUGH HOLE CONNECTIONS) FOR IPC-A-610 LATEST REVISION. 5. ONLY USE ROHS COMPLIENT, 100% LEAD-FREE SOLDER. 6. FOR A COMPREHENSIVE PARTS PLACEMENT DRAWING, REFER TO THE PDF WITHIN THE GERBER FILES. SOME COMPONENTS VISIBLE MAY NOT BE POPULATED. 7. UNPLACED COMPONENTS WITH THRU HOLES SHOULD BE MASKED OFF PRIOR TO WAVE SOLDERING OPERATION IN ORDER TO PREVENT ACCCUMULATION OF SOLDER IN HOLES. 8. FABRICATE IN ACCORDANCE WITH LANDIS+GYR CLEANLINESS REQUIREMENT 89-1132. 9 . ATTACH RF SHIELD COVER (SHLD2) TO THE SHIELD FRAME (SHLD1). 10 . APPLY PCB ID LABEL (LBL1) APPROXIMATELY WHERE SHOWN. 11 . APPLY LAN ID LABEL (LBL2) APPROXIMATELY WHERE SHOWN. TOP SIDE BOTTOM SIDE 10 TOP SIDE 11 9

RF Exposure Info

5945 Cabot Parkway Suite 100 Alpharetta, GA 30005 USA Certification Exhibit FCC ID: R7PNG0R1S5 FCC Rule Part: 47 CFR Part 2.1091 Project Number: 72156409 Manufacturer: Landis+Gyr Technology, Inc. Model: N501 RF Exposure Model(s): N501FCC ID: R7PNG0R1S5 Report: AT72156409-2C0Page 2 General Information: Applicant: Landis+Gyr Technology, Inc. Device Category: Mobile Environment: General Population/Uncontrolled Exposure Technical Information: Antenna Type: Airgain ET960NPMR2 Rigid Dipole Antenna Gain: 5.7dBi Maximum Transmitter Conducted Power: 29.89dBm, 974.99mW Maximum System EIRP: 35.59 dBm, 3622.43 mW Exposure Conditions: Greater than 33 centimeters MPE Calculation The Power Density (mW/cm 2 ) is calculated as follows: S = 2 4R PG π Where: S = power density (in appropriate units, e.g. mW/cm2) P = power input to the antenna (in appropriate units, e.g., mW) G = power gain of the antenna in the direction of interest relative to an isotropic radiator R = distance to the center of radiation of the antenna (appropriate units, e.g., cm) Table 1: MPE Calculation Transmit Frequency (MHz) Radio Power (dBm) Power Density Limit (mW/cm 2 ) Radio Power (mW) Antenna Gain (dBi) Antenna Gain (mW eq.) Distance (cm) Power Density (mW/cm 2 ) 902.3 29.89 0.60 974.99 5.7 3.715 33 0.265

Test Report

5945 Cabot Parkway, Suite 100, Alpharetta, GA 30005 USA Certification Test Report FCC ID: R7PNG0R1S5 IC: 5294A-NG0R1S5 FCC Rule Part: 15.247 ISED Canada Radio Standards Specification: RSS-247 Report Number: AT72156409-1C0 Manufacturer: Landis+Gyr Technology, Inc. Model: N501 Test Begin Date: January 28, 2020 Test End Date: July 6, 2017 Report Issue Date: August 18, 2020 For Scope of Accreditation Under Certificate Number: 2955-09 This report must not be used by the client to claim product certification, approval, or endorsement by A2LA, NIST, or any agency of the Federal Government. Prepared by: Reviewed by: Ryan McGann Kirby Munroe Senior Wireless Engineer Technical Manager, US Wireless TÜV SÜD America, Inc. TÜV SÜD America, Inc. This test report shall not be reproduced except in full. This report may be reproduced in part with prior written consent of TÜV SÜD America, Inc. The results contained in this report are representative of the sample(s) submitted for evaluation. This report contains 39 pages 5945 Cabot Parkway, Suite 100, Alpharetta, GA 30005 USA TABLE OF CONTENTS 1GENERAL .............................................................................................................................................................. 3 1.1PURPOSE ........................................................................................................................................................... 3 1.2PRODUCT DESCRIPTION ..................................................................................................................................... 3 1.3TEST METHODOLOGY AND CONSIDERATIONS .................................................................................................... 4 2TEST FACILITIES ............................................................................................................................................... 5 2.1LOCATION ........................................................................................................................................................ 5 2.2LABORATORY ACCREDITATIONS/RECOGNITIONS/CERTIFICATIONS .................................................................... 5 2.3RADIATED EMISSIONS TEST SITE DESCRIPTION ................................................................................................. 6 2.3.1Semi-Anechoic Chamber Test Site – Chamber A .................................................................................... 6 2.3.2Semi-Anechoic Chamber Test Site – Chamber B .................................................................................... 7 2.4CONDUCTED EMISSIONS TEST SITE DESCRIPTION .............................................................................................. 8 2.4.1Conducted Emissions Test Site ............................................................................................................... 8 3APPLICABLE STANDARD REFERENCES ..................................................................................................... 9 4LIST OF TEST EQUIPMENT ............................................................................................................................. 9 5SUPPORT EQUIPMENT.................................................................................................................................... 10 6EQUIPMENT UNDER TEST SETUP BLOCK DIAGRAM ........................................................................... 10 7SUMMARY OF TESTS ...................................................................................................................................... 11 7.1ANTENNA REQUIREMENT –FCC:SECTION 15.203 .......................................................................................... 11 7.2POWER LINE CONDUCTED EMISSIONS –FCC:SECTION 15.207;ISEDCANADA:RSS-GEN 8.8 ....................... 11 7.2.1Measurement Procedure ....................................................................................................................... 11 7.2.2Measurement Results ............................................................................................................................ 11 7.3PEAK OUTPUT POWER –FCC:SECTION 15.247(B)(2);ISEDCANADA:RSS-2475.4(1) .................................. 12 7.3.1Measurement Procedure (Conducted Method) ..................................................................................... 12 7.3.2Measurement Results ............................................................................................................................ 12 7.4CHANNEL USAGE REQUIREMENTS ................................................................................................................... 13 7.4.1Carrier Frequency Separation – FCC: Section 15.247(a)(1); ISED Canada: RSS-247 5.1(2) ............ 13 7.4.1.1Measurement Procedure ...................................................................................................................................... 13 7.4.1.2Measurement Results .......................................................................................................................................... 13 7.4.2Number of Hopping Channels – FCC: Section 15.247(a)(1)(i); ISED Canada: RSS-247 5.1(3) ......... 14 7.4.2.1Measurement Procedure ...................................................................................................................................... 14 7.4.2.2Measurement Results .......................................................................................................................................... 14 7.4.3Channel Dwell Time – FCC: Section 15.247(a)(1)(i); ISED Canada: RSS-247 5.1(3) ........................ 18 7.4.3.1Measurement Procedure ...................................................................................................................................... 18 7.4.420dB / 99% Bandwidth – FCC: Section 15.247(a)(1)(i); ISED Canada: RSS-247 5.1(3) ................... 19 7.4.4.1Measurement Pro…

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Test Setup Photos

5945 Cabot Parkway Suite 100 Alpharetta, GA 30005 USA Certification Exhibit FCC ID: R7PNG0R1S5 IC: 5294A-NG0R1S5 FCC Rule Part: 15.247 ISED Canada Radio Standards Specification: RSS-247 Project Number: 72156409 Manufacturer: Landis+Gyr Technology, Inc. Model: N501 Test Setup Photos Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 2 Figure 1: Equipment Under Test – Radiated Emissions X-orientation Figure 2: Equipment Under Test – Radiated Emissions Y-orientation Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 3 Figure 3: Equipment Under Test – Radiated Emissions Z-orientation Figure 4: Equipment Under Test – Radiated Emissions <30MHz Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 4 Figure 5: Equipment Under Test – Radiated Emissions <30MHz Figure 6: Equipment Under Test – Radiated Emissions <1GHz Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 5 Figure 7: Equipment Under Test – Radiated Emissions <1GHz Figure 8: Equipment Under Test – Radiated Emissions >1GHz Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 6 Figure 9: Equipment Under Test – Radiated Emissions >1GHz Model(s): N501FCC ID: R7PNG0R1S5IC: 5294A-NG0R1S5 Project: 72156409Page 7 Figure 10: Equipment Under Test – AC Conducted Emissions Figure 11: Equipment Under Test – AC Conducted Emissions

Contact Information

Applicant

James L Stortz(Director of Hardware Engineering)
[email protected]678-258-1500Fax: 678-258-1550

Test Firm

TUV SUD America, Inc.William Elliott
[email protected]813-284-2736

Technical Specifications

#Rule PartsFrequency RangePower Output
315C902.4 MHz - 927.6 MHz957.00 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Modular Approval. Power listed is conducted. The device and its antenna(s) must be installed to provide a separation distance of at least 33 cm from all persons. Installers and end-users must be provided with operating conditions for satisfying RF exposure compliance.

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