
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
AutoSense ™ II Inbound Standalone Installation Manual Cargo Monitoring Solutions 2 Equipment AutoSense Page 3 Standalone Cellular Page 3 Connectivity System Page 4 Verification Page 4 Regulatory Approvals Page 5 Technical Support Page 6 Table of Contents 3 Inventory List: (Equipment may vary) • AutoSense Standalone • 6ft. Low Voltage Extension Cord • Rubber Reader Antenna • 2 Cellular Paddle Antennas • 100-240VAC Power Supply Installation Hardware: • Cable Ties • Cable Tie Mounts • Mounting Screws • Cable Clamps • Test Logger Equipment 1. Attach the 2 cellular paddle antennas and the single rubber reader antenna. 2. Mount on wall at least 6 ft. up and in front of dock doors using one of these methods: a. Mounting screws b. Cable ties and cable tie mounts 3. Plug power supply into a non-switched power outlet 4. Take picture of AutoSense Standalone and send it to CargoSupport@@Copeland.com Kit Equipment AutoSense Standalone Installation: 4 Cellular Connectivity 1. Angle antennas away from the wall 2. After power is applied, verify the LEDs to right of the ethernet port are lit correctly a. Left LED is a solid GREEN indicating system is operational b. Middle LED is solid GREEN indicating connection to cellular carrier c. Right LED is GREEN or AMBER indicating cellular strength System Verification Stand at the farthest receiving area/dock door from the AutoSense Standalone. With the Test Logger, press and hold the gold power button in the right-hand corner of the board until the LED starts flashing GREEN. LED will flash AMBER when the test logger has been read. Test will verify that the system is working properly. No further action is required. Power Button Green Light Green or Orange Red Light - No cell connection 5 Model: PSASII-04; FCC ID WPEPSASII-04; IC: 8031A-PSASII04 This device complies with part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Warning: Changes or modifi cations not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Note: This equipment has been tested and found to comply with the limits for a Class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at his own expense. This equipment complies with FCC RF Exposure requirements and should be installed and operated with a minimum distance of 20 cm between the radiator and any part of the human body. This device complies with Industry Canada licence-exempt RSS standard(s). Operation is subject to the following two conditions: (1) This device may not cause interference, and (2) this device must accept any interference, including interference that may cause undesired operation of the device. Le présent appareil est conforme aux CNR d’Industrie Canada applicables aux appareils radio exempts de licence. L’exploitation est autorisée aux deux conditions suivantes : (1) l’appareil ne doit pas produire de brouillage, et (2) l’utilisateur de l’appareil doit accepter tout brouillage radioélectrique subi, même si le brouillage est susceptible d’en compromettre le fonctionnement. This equipment complies with the ICES RF radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with a minimum distance of 20 cm between the radiator and any part of the human body. Cet équipement est conforme aux limites d’exposition aux radiations ICES définies pour un environnement non contrôlé . Cet équipement doit être installé et utilisé à une distance minimale de 20 cm entre le radiateur et une partie de votre corps. Regulatory Approvals 6 ASIS.UM.Rev2.1223 ©2023 Copeland, Inc. All rights reserved. Technical Support Technical Support is available 24 hours a day, 7 days a week. We’re with you every step of the way. Toll Free: +1-877-998-7299 Copeland.com/Cargo [email protected]
COPELAND Federal Communications Commission Authorization a nd Evaluation Division 7435 Oakland Mills Road Columbia, MD 21046 USA Date: April 2 2, 2024 R ef: Attestation Statements Part 2.911(d)(S)(i) Filing F CC ID: WPEPSASll-04 copeland.com Copeland ("the applicant") certifies that the equipment for which authorization is sought is not "covered" equipment prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. Sincerely, X Rev 1/26/2023
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COPELAND AGENCY AGREEMENT Federal Communications Commission 7435 Oakl and Mills Road Columbia, MD 21045 USA G entlemen: copeland.com Date: April 22, 2024 By signature below, we hereby appoint US Tech employees Alan Ghasiani and George Yang to act as our agents with regard to all FCC equipment authorizations. This appointment will remain in effect until otherwise notified. 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 includes the authority to complete FCC Form 731 on our behalf and sign the application as an authorized agent. Name:Amy Childress Title: Vice President - Monitoring Signature: � f cLJ� Date: . i / J "' / ':l '---}
April 22, 2024 Copeland Cold Chain LP Model(s): PSASII-04 FCC ID : WPEPSASII-04 is seeking FCC Authorization as a Single Modular transmitter / Single Limited Modular Approval (Please check one) The EUT meets the requirements for Single Modular approval / Single Limited Modular Approval (please check one) as detailed in KDB 996369. Compliance to each of the requirements is described below: Item Modular requirement Yes No Please provide a detailed explanation if the answer is “No.” 1 Have its own RF shielding x The radio has been tested and shown to meet the applicable emissions requirements without having a shield in place however installation of the module within the host device must be followed to protect the module from unwanted interferences. Please see the user manual and integration manual for installation details. The manufacturers instructions must be followed. 2 Have buffered modulation/data inputs (if such inputs are provided) x 3 The modular transmitter must have its own power supply regulation. x The radio module shall be installed in host products that will supply regulated voltage to the radio module. Valid hosts are CloudGate. 4 Meet the antenna requirements of section 15.203 x 5 Be tested in a stand-alone configuration, i.e., the antenna, AC or DC power and data input/output lines must be connected to the module but, the module must not be inside another case during testing. x 6 Be labeled with its own FCC ID number, and if the FCC ID is not visible when the module is installed inside another device, then the outside of the device into which the module is installed must also display a label referring to the enclosed module. x 7 The modular transmitter is manufactured so that the user can not influence the operation of the transmitter that will operate outside of the scope of the regulations. x 8 Address compliance with the Commission`s RF exposure limits in Sections 1.1310 and 2.1093. x Note: (1) LMA may be granted when one or more of the requirements in the table above cannot be demonstrated. LMA will also be issued in those instances where applicants can demonstrate that they will retain control over the final installation of the device, such that compliance of the end product is assured. In such cases, an operating condition on the LMA for the module must state that the module is only approved for use when installed in devices produced by a specific manufacturer. When LMA is sought, the application for equipment certification must specifically state how control of the end product into which the module will be installed, and will be maintained, such that full compliance of the end product is always ensured. (2) Please provide Clear and specific instructions describing the conditions, limitations and procedures for third-parties to use and/or integrate the module into a host device. (3) For non-Software Defined Radio transmitter modules where software is used to ensure compliance of the device, technical description of how such control is implemented to ensure prevention of third party modification must be provided (see KDB 594280). Note 1: Compliance of a module in its final configuration is the responsibility of the applicant. A host device will not be considered certified if the instructions regarding antenna configuration provided in the original description, of one or more separately certified modules it contains, were not followed. Example: A separately certified low-power transceiver module using Bluetooth technology which is housed in a desktop computer, laptop or peripheral does not require the overall system to be recertified, if the desktop computer, laptop or peripheral, as a stand-alone unit, complies with all applicable technical standards. George Yang Agent, Copeland Cold Chain LP Laboratory Manager, US Tech 770-740-0717 [email protected]
3505 Francis Circle Alpharetta, GA 30004 PH: 770-740-0717 FAX: 770-740-1508 www.ustech-lab.com Request for Confidentiality Date: April 22, 2024 Subject: Confidentiality Request for: FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 12.4, the applicant requests that a part of the subject FCC application be held confidential. Type of Confidentiality Requested Exhibit Short Term Permanent Block Diagrams Short Term External Photos Short Term Permanent Internal Photos Short Term Permanent Operation Description/Theory of Operation Short Term Permanent Parts List & Placement/BOM Short Term Permanent Tune-Up Procedure Short Term Permanent Schematics Short Term Test Setup Photos Short Term Permanent User’s Manual Copeland Cold Chain LP has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. NOTE for Industry Canada Applications: The applicant understands that until such time that IC distinguishes between Short Term and Permanent Confidentiality, either type of marked exhibit above will simply be marked Confidential when submitted to IC. Sincerely, By: __________________________ ___George Yang __- Agent (Signature/Title) (Print name)
US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Model: PSASII-04 Page 1 of 1 ANTENNA PHOTOGRAPHS Figure 1. Antenna for Emerson Model PSASII-04 MFG: Nearson Type: Omni Directional Dipole antenna Gain: 2.0 dBi
US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Cold Chain Model: PSASII-04 Page 1 of 2 Sample Label Figure 1. EUT Sample Label on radio module Label Goes here. Screen printed on PCB US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Cold Chain Model: PSASII-04 Page 2 of 2 Figure 2. HOST Product Labeling
US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Model: PSASII-04 Page 1 of 4 INTERNAL PHOTOGRAPHS Figure 4. PSASII-04 Radio module (Component Side) Note: The trace antenna is disabled for this application. US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Model: PSASII-04 Page 2 of 4 Figure 5. PSASII-04 Radio module (Bottom Side) US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Model: PSASII-04 Page 3 of 4 Figure 2. PSASII-04 Radio module installed on HOST Device interface board -Radio module identified with RED dashed lines. US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Model: PSASII-04 Page 4 of 4 Figure 3. HOST Device interface board with radio module removed.
US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland Model: PSASII-04 Page 1 of 2 Maximum Permissible Exposure to RF (MPE) CFR 15.247 (i), CFR 1.1310 (e) The maximum exposure level to the public from the RF power of the EUT shall not exceed a power density, S as per the respective limits in Table 1 below, at a distance, d, of 20 cm from the EUT. TABLE 1—LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency range (MHz) Electric field strength (V/m) Magnetic field strength (A/m) Power density (mW/cm 2 ) Averaging time (minutes) Limits for General Population/Uncontrolled Exposure 0.3-1.34 614 1.63 *100 30 1.34-30 824/f 2.19/f *180/f 2 30 30-300 27.5 0.073 0.2 30 300-1,500 f/1500 30 1,500-100,000 1.0 30 f = frequency in MHz * = Plane-wave equivalent power density Therefore, for: MPE for 902 MHz – 928 MHz Limit: (f/1500) mW/cm 2 = 915/1500 = 0.61mW/cm 2 Peak Power (dBm) = 3.0 dBm Peak Power (Watts) = 0.002 W Gain of Transmit Antenna = 2 dB i = 1.58, numeric d = Distance = 20 cm = 0.2 m S = (PG/ 4πd 2 ) = EIRP/4A = 0.002*(1.32)/4*π*0.2*0.2 =0.00264/0.5030 = 0.00525 W/m 2 = (0.00525 W/m 2 ) (1m 2 /W) (0.1 mW/cm 2 ) = 0.000525 mW/cm 2 which is << less than S = 0.61mW/cm 2 US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland Model: PSASII-04 Page 2 of 2 RSS-102, Issue 5 2.5.2 Exemption Limits for Routine Evaluation – RF Exposure Evaluation RF exposure evaluation is required if the separation distance between the user and/or bystander and the device’s radiating element is greater than 20 cm, except when the device operates as follows: • below 20 MHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 1 W (adjusted for tune-up tolerance); • at or above 20 MHz and below 48 MHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 4.49/ƒ0.5W (adjusted for tune-up tolerance), where ƒ is in MHz; • at or above 48 MHz and below 300 MHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 0.6 W (adjusted for tune- up tolerance); • at or above 300 MHz and below 6 GHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 1.31 x 10^-2 ƒ^0.6834 W (adjusted for tune-up tolerance), where ƒ is in MHz; • at or above 6 GHz and the source-based, time-averaged maximum e.i.r.p. of the device is equal to or less than 5 W (adjusted for tune-up tolerance). In this case the Emerson radio operates in the 902-928 MHz therefore the limit is equal to: 1.31 * 10 -2* (915)^0.6834= 1.38 W The EIRP for the EUT is equal to 3 dBm + 2 dBi = 5 dBm = 0.0032 W << 1.38 W
Page 1 of 54 Appl ication For Part 2, Subpart J, Paragraph 2.907 Equipment Authorization of Certification for an Intentional Radiator per Part 15, Subpart C, paragraphs 15.207, 15.209 and 15.247 An d Innovation, Science, and Economic Development Canada Certification Per IC RSS-Gen (Issue 5), General Requirements for Radio Apparatus And RSS-2 47 (Issue 3), Digital Transmission Systems (DTSs), Frequency Hopping Systems (FHSS) and License-Exempt Local Area Network (LE-LAN) Devices For the Copeland Cold Chain LP Model Number: P SASII-04 FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 UST Project: 23-0 218 Issue Date: April 22, 2024 Total Pages: 54 3505 Francis Circle Alpharetta, GA 30004 PH: 770-740-0717 Fax: 770-740-1508 www.ustech-lab.com Page 2 of 54 I certify that I am authorized to sign for the Test Agency and that all of the statements in this report and in the Exhibits attached hereto are true and correct to the best of my knowledge and belief: US TECH (Agent Responsible For Test): By: Alan Ghasiani Name: Title: Compliance Engineer – President Date: April 22, 2024 This report shall not be reproduced except in full. This report may be copied in part only with the prior written approval of US Tech. The results contained in this report are subject to the adequacy and representative character of the sample provided. This report must not be used to claim product certification, approval, or endorsement by NVLAP, NIST or any agency of the Federal Government. 3505 Francis Circle Alpharetta, GA 30004 PH: 770-740-0717 Fax: 770-740-1508 www.ustech-lab.com US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Cold Chain Model: PSASII-04 Page 3 of 54 MEASUREMENT TECHNICAL REPORT COMPANY NAME: Copeland Cold Chain LP MODEL: PSASII-04 FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 DATE: April 22, 2024 This report concerns (check one): ☒ Original ☐ Class II Permissive Change Equipment type: 900 MHz ISM Radio Transceiver Module. Technical Information: Radio Technology: DTS Frequency of Operation (MHz): 902.75 – 927.25 Output Power (dBm): 3.0 Type of Modulation: FSK Data/Bit Rate: 100 kbps Antenna Gain (dBi): 2.0 Software used to program EUT: SSH EUT firmware: N/A Power setting: “Default” 3505 Francis Circle Alpharetta, GA 30004 PH : 770-740-0717 Fax : 770-740-1508 www.ustech-lab.com US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Customer: Copeland Cold Chain Model: PSASII-04 Page 4 of 54 Table of Contents Paragraph Title Page 1 General Information .......................................................................................... 7 1.1 Purpose of this Report .................................................................................. 7 1.2 Characterization of Test Sample ................................................................... 7 1.3 Product Description ...................................................................................... 7 1.4 Configuration of Tested System .................................................................... 8 1.5 Test Facility ................................................................................................... 8 1.6 Related Submittal(s)/Grant(s) ....................................................................... 8 2 Tests and Measurements ............................................................................... 10 2.1 Test Equipment ........................................................................................... 10 2.2 Modifications to EUT Hardware .................................................................. 10 2.3 Number of Measurements for Intentional Radiators (15.31(m), RSS-Gen 6.8) 11 2.4 Frequency Range of Radiated Measurements (Part 15.33, RSS-Gen 6.13) 11 2.4.1 Intentional Radiator .................................................................................. 11 2.4.2 Unintentional Radiator ............................................................................. 11 2.5 Measurement Detector Function and Bandwidth (CFR 15.35, RSS-Gen 6.9, 6.13) 12 2.5.1 Detector Function and Associated Bandwidth ......................................... 12 2.5.2 Corresponding Peak and Average Requirements .................................... 12 2.6 EUT Antenna Requirements (CFR 15.203, RSS-Gen 6.7) ......................... 12 2.7 Restricted Bands of Operation (Part 15.205, RSS-Gen 8.10) ..................... 14 2.8 Transmitter Duty Cycle (Part15.35 (c), RSS-Gen 6.10) .............................. 14 2.9 Antenna Conducted Intentional and Spurious Emissions (CFR 15.209, 15.247(d)) (IC RSS 247, 5.5)) .............................................................................. 17 2.10 Intentional Radiator, Radiated Emissions (CFR 15.209, 15.247(d), RSS- 247, 5.5) ............................................................................................................... 24 2.11 Band Edge Measurements (CFR 15.247(d), RSS-247, 5.5) .................... 27 2.12 Six (6) dB Bandwidth (CFR 15.247(a)(2), RSS-247, 5.2(a)) .................... 30 2.13 Occupied Bandwidth, (99% bandwidth)(RSS-GEN (6.6)) ............................. 34 2.14 Maximum Peak Conducted Output Power (CFR 15.247 (b) (3)) ............. 38 2.15 Power Spectral Density (CFR 15.247(e), RSS-247, 5.2(b)) .................... 42 2.16 Intentional Radiator Power Lines Conducted Emissions (CFR 15.207, RSS-Gen 8.8) ....................................................................................................... 46 2.17 Intentional Radiator, Radiated Emissions (CFR 15.209, RSS-Gen, 8.9) . 48 2.18 Measurement Uncertainty ....................................................................... 54 US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 22, 2024 Custome…
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US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Test Configuration Photographs Figure 1. EUT Configuration Close-up Note: EUT extended outside the HOST Device for intentional emissions testing. HOST Device used for programming the EUT for testing purpose. US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 2. EUT installed inside HOST Device for Unintentional Emissions Testing US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 3. Test Configuration below 30 MHz using Loop Antenna US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 4. Test Configuration 30-200 MHz using Biconical Antenna Intentional emissions US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 5. Test Configuration 30-200 MHz using Biconical Antenna Unintentional Emissions (including co-location evaluation) US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 6. Test Configuration 200- 1000 MHz using Log Periodic Antenna Intentional Emissions US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 7. Test Configuration 200- 1000 MHz using Log Periodic Antenna Unintentional Emissions (including co-location evaluation) US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 8. Test Configuration above 1 GHz using Horn Antenna Intentional Emissions US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 9. Test Configuration above 1 GHz using Horn Antenna Unintentional Emissions (including co-location evaluation) Note: EUT installed within the HOST Device for unintentional emissions testing. US Tech Test Report: FCC Part 15/IC RSS Certification FCC ID: WPEPSASII-04 IC: 8031A-PSASII04 Test Report Number: 23-0218 Issue Date: April 25, 2024 Customer: Copeland, Inc. Model: PSASII-04 Figure 10. Test Configuration Powerline Conducted Emissions (Both Intentional and Unintentional)
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.75 MHz - 927.25 MHz | 3.00 mW |

Transceiver base station device
Equipment Class
DTS - Digital Transmission System
Wireless reader(
Equipment Class
DTS - Digital Transmission System