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T7V9520Wi-Fi Module

Panasonic Industrial Devices Europe GmbH
Wi-Fi Module - FCC ID T7V9520 - Panasonic Industrial Devices Europe GmbH
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Application Details

Equipment Class
DTS - Digital Transmission System
Date of Grant
May 31, 2021
Application Purpose
Original Equipment
Date of Application
May 31, 2021
Equipment Note
Wi-Fi Module
Frequency Range
2412.00000000 - 2462.00000000
Company
Panasonic Industrial Devices Europe GmbH
Country
Germany

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

Wireless Connectivity PAN9520 Embedded Wi-Fi Module Module Integration Guide Rev. 1.0 Module Integration Guide Rev. 1.0 Page 2 of 47  PAN9520 Wi-Fi Module Module Integration Guide Rev. 1.0 Page 3 of 47 Overview The PAN9520 is a 2.4 GHz ISM band Wi-Fi embedded module based on Espressif ESP32-S2, which includes a wireless radio and a MCU for easy integration of Wi-Fi connectivity into various electronic devices. Features • Embedded 2.4 GHz Wi-Fi 802.11 b/g/n module • Xtensa ® single-core 32-bit LX7 microprocessor, up to 240 MHz • Chip internal 128 kB ROM, 320 kB SRAM, and 16 kB low power SRAM • Integrated QSPI Flash and PSRAM (a variety of memory densities are available) • Ultra-Low Power (ULP) co-processor usable in deep sleep mode • All security features required for WPA2 and WPA3 personal • Espressif Integrated Development Framework (ESP-IDF) with a multitude of examples available for software development • Supports 20 MHz and 40 MHz bandwidths in 2.4 GHz band with data rates up to 150 Mbps • Simultaneous support for Infrastructure Station, SoftAP, and promiscuous modes • 802.11mc Fine Time Measurement (FTM) • 36x programmable GPIOs with a rich set of alternative functionalities: − 2× 12-bit SAR ADCs, up to 20 channels − 2× 8-bit DAC − 14× touch sensing IOs − 4× SPI (2x available for general purpose) − 1× I²S − 2× I²C − 2× UART − RMT (Tx/Rx) − LED PWM, up to 8 channels − 1× full-speed USB OTG − 1× DVP 8/16 camera interface (I²S resources used) − 1× LCD interface (SPI2 resources used) − 1× LCD interface (I²S resources used) Characteristics • Surface Mount Type (SMT): 24 mm × 13 mm × 3.1 mm • Tx power up to 19.5 dBm at IEEE 802.11b 1 Mbps • Rx sensitivity of -97 dBm at IEEE 802.11b 1 Mbps • Power supply 3 V to 3.6 V • Current consumption 260 mA Tx (average at 11b, 11 Mbps), 76 mA Rx (40 MHz channel), 310 mA Tx peak • Deep sleep mode <100 μA typical power consumption (RTC timer only and VDD_SPI disconnected) • Wide temperature range from -40 °C to 85 °C Block Diagram  PAN9520 Wi-Fi Module Module Integration Guide Rev. 1.0 Page 4 of 47 By purchase of any of the products described in this document the customer accepts the document's validity and declares their agreement and understanding of its contents and recommendations. Panasonic Industrial Devices Europe GmbH (Panasonic) reserves the right to make changes as required at any time without notification. Please consult the most recently issued Module Integration Guide before initiating or completing a design. © Panasonic Industrial Devices Europe GmbH 2021. This specification sheet is copyrighted. Reproduction of this document is permissible only if reproduction is without alteration and is accompanied by all associated warranties, conditions, limitations, and notices. Do not disclose it to a third party. All rights reserved. This Module Integration Guide does not lodge the claim to be complete and free of mistakes. Engineering Samples (ES) If Engineering Samples are delivered to the customer, these samples have the status “Engineering Samples”. This means that the design of this product is not yet concluded. Engineering Samples may be partially or fully functional, and they may differ from the published Product Specification. Engineering Samples are not qualified and they are not to be used for reliability testing or series production. Disclaimer The customer acknowledges that samples may deviate from the Module Integration Guide and may bear defects due to their status of development and the lack of qualification mentioned above. Panasonic rejects any liability or product warranty for Engineering Samples. In particular, Panasonic disclaims liability for damages caused by: • The use of the Engineering Sample other than for evaluation purposes, particularly the installation or integration in another product to be sold by the customer, • Deviation or lapse in function of the Engineering Sample, • Improper use of the Engineering Sample. Panasonic Industrial Devices Europe GmbH disclaims any liability for consequential and incidental damages. In case of any queries regarding the Engineering Samples, please contact your local sales partner or the related product manager. The information contained herein is presented only as guidance for Product use. No responsibility is assumed by Panasonic for any infringement of patents or any other intellectual property rights of third parties that may result from the use of Product. No license to any intellectual property right is granted by this document, whether express or implied, by estoppel or otherwise. Description of hardware, software, and other information in this document is only intended to illustrate the functionality of the referred Panasonic product. It should not be construed as guaranteeing specific functionality of the product as described or suitable for a particular application. Any provided (source) code shall not be used or incorporated into any products or systems whose manufacture, use or sale is prohibited under any applicable laws or regulations. Any outlined or referenced (source) code within this document is provided on an “as is” basis without any right to technical support or updates and without warranty of any kind on a free of charge basis according to § 516 German Civil Law (BGB) including without limitation, any warranties or conditions of title, non infringement, merchantability, or fitness for a particular purpose. Customer acknowledges that (source) code may bear defects and errors.  PAN9520 Wi-Fi Module Module Integration Guide Rev. 1.0 Page 5 of 47 The third-party tools mentioned in this document are offered by independent third-party providers who are solely responsible for these products. Panasonic has no responsibility whatsoever for the performance, product descriptions, specifications, referenced content, or any and all claims or representations of these third-party providers. Panasonic makes no warranty whatsoever, neither express nor implied, with respect to t…

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Cover Letter(s)

CONFIDENTIALITY REQUEST for Certification Service in USA Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 2021-05-17 TO WHOM IT MAY CONCERN Pursuant to Paragraphs §0.457 and 0.459 of the Commission’s Rules (47 C.F.R.) and Section §552(b)(4) of the Freedom of Information Act, we request confidentiality for the following products: FCC ID Number Product Title/Model T7V9520 PAN9520 For the product stated above, we request permanent confidentiality for exhibits which contain Operational Description, Block Diagram, Schematics, Parts Lists or Tune Up Information. The above exhibits contain our trade secrets and proprietary information that could be of benefit to our competitors. If you have any questions, please feel free to contact me at the address shown below. Sincerely, (signed) Name: Olaf Knoth Company: Panasonic Industrial Devices Europe GmbH Address: Zeppelinstraße 19, 21337 Lüneburg Phone: +49 4131 899 257 Email: [email protected]

Cover Letter(s)

Federal Communication Commission Equipment Authorization Division, Application Processing Branch 7435 Oakland Mills Road Columbia, MD 21048 Certification and Engineering Bureau Industry Canada Spectrum Engineering Branch 3701 Carling Avenue, Building 94 Ottawa, Ontario K2H 8S2 Subject: FCC / ISED Modular Approval Statement FCC ID: Only applicable for ISED certification: IC Company Number: UPN: HVIN: (Hardware Version Identification Number) PMN: (Product Marketing Name) HMN: (Host Marketing Name) FVIN: (Firmware Version Identification Number) TO WHOM IT MAY CONCERN Pursuant to Paragraphs RSP-100 Issue 10 November 2014 Item 7.3 and CFR § 15.212, we herewith declare for our module. Modular approval requirement Yes No * (a) The radio elements must have the radio frequency circuitry be shielded. Physical/discrete and tuning capacitors may be located external to the shield, but must be on the module assembly. *Please provide a detailed explanation if the answer is “No.”: (b) The module shall have buffered modulation/data input(s) (if such inputs are provided) to ensure that the module will comply with the requirements set out in the applicable RSS standard under conditions of excessive data rates or over-modulation. *Please provide a detailed explanation if the answer is “No.”: (c) The module shall have its own power supply regulation on the module. This is to ensure that the module will comply with the requirements set out in the applicable standard regardless of the design of the power supplying circuitry in the host device which houses the module. *Please provide a detailed explanation if the answer is “No.”: (d) The module shall comply with the provisions for external power amplifiers and antennas detailed in this standard. The equipment certification submission shall contain a detailed description of the configuration of all antennas that will be used with the module. *Please provide a detailed explanation if the answer is “No.”: Yes No * (e) The module shall be tested for compliance with the applicable standard in a stand-alone configuration, i.e. the module must not be inside another device during testing. *Please provide a detailed explanation if the answer is “No.”: (f) The module shall comply with the Category I equipment labeling requirements and CFR § 15.212(a)(1)(vi). *Please provide a detailed explanation if the answer is “No.”: (g) The module shall comply with applicable RSS-102 exposure requirements and any applicable FCC RF exposure requirement which are based on the intended use/configurations. *Please provide a detailed explanation if the answer is “No.”: Only applicable for ISED certification: (h) Is the modular device for an Industry Canada licensed exempt service? (i) The modular transmitter complies with all applicable FCC rules. Instructions for maintaining compliance are given in the user instructions. If you have any questions, please feel free to contact us at the address shown below Be st Regards, Company Name: Ph one: Company Address: Fa x: Email: Contact Name: Signature: Si gnature Date: INF O for applicant: 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, will be maintained, such that full compliance of the end product is always ensured. 2019-03-25

External Photos

Annex A No.1-0450/20-01-01_AnnexA External EUT photos This document is electronically signed and valid without handwritten signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Document authorized: David Lang Lang Manager Radio Communications CTC advanced GmbHUntertuerkheimer Str. 6-10 66117 Saarbruecken / Germany Phone: +49 681 5 98 - 0 Fax: +49 681 5 98 - 9075 web: ctcadvanced.com e-mail: [email protected] External pictures of the equipment under test Photo 1: DUT - Front view Photo 2: DUT - Rear view - END OF DOCUMENT - 2021-05-03Document 1-0450/20-01-01_AnnexA2/2

ID Label/Location Info

2D Data Code PAN9520HW/SW M/N: ENW49D01A1KF ES 2 4 1 5 3 6 7 8 9 YYWWDLL 12345678 10 IC: 216Q-9520 FCC ID: T7V9520 Viewer does not support full SVG 1.1

ID Label/Location Info

2D Data Code PAN9520HW/SW M/N: ENW49D02A1KF ES 2 4 1 5 3 6 7 8 9 YYWWDLL 12345678 10 IC: 216Q-9520 FCC ID: T7V9520 Viewer does not support full SVG 1.1

Internal Photos

Annex B No.1-0450/20-01-01_AnnexB Internal EUT photos This document is electronically signed and valid without handwritten signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Document authorized: David Lang Lang Manager Radio Communications CTC advanced GmbHUntertuerkheimer Str. 6-10 66117 Saarbruecken / Germany Phone: +49 681 5 98 - 0 Fax: +49 681 5 98 - 9075 web: ctcadvanced.com e-mail: [email protected] Internal pictures of the equipment under test Photo 1: Top Photo 2: Bottom - END OF DOCUMENT - 2021-05-17Document 1-0450/20-01-01_AnnexB2/2

RF Exposure Info

© CTC advanced GmbH Page 1 of 3 BNetzA - CAB - 02/21 - 102 Maximum Permissible Exposure (MPE) & Exposure evaluation Report identification number: 1-0450/20-01-08 MPE (FCC_ISED) Certification numbers and labeling requirements FCC ID T7V9520 ISED number 216Q-9520 HVIN (Hardware Version Identification Number) ENW49D01A1KF, ENW49D02A1KF PMN (Product Marketing Name) PAN9520 FVIN (Firmware Version Identification Number) -/- HMN (Host Marketing Name) -/- This test report is electronically signed and valid without handwritten signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Document authorised: Alexander Hnatovskiy Marco Scigliano Lab Manager Testing Manager Radio Communications & EMC Radio Communications & EMC Report no.: 1-0450/20-01-08 © CTC advanced GmbH Page 2 of 3 EUT technologies: Technologies: Max. measured Peak-EIRP [dBm]: WLAN 2450 MHz 25.4 NOTE: Test results taken from CTC advanced GmbH report 1-0450/20-01-07 Prediction of MPE limit at given distance - FCC Equation from page 18 of OET Bulletin 65, Edition 97-01 S = PG / 4π R 2 where: S = Power density P = Power input to the antenna G = Antenna gain R = Distance to the center of radiation of the antenna PG = Output Power including antenna gain The table below is excerpted from Table 1B of 47 CFR 1.1310 titled “Limits for Maximum Permissible Exposure (MPE), Limits for General Population/Uncontrolled Exposure” Frequency Range (MHz) Power Density (mW/cm 2 ) Averaging Time (minutes) 300 -1500 f/1500 30 1500 - 100000 1.0 30 where f = Frequency (MHz) Prediction: worst case Technologies:WLAN Frequency (MHz)2450 PGDeclared max power (EIRP)25.4dBm RDistance20cm SMPE limit for uncontrolled exposure1 mW/cm 2 Calculated Power density: 0.0690mW/cm² Calculated percentage of Limit: 6.90% This prediction demonstrates the following: The power density levels for FCC at a distance of 20 cm are below the maximum levels allowed by regulations. Report no.: 1-0450/20-01-08 © CTC advanced GmbH Page 3 of 3 Prediction of MPE limit at given distance - ISED RSS-102, Issue 5, 2.5.2 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/ƒ 0.5 W (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). Prediction: worst case WLAN Frequency 2450 MHz R Distance 20 cm P G Maximum EIRP 25.4 dBm P G Maximum EIRP 346.7 mW Exclusion Limit from above: 2.71 W Calculated percentage of Limit: 12.78% Conclusion: RF exposure evaluation is not required.

Test Report

Measurement Results No.1-0450/20-01-07_log1_conducted Test logging This document is electronically signed and valid without handwritten signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Document authorized: David Lang Lang Manager Radio Communications CTC advanced GmbHUntertuerkheimer Str. 6-10 66117 Saarbruecken / Germany Phone: +49 681 5 98 - 0 Fax: +49 681 5 98 - 9075 web: ctcadvanced.com e-mail: [email protected] Table of Content EUT Information4 Message with SA Scan ~ 5 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 b-mode6 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 b-mode8 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 b-mode10 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 b-mode12 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 b-mode16 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 b-mode19 Message with SA Scan ~ 21 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 b-mode22 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 b-mode24 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 b-mode26 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 b-mode28 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 b-mode32 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 b-mode35 Message with SA Scan ~ 37 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 b-mode38 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 b-mode40 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 b-mode42 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 b-mode44 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 b-mode48 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 b-mode51 Message with SA Scan ~ 53 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 g-mode54 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 g-mode56 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 g-mode58 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 g-mode60 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 g-mode64 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 g-mode67 Message with SA Scan ~ 69 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 g-mode70 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 g-mode72 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 g-mode74 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 g-mode76 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 g-mode80 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 g-mode83 Message with SA Scan ~ 85 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 g-mode86 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 g-mode88 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 g-mode90 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 g-mode92 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 g-mode96 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 g-mode99 2021-05-07Document 1-0450/20-01-07_log1_conducted2/196 Message with SA Scan ~ 101 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT20-mode102 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT20-mode104 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT20-mode106 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT20-mode108 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode112 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT20-mode115 Message with SA Scan ~ 117 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT20-mode118 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT20-mode120 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT20-mode122 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT20-mode124 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode128 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT20-mode131 Message with SA Scan ~ 133 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT20-mode134 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT20-mode136 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT20-mode138 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT20-mode140 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode144 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT20-mode147 Message with SA Scan ~ 149 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT40-mode150 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT40-mode152 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT40-mode154 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT40-mode156 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT40-mode160 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT40-mode163 Message with SA Scan ~ 165 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT40-mode166 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT40-mode168 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT40-mode170 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT40-mode172 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT40-mode176 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT40-mode179 Message with SA Scan ~ 181 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT40-mode182 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT40-mode184 FCC Part 15.247 Peak Power Spectral Density DTS ~ WLAN2G4 nHT40-mode186 FCC Part 15.247 Bandwidth 99PCT-20dB ~ WLAN2G4 nHT40-mode188 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT40-mode192 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT40-mode195 2021-05-07Document 1-0450/20-01-07_log1_conducted3/196 EUT Information EUT DEFINITION ManufacturerPanasonic Industrial Devices TypePAN9520 Serial Number113 Setup Number1.0 Version SWNI Version FWNI Version HWNI Comment 1 Comment 2 Temperature [°C] Min-40 Temperature [°C] Nom20 Temperature [°C] Max85 Voltage [V] Min3 Voltage [V] Nom3.3 Voltage [V] Max3.6 2021-05-07Document 1-0450/20-01-07_log1_conducted4/196 Message with SA Scan ~ Test References TC Start04.05.2021 09:43:20 Ambit Temp [°C] | Humidity [rel%] 24.5 | 24 System Version3.0.1.0 …

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Test Report

FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode Test References TC Start04.05.2021 08:14:46 Ambit Temp [°C] | Humidity [rel%] 24.2 | 23 System Version3.0.1.0 Test SpecificationFCC Part 15.247 Test MethodIF DTS then 8.5 DTS emissions in non-restricted frequency bands: Subclause 11.11 of ANSI C63.10 is applicable. TC Version0.0.1 My DescriptionFCC 15.247 TX Emissions Conducted DTS - WLAN 2G4 nHT20_mode Add. Information EUT Common Settings WLAN2G4 Number of Antenna Ports1 User InteractionNo Test Parameter Technology to testWLAN2G4 nHT20-mode Antenna Port used1 Temperaturenom Voltagenom Frequency low to testTrue | Freq [MHz] 2412 Frequency mid to testFalse | Freq [MHz] 2437 Frequency high to testFalse | Freq [MHz] 2462 Auto Control enabled Power Supply | Climatic Box No | No Additional Path Loss [dB]2.1 Switched PathEUT - SignalingUnit - SpectrumAnalyzer Test Equipment SA: Rohde&Schwarz,FSV-40,1307.9002K40/101042,3.60 SwitchMatrix: CTCadvanced,SPM-4 NI DAQ,28016133,NI 2021-05-07Document 1-0450/20-01-07_log1_conducted112/196 Test at TX 2412 MHz RESULT: Reference Power cond. Test DescriptionLower LimitUpper LimitMeasuredUnitVerdict Ref. Power 1MHz/1MHz cond. ------8.19dBmINFO Ref. Frequency------2416.500MHzINFO READ SA SETTINGS: RefLevel [dBm] | RefLevelOffset [dB] | InpAtt [dB]8.19 | 0 | 25 Start [MHz] | Stop [MHz]24530.000 | 25030.000 RBW [MHz] | VBW [MHz]0.100000 | 0.300000 Detector | TraceModePOS | MAXH Sweep: Time [ms] | Count | Points per Section | Type500 | 8 | 3001 | SWE RESULT Test DescriptionLower LimitUpper LimitMeasuredUnitVerdict Reference @ 2419.50 MHz ------0.71dBmINFO No peaks detected ------ PASS Lowest margin to limit 22872.333 MHz 0---13.5dBINFO FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode 2412 2021-05-07Document 1-0450/20-01-07_log1_conducted113/196 FCC Part 15.247 TX Spurious Conduced ~ WLAN2G4 nHT20-mode 2412 General verdictPASS 2021-05-07Document 1-0450/20-01-07_log1_conducted114/196 FCC Part 15.247 Maximum Peak Conducted Output Power Powermeter DTS ~ WLAN2G4 nHT20-mode Test References TC Start04.05.2021 08:21:54 Ambit Temp [°C] | Humidity [rel%] 24.3 | 23 System Version3.0.1.0 Test SpecificationFCC Part 15.247 Test MethodDTS: KDB 558074 D01 V05 - Chapter 8.3.1.3 PKPM1 Peak-reading Power Meter Method TC Version0.0.1 My DescriptionFCC 15.247 Maximum Peak Output Power Powermeter Conducted DTS - WLAN 2G4 nHT20-mode Add. Information EUT Common Settings WLAN2G4 Number of Antenna Ports1 User InteractionNo Test Parameter Technology to testWLAN2G4 nHT20-mode Antenna Port used1 Temperaturenom Voltagenom Frequency low to testTrue | Freq [MHz] 2412 Frequency mid to testFalse | Freq [MHz] 2437 Frequency high to testFalse | Freq [MHz] 2462 Auto Control enabled Power Supply | Climatic Box No | No Additional Path Loss [dB]2.1 Switched PathEUT - SignalingUnit - PowerMeter Test Equipment SwitchMatrix: CTCadvanced,SPM-4 NI DAQ,28016133,NI PM: Keysight Technologies,U2021XA,MY59190010,A.04.06 2021-05-07Document 1-0450/20-01-07_log1_conducted115/196 Test at TX 2412 MHz RESULT Test DescriptionLower LimitUpper LimitMeasuredUnitVerdict Found Peak cond. ------21.7dBmPASS General verdictPASS 2021-05-07Document 1-0450/20-01-07_log1_conducted116/196 Message with SA Scan ~ Test References TC Start04.05.2021 08:22:06 Ambit Temp [°C] | Humidity [rel%] 24.3 | 23 System Version3.0.1.0 Test SpecificationNone Test Method TC Version0.0.1 My DescriptionMessage with SA Scan nHT20-mode Add. Information Test Parameter Switched PathEUT - SignalingUnit - SpectrumAnalyzer Message start04.05.2021 08:22:07 Message set WLAN2G4 to nHT20-mode, Frequency [MHz] 2437 , Test Equipment SA: Rohde&Schwarz,FSV-40,1307.9002K40/101042,3.60 SwitchMatrix: CTCadvanced,SPM-4 NI DAQ,28016133,NI General verdictINFO 2021-05-07Document 1-0450/20-01-07_log1_conducted117/196 Common2G4 Peak OP 3MHz/3MHz ~ WLAN2G4 nHT20-mode Test References TC Start04.05.2021 08:22:39 Ambit Temp [°C] | Humidity [rel%] 24.3 | 23 System Version3.0.1.0 Test SpecificationNone Test Method TC Version0.0.1 My DescriptionPeak Output Power conducted 3MHz/3MHz WLAN 2G4 nHT20- mode Add. Information EUT Common Settings WLAN2G4 Number of Antenna Ports1 User InteractionNo Test Parameter Technology to testWLAN2G4 nHT20-mode Antenna Port used1 Temperaturenom Voltagenom Frequency low to testFalse | Freq [MHz] 2412 Frequency mid to testTrue | Freq [MHz] 2437 Frequency high to testFalse | Freq [MHz] 2462 Auto Control enabled Power Supply | Climatic Box No | No Additional Path Loss [dB]2.1 Switched PathEUT - SignalingUnit - SpectrumAnalyzer Test Equipment SA: Rohde&Schwarz,FSV-40,1307.9002K40/101042,3.60 SwitchMatrix: CTCadvanced,SPM-4 NI DAQ,28016133,NI 2021-05-07Document 1-0450/20-01-07_log1_conducted118/196 Test at TX 2437 MHz RESULT: Reference Power cond. Test DescriptionLower LimitUpper LimitMeasuredUnitVerdict Ref. Power 1MHz/1MHz cond. ------14.04dBmINFO Ref. Frequency------2430.310MHzINFO READ SA SETTINGS: RefLevel [dBm] | RefLevelOffset [dB] | InpAtt [dB]24.04 | 17.62 | 25 Start [MHz] | Stop [MHz]2387.000 | 2487.000 RBW [MHz] | VBW [MHz]3.000000 | 3.000000 Detector | TraceModePOS | MAXH Sweep: Time [ms] | Count | Points per Section | Type1000 | 10 | 1001 | SWE RESULT Test DescriptionLower LimitUpper LimitMeasuredUnitVerdict Peak Power------19.16dBmInfo Peak Power------82.413812mWInfo Frequency at Peak------2431.81MHzInfo Common2G4 Peak OP 3MHz-3MHz ~ WLAN2G4 nHT20-mode General verdictPASS 2021-05-07Document 1-0450/20-01-07_log1_conducted119/196 FCC Part 15.247 Bandwidth 6dB DTS ~ WLAN2G4 nHT20-mode Test References TC Start04.05.2021 08:23:16 Ambit Temp [°C] | Humidity [rel%] 24.3 | 23 System Version3.0.1.0 Test SpecificationFCC Part 15.247 Test Method99 TC Version0.0.1 My DescriptionFCC 15.247 Bandwidth 6dB DTS - WLAN 2G4 nHT20_mode Add. Information EUT Common Settings WLAN2G4 Number of Antenna Ports1 User InteractionNo Test Parameter Technology to testWLAN2G4 nHT20-mode Antenna Port used1 Temperaturenom Voltagenom Frequency low to testFalse | …

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Test Report

BNetzA - CAB - 02/21 - 102 TEST REPORT Test report no.: 1-0450/20-01-07-A Testing laboratory Applicant CTC advanced GmbH Untertuerkheimer Strasse 6 – 10 66117 Saarbruecken / Germany Phone: + 49 681 5 98 - 0 Fax: + 49 681 5 98 - 9075 Internet: https://www.ctcadvanced.com e-mail: [email protected] Accredited Testing Laboratory: The testing laboratory (area of testing) is accredited according to DIN EN ISO/IEC 17025 (2018-03) by the Deutsche Akkreditierungsstelle GmbH (DAkkS) The accreditation is valid for the scope of testing procedures as stated in the accreditation certificate starting with the registration number: D-PL-12076-01. Panasonic Industrial Devices Europe GmbH Zeppelinstrasse 19 21337 Lüneburg / GERMANY Phone: +49-4131-899-0 Contact: Marcus Nottorf e-mail: [email protected] Manufacturer Panasonic Industrial Devices Slovakia s.r.o Tovarenska 13 06401 Stara Lubovna / SLOVAK REPUBLIC Test standard/s FCC - Title 47 CFR Part 15 FCC - Title 47 of the Code of Federal Regulations; Chapter I; Part 15 - Radio frequency devices RSS - 247 Issue 2 Digital Transmission Systems (DTSs), Frequency Hopping Systems (FHSs) and Licence - Exempt Local Area Network (LE-LAN) Devices For further applied test standards please refer to section 3 of this test report. Test Item Kind of test item: Embedded Wi-Fi Module Model name: PAN9520 (ENW49D01A1KF, ENW49D02A1KF) FCC ID: T7V9520 IC: 216Q-9520 Frequency: 2400 MHz to 2483.5 MHz Technology tested: IEEE 802.11 (W-LAN) Antenna: On-board chip antenna Power supply: 3.0 V to 3.6 V DC by external power supply Temperature range: -40°C to +85°C This test report is electronically signed and valid without handwritten signature. For verification of the electronic signatures, the public keys can be requested at the testing laboratory. Test report authorized: Test performed: Marco Bertolino David Lang Lab Manager Lab Manager Radio Communications Radio Communications Test report no.: 1-0450/20-01-07-A © CTC advanced GmbH Page 2 of 73 1 Table of contents 1 Table of contents ...............................................................................................................…

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Contact Information

Applicant

Olaf Knoth(Product Safety)
[email protected]+49-4131-899Fax: +49-4131-899-187

Test Firm

cetecom advanced GmbHGerald Schmidt
[email protected]49-681-598-0Fax: 49-681-598-8775

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.41 GHz - 2.46 GHz346.70 mW
Modular Type
Single Modular Approval
Confidentiality
Long Term
Grant Notes
Output power listed is peak conducted. This device supports IEEE 802.11b, 802.11g and 802.11n with a 20 MHz and 40 MHz bandwidth mode. RF exposure compliance is addressed for 1.1310 and 2.1091 MPE limits. Integrators and End Users must be provided with transmitter operation conditions for satisfying RF exposure compliance.

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