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U8G-P1930LITER4PEPWAVE / peplink Wireless Product

PISMO LABS TECHNOLOGY LIMITED
PEPWAVE / peplink Wireless Product - FCC ID U8G-P1930LITER4 - PISMO LABS TECHNOLOGY LIMITED
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Application Details

Equipment Class
JAD - Part 15 Class A Digital Device
Date of Grant
Jul 22, 2020
Application Purpose
Original Equipment
Date of Application
Jul 22, 2020
Equipment Note
PEPWAVE / peplink Wireless Product
Company
PISMO LABS TECHNOLOGY LIMITED
Country
Hong Kong

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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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

Copyright & Trademarks Specifications are subject to change without notice. Copyright © 2020 Pepwave Ltd. All Rights Reserved. Pepwave and the Pepwave logo are trademarks of Pepwave Ltd. Other brands or products mentioned may be trademarks or registered trademarks of their respective owners. Pepwave MAX User Manual Pepwave Products: BR1 Mini Core Pepwave Firmware 8.0.2 June 2020 https://www.peplink.com Copyright @ 2020 Pepwave Table of Contents Introduction and Scope 7 Glossary 8 Product Features 9 Supported Network Features 9 WAN 9 LAN 10 VPN 10 Firewall 10 Captive Portal 10 Outbound Policy 10 AP Controller 11 QoS 11 Other Supported Features 11 Pepwave MAX Mobile Router Overview 13 MAX BR1 Mini Core 13 Advanced Feature Summary 14 Drop-in Mode and LAN Bypass: Transparent Deployment 14 QoS: Clearer VoIP 15 Per-User Bandwidth Control 15 High Availability via VRRP 16 USB Modem and Android Tethering 16 Built-In Remote User VPN Support 17 SIM-card USSD support 17 Installation 18 Preparation 18 Constructing the Network 18 Configuring the Network Environment 19 Mounting the Unit 20 Wall Mount 20 Connecting to the Web Admin Interface 21 Configuring the LAN Interface(s) 23 Basic Settings 23 Port Settings 32 https://www.peplink.com Copyright @ 2020 Pepwave Captive Portal 32 Configuring the WAN Interface(s) 35 Ethernet WAN 36 DHCP Connection 39 Static IP Connection 40 PPPoE Connection 40 L2TP Connection 42 Cellular WAN 43 Wi-Fi WAN 50 Creating Wi-Fi Connection Profiles 56 WAN Health Check 57 Dynamic DNS Settings 59 Advanced Wi-Fi Settings 61 ContentHub Configuration 66 ContentHub 66 Configuring the ContentHub 66 Configure a website to be published from the ContentHub 67 Configure an application to be published from the ContentHub 68 MediaFast Configuration 70 Setting Up MediaFast Content Caching 70 Scheduling Content Prefetching 72 Viewing MediaFast Statistics 74 Bandwidth Bonding SpeedFusionTM / PepVPN 75 PepVPN 75 The Pepwave Router Behind a NAT Router 81 SpeedFusionTM Status 82 IPsec VPN 82 IPsec VPN Settings 83 Outbound Policy Management 87 Outbound Policy 87 Custom Rules for Outbound Policy 89 Algorithm: Weighted Balance 89 Algorithm: Persistence 90 Algorithm: Enforced 91 Algorithm: Priority 92 Algorithm: Overflow 92 https://www.peplink.com Copyright @ 2020 Pepwave Algorithm: Least Used 93 Algorithm: Lowest Latency 93 Expert Mode 94 Inbound Access 94 Port Forwarding Service 94 UPnP / NAT-PMP Settings 96 NAT Mappings 97 QoS 98 User Groups 98 Bandwidth Control 99 Application 100 Application Prioritization 100 Prioritization for Custom Applications 100 DSL/Cable Optimization 101 Firewall 101 Outbound and Inbound Firewall Rules 102 Access Rules 102 Apply Firewall Rules to PepVpn Traffic 105 Intrusion Detection and DoS Prevention 105 Content Blocking 106 Application Blocking 106 Web Blocking 106 Customized Domains 107 Exempted User Groups 107 Exempted Subnets 107 URL Logging 107 OSPF & RIPv2 107 BGP 111 Remote User Access 113 L2TP with IPsec 114 OpenVPN 114 PPTP 115 Authentication Methods 115 Miscellaneous Settings 117 High Availability 117 Certificate Manager 120 https://www.peplink.com Copyright @ 2020 Pepwave Service Forwarding 121 SMTP Forwarding 121 Web Proxy Forwarding 122 DNS Forwarding 123 Custom Service Forwarding 123 Service Passthrough 123 UART 125 GPS Forwarding 127 Ignition Sensing 127 Ignition Sensing installation 128 GPIO Menu 130 Grouped Networks 131 SIM Toolkit 131 AP - access point 134 AP Controller 134 Wireless SSID 134 Settings 138 AP Controller Status 143 Info 143 Access Point (Usage) 144 Wireless SSID 147 Wireless Client 147 Nearby Device 148 Event Log 149 Toolbox 150 System Settings 151 Admin Security 151 Firmware 154 Web admin interface : automatically check for updates 154 Web admin interface : install updates manually 155 The InControl method 156 Time 157 Schedule 157 Email Notification 158 Event Log 160 SNMP 161 InControl 163 https://www.peplink.com Copyright @ 2020 Pepwave Configuration 164 Feature Add-ons 165 Reboot 165 Tools 165 Ping 165 Traceroute Test 166 PepVPN Test 167 Wake-on-LAN 167 CLI (Command Line Interface Support) 168 Status 169 Device 169 GPS Data 170 Active Sessions 171 Client List 172 WINS Client 173 UPnP / NAT-PMP 173 OSPF & RIPv2 174 BGP 174 SpeedFusion Status 174 Event Log 176 WAN Quality 178 Usage Reports 178 Real-Time 180 Hourly 180 Daily 181 Monthly 182 Appendix A: Restoration of Factory Defaults 185 Appendix B: Declaration 186 https://www.peplink.com Copyright @ 2020 Pepwave 1 Introduction and Scope Pepwave routers provide link aggregation and load balancing across multiple WAN connections, allowing a combination of technologies like 3G HSDPA, EVDO, 4G LTE, Wi-Fi, external WiMAX dongle, and satellite to be utilized to connect to the Internet. The MAX wireless SD-WAN router series has a wide range of products suitable for many different deployments and markets. Entry level SD-WAN models such as the MAX BR1 are suitable for SMEs or branch offices. High-capacity SD-WAN routers such as the MAX HD2 are suitable for larger organizations and head offices. This manual covers setting up Pepwave routers and provides an introduction to their features and usage. Tips Want to know more about Pepwave routers? Visit our YouTube Channel for a video introduction! https://youtu.be/13M-JHRAICA https://www.peplink.com Copyright @ 2020 Pepwave Glossary The following terms, acronyms, and abbreviations are frequently used in this manual: Term Definition 3G 3rd generation standards for wireless communications (e.g., HSDPA) 4G 4th generation standards for wireless communications (e.g., LTE) DHCP Dynamic Host Configuration Protocol DNS Domain Name System EVDO Evolution-Data Optimized FQDN Fully Qualified Domain Name HSDPAHigh-Speed Downlink Packet Access HTTP Hyper-Text Transfer Protocol ICMP Internet Control Message Protocol IP Internet Protocol LAN Local Area Network MAC Address Media Access Control Address MTU Maximum Transmission Unit MSS Maximum Segment Size NAT Networ…

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Users Manual

https://www.peplink.com Copyright @ 2020 Pepwave is that an IP address change during a session may be the result of an unauthorized intrusion attempt. Therefore, to prevent damages from the potential intrusion, the session is terminated upon the detection of an IP address change. Pepwave routers can be configured to distribute data traffic across multiple WAN connections. Also, the Internet IP depends on the WAN connections over which communication actually takes place. As a result, a LAN client computer behind the Pepwave router may communicate using multiple Internet IP addresses. For example, a LAN client computer behind a Pepwave router with three WAN connections may communicate on the Internet using three different IP addresses. With the persistence feature, rules can be configured to enable client computers to persistently utilize the same WAN connections for e-banking and other secure websites. As a result, a client computer will communicate using one IP address, eliminating the issues mentioned above. There are two persistent modes: By Source and By Destination. By Source: The same WAN connection will be used for traffic matching the rule and originating from the same machine, regardless of its destination. This option will provide the highest level of application compatibility. By Destination: The same WAN connection will be used for traffic matching the rule, originating from the same machine, and going to the same destination. This option can better distribute loads to WAN connections when there are only a few client machines. The default mode is By Source. When there are multiple client requests, they can be distributed (persistently) to WAN connections with a weight. If you choose Auto in Load Distribution, the weights will be automatically adjusted according to each WAN’s Downstream Bandwidth which is specified in the WAN settings page). If you choose Custom, you can customize the weight of each WAN manually by using the sliders. 15.2.3 Algorithm: Enforced This setting specifies the WAN connection usage to be applied on the specified IP protocol and port. This setting is applicable only when Algorithm is set to Enforced. https://www.peplink.com Copyright @ 2020 Pepwave Matching traffic will be routed through the specified WAN connection, regardless of the health check status of the WAN connection. Starting from Firmware 5.2, outbound traffic can be enforced to go through a specified SpeedFusion TM connection. 15.2.4 Algorithm: Priority This setting specifies the priority of the WAN connections used to route the specified network service. The highest priority WAN connection available will always be used for routing the specified type of traffic. A lower priority WAN connection will be used only when all higher priority connections have become unavailable. Starting from Firmware 5.2, outbound traffic can be prioritized to go through SpeedFusion TM connection(s). By default, VPN connections are not included in the priority list. Tip Configure multiple distribution rules to accommodate different kinds of services. 15.2.5 Algorithm: Overflow The traffic matching this rule will be routed through the healthy WAN connection that has the highest priority and is not in full load. When this connection gets saturated, new sessions will be routed to the next healthy WAN connection that is not in full load. https://www.peplink.com Copyright @ 2020 Pepwave Drag and drop to specify the order of WAN connections to be used for routing traffic. Only the highest priority healthy connection that is not in full load will be used. 15.2.6 Algorithm: Least Used The traffic matching this rule will be routed through the healthy WAN connection that is selected in Connection and has the most available download bandwidth. The available download bandwidth of a WAN connection is calculated from the total download bandwidth specified on the WAN settings page and the current download usage. The available bandwidth and WAN selection is determined every time an IP session is made. 15.2.7 Algorithm: Lowest Latency The traffic matching this rule will be routed through the healthy WAN connection that is selected in Connection and has the lowest latency. Latency checking packets are issued periodically to a nearby router of each WAN connection to determine its latency value. The latency of a WAN is the packet round trip time of the WAN connection. Additional network usage may be incurred as a result. Tip The roundtrip time of a 6M down/640k uplink can be higher than that of a 2M down/2M up link because the overall round trip time is lengthened by its slower upload bandwidth, despite its higher downlink speed. Therefore, this algorithm is good for two scenarios: All WAN connections are symmetric; or https://www.peplink.com Copyright @ 2020 Pepwave A latency sensitive application must be routed through the lowest latency WAN, regardless of the WAN’s available bandwidth. 15.2.8 Expert Mode Expert Mode is available on some Pepwave routers for use by advanced users. To enable the feature, click on the help icon and click turn on Expert Mode. In Expert Mode, a new special rule, SpeedFusion TM Routes, is displayed in the Custom Rules table. This rule represents all SpeedFusion TM routes learned from remote VPN peers. By default, this bar is on the top of all custom rules. This position means that traffic for remote VPN subnets will be routed to the corresponding VPN peer. You can create custom Priority or Enforced rules and move them above the bar to override the SpeedFusion TM routes. Upon disabling Expert Mode, all rules above the bar will be removed. 16 Inbound Access 16.1 Port Forwarding Service Pepwave routers can act as a firewall that blocks, by default, all inbound access from the Internet. By using port forwarding, Internet users can access servers behind the Pepwave router. Inbound port forwarding rules can be defined at Advanced>Port Forwarding. To define a new service, click Add Service. https://www.peplink.…

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Cover Letter(s)

Pismo Labs Technology Limited A8, 5/F, HK Spinners Industrial Building, Phase 6, 481 Castle Peak Road, Cheung Sha Wan, Hong Kong Tel: +852 2990 7634 ; Fax: +852 3007 0588 Date: July 22, 2020 Federal Communicati ons Commission Office of Engineering and Technology Laboratory Division 7435 Oakland Mills Rd Columbia MD 21046-1609 Subject: Request for Confidentiality FCC ID: U8G-P1930LITER4 To Whom It May Concern, Pursuant to the provisions of Sections 0.457 and 0.459 of Commission’s rules (47CFR§§0.457, 0.459), we are requesting the Commission to withhold the following attachment(s) as confidential document from public disclosure indefinitely. Schematic Diagram Block Diagram Operational Description It is our understanding that all measurement test reports, FCC ID label format and correspondent during certification review process cannot be granted as confidential documents and those information will be available for public review once the grant of equipment authorization is issued. Best Regards, ______________________ Antony Chong [email protected]

External Photos

Reference No.: 200611C02 Page 1 / 7 CONSTRUCTION PHOTOS OF EUT Reference No.: 200611C02 Page 2 / 7 Reference No.: 200611C02 Page 3 / 7 Reference No.: 200611C02 Page 4 / 7 Reference No.: 200611C02 Page 5 / 7 Reference No.: 200611C02 Page 6 / 7 Reference No.: 200611C02 Page 7 / 7

ID Label/Location Info

MAX BRl Mini Core Rear side database: “Country of Origin” MAX-BR1-MINI-LTE-US-T-M Rev3 database:”CM code:” database:”Hardware Version” Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910CXNF Contains IC: 5131A-LE910CXNF CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910CXNF Contains IC: 5131A-LE910CXNF CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M Serial No.:2932-32CA-6D27 LAN MAC:00-1A-DD-EF-1C-40 Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910CXNF Contains IC: 5131A-LE910CXNF CAN ICES-3(A)/NMB-3(A) Made in Taiwan M? HW? 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. Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M 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. Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M Serial No.:2932-32CA-6D27 LAN MAC:00-1A-DD-EF-1C-40 Made in Taiwan M? HW? 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. Input : 12V - 28V DC, 12W max (Terminal Block) database: “Country of Origin” MAX-BR1-MINI-LTE-US-T-M Rev3 database:”CM code:” database:”Hardware Version” Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: N7NMC7455 Contains IC: 2417C-MC7455 CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: N7NMC7455 Contains IC: 2417C-MC7455 CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M Serial No.:2932-32CA-6D27 LAN MAC:00-1A-DD-EF-1C-40 Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: N7NMC7455 Contains IC: 2417C-MC7455 CAN ICES-3(A)/NMB-3(A) Made in Taiwan M? HW? 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. Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M 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. Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M Serial No.:2932-32CA-6D27 LAN MAC:00-1A-DD-EF-1C-40 Made in Taiwan M? HW? 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. Input : 12V - 28V DC, 12W max (Terminal Block) database: “Country of Origin” MAX-BR1-MINI-LTE-US-T-M Rev3 database:”CM code:” database:”Hardware Version” Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910NAV2 Contains IC: 5131A-LE910NAV2 CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910NAV2 Contains IC: 5131A-LE910NAV2 CAN ICES-3(A)/NMB-3(A) Input : 12V - 28V DC, 12W max (Terminal Block) Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M Serial No.:2932-32CA-6D27 LAN MAC:00-1A-DD-EF-1C-40 Input : 12V - 28V DC, 12W max (Passive PoE, WAN Port) Input : 12V - 28V DC, 12W max (DC Jack) FCC ID: U8G-P1930LITER4 Contains FCC ID: RI7LE910NAV2 Contains IC: 5131A-LE910NAV2 CAN ICES-3(A)/NMB-3(A) Made in Taiwan M?HW? 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. Default Access https://192.168.50.1 Username: admin Password: admin Model: MAX BR1 Mini Core Product Code:MAX-BR1-MINI-LTE-US-T-M 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 interfer…

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Internal Photos

Reference No.: 200611C02 Page 1 / 9 CONSTRUCTION PHOTOS OF EUT Reference No.: 200611C02 Page 2 / 9 Reference No.: 200611C02 Page 3 / 9 Reference No.: 200611C02 Page 4 / 9 Reference No.: 200611C02 Page 5 / 9 Reference No.: 200611C02 Page 6 / 9 Reference No.: 200611C02 Page 7 / 9 Reference No.: 200611C02 Page 8 / 9 Reference No.: 200611C02 Page 9 / 9

Test Report

Report No.: FC200611C02 R1 Page No. 1 / 31 Report Format Version: 6.1.2 Cancels and replaces the report No.: FC200611C02 dated Jun. 22, 2020 FCC Certification Test Report Report No.: FC200611C02 R1 Test Model: MAX BR1 Mini Core Series Model: MAX BR1 Mini Core LTE, MAX BR1 Mini Core LTEA, Pepwave MAX BR1 Mini Core, Pepwave MAX BR1 Mini Core LTE, Pepwave MAX BR1 Mini Core LTEA, Peplink MAX BR1 Mini Core, Peplink MAX BR1 Mini Core LTE, Peplink MAX BR1 Mini Core LTEA, MAX-BR1-MINI-LTE-US-T-M, MAX-BR1-MINI-LTEA-W-T-M, Pismo930 Lite (refer to item 3.1 for more details) FCC ID: U8G-P1930LITER4 Received Date: Jun. 11, 2020 Test Date: Jun. 17 ~ Jun. 18, 2020 Issued Date: Jul. 17, 2020 Applicant: PISMO LABS TECHNOLOGY LIMITED Address: A8, 5/F, HK Spinners Industrial Building, Phase 6, 481 Castle Peak Road, Cheung Sha Wan, Hong Kong Issued By: Bureau Veritas Consumer Products Services (H.K.) Ltd., Taoyuan Branch Lin Kou Laboratories Lab Address: No. 47-2, 14th Ling, Chia Pau Vil., Lin Kou Dist., New Taipei City, Taiwan Test Location: No. 19, Hwa Ya 2nd Rd., Wen Hwa Vil., Kwei Shan Dist., Taoyuan City 33383, TAIWAN FCC Registration / Designation Number: 328930 / TW1050 This report is for your exclusive use. Any copying or replication of this report to or for any other person or entity, or use of our name or trademark, is permitted only with our prior written permission. This report sets forth our findings solely with respect to the test samples identified herein. The results set forth in this report are not indicative or representative of the quality or characteristics of the lot from which a test sample was taken or any similar or identical product unless specifically and expressly noted. Our report includes all of the tests requested by you and the results thereof based upon the information that you provided to us. You have 60 days from date of issuance of this report to notify us of any material error or omission caused by our negligence, provided, however, that such notice shall be in writing and shall specifically address the issue you wish to raise. A failure to raise such issue within the prescribed time shall constitute your unqualified acceptance of the completeness of this report, the tests conducted and the correctness of the report contents. Unless specific mention, the uncertainty of measurement has been explicitly taken into account to declare the compliance or non-compliance to the specification. Report No.: FC200611C02 R1 Page No. 2 / 31 Report Format Version: 6.1.2 Cancels and replaces the report No.: FC200611C02 dated Jun. 22, 2020 Table of Contents Release Control Record .................................................................................................................................. 3 1 Certificate of Conformity ......................................................................................................................... 4 2 Summary of Test Results......................................................................................................................... 5 2.1 Measurement Uncertainty ................................................................................................................... 5 2.2 Modification Record ............................................................................................................................ 5 3 General Information ................................................................................................................................. 6 3.1 Description of EUT .............................................................................................................................. 6 3.2 Features of EUT .................................................................................................................................. 6 3.3 Operating Modes of EUT and Determination of Worst Case Operating Mode ................................... 7 3.4 Test Program Used and Operation Descriptions ................................................................................. 8 3.5 Primary Clock Frequencies of Internal Source ................................................................................... 8 4 Configuration and Connections with EUT ............................................................................................. 9 4.1 Connection Diagram of EUT and Peripheral Devices ......................................................................... 9 4.2 Configuration of Peripheral Devices and Cable Connections ............................................................ 11 5 Conducted Emissions at Mains Ports .................................................................................................. 12 5.1 Limits ................................................................................................................................................. 12 5.2 Test Instruments ................................................................................................................................ 12 5.3 Test Arrangement .............................................................................................................................. 13 5.4 Test Results ....................................................................................................................................... 14 6 Radiated Emissions up to 1 GHz .......................................................................................................... 20 6.1 Limits ................................................................................................................................................. 20 6.2 Test Instruments ................................................................................................................................ 21 6.3 Test Arrangement .............................................................................................................................. 22 6.4 Test Results ..............................…

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Test Setup Photos

FCC ID: U8G-P1930LITER4 1 Pictures of Test Arrangements 1.1 Conducted Emissions at Mains Ports Mode A FCC ID: U8G-P1930LITER4 Mode B FCC ID: U8G-P1930LITER4 Mode C FCC ID: U8G-P1930LITER4 1.2 Radiated Emissions up to 1 GHz FCC ID: U8G-P1930LITER4 1.3 Radiated Emissions above 1 GHz

Contact Information

Applicant

Antony Chong(Director of Hardware Engineering)
[email protected]85229907634Fax: 85230070588

Test Firm

Bureau Veritas CPS (H.K.) Ltd., Taoyuan BranchRichard Chen
[email protected]+886-3-2600884Fax: +886-3-2115834

Technical Specifications

#Rule PartsFrequency RangePower Output
115B--
Confidentiality
Long Term
Grant Notes
This device is approved with a certified licensed transmitter (FCC ID: N7NMC7455, FCC ID: RI7LE910CXNF, FCC ID: RI7LE910NAV2).

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