
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
GE Renewable Energy GE MDS LLC GE MDS TransNEXT 05-7267A01 REV 03. Quick Start Guide The transceiver, shown in Figure 1, is a spread spectrum radio designed for license-free operation. These units employ Digital Signal Processing (DSP) technology to provide highly-reliable long-distance communications, even in the presence of weak signals or interference. The transceiver is housed in a compact and rugged die-cast enclosure that need only be protected from direct exposure to the weather. It contains a single printed circuit board with all necessary components for radio operation. No jumper settings or manual adjustments are required to configure the radio for operation. Figure 1. GE MDS TransNEXT Transceiver. Dual transceiver version (left) and single transceiver (right). About This Guide This guide covers the GE TransNext operating in Transnet Compatible Mode. All GE MDS manuals are available free of charge at www.gemds.com. Transceiver Features Listed below are several key features of the transceiver. These are designed to ease the installation and configuration of the radio, while retaining the ability to make changes in the future. • 902–928 MHz operation using the TransNEXT 900 • User-selectable option to skip sub-bands with constant interference • 65,000 available network addresses • Network-wide configuration from the Master station eliminates most trips to Remote sites • Data transparency ensures compatibility with virtually all asynchronous SCADA system RTUs • Peak-hold RSSI averaged over eight hop cycles • Operation at up to 115,200 bps continuous data flow • Store-and-Forward repeater operation • Data latency typically less than 10 ms • Same hardware for Master or Remote configuration • Supports RS/EIA-232 and RS/EIA-485 user interface • Low current consumption; less than 3 mA in “sleep” mode NOTE: Some radio features may not be available on all models. Features may be limited by the options purchased or the applicable regulatory constraints for the region in which the radio will operate. Typical Applications Multiple Address Systems (MAS) This is the most common application of the transceiver. It consists of a central control station (Master) and two or more associated Remote units, as shown in Figure 2. An MAS network provides communications between a central host computer and remote terminal units (RTUs) or other data collection devices. The operation of the radio system is transparent to the computer equipment. When used in this application, the transceiver provides an excellent alternative to traditional (licensed) MAS radio systems. Figure 2. Typical MAS Network Point-to-Point System A point-to-point configuration (Figure 3) is a simple arrangement consisting of just two radios—a Master and a Remote. This provides a half-duplex communications link for the transfer of data between two locations. Figure 3. Typical Point-to-Point Link Adding a Tail-End Link to an Existing Network A tail-end link can be used to extend the range of a traditional (licensed) MAS system. This might be required if an outlying site is blocked from the MAS Master station by a natural or man-made obstruction. In this arrangement, a TransNEXT 1.0 INTRODUCTION GE Renewable Energy GE MDS LLC GE MDS TransNEXT 05-7267A01 REV 03. Quick Start Guide radio links the outlying Remote site into the rest of a licensed MAS system by sending data from that site to an associated TransNEXT installed at one of the licensed Remote sites (see Figure 4.) As the data from the outlying site is received at the licensed Remote site, it is transferred to the licensed radio (via a local cable connection) and is then transmitted to the MAS Master station in the usual manner. Figure 4. Typical Tail-End Link Arrangement Extending a TransNEXT Network with a Network Repeater Similar to a Tail-End Link, Store-and-Forward (SAF) offers a way to physically extend the network range, but in a simple and economical manner. SAF works by dividing a network into a vertical hierarchy of two or more sub-networks. Extension radios (designated as MODE X) serve as single-radio repeaters that link adjacent sub-networks, and move data from one sub-network to the next one. Figure 5. TransNEXT Repeater Network Accessories GE MDS offers an Accessories Selection Guide listing additional items that may be used with our products. Contact your factory representative or visit www.GEmds.com for the latest copy. Invisipbllhaeoc led er TransNEXT Installation Figure 6 shows a typical Remote station arrangement. Master stations are similar, but an omni-directional antenna is normally used instead of a directional type, and a host computer replaces the data terminal equipment. Figure 6. Typical Remote Station Arrangement The following steps provide an overview of the installation procedure. 1. Select a site that provides stable power, protection from the weather, entrances for antenna and other cabling, and an antenna location with an unobstructed transmission path in the direction of the associated station(s). 2. Select and install an appropriate antenna and feedline for your system requirements. Professional Installation is required. Feedline losses and antenna gains must be properly accounted for. Please refer to Table 5.1 and Table 5.2 in section “5.0 Antennas” for more details on approved antennas and feedline requirements. 3. Mount the transceiver to a stable surface using the brackets supplied with the radio (fasteners/anchors are not supplied). 4. Connect the data equipment to the transceiver’s DATA connector. Use only the required pins for the application. Refer to Figure 7. 5. Measure and install the primary power for the transceiver. It must be within 6–36 Vdc (including transients) and be capable of providing 12 watts over this voltage range. (Typical current draw is 860mA @13.8 Vdc; 2.0A at 6 Vdc.) A power connector with screw-terminals is provided with each unit. Figure 7: Interface Connector Functions 2.0 INSTALLATION Primary Power (6-36VDC) Ether…
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GE Renewable Energy GE MDS LLC 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax U.S. Agent Designation for Service of Process (Applicant is Both Grantee and U.S. Agent) TO: American Certification Body, Inc. 313 Park Avenue Suite 300 Falls Church, VA 22046 ATTENTION: FCC Certification – Section 2.911(d)(7) Information This letter is to confirm that the Applicant will also serve as the U.S. Agent for Service of Process as required by 47 CFR 2.911(d)(7). The Applicant acknowledges that they must maintain an agent for no less than one year after terminating all marketing and importation OR the conclusion of any Commission-related proceeding involving the equipment. The Applicant further acknowledges their responsibility to inform the FCC whenever the Designated U.S. Agent information changes. Applicant Company name: GE MDS LLC FRN #: 0016050429 Grantee Code:E5M Contact Name: Jon Vilagy Street Address: 175 Science Parkway City/Province/Zip: Rochester, NY 14620 Telephone No: +1-585-241-5516 Email: [email protected] Applicant Signature: Date: June 2, 2023 Signed by Jon Vilagy: Senior Technical Regulations and Standards Engineer, GE MDS LLC
GE Renewable Energy GE MDS LLC 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Certification Application Attestation Statements Date: June 2, 2023 American Certification Body, Inc. 313 Park Avenue Suite 300 Falls Church, VA 22046 To Whom It May Concern: Statement for 47 CFR section 2.911(d)(5)(i) GE MDS, LLC certifies that as of the date of the application the equipment for which authorization is sought is not “covered” equipment 1 prohibited from receiving an equipment authorization pursuant to section 2.903 of the FCC rules. If the equipment for which the applicant seeks authorization is produced by any of the entities identified on the current Covered List, including affiliates or subsidiaries of the named companies, the applicant must include an explanation on why the equipment is not “covered” equipment. Additional Explanation: <N/A> Statement for 47 CFR section 2.911(d)(5)(ii) GE MDS, LLC (“the applicant”) certifies that, as of the date of the filing of this application, the applicant ☐ - is / - - is not identified on the Covered List as an entity producing “covered” equipment. Thank you, By: Jon Vilagy Title: Sr. Technical Regulations and Standards Engineer Company: GE MDS, LLC Telephone: +1-585-241-5516 1 - The Commission’s Covered List is published by the Public Safety and Homeland Security Bureau and posted on the Commission’s website. This Covered List, which is periodically updated, identifies particular equipment, produced by particular entities, that constitutes “covered” equipment. https://www.fcc.gov/supplychain/coveredlist .
GE Renewable Energy GE MDS LLC 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Date: June 2, 2023 American Certification Body, Inc. 313 Park Avenue Suite 300 Falls Church, VA 22046 To Whom It May Concern: National Technical Systems and its employees are authorized to act on our behalf, until otherwise notified, for applications to American Certification Body, Inc. (ACB). We certify that we are not subject to denial of federal benefits, that includes FCC benefits, pursuant to Section 5301 of the Anti-Drug Abuse Act of 1988, 21 U.S.C. 862. Further, no party, as defined in 47 CFR 1.2002 (b), to the application is subject to denial of federal benefits, that includes FCC benefits. We also declare that the information provided to the FCC is true and correct to the best of our knowledge (47 CFR 2.911(d)) and we have been informed of the grantee responsibilities (47 CFR 2.909) with regard to certified equipment. Agency Agreement Expiration Date: June 2, 2024 Thank you, By: Jon Vilagy Title: Senior Technical Regulations and Standards Engineer On behalf of: GE MDS, LLC Telephone: +1-585-241-5516
GE Renewable Energy GE MDS LLC 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax Request for Confidentiality Date: June 13, 2023 Subject: Confidentiality Request for: E5MDS-NET9L Pursuant to FCC 47 CFR 0.457(d) and 0.459 and/or IC RSP-100, Section 12.4, the applicant requests that a part of the subject application(s) be held confidential. Type of Confidentiality Requested Exhibit ☐ Short Term ☐ Permanent Block Diagrams ☐ Short Term --------------------------- External Photos ☐ Short Term ☐ Permanent * 1 Internal Photos ☐ Short Term ☐ Permanent Operation Description/Theory of Operation ☐ Short Term ☐ Permanent Parts List & Placement/BOM ☐ Short Term ☐ Permanent Tune-Up Procedure ☐ Short Term ☐ Permanent Schematics ☐ Short Term --------------------------- Test Setup Photos ☐ Short Term ☐ Permanent * 1 User’s Manual GE MDS, LLC has spent substantial effort in developing this product and it is one of the first of its kind in industry. Having the subject information easily available to "competition" would negate the advantage they have achieved by developing this product. Not protecting the details of the design will result in financial hardship. Permanent Confidentiality: The applicant requests the exhibits listed above as permanently confidential be permanently withheld from public review due to materials that contain trade secrets and proprietary information not customarily released to the public. Short-Term Confidentiality for FCC Applications: The applicant requests the exhibits selected above as short term confidential be withheld from public view for a period of 180 days from the date of the Grant of Equipment Authorization and prior to marketing. This is to avoid premature release of sensitive information prior to marketing or release of the product to the public. Applicant is also aware that they are responsible to notify ACB in the event information regarding the product or the product is made available to the public before the requested period has expired. ACB will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04-1705. Short Term Confidentiality for Industry Canada Applications: Starting May 2022, ISED will recognize short term confidentiality on certain exhibits until the intended date of marketing. The applicant requests the exhibits selected above as short term confidential be withheld from public view until: December 2, 2023. Sincerely, Jon Vilagy Senior Technical Regulations and Standards Engineer GE MDS LLC
GE Renewable Energy GE MDS LLC 175 Science Parkway, Rochester, New York 14620 USA (585) 242-9600 Phone (585) 242-9620 Fax TO: FEDERAL COMMUNICATIONS COMMISSION 7435 Oakland Mills Road Columbia, MD 21046 U.S.A. May 31, 2023 Federal Communications Commission Authorization and Evaluation Division 7435 Oakland Mills Road Columbia, Maryland 21046 RE: Professional Installation Statement FCC ID: E5MDS-NET9S, E5MDS-NET9L To whom it may concern, GE MDS E5MDS-NET9S and E5MDS-NET9L are data communications radios intended for use in commercial and industrial environments providing telemetry communications within the utility sector. These devices incorporate password protection restricting access only to authorized installers and default to a non-functional mode prior to proper site configuration and connection to telemetry equipment. GE MDS does not offer this product for general sale, but rather sells to authorized distributors and channel partners who have been trained in the subject of RF system planning as well as industry practices to adhere to safe distances for RF exposure. E5MDS-NET9S and E5MDS-NET9L have been evaluated for operation with multiple antenna types and requires minimum cable loss and/or power setpoints to adhere to ERP limits. Professional Installation is required to ensure that antenna gain, feedline losses, and radio power setpoints have been properly accounted for to operate within the limits set forth by the FCC. GE MDS distributors are trained at the GE MDS facility on proper steps to configure our products. The setup manual for the product is presented and discussed in a classroom setting to educate personnel. Minimum safe distances for RF exposure as stated in the manual are presented and during training. Our distributors and channel partners tasked with the installation of this equipment have been selected by GE MDS as partners whom we trust with proper knowledge of RF system planning and proper deployment practices not only to ensure the proper performance of our product as used by a customer, but to ensure that safety of installers is upheld to the highest standard. Employees of those partners undergo training within their own business entity to adhere to the exposure distances that we communicate to them for our products. These partners are trained on the site level safety needs to install appropriate fencing, equipment cabinets, and other items to prevent unauthorized access, as well as the signage to identify RF exposure risks and inform those in proximity that proper precautions must be taken before entry into those restricted access locations. As this device is relied upon for critical infrastructure communications, integrators locate this equipment in facilities with restricted access to the general population to prevent tampering, injury, or vandalism. Sincerely, Jonathan Vilagy Senior Technical Regulations and Standards Engineer GE MDS, LLC
Technical Data Sheet BRADY B -434A THERMAL TRANSFER PRINTABLE GLOSS METALLIZED POLYESTER LABEL STOCK TDS No. B- 434A Effective Date: 10/05/2022 Description: GENERAL Print Technology:Thermal Transfer Material Type:Metallized Polyester Finish:Gloss Adhesive:Permanent Acrylic APPLICATIONS Rating plate and general purpose labeling on textured surfaces. RECOMMENDED RIBBONS Brady Series R6000 Halogen Free Brady Series R4900 REGULATORY/AGENCY APPROVALS UL:B -434A is a UL Recognized Component when printedwith the Brady Series R4900 and the Brady Series R6000 Halogen Free ribbons. See UL file MH17154 for specific details. UL information can be accessed on-line at UL.com in the UL Product iQ area. CSA:B- 434A is a CSA Accepted material when printedwith the Brady Series R4900 and the Brady Series R6000 ribbon. See CSA Acceptance Record LS 41833 for specific details. CSA information can be accessed online at https://www.csagroup.org/testing-certification/product-listing/ For information on the Weee-RoHS compliance status for a Brady Product go to one of the following websites: In Canada:www.bradycanada.ca/weee-rohs In Europe:www.bradyeurope.com/rohs In Japan:www.brady.co.jp/products/labelsuse/rohs All other regions:www.bradyid.com/weee-rohs SPECIAL FEATURES B -434A is designed to withstand numerous solvents while maintaining excellent image quality. Details: PHYSICAL PROPERTIESTEST METHODSAVERAGE RESULTS ThicknessASTM D 1000 -Substrate -Adhesive -Total (excluding liner) 0.002 inch (0.051 mm) 0.002 inch (0.051 mm) 0.004 inch (0.102 mm) Adhesion to:ASTM D 1000 -Stainless Steel20 minute dwell104 oz/in (114 N/100 mm) 24 hour dwell113 oz/in (123 N/100 mm) -Textured ABS20 minute dwell57 oz/in (62 N/100 mm) 24 hour dwell69 oz/in (76 N/100 mm) -Polypropylene20 minute dwell96 oz/in (105 N/100 mm) 24 hour dwell111 oz/in (121 N/100 mm) The following testing was performed on B- 434A samples printed with the Brady Series R4900 and the Brady Series R6000 Halogen Free ribbons. Samples laminated to aluminum panels. All samples allowed to dwell 24 hours prior to testing. Unless noted, results are the same for both ribbons. PERFORMANCE PROPERTIES TEST METHODSTYPICAL RESULTS Long Term High Service Temperature 30 days at various temperaturesNo visible effect at 266°F (130°C). Slight label discoloration at 293°F (145°C), label still functional. Long Term Low Service Temperature 30 days at -94°F (- 70°C)No visible effect Short Term High Service Temperature 5 minutes at various temperatures No visible effect at 374°F (190°C). Slight label shrinkage at 392°F (200°C), label still functional Humidity Resistance 30 days at 100°F (38°C), 95% R.H. No visible effect UV Light Resistance ASTM G155, Cycle 1 (no spray) 30 days in Xenon test chamber No visible effect WeatherabilityASTM G155, Cycle 1 30 days in Xenon Arc Weather-Ometer® No visible effect Salt Fog ResistanceASTM B117 30 days in 5% solution chamber No visible effect Abrasion ResistanceTaber Abraser, CS 10 grinding wheel, 500 g/arm (Fed. Std. 191A, Method 5306) Print legible after 100 cycles PERFORMANCE PROPERTYCHEMICAL RESISTANCE Samples were printed with the Brady Series R4900 and the Brady Series R6000 Halogen Free ribbons. Test was conducted at room temperature after a 24 hour dwell. Testing consisted of 5 cycles of 10 minute immersions in the specified chemical reagent followed by 30 minute recovery period. Samples were rubbed 10 times with a cotton swab immersed in test fluid after final immersion. CHEMICAL REAGENT SUBJECTIVE OBSERVATION OF VISUAL CHANGE EFFECT TO LABEL STOCK EFFECTS TO PRINTED IMAGE R6000 Halogen FreeR4900 WITHOUT RUBWITH RUBWITHOUT RUBWITH RUB Methyl Ethyl Ketone No visible effect5555 TolueneNo visible effect5555 Isopropyl AlcoholNo visible effect1111 Mineral SpiritsNo visible effect1111 GasolineNo visible effect1111 JP-8 Jet FuelNo visible effect1111 Skydrol® 500B-4No visible effect3555 MIL 5606 OilNo visible effect1111 3% Alconox® Detergent No visible effect1111 10% Sodium Hydroxide Solution No visible effect1111 10% Sulfuric Acid Solution No visible effect1111 Deionized WaterNo visible effect1111 Rating Scale: 1= no visible effect 2= slight smear or print removal, detectable but minimal smear 3= moderate smear or print removal (print still legible) 4= severe smear or print removal (print illegible or just barely legible) 5= complete print and/or topcoat removal NP= print removed prior to rub Shelf Life: Shelf life is two years from the date of receipt for this product as long as this product is stored in its original packaging in an environment below 80° F (27° C) and 60% RH. It remains the responsibility of the user to assess the risk of using this product. We encourage customers to develop testing protocols that will qualify a product's fitness for use in their actual application. Trademarks : Alconox® is a registered trademark of Alconox Co. Skydrol® is a registered trademark of Solutia Inc. Weather-Ometer® is a registered trademark of Atlas Material Testing Technology LLC ASTM: American Society for Testing and Materials (U.S.A.) CSA: Canadian Standards Association SAE: Society of Automotive Engineers (U.S.A.) UL: Underwriters Laboratories Inc. (U.S.A.) All S.I. Units (metric) are mathematically derived from the U.S. Conventional Units. Note:All values shown are averages and should notbe used for specification purposes. Test data and test results contained in this document are for general information only and shall not be relied upon by Brady customers for designs and specifications, or be relied on as meeting specified performance criteria. Customers desiring to develop specifications or performance criteria for specific product applications should contact Brady for further information. Product compliance information is based upon information provided by suppliers of the raw materials used by Brady to manufacture this product or based on results of testing using recognized analytical methods performed by a third party, independent laborato…
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EMC Test Data Client: Contact: Standard: Specific Details General Test Configuration No 34 SAR exclusion calculation formula is from FCC KDB 447498 D01 section 4.3: [(max. power of channel, including tune-up tolerance, mW) / (min. test separation distance, mm)] · [√f (GHz) ] Where: f (GHz) is the RF trasnmit channel frequency Summary of Results If not, required separation distance (in cm): Device complies with Power Density requirements at 20cm separation: Deviations From The Standard No deviations were made from the requirements of the standard. Test Engineer: David Bare Calculation uses the free space transmission formula: S = (PG)/(4 πd 2 ) Where: S is power density (W/m 2 ), P is output power (W), G is antenna gain relative to isotropic, d is separation distance from the transmitting antenna (m). Maximum Permissible Exposure / SAR Exclusion Objective: Evaluate the RF Exposure requirements per FCC 1.1310, 2.1091, 2.1093 and RSS-102. Date of Test: 6/8/2023 Jonathan ViligyProject Engineer: David Bare FCC §15.247, RSS-247Class: N/A GE MDS LLCPR Number: PR171060 Model: TransNEXT T-Log Number: TL171060-RA Single Project Manager: Christine Krebill TL171060-RA Single.xlsMPE Calc 08-Jun-23Page 1 of 2 EMC Test Data Client: Contact: Standard: Jonathan ViligyProject Engineer: David Bare FCC §15.247, RSS-247Class: N/A GE MDS LLCPR Number: PR171060 Model: TransNEXT T-Log Number: TL171060-RA Single Project Manager: Christine Krebill FCC MPE Calculation Use: General Antenna: 12.15 dBi yagi USE THIS FOR 300-1500 MHz sin gle transmitters (General use) Cable LossAntPower Freq.LossGainat AntEIRP MHzdBmmW*dBdBidBmmW 902.230.01000.06.1512.1523.93981.07 91530.01000.06.1512.1523.93981.07 927.630.01000.06.1512.1523.93981.07 For the cases where S > the MPE Limit Fre q. MHz 902.2 915 927.6 ISED Canada MPE Calculation Use: General Antenna: 12.15 dBi yagi For 300 - 6000 MHz sin gle transmitters (General use) Cable LossAntPower Freq.LossGainat AntEIRP MHzdBmmW*dBdBidBmmW 902.230.01000.06.1512.1523.93981.07 91530.01000.06.1512.1523.93981.07 927.630.01000.06.1512.1523.93981.07 For the cases where S > the MPE Limit Fre q. MHz 902.2 915 927.6 0.2740.61822.6 0.2740.60123.0 0.2740.61022.8 at 34 cmat 34 cmS <= MPE Limit mW/cm^2mW/cm^2cm 0.601 0.2740.610 0.2740.618 Power Density (S)MPE LimitDistance where 2.7402.79333.7 EUTPower Density (S)MPE Limit Powe rat 34 cm 2.7402.74034.0 2.7402.76733.8 at 34 cmat 34 cmS <= MPE Limit W/m^2W/m^2cm 2.7402.767 2.7402.793 Power Density (S)MPE LimitDistance where Powe rat 34 cmat 34 cm W/m^2W/m^2 2.7402.740 EUTPower Density (S)MPE Limit at 34 cm mW/cm^2mW/cm^2 0.274 TL171060-RA Single.xlsMPE Calc 08-Jun-23Page 2 of 2
Kathrein Inc., Scala Division Post Office Box 4580 Medford, OR 97501 (USA) Phone: (541) 779-6500 Fax: (541) 779-3991 Email: [email protected] Internet: www.kathrein-scala.com OGB9-915N Omnidirectional Antenna Kathrein’s omnidirectional antennas for wireless, paging, SMR and mobile applications are extremely robust, using the finest fiberglass, brass, and aluminum. Applicable mounting hardware is fabricated from stainless steel. Many models may be mounted inverted. • Wireless • Paging • SMR • Land Mobile • ISM H-plane Horizontal pattern V-polarization E-plane Vertical pattern V-polarization 11029-A Specifications: Frequency range 870–960 MHz Gain 11 dBi Impedance 50 ohms VSWR < 1.5:1 Intermodulation (2x20w) IM3: -150dBc Polarization Vertical Maximum input power 500 watts (at 50°C) H-plane beamwidth Omni E-plane beamwidth 7 degrees (half-power) Connector N female Weight 17.6 lb (8 kg) Height 119.4 inches (3033 mm) Radome diameter 2 inches (51 mm) Wind survival rating 120 mph (200 kph) Equivalent flat plate area 1.96 ft 2 (0.182 m 2 ) Shipping dimensions 130.6 x 5.8 x 4.4 inches (3316 x 148 x 112 mm) Shipping weight 35 lb (15.9 kg) Mounting For masts of 2 to 3.75 inch (50 to 94 mm) OD. See reverse for order information. * Mechanical design is based on environmental conditions as stipulated in EIA- 222-F (June 1996) and/or ETS 300 019-1-4 which include the static mechanical load imposed on an antenna by wind at maximum velocity. See the Engineering Section of the catalog for further details. All specifications are subject to change without notice. The latest specifications are available at www.kathrein-scala.com. Kathrein Inc., Scala Division Post Office Box 4580 Medford, OR 97501 (USA) Phone: (541) 779-6500 Fax: (541) 779-3991 Email: [email protected] Internet: www.kathrein-scala.com Mounting Order Information: Model Description OGB9-915N Antenna with N connector 119.4 inches (3033 mm) 128.5 inches (3263 mm) OGB9-915N Omnidirectional Antenna
RF/Electrical Specifications GE Part NumberPCTEL Part Number Frequency Range Nominal Gain Azimuth Beamwidth @ ½ Power Elevation Beamwidth @ ½ Power 97-3194A14Z2336902-690 MHz10 dBd50°45° Mechanical Specifications GE Part Number PCTEL Part Number Temperature Range Dimensions (L X W) Weight (Mass) Wind Survivability 97-3194A14Z2336-40°C to +85°C 23.6” x 6.2” (59.9 x 15.7 mm) 1.1 lbs (0.5 kg) 200 mph (no ice) 110 mph (0.5” ice build-up) This yagi has been optimized using a genetic algorithm to achieve superior performance over the entire 900 MHz frequency band. It features solid 3/8” elements attached to a seamless aluminum boom with 360° welds, and are finished with a black polyester powder coating. A solid aluminum mounting bracket allows for either vertical or horizontal polarization. The sturdy construction and advanced design provides outstanding durability and superior performance in all weather conditions. Features • Broadband performance with no tuning required • Fully enclosed, low loss feed system • 360° welds at element and boom interface • Solid aluminum mounting clamps with stainless steel hardware © 2013 PCTEL, Inc. Product specifications are subject to change without notice. PCTEL, Inc. WEB: www.antenna.com Z2336, 902-960 MHz Yagi Antenna Technical Data Max Power:150 watts Polarization:Vertical, Horizontal Nominal Impedance: 50 ohms VSWR:1.5 typical, 2.0 max Front to Back Ratio:15 dB Connector:N jack female Mounting Method: Mast mount, BWC1001 included Mount Material: Electrogalvanized steel (RoHS Compliant) BWC1001 MOUNT Z2336
41039 Boyce Road Fremont, CA. 94538 510-578-3500 Phone File: FR-171060.02-NARF Rev 1 Page 1 EMC Test Report Application for FCC Grant of Equipment Authorization Canada Certification Innovation, Science and Economic Development Canada RSS-Gen Issue 5 / RSS-247 Issue 2 FCC Part 15 Subpart C Model: NET9L IC CERTIFICATION #: E5MDS-NET9L FCC ID: 101D-NET9L APPLICANT: GE Digital Energy - MDS 175 Science Pkwy Rochester, NY 14620 TEST SITE(S): NTS Labs LLC 41039 Boyce Road. Fremont, CA. 94538-2435 IC SITE REGISTRATION #: 2845B-4 PROJECT NUMBER: PR171060 REPORT DATE: June 1, 2023 RE-ISSUED DATE: July 11, 2023 FINAL TEST DATES: May 11 thru 22, 2023 TOTAL NUMBER OF PAGES: 66 This report and the information contained herein represent the results of testing of only those articles / products identified in this document and selected by the client. The tests were performed to specifications and/or procedures selected by the client. NTS Labs LLC makes no representations expressed or implied that such testing fully demonstrates efficiency, performance, reliability, or any other characteristic of the articles being tested, or similar products. This report should not be relied upon as an endorsement or certification by NTS Labs LLC of the equipment tested, nor does it present any statement whatsoever as to its merchantability or fitness of the test article or similar products, for a particular purpose. This report shall not be reproduced except in full without written approval from NTS Labs LLC. NTS Labs LLC Project number PR171060 Report Date: June 1, 2023, Re-Issued Date: July 11, 2023 Test Report FR-171060.02-NARF Rev 1 Page 2 VALIDATING SIGNATORIES PROGRAM MGR _________________________ David W. Bare Chief Engineer TECHNICAL REVIEWER: _________________________ David W. Bare Chief Engineer FINAL REPORT PREPARER: _________________________ David Guidotti Senior Technical Writer QUALITY ASSURANCE DELEGATE _________________________ Gary Izard Senior Technical Writer NTS Labs LLC Project number PR171060 Report Date: June 1, 2023, Re-Issued Date: July 11, 2023 Test Report FR-171060.02-NARF Rev 1 Page 3 REVISION HISTORY Rev# Date Comments Modified By - June 1, 2023 First release 1 July 11, 2023 Added results for other hopping mode, added firmware and settings used during testing. NTS Labs LLC Project number PR171060 Report Date: June 1, …
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 902.2 MHz - 927.6 MHz | 1 W |

Frequency Hopping Radio
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Industrial Radio Module
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
MDS SDM4 Licensed Spectrum Module
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Industrial Radio Module
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter
Data Transceiver
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter