
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Digi International Inc. 11001 Bren Road East Minnetonka, MN 55343 877 912-3444 or 952 912-3444 http://www.digi.com DRAFT XBee®/XBee-PRO® 900 OEM RF Modules XBee®/XBee-PRO® 900 OEM RF Mod- ules RF Module Operation RF Module Configuration Appendices OEM RF Modules by Digi International 90000903-A 3/30/2008 XBee®/XBee‐PRO® 900 OEM RF Modules © 2008 Digi International, Inc. 2 © 2008 Digi International, Inc. All rights reserved No part of the contents of this manual may be transmitted or reproduced in any form or by any means without the written permission of Digi International, Inc. ZigBee ® is a registered trademark of the ZigBee Alliance. XBee®/XBee‐PRO® 900 is a registered trademark of Digi International, Inc. Technical Support: Phone: (801) 765‐9885 Live Chat: www.digi.com E‐support: http://www.digi.com/support/eservice/eservicelogin.jsp Contents XBee®/XBee‐PRO® 900 OEM RF Modules © 2008 Digi Internaitonal, Inc. 1 1. XBee®/XBee-PRO® 900 OEM RF Modules 4 1.1. Key Features 4 1.1.1. Worldwide Acceptance 4 1.2. Specifications 4 1.3. Mechanical Drawings 6 1.4. Mounting Considerations 6 1.5. Pin Signals 7 1.6. Electrical Characteristics 8 2. RF Module Operation 9 2.1. Serial Communications 9 2.1.1. UART Data Flow 9 2.1.2. Serial Buffers 9 2.1.3. Serial Flow Control 10 2.1.4. API Operation 11 2.2. Modes of Operation 12 2.2.1. Idle Mode 12 2.2.2. Transmit Mode 12 2.2.3. Receive Mode 12 2.2.4. Command Mode 13 3. XBee 900 DigiMesh 14 3.1. Digi Mesh Networking 14 3.2. Digi Mesh Feature Set 14 3.3. Data Transmission and Routing 14 3.3.1. Unicast Addressing 14 3.3.2. Random Exponential Back off 15 3.3.3. Broadcast Addressing 15 3.3.4. Routing 15 3.3.5. Route Discovery 15 4. XBee 900 17 5. XBee Command Reference Tables 18 6. Antennas: 900 MHz Antenna Listings 23 7. API Operation 26 7.0.1. API Frame Specifications 26 7.0.2. API Frames 27 Appendix A: Definitions 37 Appendix B: Agency Certifications 39 © 2008 Digi International, Inc. 4 1. XBee®/XBee‐PRO® 900 OEM RF Modules The XBee®/XBee-PRO® 900 OEM RF Modules were engineered to support the unique needs of low-cost, low-power wireless sensor networks. The modules require minimal power and provide reliable delivery of data between remote devices. The modules operate within the ISM 900 MHz frequency band. 1.1. Key Features 1.1.1. Worldwide Acceptance FCC Approval (USA) Refer to Appendix A for FCC Requirements. Systems that contain XBee®/XBee-PRO® 900 RF Modules inherit Digi Certifications. ISM (Industrial, Scientific & Medical) 900 MHz frequency band Manufactured under ISO 9001:2000 registered standards XBee®/XBee-PRO® 900 RF Modules are optimized for use in US, Canada, (contact Digi for complete list of agency approvals). 1.2. Specifications Table 1‐01. Specifications of the XBee®/XBee‐PRO® 900 OEM RF Module SpecificationXBee 900 Performance Indoor/Urban Rangeup to 1000ft (300m) High Performance, Low Cost • Indoor/Urban: up to up to 1000ft (300m) • Outdoor line-of-sight: up to 1.8 miles (3 km) • Transmit Power Output: 45 mW (+16.7 dBm) EIRP • Receiver Sensitivity: -100 dBm • RF Data Rate: 156.25 kbps Advanced Networking & Security • Retries and Acknowledgements • DSSS (Direct Sequence Spread Spectrum) • Each direct sequence channel has over 65,000 unique network addresses available • Point-to-point, point-to-multipoint and peer-to-peer topologies supported • Self-routing, self-healing and fault-tolerant mesh networking Low Power XBee 900 • TX Current: 210 mA (@3.3 V) • RX Current: 80mA (@3.3 V) • Power-down Current: 60 uA typical pin sleep • 80 uA typical cyclic sleep. Easy-to-Use • No configuration necessary for out-of bo RF communications • AT and API Command Modes for configuring module parameters • Small form factor • Extensive command set • Free X-CTU Software (Testing and configuration software) XBee®/XBee‐PRO® 900 OEM RF Modules © 2008 Digi International, Inc. 5 Outdoor RF line-of-sight Range up to 1.8 miles (3 km) w/2.1dB dipole antenna up to 6 miles (10 km) w/high gain antenna Transmit Power Output+17 dBm (50 mW) RF Data Rate156.25 kbps Serial Interface Data Rate (software selectable) 3.3V CMOS Serial UART (5V tolerant inputs) Receiver Sensitivity-100dBm Power Requirements Supply Voltage3.0 to 3.6 VDC Operating Current 210mA, (180 mA typical) Operating Current (Receive))80mA Idle Current (Receiver off) Power-down Current General Operating Frequency Band902-928 MHz (ISM) Dimensions0.962 in x 1.312 in (2.443 cm x 3.332 cm) Operating Temperature-40 to 85 ?C (Industrial), 0 to 95% non-condensing Connector Options 1/4 wave wire antenna, RPSMA RF connector, U.Fl RF connector Networking & Security Supported Network TopologiesMesh, point-to-point, point-to-multipoint, peer-to-peer Number of Channels (software selectable) 8 hopping patterns on 12 channels or single channel Addressing OptionsPAN ID, Channel, 64-bit addresses Agency Approvals United States (FCC Part 15.247)FCC ID: MCQ-XBEE09P Industry Canada (IC)IC: 1846A-XBEE09P Europe (CE) N/A Table 1‐01. Specifications of the XBee®/XBee‐PRO® 900 OEM RF Module SpecificationXBee 900 XBee®/XBee‐PRO® 900 OEM RF Modules © 2008 Digi International, Inc. 6 1.3. Mechanical Drawings Figure 1‐01. Mechanical drawings of the XBee®/XBee‐PRO® 900 OEM RF Modules (antenna options not shown) . 1.4. Mounting Considerations The XBee®/XBee-PRO® 900 RF Module (through-hole) was designed to mount into a receptacle (socket) and therefore does not require any soldering when mounting it to a board. The Development Kits contain RS-232 and USB interface boards which use two 20-pin receptacles to receive modules. Figure 1‐02. XBee Series 2 PRO Module Mounting to an RS‐232 Interface Board. The receptacles used on Digi development boards are manufactured by Century Interconnect. Several other manufacturers provide comparable mounting solutions; however, Digi currently uses the following receptacles: • Through-hole single-row receptacles - Samtec P/N: MMS-110-01-L-SV (or equivalent) • Surface-mount double-row receptacles - Century Int…
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February 7, 2008 Ultratech Engineering Labs Inc. 3000 Bristol Circle Oakville, ON Canada L6H 6G4 Subject: Application for Equipment Certification under FCC Part 15, Subpart C, Section 15.247 - Digital Modulation Systems (DTS) Operating in 902–928 MHz Band. Applicant: Digi International Inc Product: XBee-PRO 900 Model No.: XBEE09P FCC ID: MCQ-XBEE09P Dear Sir/Madam As appointed agent for Digi International Inc we submit the application for certification of the above product. Please review all files uploaded to your electronic filing site NOTE: This application is subject to modular approval; see Applicant’s cover letter requesting for modular approval. If you have any queries, please do not hesitate to contact us. Yours truly, Dan Huynh, B. Sc, Authorized Agent UltraTech Group of Labs Ultratech’s Accreditations: 0685 31040/SIT C-1376 46390-2049 200093-0 SL2-IN-E-1119R 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com Email: [email protected]
FCC Part 15, Subpart C, Section 15.247 – DTS Page 54 XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P ULTRATECH GROUP OF LABS File #: MXS-068F15C247 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 February 7, 2008 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) 6.11. RF EXPOSURE REQUIRMENTS [§§ 15.247(i), 1.1310 & 2.1091] The criteria listed in the following table shall be used to evaluate the environmental impact of human exposure to radio-frequency (RF) radiation. FCC 47 CFR § 1.1310: 6.11.1. Method of Measurements Refer to Sections 1.1310, 2.1091 In order to demonstrate compliance with MPE requirements (see Section 2.1091), the following information is typically needed: (1) Calculation that estimates the minimum separation distance (20 cm or more) between an antenna and persons required to satisfy power density limits defined for free space. (2) Antenna installation and device operating instructions for installers (professional/unskilled users), and the parties responsible for ensuring compliance with the RF exposure requirement (3) Any caution statements and/or warning labels that are necessary in order to comply with the exposure limits (4) Any other RF exposure related issues that may affect MPE compliance FCC Part 15, Subpart C, Section 15.247 – DTS Page 55 XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P ULTRATECH GROUP OF LABS File #: MXS-068F15C247 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 February 7, 2008 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) Calculation Method of RF Safety Distance : 22 44r EIRP r GP S ⋅⋅ = ⋅⋅ ⋅ = ππ Where: P: power input to the antenna in mW EIRP: Equivalent (effective) isotropic radiated power S: power density mW/cm 2 G: numeric gain of antenna relative to isotropic radiator r: distance to centre of radiation in cm 6.11.2. RF Evaluation Evaluation of RF Exposure Compliance Requirements RF Exposure Requirements Compliance with FCC Rules Minimum calculated separation distance between antenna and persons required: *10.1 cm Manufacturer’ instruction for separation distance between antenna and persons required: 20 cm. Antenna installation and device operating instructions for installers (professional/unskilled users), and the parties responsible for ensuring compliance with the RF exposure requirement Antenna installation and device operating instructions shall be provided to installers to maintain and ensure compliance with RF exposure requirements. Caution statements and/or warning labels that are necessary in order to comply with the exposure limits Refer to User’s Manual for RF Exposure Information. Any other RF exposure related issues that may affect MPE compliance None. *The minimum separation distance between the antenna and bodies of users are calculated using the following formula: RF EXPOSURE DISTANCE LIMITS S EIRP S GP r ⋅⋅ = ⋅⋅ ⋅ = ππ44 S = 904/1500 mW/cm 2 = 0.6027 mW/cm 2 EIRP = 28.92 dBm = 10 28.926/10 mW = 780 mW (Worst Case) (Minimum Safe Distance, r) = cm S EIRP 1.10 )6027.0(4 780 4 ≈ ⋅⋅ = ⋅⋅ ππ
900 MHz Antenna Listings Omni-directional antennas Part Number Type Connector Gain Application A09-F0 Station RPN 0 dBi Fixed A09-F1 Station RPN 1.0 dBi Fixed A09-F2 Station RPN 2.1 dBi Fixed A09-F3 Station RPN 3.1 dBi Fixed A09-F4 Station RPN 4.1 dBi Fixed A09-F5 Station RPN 5.1 dBi Fixed A09-F6 Station RPN 6.1 dBi Fixed A09-F7 Station RPN 7.1 dBi Fixed A09-F8 Station RPN 8.1 dBi Fixed A09-F9 Base Station RPSMAF9.2dBi Fixed A09-W7 Station RPN 7.1 dBi Fixed A09-F0 Station RPSMA 0 dBi Fixed A09-F1 Station RPSMA 1.0 dBi Fixed A09-F2 Station RPSMA 2.1 dBi Fixed A09-F3 Station RPSMA 3.1 dBi Fixed A09-F4 Station RPSMA 4.1 dBi Fixed A09-F5 Station RPSMA 5.1 dBi Fixed A09-F6 Station RPSMA 6.1 dBi Fixed A09-F7 Station RPSMA 7.1 dBi Fixed A09-F8 Station RPSMA 8.1 dBi Fixed A09-M7 Base Station RPSMAF7.2dBi Fixed A09-W7SM Station RPSMA 7.1 dBi Fixed A09-F0TM Station RPTNC 0 dBi Fixed A09-F1TM Station RPTNC 1.0 dBi Fixed A09-F2TM Station RPTNC 2.1 dBi Fixed A09-F3TM Station RPTNC 3.1 dBi Fixed A09-F4TM Station RPTNC 4.1 dBi Fixed A09-F5TM Station RPTNC 5.1 dBi Fixed A09-F6TM Station RPTNC 6.1 dBi Fixed A09-F7TM Station RPTNC 7.1 dBi Fixed A09-F8TM Station RPTNC 8.1 dBi Fixed A09-W7TM Station RPTNC 7.1 dBi Fixed A09-HSM-7 wave RPSMA 3.0 dBi Fixed / Mobile A09-HASM-675 wave RPSMA 2.1 dBi Fixed / Mobile A09-HABMM-P6I wave w/ 6” MMCX 2.1 dBi Fixed / Mobile A09-HABMM-6-P6I wave w/ 6” MMCX 2.1 dBi Fixed / Mobile A09-HBMM-P6I wave w/ 6” MMCX 2.1 dBi Fixed / Mobile A09-HRSM wave RPSMA 2.1 dBi Fixed A09-HASM-7 wave RPSMA 2.1 dBi Fixed A09-HG half-wave RPSMA 2.1 dBi Fixed A09-HATM wave RPTNC 2.1 dBi Fixed A09-H Half-wave dipoleRPSMA 2.1 dBi Fixed A09-HBMMP6I 1/2 wave antenn aMMCX 2.1dBi Mobile A09-QBMMP6I 1/4 wave antenn aMMCX1.9 dBi Mobile A09-QI 1/4 wave integra tIntegrated1.9 dBiMobile 29000187 HelicalIntegrated-2.0 dBiFixed/Mobile A09-QW wire Permanent 1.9 dBi Fixed / Mobile A09-QRAMM wave wire MMCX 2.1 dBi Fixed / Mobile A09-QSM-3 straight RPSMA 1.9 dBi Fixed / Mobile A09-QSM-3H quarter-wave RPSMA 1.9 dBi Fixed / Mobile A09-QBMM-P6I 6” pigtail MMCX 1.9 dBi Fixed / Mobile A09-QHRN Right Angle Permanent -1 dBi Fixed / Mobile A09-QHSN Right Angle Permanent -1 dBi Fixed / Mobile A09-QHSM-2 2” Straight RPSMA 1.9 dBi Fixed / Mobile A09-QHRSM-2 2" Right angle RPSMA 1.9 dBi Fixed / Mobile A09-QHRSM-170 1.7" Right angle RPSMA 1.9 dBi Fixed / Mobile A09-QRSM-380 3.8" Right angle RPSMA 1.9 dBi Fixed / Mobile A09-QAPM-520 Screw mount Permanent 1.9 dBi Fixed / Mobile A09-QSPM-3 screw mount Permanent 1.9 dBi Fixed / Mobile A09-QAPM-3 screw mount Permanent 1.9 dBi Fixed / Mobile A09-QAPM-3H screw mount Permanent 1.9 dBi Fixed / Mobile A09-DPSM-P12F permanent RPSMA 3.0 dBi Fixed A09-D3NF-P12F magnetic mountRPN 3.0 dBi Fixed A09-D3SM-P12F w/ 12ft pigtail RPSMA 3.0 dBi Fixed A09-D3PNF permanent RPN 3.0 dBi Fixed A09-D3TM-P12F w/ 12ft pigtail RPTNC 3.0 dBi Fixed A09-D3PTM permanent RPTNC 3.0 dBi Fixed A09-M0SM Mag Mount RPSMA 0 dBi Fixed A09-M2SM Mag Mount RPSMA 2.1 dBi Fixed A09-M3SM Mag Mount RPSMA 3.1 dBi Fixed A09-M5SM Mag Mount RPSMA 5.1 dBi Fixed A09-M7SM Mag Mount RPSMA 7.1 dBi Fixed A09-M8SM Mag Mount RPSMA 8.1 dBi Fixed A09-M0TM Mag Mount RPTNC 0 dBi Fixed A09-M2TM Mag Mount RPTNC 2.1 dBi Fixed A09-M3TM Mag Mount RPTNC 3.1 dBi Fixed A09-M5TM Mag Mount RPTNC 5.1 dBi Fixed A09-M7TM Mag Mount RPTNC 7.1 dBi Fixed A09-M8TM Mag Mount RPTNC 8.1 dBi Fixed Table Yagi antennas Part Number Type Connector Gain Application A09-Y6 2 Element Yagi RPN 6.1 dBi Fixed / Mobile A09-Y7 3 Element Yagi RPN 7.1 dBi Fixed / Mobile A09-Y8 4 Element Yagi RPN 8.1 dBi Fixed / Mobile A09-Y9 4 Element Yagi RPN 9.1 dBi Fixed / Mobile A09-Y10 5 Element Yagi RPN 10.1 dBi Fixed / Mobile A09-Y11 6 Element Yagi RPN 11.1 dBi Fixed / Mobile A09-Y12 7 Element Yagi RPN 12.1 dBi Fixed / Mobile A09-Y13 9 Element Yagi RPN 13.1 dBi Fixed / Mobile A09-Y14 10 Element Yagi RPN 14.1 dBi Fixed / Mobile A09-Y14 12 Element Yagi RPN 14.1 dBi Fixed / Mobile A09-Y15 13 Element Yagi RPN 15.1 dBi Fixed / Mobile A09-Y15 15 Element Yagi RPN 15.1 dBi Fixed / Mobile A09-Y6TM 2 Element Yagi RPTNC 6.1 dBi Fixed / Mobile A09-Y7TM 3 Element Yagi RPTNC 7.1 dBi Fixed / Mobile A09-Y8TM 4 Element Yagi RPTNC 8.1 dBi Fixed / Mobile A09-Y9TM 4 Element Yagi RPTNC 9.1 dBi Fixed / Mobile A09-Y10TM 5 Element Yagi RPTNC 10.1 dBi Fixed / Mobile A09-Y11TM 6 Element Yagi RPTNC 11.1 dBi Fixed / Mobile A09-Y12TM 7 Element Yagi RPTNC 12.1 dBi Fixed / Mobile A09-Y13TM 9 Element Yagi RPTNC 13.1 dBi Fixed / Mobile A09-Y14TM 10 Element Yagi RPTNC 14.1 dBi Fixed / Mobile A09-Y14TM 12 Element Yagi RPTNC 14.1 dBi Fixed / Mobile A09-Y15TM 13 Element Yagi RPTNC 15.1 dBi Fixed / Mobile A09-Y15TM 15 Element Yagi RPTNC 15.1 dBi Fixed / Mobile
XBee-PRO 900 Model No.: XBEE09P FCC ID: MCQ-XBEE09P Applicant: Digi International Inc. 11001 Bren Road East Minnetonka, MN 55343 USA In Accordance With Federal Communications Commission (FCC) Part 15, Subpart C, Section 15.247 Digital Modulation Systems (DTS) Operating in 902–928 MHz Band UltraTech's File No.: MXS-068F15C247 This Test report is Issued under the Authority of Tri M. Luu, Professional Engineer, Vice President of Engineering UltraTech Group of Labs Date: February 7, 2008 Report Prepared by: Dan Huynh Issued Date: February 7, 2008 Tested by: Mr. Hung Trinh, EMI/RFI Technician Test Dates: August 23 - 29, 2007 September 19-21, 2007 October 19, 2007 The results in this Test Report apply only to the sample(s) tested, and the sample tested is randomly selected. This report must not be used by the client to claim product endorsement by NVLAP or any agency of the US Government. UltraTech 3000 Bristol Circle, Oakville, Ontario, Canada, L6H 6G4 Tel.: (905) 829-1570 Fax.: (905) 829-8050 Website: www.ultratech-labs.com , Email: [email protected], Email: [email protected] 0685 31040/SIT C-1376 46390-2049 200093-0 SL2-IN-E-1119R FCC Part 15, Subpart C, Section 15.247 – DTS Contents i XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P ULTRATECH GROUP OF LABS File #: MXS-068F15C247 3000 Bristol Circle, Oakville, Ontario, Canada L6H 6G4 February 7, 2008 Tel. #: 905-829-1570, Fax. #: 905-829-8050, Email: [email protected] , Website: http://www.ultratech-labs.com All test results contained in this engineering test report are traceable to National Institute of Standards and Technology (NIST) TABLE OF CONTENTS EXHIBIT 1. SUBMITTAL CHECK LIST ..........................................................................................................................................1 EXHIBIT 2. INTRODUCTION ............................................................................................................................................................2 2.1. SCOPE ............................................................................................................................................................................................2 2.2. RELATED SUBMITTAL(S)/GRANT(S).......................................................................................................................................2 2.3. NORMATIVE REFERENCES .......................................................................................................................................................2 EXHIBIT 3. PERFORMANCE ASSESSMENT .................................................................................................................................3 3.1. CLIENT INFORMATION ..............................................................................................................................................................3 3.2. EQUIPMENT UNDER TEST (EUT) INFORMATION.................................................................................................................3 3.3. EUT’S TECHNICAL SPECIFICATIONS......................................................................................................................................4 3.4. ASSOCIATED ANTENNA DESCRIPTION .................................................................................................................................4 3.5. LIST OF EUT’S PORTS.................................................................................................................................................................4 3.6. ANCILLARY EQUIPMENT ..........................................................................................................................................................5 EXHIBIT 4. EUT OPERATING CONDITIONS AND CONFIGURATIONS DURING TESTS...................................................6 4.1. CLIMATE TEST CONDITIONS ...................................................................................................................................................6 4.2. OPERATIONAL TEST CONDITIONS & ARRANGEMENT FOR TESTS.................................................................................6 EXHIBIT 5. SUMMARY OF TEST RESULTS..................................................................................................................................7 5.1. LOCATION OF TESTS..................................................................................................................................................................7 5.2. APPLICABILITY & SUMMARY OF EMC EMISSION TEST RESULTS ..................................................................................7 5.3. MODIFICATIONS INCORPORATED IN THE EUT FOR COMPLIANCE PURPOSES............................................................7 EXHIBIT 6. MEASUREMENTS, EXAMINATIONS & TEST DATA FOR EMC EMISSIONS ..................................................8 6.1. TEST PROCEDURES ....................................................................................................................................................................8 6.2. MEASUREMENT UNCERTAINTIES ..........................................................................................................................................8 6.3. MEASUREMENT EQUIPMENT USED .......................................................................................................................................8 6.4. ESSENTIAL/PRIMARY FUNCTIONS AS DECLARED BY THE MANUACTURER...............................................................8 6.5. POWER LINE CONDUCTED EMISSIONS [§15.207(a)]............................................................................... ..............................9 6.6. OCCUPIED BANDWIDTH [§ 15.247(a)(2)] ............................................................................................................................... 13 6.7. PEAK CONDUCTED OUTPUT POWER - DTS [§ 15.247(b)(3)] ..................…
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ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 1 Power Line Conducted Emissions ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 2 Power Line Conducted Emissions ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 3 Radiated Emissions @ 3 m EUT tested with 9.2dBi Maxrad Omni-directional Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 1 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 4 Radiated Emissions @ 3 m EUT tested with 9.2dBi Maxrad Omni-directional Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 2 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 5 Radiated Emissions @ 3 m EUT tested with 9.2dBi Maxrad Omni-directional Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 3 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 6 Radiated Emissions @ 3 m EUT tested with 9.2dBi Maxrad Omni-directional Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 3 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 7 Radiated Emissions @ 3 m EUT tested with 15.1 dBi Cushcraft Yagi Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 1 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 8 Radiated Emissions @ 3 m EUT tested with 15.1 dBi Cushcraft Yagi Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 1 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 9 Radiated Emissions @ 3 m EUT tested with 15.1 dBi Cushcraft Yagi Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 2 ANNEX 1 - TEST SETUP PHOTOS Digi International XBee-PRO 900, Model XBEE09P FCC ID: MCQ-XBEE09P A1 - 10 Radiated Emissions @ 3 m EUT tested with 15.1 dBi Cushcraft Yagi Antenna and 3.35 dB Assembly Cable Loss EUT Orientation: Orthogonal Position 3
3000 Bristol Circle · Oakville, Ontario · Canada
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 904 MHz - 926 MHz | 52.00 mW |
XBee Sub-GHz Radio Module
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterXBee3 Sub-GHz and 2.4GHz Radio Module
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterXBee Sub-GHz Radio Module
Equipment Class
DSS - Part 15 Spread Spectrum TransmitterWIFI 7 Module
Equipment Class
6ID - 15E 6 GHz Low Power Indoor Access Point
XBLR
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter