
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Monster 3700 RF/IP Card User Manual FCC Warning Changes or modifications not expressly approved by the party responsible for compliance could void the user's authority to operate this equipment. FCC Radiation Exposure Statement To comply with FCC RF exposure compliance requirements, the antenna used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and must not be co-located or operating in conjunction with any other antenna or transmitter. FCC Modular Approval Statement This equipment is sold only to OEM integrators and must be installed by the OEM or OEM integrators under the following conditions: 1)The antennas used for this transmitter must be installed to provide a separation distance of at least 20 cm from all persons and 2)The transmitter must not be co-located with any other antenna or transmitter. Introduction The Monster 3700 RF/IP Card is an accessory that allows remote control and monitoring of the Monster HTUPS 3700 PowerCenter from any Internet web browser anywhere in the world. The Monster 3700 RF/IP Card utilizes Internet Protocol to connect to a central Monster server that provides the monitoring and control capability. Features The Monster 3700 RF/IP Card adds the following features to the Monster HTUPS 3700: •Remote monitoring of AC line supply voltage •Remote monitoring of HTUPS 3700 current and power usage •Remote monitoring of HTUPS 3700 battery voltage •Remote control of HTUPS 3700 outlets (on / off) •7-day scheduling of HTUPS 3700 outlet states •Internet Protect capability •Alerts via Email or SMS on conditions related to power failure or battery level. This document describes how to install the Monster 3700 RF/IP Card. Requirements Broadband connection In order to connect the Monster 3700 RF/IP Card to the Internet, a broadband Internet connection will be required in the same facility as the HTUPS 3700 to be connected. Contact your local broadband connectivity provider to arrange for a connection to be installed if you do not have I an Internet connection. IP infrastructure The Monster 3700 RF/IP Card requires the following facility IP (Internet Protocol) infrastructure: •Broadband router or modem/router with available Ethernet connection (10 Megabits/second or better) on RJ-45 jack. Any home broadband router available in most electronic stores or provided by your broadband provider will work. Some enterprise class routers may require further configuration, refer to Appendix A for information in such situations. •DHCP (Dynamic Host Configuration Protocol) enabled in the router with IP Gateway and DNS (Domain Name System) server information must be configured. Any home broadband router will already have this service available. Some enterprise level routers will require configuration to enable this service. Tools You will need a jeweller's screwdriver (#0 size) to remove and attach the HTUPS 3700 SNMP slot cover plate screws (not included). Connectivity Options The Monster 3700 RF/IP Card provides two methods to connect the HTUPS 3700 to the broadband router: 1.Ethernet connection using CAT-5 Ethernet cable directly to the broadband router (or facility Ethernet infrastructure). This option requires bringing Ethernet cable directly to the location of the HTUPS 3700. 2.Wireless connection using 900MHz RF (Radio Frequency) wireless protocol to Monster Ethernet Gateway. This option is available for facilities that prefer wireless connection, or cannot be wired for Ethernet. The Monster wireless protocol is capable of covering a 5,000 square foot wood frame facility with a single Ethernet Gateway. More Ethernet Gateways may be required for larger facilities. Select your connectivity option and make sure to have the materials available (Ethernet cable and jacks, or Ethernet Gateway) prior to installation. Packing List Locate the following materials in the package: •Monster 3700 RF/IP Card. •Antenna and coax cable assembly. Antenna assembly only required if the HTUPS 3700 installation uses wireless connection (with Monster Ethernet Gateway). Equipment Description On the face plate of the Monster 3700 RF/IP locate the following features. •RJ-45 Ethernet jack ◦Orange Ethernet link light ◦Green Ethernet activity light •SMA coaxial antenna jack •Green Connection LED •Mounting screw holes Serial Code Locate the sticker on the Monster 3700 RF/IP Card containing the serial code prior to installation. The serial code will look like the following: MPC12345/ABCD Write down the serial code, you will need it later when configuring the HTUPS 3700 on the Monster website. Installation Install the Monster 3700 RF/IP Card into the Monster HTUPS 3700 PowerCenter prior to placing the HTUPS 3700 into a rack or closet. Card Installation Use these steps to install the Monster 3700 RF/IP Card. •Disconnect the HTUPS 3700 PowerCenter from all power. •Ground yourself by touching the metal case of the HTUPS 3700. •Locate the SNMP slot on the back of the HTUPS 3700. This SNMP slot is located on the left side when facing the backplate of the HTUPS 3700. The slot will be covered with a plastic cover plate. •Using a #0 Philips head jeweller's screwdriver, remove the 2 screws holding the cover plate over the SNMP slot. Keep the screws for later use. •Remove the cover plate. •Inside the slot are two rails: one at the top and one at the bottom, aligned with each other and positioned towards the right side of the slot. Locate these rails by touch—they are used to position and guide the Monster 3700 RF/IP Card. •Insert the Monster 3700 RF/IP Card into the slot, making sure to slide the card along the rails in the slot. The card should slide into the card connector at the back of the slot. Press gently so that the face plate of the card touches the rim of the slot. •If the card does not seat with gentle pressure, it may not be aligned properly. Remove the card from the slot and try again. •Once the card is seated properly, the holes in the face plate s…
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3700-SNMP Block Diagram CC1110 Soc Balun 26Mhz Xtal 915Mhz, Q=1 Transformer RJ45 PIC18 MCU 25Mhz Xtal LDO Module Connector LED RS232
Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 34 of 35 FCC Part 15.247 Test Report 14 Exhibit C- EUT Photos 14.1 EUT – Top View 14.2 EUT – Bottom View Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 35 of 35 FCC Part 15.247 Test Report 14.3 EUT on the Test Board View 14.4 EUT Antenna View ***** END OF REPORT *****
Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 30 of 35 FCC Part 15.247 Test Report 12 Exhibit A – FCC Equipment Labeling Requirements 12.1 FCC ID Label Requirements As per FCC §2.925, (a) Each equipment covered in an application for equipment authorization shall bear a nameplate or label listing the following: (1) FCC Identifier consisting of the two elements in the exact order specified in §2.926. The FCC Identifier shall be preceded by the term FCC ID in capital letters on a single line, and shall be of a type size large enough to be legible without the aid of magnification. Example: FCC ID: XXX123. Where: XXX—Grantee Code, 123—Equipment Product Code As per FCC §15.19, (a) In addition to the requirements in part 2 of this chapter, a device subject to certification, or verification shall be labeled as follows: (3) All other devices shall bear the following statement in a conspicuous location on the device: 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. (4) Where a device is constructed in two or more sections connected by wires and marketed together, the statement specified above is required to be affixed only to the main control unit. If the EUT is integrated within another device then a label affixed to the host shall also state, “Contains FCC ID: XXXXXX” (5) When the device is so small or for such use that it is not practicable to place the statement specified under paragraph (a) of this section on it, the information required by this paragraph shall be placed in a prominent location in the instruction manual or pamphlet supplied to the user or, alternatively, shall be placed on the container in which the device is marketed. However, the FCC identifier or the unique identifier, as appropriate, must be displayed on the device. 12.2 FCC ID Label Contents Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 31 of 35 FCC Part 15.247 Test Report 12.3 FCC ID Label Location Label here
Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 34 of 35 FCC Part 15.247 Test Report 14 Exhibit C- EUT Photos 14.1 EUT – Top View 14.2 EUT – Bottom View
FCC ID: Y4B-3700-SNMP FCC 15.247 Certification Information Operational Description 1. Circuit Principle: The 3700-SNMP product incorporates a Texas Instruments CC1110 system-on-chip radio transceiver. This implements a direct down conversion radio transceiver operating in the 900MHz ISM band. The maximum transmitter output power of this device is 10dBm. The 3700-SNMP device utilizes a wideband digital modulation physical layer with the addition of a carrier sense multiple access (CSMA) medium access control (MAC) layer on each frequency channel. The data transmission rate is set to 100kpbs maximum. Modulation 2-FSK, 240Khz frequency deviation Radio Type Low-IF Super heterodyne Data rate 100kbps Radio IF Frequency 270.13Khz (fixed) Signal RF Bandwidth (6db) 540Khz Maximum transmit power 10dBm RF transmit frequencies 908.40 + 1.123*n MHz (where 0<=n<=10) RF channel spacing 1123.54Khz Maximum packet size 1392 bits MAC protocol Carrier sense multiple access (CSMA) PHY protocol Digital modulation spread spectrum (>500Khz) Table 1 Transmitter Details of Operation Table 2 Radio Frequency Channels 2. Radio Signal Flow and Baseband Operations: The Radio is based on the Texas Instrument CC1110 system-on-chip (SoC) module. The CC1110 features a low-IF receiver. The received RF signal is amplified by the low noise amplifier (LNA) and down-converted in quadrature (I and Q) to the intermediate frequency (IF). At IF, the I/Q signals are digitized by the ADCs. Automatic gain control (AGC), fine channel filtering, demodulation, and bit/packet synchronization is performed digitally. Frequency channel Transmitter Base Channel frequency (MHz) Receiver Base Channel frequency (MHz) Frequency channel Transmitter Base Channel frequency (MHz) Receiver Base Channel frequency (MHz) 1908.40908.406914.02914.02 2909.52909.527915.14915.14 3910.65910.658916.26916.26 4911.77911.779917.39917.39 5912.89912.8910918.51918.51 11919.65919.65 The transmitter part of the CC1110 is based on direct synthesis of the RF frequency. The frequency synthesizer includes a complete on-chip LC VCO and a 90 degrees phase shifter for generating the I and Q signals to the down-conversion. 3. Antenna: The external antenna is attached via a reverse polarity SMA connector.
Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 29 of 35 FCC Part 15.247 Test Report 11 FCC §15.247(i) & §2.1091 - RF Exposure Information 11.1 Applicable Standard According to FCC §15.247(i) and §1.1307(b)(1), systems operating under the provisions of this section shall be operated in a manner that ensures that the public is not exposed to radio frequency energy level in excess of the Commission’s guidelines. According to §1.1310 and §2.1091 RF exposure is calculated. Limits for General Population/Uncontrolled Exposure 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 30 300-1500 / / f/1500 30 1500-100,000 / / 1.0 30 f = frequency in MHz * = Plane-wave equivalent power density 11.2 MPE Prediction Predication of MPE limit at a given distance, Equation from OET Bulletin 65, Edition 97-01 S = PG/4πR² Where: S = power density P = power input to antenna 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 Maximum peak output power at antenna input terminal (dBm):11.26 Maximum peak output power at antenna input terminal (mW): 13.365 Prediction distance (cm): 20 Prediction frequency (MHz): 919.65 Maximum Antenna Gain, typical (dBi): 5.0 Maximum Antenna Gain (numeric): 3.16 Power density of prediction frequency at 20.0 cm (mW/cm 2 ): 0.0084 MPE limit for uncontrolled exposure at prediction frequency (mW/cm 2 ): 0.6131 11.3 Test Result The power density level at 20 cm distance is 0.0084mW/cm 2 , which is below the uncontrolled exposure limit of 0.6131 mW/cm².
C 3700-SNMP Title Size Document Number Rev Date: Sheet of 1 3 B June 22, 2010 5 4 3 2 1 D C B A 1 2 3 4 5 A B C D Monster 3700 SNMP Module 2. CC1110 1. Title Sheet Schematic Pages Monster 3700 SNMP Module - Title Page 3. PIC18F67J60 ARRAYENT CONFIDENTIAL HOLE MTG MTG2.0MM HOLE MTG MTG2.0MM FIDUCIAL FIDUCIAL FIDUCIAL C 3700-SNMP Title Size Document Number Rev Date: Sheet of 2 3 B June 22, 2010 5 4 3 2 1 D C B A 1 2 3 4 5 A B C D 3.3V Power Regulator CC1110 Status LED Monster 3700 SNMP Module - CC1110 Programming Interface RP-SMA Connector User Pushbutton SNMP Edge Connector NOT INSTALLED ARRAYENT CONFIDENTIAL R3 1% 56.0K C8 220pF R2 47 Ohm R4 10K C3 0.1uF D1 LED C4 0.1uF C18 0.1uF C32 1uF + 1 2 C1 20V 10uF FB1 1000 OHM 1 + 2 + 3 + 4 + 5 + 6 + 7 + 8 + 9 + 10 + J4 7-146256-5 C19 1.8pF L5 5.6nH J7 RP-SMA C12 100pF 1 UBAL 2 GND 3 BAL1 6 NC 5 GND 4 BAL2 U5 0896BM15A C5 0.01uF C6 0.01uF C7 2.2pF C14 33pF C15 33pF CC1110Fx 2 DVDD 10 DVDD 28 DGUARD 29 DVDD 30 DCOUPL 19 AVDD 22 AVDD 25 AVDD 26 AVDD 14 P2_0 15 P2_1 16 P2_2 4 P1_0/LED 3 P1_1/LED 1 P1_2 36 P1_3 35 P1_4 34 P1_5 33 P1_6 32 P1_7 5 P0_0/ATEST 6 P0_1 7 P0_2 8 P0_3 9 P0_4 11 P0_5 12 P0_6 13 P0_7 31 NRESET 23 RF_P 24 RF_N 17 P2_3/XOSC32_O1 18 P2_4/XOSC32_O2 21 XOSC_O1 20 XOSC_O2 27 RBIAS 37 GND U1 CC1110Fx C9 0.1uF 1 2 Y1 26.000Mhz 1 2 SW1 TL1015 1 2 3 4 5 6 7 8 9 10 11 12 13 14 16 15 J1 2 1 3 D4 BAT54C 1 2 SW2 R1 47 Ohm R13 47 Ohm 2 C1+ 4 C1- 5 C2+ 6 C2- 11 T1IN 9 R1OUT 1 EN 12 FORCEON 16 FORCEOFF 3 V+ 7 V- 13 T1OUT 8 R1IN 10 INVALID 15 VCC 14 GND U14 SP3220 C27 0.1uF C29 0.1uF C30 0.1uF C36 0.1uF C37 0.1uF TP5 3 1 2 Q4 BSS84 3 2 1 Q1 BC847A-TP R49 0 OHM R16 1.5K R14 10K R19 10K 2 GND 3 VIN 1 VOUT U3 1734-33PXT VCC_3.3_CC1110 VCC_3.3_CC1110 VCC_3.3_CC1110 CC1110_STATUS_NLED0 VCC_3.3_CC1110 VCC_3.3 VCC_3.3_CC1110 CC1110_DC CC1110_NRESET CC1110_DD CC1110_NRESET CC1110_STATUS_NLED0 UART_RX UART_TX PIC_IRQ0 PIC_IRQ1 PIC_IRQ2 PIC_SCK PIC_CC1111_NCS PIC_MOSI PIC_MISO CC1110_DD CC1110_DC PIC_IRQ2 DC_IN DC_IN RS232_UART_RX RS232_UART_TX UART_RX UART_TX VCC_3.3 VCC_3.3 RS232_UART_RX RS232_UART_TX CRESTRON_DIS CRESTRON_DIS PIC_FLASH_NCS C 3700-SNMP Title Size Document Number Rev Date: Sheet of 3 3 B June 22, 2010 5 4 3 2 1 D C B A 1 2 3 4 5 A B C D ICD Interface Debug UART Interface Ethernet RJ45 SPI SRAM SPI Flash Status LED Monster 3700 SNMP Module - PIC18F67J60 PIC18 Ethernet Production Pogo Testpoints Production Pogo Testpoints ARRAYENT CONFIDENTIAL 1 RE1/P2C 2 RE0/P2D 3 RB0/INT0/FLT0 4 RB1/INT1 5 RB2/INT2 6 RB3/INT3 7 *MCLR 8 RG4/CCP5/P1D 9 VSS 10 VDDCORE/VCAP 11 RF7/*SS1 12 RF6/AN11 13 RF5/AN10/CVREF 14 RF4/AN9 15 RF3/AN8 16 RF2/AN7/C1OUT 17 RF1/AN6/C2OUT 18 ENVREG 19 AVDD 20 AVSS 21 RA3/AN3/VREF_ 22 RA2/AN2/VREF_ 23 RA1/LEDB/AN1 24 RA0/LEDA/AN0 25 VSS_1 26 VDD 27 RA5/AN4 28 RA4/T0CKI 29 RC1/T1OSI/ECCP2/P2A 30 RC0/T1OSO/T13CKI 31 RC6/TX1/CK1 32 RC7/RX1/DT1 33 RC2/ECCP1/P1A 34 RC3/SCK1/SCL1 35 RC4/SDI1/SDA1 36 RC5/SDO1 37 RB7/KBI3/PGD 38 VDD_1 39 OSC1/CLKI 40 OSC2/CLKO 41 VSS_2 42 RB6/KBI2/PGC 43 RB5/KBI1 44 RB4/KBI0 45 VSSRX 46 TPIN_ 47 TPIN__2 48 VDDRX 49 VDDTX 50 TPOUT_ 51 TPOUT__2 52 VSSTX 53 RBIAS 54 VDDPLL 55 VSSPLL 56 VSS_3 57 VDD_2 58 RD2/CCP4/P3D 59 RD1/ECCP3/P3A 60 RD0/P1B 61 RE5/P1C 62 RE4/P3B 63 RE3/P3C 64 RE2/P2B U2 PIC18F67J60 C2 0.1uF C10 0.1uF C20 0.1uF C21 0.1uF C23 1uF C24 0.1uF C25 0.1uF C22 0.1uF FB2 1000 OHM C26 0.1uF R5 2.26K TP10 R71 1% 49.9 OHM R8 1% 49.9 OHM R9 1% 49.9 OHM R10 1% 49.9 OHM FB3 60 OHM C31 0.1uF C34 0.1uF 6 7 8 2 3 1 4 9 10 12 11 5 J2 J1011 FB5 60 OHM R11 330 Ohm R12 330 Ohm C44 0.1uF 4 GND 8 VCC 5 SI 1 NCS 6 SCK 2 SO 7 NHOLD U9 N25S830HA C35 0.1uF C28 0.1uF R6 10K R15 1.5K R7 1M C16 33pF C17 33pF TP14 TP13 TP12 TP11 TP1 TP2 TP3 TP4 TP18 TP19 TP16 TP17 TP15 1 2 Y2 25.000Mhz RJ11 1 2 3 4 5 6 J3 TM3RA66 D7 LED R17 330 Ohm 4 GND 8 VCC 3 NWP 7 NHOLD 5 SI 1 NCS 6 SCK 2 SO U4 KH25LXXX5D VCORE VCC_3.3 AVCC_3.3 VCC_3.3 PIC_NRESET PIC_RB7 PIC_RB6 PIC_LED1 PIC_LED2 PIC_SCK PIC_MOSI PIC_MISO UART_TX UART_RX PIC_RAM_NCS PIC_FLASH_NCS PIC_CC1111_NCS PIC_TD+ PIC_TD- PIC_RD- PIC_RD+ VCC_3.3 PIC_TD- PIC_TD+ PIC_RD- PIC_RD+ PIC_TD+ PIC_TD- PIC_RD+ PIC_RD- PIC_TX_CT PIC_TX_CT PIC_LED1 PIC_LED2 VCC_3.3 PIC_SCK PIC_MISO PIC_MOSI PIC_RAM_NCS VCC_3.3 PIC_NRESET VCC_3.3 PIC_SCK PIC_MOSI PIC_MISO PIC_FLASH_NCS PIC_STATUS_LED1 VCC_3.3 PIC_NRESET PIC_IRQ0 PIC_IRQ1 PIC_IRQ2 CC1110_NRESET PIC_STATUS_LED1 PIC_RB6 PIC_RB7 VCC_3.3 UART_TX UART_RX VCC_3.3 PIC_NRESET CRESTRON_DIS
Note: This test report is prepared for the customer shown above and for the device described herein. It may not be duplicated or used in part without prior written consent from Bay Area Compliance Laboratories Corp. This report must not be used by the customer to claim product certification, approval, or endorsement by NVLAP*, NIST, or any agency of the Federal Government. * This report may contain data that are not covered by the NVLAP accreditation and are marked with an asterisk “*” (Rev.2) FCC PART 15.247 TEST AND MEASUREMENT REPORT For Arrayent, Inc. 2317 Broadway Street, Suite 140, Redwood City, CA 94063, USA FCC ID: Y4B-3700-SNMP Report Type: Original Report Product Type: 900 MHz Internet Control Card Test Engineer: Dennis Huang Report Number: R1011181-247 Report Date: 2011-02-11 Reviewed By: Victor Zhang RF Lead Engineer Prepared By: (84) Bay Area Compliance Laboratories Corp. 1274 Anvilwood Avenue, Sunnyvale, CA 94089, USA Tel: (408) 732-9162 Fax: (408) 732 9164 Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 2 of 35 FCC Part 15.247 Test Report TABLE OF CONTENTS 1 General Information 5 1.1 Product Description for Equipment under Test (EUT) ........................................................................................ 5 1.2 Mechanical Description of EUT........................................................................................................................... 5 1.3 Objective .............................................................................................................................................................. 5 1.4 Related Submittal(s)/Grant(s)............................................................................................................................... 5 1.5 Test Methodology ................................................................................................................................................ 5 1.6 Measurement Uncertainty .................................................................................................................................... 5 1.7 Test Facility.......................................................................................................................................................... 6 2 System Test Configuration 7 2.1 Justification .......................................................................................................................................................... 7 2.2 EUT Exercise Software ........................................................................................................................................ 7 2.3 Special Accessories .............................................................................................................................................. 7 2.4 Equipment Modifications ..................................................................................................................................... 7 2.5 Local Support Equipment..................................................................................................................................... 7 2.6 EUT Internal Configuration and Details .............................................................................................................. 7 2.7 Interface Ports and Cabling .................................................................................................................................. 7 3 Summary of Test Results 8 4 FCC §15.203 - Antenna Requirement 9 4.1 Applicable Standard ............................................................................................................................................. 9 4.2 Results .................................................................................................................................................................. 9 5 FCC §15.207 – AC Line Conducted Emissions 10 5.1 Applicable Standard ........................................................................................................................................... 10 5.2 Test Results ........................................................................................................................................................ 10 6 FCC §15.247(a)(2) – 6 dB Occupied Bandwidth 11 6.1 Applicable Standard ........................................................................................................................................... 11 6.2 Measurement Procedure ..................................................................................................................................... 11 6.3 Test Setup Block Diagram ................................................................................................................................. 11 6.4 Test Equipment List and Details ........................................................................................................................ 11 6.5 Test Environmental Conditions.......................................................................................................................... 11 6.6 Test Results ........................................................................................................................................................ 12 7 FCC §15.247(b) - Peak Output Power 14 7.1 Applicable Standard ........................................................................................................................................... 14 7.2 Measurement Procedure ..................................................................................................................................... 14 7.3 Test Setup Block Diagram ................................................................................................................................. 14 7.4 Test Equipment List and Details ........................................................................................................................ 14 7.5 Test…
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Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 32 of 35 FCC Part 15.247 Test Report 13 Exhibit B - Test Setup Photographs 13.1 Radiated Emission 30 MHz-1 GHz – Front View 13.2 Radiated Emission 30 MHz-1 GHz – Rear View Arrayent, Inc. FCC ID: Y4B-3700-SNMP Report Number: R1011181-247 Page 33 of 35 FCC Part 15.247 Test Report 13.3 Radiated Emission above 1 GHz – Front View 13.4 Radiated Emission above 1 GHz – Rear View
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 908.4 MHz - 919.65 MHz | 13.37 mW |

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Equipment Class
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Equipment Class
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