
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
Eka 900SiP User’s Guide Document Number XXXX Revision 1 Eka Systems, Inc. 20201 Century Boulevard, Suite 250 Germantown, MD 20874 USA www.ekasystems.com Tel (301) 515-7 1 1 8 Fax: (301) 515-4965 XXXXX-01 2 Eka 900SiP User’s Guide Contents 1 About the Eka 900SiP Radio Module.................................................................................................... 3 2 Regulatory Notices................................................................................................................................. 4 3 Eka 900SiP Radio Module Specifications ............................................................................................ 6 XXXXX-01 3 Eka 900SiP Node User’s Guide 1 About the Eka 900SiP Radio Module The Eka 900SiP radio module is designed for use in Eka’ s 915 MHz wireless products. it provides a 915 MHz radio interface for communicating on an EkaNet network. The 900SiP radio module operates from a power source of 2.5V to 3.6V, received from the host device. The radio module operate in the 915 MHz license-free band. Eka 900SiP Nodes are fully compatible with EkaNet mesh network hardware, protocols and operations. Two radio transmission data rates are available: 76.8 kb/s an d153.6 kb/s. Transmission power is adjustable from 27 dBm to -20 dBm. XXXXX-01 4 Eka 900SiP User’s Guide 2 Regulatory Notices Warning The Original Equipment Manufacturer (OEM) must ensure that FCC Labeling requirements are met. This includes a clearly visible label on the outside of the OEM enclosure specifying the Eka Systems FCC identifier (FCC ID: P9X-900SIP) and IC Identifier (IC: 6766A-900SIP) as well as the FCC Notice below. Warning This device complies with Part 15 of the FCC Rules. Operation is subject to the following two conditions: (1) This device may not cause harmful interference, and (2) This device must accept any interference received, including interference that may cause undesired operation. Warning Changes or modifications not expressly approved by the party responsible for compliance could void the user’s authority to operate the equipment. Warning This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates, uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: Reorient or relocate the receiving antenna. Increase the separation between the equipment and receiver. Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. Consult the dealer or an experienced radio/TV technician for help. Warning The installer of this radio equipment must ensure that the antenna is located or pointed such that it does not emit RF field in excess of Health Canada limits for the general population; consult Safety Code 6, obtainable from Health Canada’s website www.hc-sc.gc.ca. XXXXX-01 5 Eka 900SiP User’s Guide Warning T o comply with FCC RF exposure compliance requirements, the antenna used for this transmitter must be installed to provide a separation distance of at least 22.4 cm from all persons and must not be co-located or operate in conjunction with any other antenna or transmitter.” As such, the radio component of this device is intended only for OEM integrators under the following two conditions: The antenna must be installed such that 22.4 cm is maintained between the antenna and users. The transmitter module may not be co-located with any other transmitter or antenna. As long as the two conditions above are met, further transmitter testing will not be required. However, the OEM integrator is still responsible for testing their end product for any additional compliance requirements required with this module installed (e.g., digital device emissions, PC peripheral requirements). In the event that these conditions cannot be met (for example, co-location with another transmitter), then the FCC authorization is no longer considered valid and the FCC ID cannot be used on the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end product (including the transmitter) and obtaining a separate FCC authorization. End Product Labeling This transmitter module is authorized only for use in devices where the antenna may be installed such that 22.4 cm may be maintained between the antenna and users (for example access points, routers, wireless ASD L modems, certain laptop configurations, and similar equipment). The final end product must be labeled in a visible area with the following: “FCC ID: P9X-900SIP”. The radio component is an integral part of the Eka module and cannot be removed. XXXXX-01 6 Eka 900SiP User’s Guide 3 Eka 900SiP Radio Module Specifications Radio Specifications Operating frequency 902 – 928 MHz Reliable data transmission Error detection, correction and retransmission RF output power 27 dBm to -20 dBm Data rate 76.8 kb/s, 153.6 kb/s Receiver sensitivity -98 dBm (@ 0.1% BER, +25° C Range (w/ omni antenna) Outdoor < 1,000 m (3200 ft) Indoor 75 – 150 m (225 – 490 ft) Mode Frequency hopping spread spectrum Mechanical Specifications W eight unavailable Di m ens i ons 27mm x 27mm x 3.5mm Operating Conditions Environmental -40° C to +85° C 0 – 95% non-condensing humidity Power supply 2.5V to 3.6V Power consumption < 1W 20201 Century Boulevard, Suite 250 Germantown, MD 20874 USA www.ekasystems.com Tel (301) 515-7 1 1 8 Fa…
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Eka Systems Inc. External Photos 900SiP R a d i o M o d u l e June 1, 2010 1 Figure 1: 900SiP External View
Eka Systems Inc. Labeling Information 900SiP Radio Module May 24, 2010 1 1. General Information Applicant: Eka Systems Inc. Applicant Address: 20201 Century Boulevard Suite 250 G e r m a nt ow n , M D 20 87 4 301-515-7118 Product: 900SiP Radio Module FCC ID: P9X-900SIP IC: 6766A-900SIP 2. General 2.1. Location The label m u s t be applied to the meter in a place w her e i t will be easily visible. Th e label should be applied so that all vertical and/or horizontal markings can be read in the same direction as other labels on the meter. 2.2. Markings All human readable markings must be clear and legible when viewed with normal vision at a distance of twelve i n c h e s . 2.3. Permanency The label shall not be a stick-on, paper label, and must be permanently affixed to the product. The label must be designed to last the expected lifetime of the equipment in the environment in which the equipment may be operated and must not be readily detachable. 3. Contents of the Label The label must contain the following information: • FCC Identifier – the FCC identifier for the 900SiP radio module, P9X-900SIP • IC Identifier – the Industry Canada identifier for the 900SiP radio modul e , 6766A-900SIP • Model Number – the model number must appear on the label • Manufacturer Name: the name of the manufacturer, Eka Systems, must appear on the label Eka Systems Inc. Labeling Information 900SiP Radio Module May 24, 2010 2 • FCC Information – the following statement should appear on the label or in the installation manual: This device complies with part 15 of the FCC Rules. Operation is subject to the following 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. Ex a m p l es o f l a b e ls a r e s h o w n b e l o w. The example in Figure 1 shows a label with both the FCC Identifier and the required FCC information. The example in Figure 2 shows a label with just the FCC Identifier on it. The required FCC information would appear in the installation manual. E k a S y s t e m s 900SiP Contains F C C I D : P 9 X-900SIP / IC: 6766A-900SIP This device complies with part 15 of the FCC Rules. Operation is subject to the following conditions: (1) This device may not cause harmful interference. (2) This device must accept any interference received including interference that may cause undesired operation. Figure 1: Label Example with FCC and IC Information Contains FCC ID: P9X-900SIP IC: 6766A-900SIP Figure 2: Label Example with FCC Information appearing in the installation manual E k a S y s t e m s Inc. Labels 900SiP R a d i o M o d u l e May 24, 2010 1 A label showing the manufacturer’s name (Eka Systems), the FCC ID (P9X-900SIP), and the IC Nu m b e r ( 6 766A-900SIP), and containing the information shown in Figure 1 below, will be affixed to products that incorporate the 900SiP Radio Module, as shown in Figure 2. Eka Systems [Model Number] Contains FCC ID: P9X-900SIP / IC: 6766A-900SIP This device complies with part 15 of the FCC Rules. Operation is subject to the following conditions: (1) This device may not cause harmful interference. (2) This device must accept any interference received including interference that may cause undesired operation. Figure 1: E x t e r n a l L a b e l I n f o r m a t i o n Figure 2: Ext e r n a l L a b e l Location Label on module
Eka Systems Inc. Internal Photos 900SiP Radio Module May 12, 2010 1 CONFIDENTIAL – THE INFORMATION CONTAINED IN THIS DOCUMENT IS THE PROPERTY OF EKA SYSTEMS. IT IS NOT FOR PUBLIC DISCLOSURE. POSSESSION OF THIS INFORMATION DOES NOT CONVEY ANY RIGHT TO LOAN, SELL OR DISCLOSE THE INFORMATION. UNAUTHORIZED REPRODUCTION OR USE OF THIS INFORMATION IS PROHIBITED. THIS DOCUMENT IS TO BE RETURNED TO EKA SYSTEMS UPON COMPLETION OF THE PURPOSE FOR WHICH IS IT LOANED OR UPON REQUEST. Figure 1: 900SiP – Component Side Eka Systems Inc. Internal Photos 900SiP Radio Module May 12, 2010 2 CONFIDENTIAL – THE INFORMATION CONTAINED IN THIS DOCUMENT IS THE PROPERTY OF EKA SYSTEMS. IT IS NOT FOR PUBLIC DISCLOSURE. POSSESSION OF THIS INFORMATION DOES NOT CONVEY ANY RIGHT TO LOAN, SELL OR DISCLOSE THE INFORMATION. UNAUTHORIZED REPRODUCTION OR USE OF THIS INFORMATION IS PROHIBITED. THIS DOCUMENT IS TO BE RETURNED TO EKA SYSTEMS UPON COMPLETION OF THE PURPOSE FOR WHICH IS IT LOANED OR UPON REQUEST. Figure 2: 900SiP – Solder Side
Document #11322-MPE Rev 1 FCC ID: P9X-900SiP RF Exposure Test Report Washington Laboratories, Ltd June 8, 2010 Maximum Permissible Exposure Evaluation For Eka Systems Inc. SiP radio module FCC ID: P9X-900SiP Prepared by: James Ritter Reviewed by: Steve Koster Prepared By: Washington Laboratories, Ltd. 7560 Lindbergh Drive Gaithersburg, Maryland 20879 WLL PROJECT #: 11322-MPE Rev 1 This report may not be reproduced, except in full, without the prior written consent of Washington Laboratories, Ltd. RF Exposure Evaluation Document #11322-MPE Rev 1 FCC ID: P9X-900SiP RF Exposure Test Report Washington Laboratories, Ltd June 8, 2010 1 Maximum Permissible Exposure Test Report for FCC ID: P9X-900SiP 1.0 Introduction This report has been prepared on behalf of Eka Systems Inc. SiP radio module. Transmitter to show compliance with the RF exposure requirements as defined in FCC §1.1307. Testing supporting this evaluation was performed at Washington Laboratories, Ltd, 7560 Lindbergh Drive, Gaithersburg, MD 20879. Washington Laboratories, Ltd. has been accepted as an EMC Conformity Assessment Body (CAB) under the United States/European Union Memorandum of Agreement. Washington Laboratories, Ltd. is accredited with the American Association for Laboratory Accreditation under Certificate 2675.01. 1.1 Requirements Three different categories of transmitters are defined by the FCC in OET Bulletin 65. These categories are fixed installation, mobile, and portable and are defined as follows: Fixed Installations: fixed location means that the device, including its antenna, is physically secured at a permanent location and is not able to be easily moved to another location. Additionally, distance to humans from the antenna is maintained to at least 2 meters. Mobile Devices: a mobile device is defined as a transmitting device designed to be used in other than fixed locations and to be generally used in such a way that a separation distance of at least 20 centimeters is normally maintained between the transmitter's radiating structures and the body of the user or nearby persons. Transmitters designed to be used by consumers or workers that can be easily re-located, such as a wireless modem operating in a laptop computer, are considered mobile devices if they meet the 20 centimeter separation requirement. The FCC rules for evaluating mobile devices for RF compliance are found in 47 CFR §2.1091. Portable Devices: a portable device is defined as a transmitting device designed to be used so that the radiating structure(s) of the device is/are within 20 centimeters of the body of the user. Portable device requirements are found in Section 2.1093 of the FCC's Rules (47 CFR§2.1093). For this test report the Eka Systems Inc. SiP radio module is considered a mobile device. Document #11322-MPE Rev 1 FCC ID: P9X-900SiP RF Exposure Test Report Washington Laboratories, Ltd June 8, 2010 2 Antenna: 8 dBi (Worst case) Evaluation distance: 20cm test distance. The FCC also categorizes the use of the device as based upon the user’s awareness and ability to exercise control over his or her exposure. The two categories defined are Occupational/ Controlled Exposure and General Population/Uncontrolled Exposure. These two categories are defined as follows: Occupational/Controlled Exposure: In general, occupational/controlled exposure limits are applicable to situations in which persons are exposed as a consequence of their employment, who have been made fully aware of the potential for exposure and can exercise control over their exposure. This exposure category is also applicable when the exposure is of a transient nature due to incidental passage through a location where the exposure levels may be higher than the general population/uncontrolled limits, but the exposed person is fully aware of the potential for exposure and can exercise control over his or her exposure by leaving the area or by some other appropriate means. Awareness of the potential for RF exposure in a workplace or similar environment can be provided through specific training as part of a RF safety program. If appropriate, warning signs and labels can also be used to establish such awareness by providing prominent information on the risk of potential exposure and instructions on methods to minimize such exposure risks. General Population/Uncontrolled Exposure: The general population / uncontrolled exposure limits are applicable to situations in which the general public may be exposed or in which persons who are exposed as a consequence of their employment may not be made fully aware of the potential for exposure or cannot exercise control over their exposure. Members of the general public would come under this category when exposure is not employment-related; for example, in the case of a wireless transmitter that exposes persons in its vicinity. Warning labels placed on low-power consumer devices such as cellular telephones are not considered sufficient to allow the device to be considered under the occupational/controlled category, and the general population/uncontrolled exposure limits apply to these devices. Since there are no warnings or training associated with this unit and it can be used by anyone, the Eka Systems Inc. SiP radio module is evaluated to the General Population/Uncontrolled Exposure limits. 1.2 Radio Frequency Radiation Exposure Evaluation The highest RF output power of the unit was measured is recorded. According to §1.1310 of the FCC rules, the power density limit for General Population/Uncontrolled Exposure is 1mW/cm 2 . The MPE shall be calculated at 20cm to show compliance with the power density limit. The following formula was used to calculate the Power Density: Document #11322-MPE Rev 1 FCC ID: P9X-900SiP RF Exposure Test Report Washington Laboratories, Ltd June 8, 2010 3 2 4R PG S π = Where: S = Power Density P = Output Power at the Antenna Terminals G = Gain of Transmit Antenna (linear gain-isotropic) R = Distance from Transmi…
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Certificates and reports shall not be reproduced except in full, without the written permission of Washington Laboratories, Limited. FCC & Industry Canada Certification Test Report For the Eka Systems Inc. SiP radio module P9X-900SIP 6766A-900SIP WLL JOB# EKA11322 Rev. 2 April 30, 2010 Re-issued June 1, 2010 Prepared for: Eka Systems Inc. 20201 Century Blvd. Suite 250 Germantown, MD 20874 Prepared By: Washington Laboratories, Ltd. 7560 Lindbergh Drive Gaithersburg, Maryland 20879 Testing Certificate 2675.01 Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 - i - FCC & Industry Canada Certification Test Report for the Eka Systems Inc. SiP radio module P9X-900SIP 6766A-900SIP WLL JOB# EKA11322 Rev.2 April 30, 2010 Re-issued June 1, 2010 Prepared by: Elmer Rodriguez Testing Engineer Reviewed by: Steven D. Koster EMC Operations Manager Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - ii - © 2010 Washington Laboratories, Ltd. Abstract This report has been prepared on behalf of Eka Systems Inc. to support the attached Application for Equipment Authorization. The test report and application are submitted for a Frequency Hopping Spread Spectrum Transmitter under Part 15.247 (7/2008) of the FCC Rules and Regulations and Spectrum Management and Telecommunications Policy RSS-210 of Industry Canada. This Certification Test Report documents the test configuration and test results for the Eka Systems Inc. SiP radio module. Testing was performed on an Open Area Test Site (OATS) of Washington Laboratories, Ltd, 7560 Lindbergh Drive, Gaithersburg, MD 20879. Site description and site attenuation data have been placed on file with the FCC's Sampling and Measurements Branch at the FCC laboratory in Columbia, MD. The Industry Canada OATS numbers are 3035A-1 and 3035A-2 for Washington Laboratories, Ltd. Site 1 and Site 2, respectively. Washington Laboratories, Ltd. has been accepted by the FCC and approved by the American Association for Laboratory Accreditation (A2LA) under Certificate 2675.01 as an independent FCC test laboratory. The Eka Systems Inc. SiP radio module complies with the limits for a Frequency Hopping Spread Spectrum Transmitter device under FCC Part 15.247 and Industry Canada RSS-210. Revision History Description of Change Date Rev 0 Initial Release April 30, 2010 Rev 1 Added TX/RX spurious info etc. to table May 25, 2010 Rev 2 Completed edits to address TCB comments. Incorrect reference to DTS system, erroneous statement of max output power. June 1, 2010 Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - iii - © 2010 Washington Laboratories, Ltd. Table of Contents Abstract.........................................................................................................ii 1 Introduction..........................................................................................................................1 1.1 Compliance Statement .................................................................................................... 1 1.2 Test Scope ....................................................................................................................... 1 1.3 Contract Information.......................................................................................................1 1.4 Test Dates ....................................................................................................................... 1 1.5 Test and Support Personnel ............................................................................................ 1 1.6 Abbreviations .................................................................................................................. 2 2 Equipment Under Test .........................................................................................................3 2.1 EUT Identification & Description .................................................................................. 3 2.2 Test Configuration ..........................................................................................................3 2.3 Testing Algorithm...........................................................................................................3 2.4 Test Location .................................................................................................................. 4 2.5 Measurements ................................................................................................................. 4 2.5.1 References................................................................................................................... 4 2.6 Measurement Uncertainty............................................................................................... 4 3 Test Equipment ....................................................................................................................6 4 Test Results ..........................................................................................................................7 4.1 Duty Cycle Correction .................................................................................................... 7 4.2 RF Power Output: (FCC Part §2.1046) & RSS-210[A8.4(1)]........................................ 8 4.3 99% Occupied Bandwidth: (For Industry Canada – Certification Filing).................... 12 4.4 20dB Emission Bandwidth: (FCC Part §2.1049).......................................................... 15 4.5 Channel Spacing and Number of Hop Channels (FCC Part §15247(a)(1) & RSS- 210[A8.1(b)] ............................................................................................................................. 18 4.6 Conducted Spurious Emissions at Antenna Terminals (FCC Part §2.1051) ................ 20 4.7 Radiated Spurious Emissions: (FCC Part §2.1053)...................................................... 36 4.7.1 Test Procedure................................…
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Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 25 of 53 - © 2010 Washington Laboratories, Ltd. Figure 25: Conducted Spurious Emissions, High Power, Low Channel 5GHz – 9.3GHz Figure 26: Conducted Spurious Emissions, High Power, Mid Channel 30 – 900MHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 26 of 53 - © 2010 Washington Laboratories, Ltd. Figure 27: Conducted Spurious Emissions, High Power, Mid Channel 900 – 930MHz Figure 28: Conducted Spurious Emissions, High Power, Mid Channel 930MHz – 5GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 27 of 53 - © 2010 Washington Laboratories, Ltd. Figure 29: Conducted Spurious Emissions, High Power, Mid Channel 5GHz – 9.3GHz Figure 30: Conducted Spurious Emissions, High Power, High Channel 30 – 900MHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 28 of 53 - © 2010 Washington Laboratories, Ltd. Figure 31: Conducted Spurious Emissions, High Power, High Channel 900 – 930MHz Figure 32: Conducted Spurious Emissions, High Power, High Channel 930MHz – 5GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 29 of 53 - © 2010 Washington Laboratories, Ltd. Figure 33: Conducted Spurious Emissions, High Power, High Channel 5GHz – 9.3GHz Figure 34: Conducted Spurious Emissions, Low Power, Low Channel 30 - 902MHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 30 of 53 - © 2010 Washington Laboratories, Ltd. Figure 35: Conducted Spurious Emissions, Low Power, Low Channel 900- 930MHz Figure 36: Conducted Spurious Emissions, Low Power, Low Channel 930MHz – 5GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 31 of 53 - © 2010 Washington Laboratories, Ltd. Figure 37: Conducted Spurious Emissions, Low Power, Low Channel 5GHz – 9.3GHz Figure 38: Conducted Spurious Emissions, Low Power, Mid Channel 30 - 900MHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 32 of 53 - © 2010 Washington Laboratories, Ltd. Figure 39: Conducted Spurious Emissions, Low Power, Mid Channel 900- 930MHz Figure 40: Conducted Spurious Emissions, Low Power, Mid Channel 930MHz – 5GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 33 of 53 - © 2010 Washington Laboratories, Ltd. Figure 41: Conducted Spurious Emissions, Low Power, Mid Channel 5GHz – 9.3GHz Figure 42: Conducted Spurious Emissions, Low Power, High Channel 30 - 900MHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 34 of 53 - © 2010 Washington Laboratories, Ltd. Figure 43: Conducted Spurious Emissions, Low Power, High Channel 900- 930MHz Figure 44: Conducted Spurious Emissions, Low Power, High Channel 930MHz – 5GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 35 of 53 - © 2010 Washington Laboratories, Ltd. Figure 45: Conducted Spurious Emissions, Low Power, High Channel 5GHz – 9.3GHz Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 36 of 53 - © 2010 Washington Laboratories, Ltd. 4.7 Radiated Spurious Emissions: (FCC Part §2.1053) The EUT must comply with the requirements for radiated spurious emissions that fall within the restricted bands. These emissions must meet the limits specified in §15.209 and §15.35(b) for peak measurements. 4.7.1 Test Procedure The EUT was placed on motorized turntable for radiated testing on a 3-meter open field test site. The emissions from the EUT were measured continuously at every azimuth by rotating the turntable. Receiving antennas were mounted on an antenna mast to determine the height of maximum emissions. The height of the antenna was varied between 1 and 4 meters. The peripherals were placed on the table in accordance with ANSI C63.4-2003. Cables were varied in position to produce maximum emissions. Both the horizontal and vertical field components were measured. Three orthogonal positions were tested with the worse case reported. The emissions were measured using the following resolution bandwidths: Table 9: Spectrum Analyzer Settings Frequency Range Resolution Bandwidth Video Bandwidth 30MHz-1000 MHz 120kHz >100 kHz >1000 MHz 1 MHz <30 Hz (Avg.), 1MHz (Peak) Eka Systems Inc. SiP radio module FCC Certification Test Report April, 2010 WLL Report #11322-01 - Page 37 of 53 - © 2010 Washington Laboratories, Ltd. Table 10: Radiated Emission Test Data, Low Frequency Data (<1GHz) Frequency (MHz) Polarity H/V Azimuth (Degree) Ant. Height (m) SA Level (dBuV) Corr Factors (dB) Corr. Level (uV/m) Limit (uV/m) Margin (dB) Comments 49.17 V 324.00 1.00 23.70 8.8 42.4 100.0 -7.5 0 79.68 V 247.00 1.06 18.70 8.2 22.0 100.0 -13.1 0 120.09 V 240.00 1.00 7.30 15.2 13.3 150.0 -21.0 0 144.35 V 273.00 2.00 3.00 13.8 6.9 150.0 -26.8 0 168.08 V 202.00 1.12 10.20 11.9 12.7 150.0 -21.4 0 196.64 V 357.00 1.00 8.10 12.5 10.7 150.0 -22.9 0 216.14 V 105.00 2.04 20.60 12.3 44.0 200.0 -13.2 0 228.13 V 73.00 2.00 17.60 13.1 34.2 200.0 -15.3 0 235.84 V 29.00 1.88 16.20 13.1 29.2 200.0 -16.7 0 245.78 V 20.00 1.80 20.20 13.1 46.0 200.0 -12.8 0 255.62 V 25.00 1.93 17.10 13.4 33.4 200.0 -15.5 0 276.17 V 176.00 1.72 11.20 15.5 21.7 200.0 -19.3 0 312.18 V 205.00 1.52 14.50 15.5 31.6 200.0 -16.0 0 324.17 V 209.00 1.61 10.40 16.1 21.2 200.0 -19.5 0 360.21 V 231.00 1.60 15.30 17.1 41.8 200.0 -13.6 0 0 48.02 H 263.00 4.00 15.00 9.3 16.5 100.0 -15.7 0 72.06 H 284.00 2.50 25.60 7.4 44.6 100.0 -7.0 0 120.09 H 230.00 3.70 12.90 15.2 25.4 150.0 -15.4 0 144.10 H 139.00 2.92 14.20 13.8 25.0 150.0 -15.6 0 156.12 H 145.00 2.49 15.30 12.5 24.5 150.0 -15.7 0 168.10 H 124.00 3.64 13.30 …
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Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd Test Setup Photos ©2008 Washington Laboratories, Ltd
7560 Lindbergh Drive · Gaithersburg · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.75 MHz - 927.25 MHz | 555.00 mW |

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