
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
FCC ID: HSW-HN2010 The following statement will be placed in the front of the users manual: Notice to users/installers using the 24 dBi parabolic dish antenna in conjunction with the HN2010 module. FCC rules limit the use of this antenna, when connected to the HN2010 module, to point-to-point applications only. It is the responsibility of the installer to ensure that the system is prohibited from being used in point-to-multipoint applications, omnidirectional applications, and applications where there are multiple co-located intentional radiators transmitting the same information. Any other mode of operation using this antenna is forbidden. In order to meet FCC’s MPE requirements, Cirronet Corporation will add the following statements to the users manual Information to user/installer regarding FCC’s Maximum Permissible Exposure (MPE) limits. Notice to HN2010 users/installers using the following fixed antennas: Andrews 24dBi parabolic dish, Andrews 18dBi parabolic dish, Mobile Mark 9dBi Corner Reflector, Mobile Mark 14dBi Corner Reflector, Cushcraft 15dBi Yagi The field strength radiated by any one of these antennas, when connected to a transmitting HN2010 module, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 2 m from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 2 m to the apertures of any of these antennas. Notice to HN2010 users/installers using the following mobile antennas: Mobile Mark 12dBi omnidirectional, Mobile Mark 9dBi omnidirectional, Cirronet 6dBi patch, Ace 2dBi dipole, Mobile Mark 2dBi Stub, MaxRad 5dBi whip The field strength radiated by any one of these antennas, when connected to a transmitting HN2010 module, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 20 cm from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 20 cm to the apertures of any of these antennas.
FCC ID: HSW-HN2010 Cirronet Inc. will place the following statement in the front of each user/installers manual: Important Regulatory Information Cirronet Product FCCID: HSW-XXXX Fill in FCC ID number Note: This unit has been tested and found to comply with the limits for a class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at their expense. FCC ID: HSW-HN2010 In order to meet FCC s MPE requirements, Cirronet Corporation will add the following statements to the each users manual. It may be on the second page. Notice to users/installers using the 24 dBi parabolic dish antenna in conjunction with all Cirronet RF products. FCC rules limit the use of this antenna, when connected to Cirronet RF products for point-to-point applications only. It is the responsibility of the installer to ensure that the system is prohibited from being used in point-to-multipoint applications, omni- directional applications, and applications where there are multiple co-located intentional radiators transmitting the same information. Any other mode of operation using this antenna is forbidden. Information to user/installer regarding FCC s Maximum Permissible Exposure (MPE) limits. Notice to users/installers using the following fixed antennas, with Cirronet RF products: Andrews 24dBi parabolic dish, Andrews 18dBi parabolic dish, Cushcraft 15dBi Yagi, Mobile Mark 14dBi Corner Reflector, Mobile Mark 9dBi Corner Reflector The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 2 m from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 2 m to the apertures of any of these antennas. Notice to users/installers using the following mobile antennas, with Cirronet RF products: Mobile Mark 12dBi omni-directional, Mobile Mark 9dBi omni-directional, MaxRad 5dBi whip, Cirronet Patch antenna, Ace 2dBi dipole, Mobile Mark 2dBi Stub The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 20 cm from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 20 cm to the apertures of any of these antennas.
FCC ID: HSW-HN2010 Cirronet Inc. will place the following statement in the front of each user/installers manual: Important Regulatory Information Cirronet Product FCCID: HSW-XXXX Fill in FCC ID number Note: This unit has been tested and found to comply with the limits for a class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at their expense. FCC ID: HSW-HN2010 In order to meet FCC s MPE requirements, Cirronet Corporation will add the following statements to the each users manual. It may be on the second page. Notice to users/installers using the 24 dBi parabolic dish antenna in conjunction with all Cirronet RF products. FCC rules limit the use of this antenna, when connected to Cirronet RF products for point-to-point applications only. It is the responsibility of the installer to ensure that the system is prohibited from being used in point-to-multipoint applications, omni- directional applications, and applications where there are multiple co-located intentional radiators transmitting the same information. Any other mode of operation using this antenna is forbidden. Information to user/installer regarding FCC s Maximum Permissible Exposure (MPE) limits. Notice to users/installers using the following fixed antennas, with Cirronet RF products: Andrews 24dBi parabolic dish, Andrews 18dBi parabolic dish, Cushcraft 15dBi Yagi, Mobile Mark 14dBi Corner Reflector, Mobile Mark 9dBi Corner Reflector The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 2 m from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 2 m to the apertures of any of these antennas. Notice to users/installers using the following mobile antennas, with Cirronet RF products: Mobile Mark 12dBi omni-directional, Mobile Mark 9dBi omni-directional, MaxRad 5dBi whip, Cirronet Patch antenna, Ace 2dBi dipole, Mobile Mark 2dBi Stub The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 20 cm from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 20 cm to the apertures of any of these antennas.
HN-2010 Repeater User’s Guide 5375 Oakbrook Parkway Norcross, Georgia 30093 www.cirronet.com +1 678 684-2000 iii Important Regulatory Information FCC ID HSW-HN-2010 Maximum Permissible Exposure (MPE) Limits • Notice to users/installers using the 24 dBi parabolic dish antenna in conjunction with all Cirronet RF products. FCC rules limit the use of this antenna, when connected to Cirronet RF products for point-to-point applications only. It is the responsibility of the installer to ensure that the system is prohibited from being used in point-to-multipoint applications, omni-directional applications, and applications where there are multiple co-located intentional radiators transmitting the same information. Any other mode of operation using this antenna is forbidden. • Information to user/installer regarding FCC s Maximum Permissible Exposure (MPE) limits. • Notice to users/installers using the following fixed antennas, with Cirronet RF products: Andrews 24dBi parabolic dish, Andrews 18dBi parabolic dish, Cushcraft 15dBi Yagi, Mobile Mark 14dBi Corner Reflector, Mobile Mark 9dBi Corner Reflector The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 2 m from the radiating aperture of any of these antennas. End users of Note: This unit has been tested and found to comply with the limits for a class A digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference when the equipment is operated in a commercial environment. This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in accordance with the instruction manual, may cause harmful interference to radio communications. Operation of this equipment in a residential area is likely to cause harmful interference in which case the user will be required to correct the interference at their own expense. Commensurate with EIRP limits specified in FCC Rules 15.247b, this device may not be used with antennas that exceed 36dB of gain in point-to-point applications or 16dB of gain in multi-point applications. iv M-2410-0003 Rev. B these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 2 m to the apertures of any of these antennas. • Notice to users/installers using the following mobile antennas, with Cirronet RF products: Mobile Mark 12dBi omni-directional, Mobile Mark 9dBi omni-directional, MaxRad 5dBi whip, Cirronet Patch antenna, Ace 2dBi dipole, Mobile Mark 2dBi Stub The field strength radiated by any one of these antennas, when connected to Cirronet RF products, may exceed FCC mandated RF exposure limits. FCC rules require professional installation of these antennas in such a way that the general public will not be closer than 20 cm from the radiating aperture of any of these antennas. End users of these systems must also be informed that RF exposure limits may be exceeded if personnel come closer than 20 cm to the apertures of any of these antennas. European Community Notice This device complies with ETS 300.328 of the European Community. Operation is subject to the following conditions: • This device may not cause interference. • This device must accept interference, including undesired interference that may impede the operation of this device. End of Regulatory Information Repairs Cirronet does not recommend field repairs of the radio equipment. Surface Mount Technology (SMT) has been used in the production of the transceiver module, which requires specialized training and equipment for proper servicing. The equipment should be returned to the factory for any repair. Steps have been taken to insure the accuracy of the contents of this manual. Nevertheless, Cirronet Incorporated cannot guarantee the accuracy of this manual. Copyright 2001 Cirronet™ Incorporated WaveBolt is a trademark of Cirronet Incorporated. Windows is a registered trademark of Microsoft Corporation. v Table of Contents Overview ...............................................................................................................1 INTRODUCTION.....................................................................................................1 H OPNET PRODUCTS.............................................................................................1 External Antenna ...........................................................................................1 Built-In Antenna .............................................................................................1 Accessories ...................................................................................................1 D ESIGN FEATURES...............................................................................................1 GLOSSARY OF TERMS...........................................................................................2 About HopNet Products ........................................................................................5 I NTRODUCTION.....................................................................................................5 OPERATING FREQUENCY.......................................................................................5 H OPNET FREQUENCY HOPPING SPREAD SPECTRUM ADVANTAGES..........................5 H OPNET DATA INTEGRITY.....................................................................................5 FLEXIBLE POWER MANAGEMENT...........................................................................5 HN-2010 Repeater................................................................................................7 I NTRODUCTION.....................................................................................................7 D ESIGN FEATURES...........................…
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FCC ID: HSW-HN2010
FCC ID: HSW-HN2010
FCC ID: HSW-HN2010 Photo 1.EUT, Front View FCC ID: HSW-HN2010 Photo 2.EUT, Rear View FCC ID: HSW-HN2010 Photo 3.EUT, View Showing Connectors
FCC ID: HSW-HN2010
FCC ID: HSW-HN2010 Photo 4.EUT, Top View of PCB FCC ID: HSW-HN2010 Photo 5.EUT, Bottom View of PCB FCC ID: HSW-HN2010 Photo 6.Modular Transceiver, 3 Dimensional Front View FCC ID: HSW-HN2010 Photo 7.Modular Transceiver, 3 Dimensional Rear View FCC ID: HSW-HN2010 Photo 8.Modular Transceiver, Top View with Cover Opened FCC ID: HSW-HN2010 Photo 9.Modular Transceiver, Top View of Board FCC ID: HSW-HN2010 Photo 10.Modular Transceiver, Bottom View of Board
FCC ID: HSW-HN2010 GENERAL INFORMATION 1.1Product Description The Equipment Under Test (EUT) is a Cirronet Corporation, Model HN2010 transceiver which internally uses a modularly approved 2.4 GHz spread spectrum transceiver (HSW- 2410M). Since this device is typically professionally installed, this application is being submitted to certify the entire device (under a new ID number) in order to eliminate the need for non-standard connectors as allowed by 15.203. The HN-2010 is a wireless transceiver designed to provide repeater functionality between other HopNet products in point-to-point and point-to-multipoint applications. Two Cirronet WIT2410 transceiver modules (HSW-2410M) are used as the heart of the HN-2010 repeater. Additional power supply conditioning, battery backup, and interface circuitry has been designed into the HN-2010 to provide communications between the internal WIT2410s and between the outside world and the WIT2410 modules. A typical application for the HN-2010 would be as part of a remote data gathering system. The unit would be placed between two widely separated HopNet transceivers where it would serve as a repeater to relay data back and forth between the units. This repeater functionality allows the system integrator to provide wireless connectivity over much greater distances than could be obtained with a single pair of radios. Two antenna connectors are also provided at the front of the unit – one for each radio in the repeater. More detailed explanations of the function and use of the HN-2010 can be found in the HopNet product guide. 1.2Related Submittal(s)/Grant(s) The modular transceiver contained in this device has been previously approved under FCC ID: HSW-2410M by the FCC on 10/6/99 for use with seven different antennas. The modular transceiver was additionally approved through a permissive change by the FCC on 3/29/01 for use with an additional 5 antennas. A copy of these grants are provided on the following pages.
FCC ID: HSW-HN2010 SECTION 8 RF EXPOSURE INFORMATION FCC ID: HSW-HN2010 5.1 RF Safety Requirements to 2.1091 for Mobile Transmitters The unit under evaluation has various external antennas. Cirronet Corporation calculated the MPE emission values for a HN2010 with each of the antennas. The maximum power density occurs when using the 24 dBi dish for fixed applications and with the 12 dBi omnidirectional for mobile applications. They used the formula shown in OET Bulletin 65 and calculated the minimum distance between antenna and unsuspecting user as 26.0 cm for fixed applications and 6.5 cm for mobile applications. Cirronet Corporation will sell the HN2010 with one of the following antennas: Previously Approved Antennas as Listed in Original Submittal MANUFACTURERTYPE OF ANTENNAMODELGAIN dB ACE DipoleACE-2400NF 2 dBi Cushcraft Yagi PC2415-RTNF15 dBi Mobile Mark Omni-Directional OD6-2400-RTNC6 dBi Mobile Mark Omni-Directional OD12-2400PTA-RTNC12 dBi Mobile Mark Corner Reflector SCR14-2400PTA-RTNC14 dBi Mobile Mark Patch P7-2400RTNC7 dBi Cirronet Corporation. Patch PA2410Appx. 3 dBi New Additional Antennas Covered by Permissive Change Application MANUFACTURERTYPE OF ANTENNAMODELGAIN dB Mobile Mark Vehicle MountRM3-2400-RTNC 2.5 dBi Mobile Mark Corner ReflectorSCR9-2400-RN 9 dBi MaxRad Whip MUF24005-RTNC5 dBi Andrews Parabolic Dish 26T-2400 A24 dBi Andrews Parabolic Dish 18T-2400 A18 dBi FCC ID: HSW-HN2010 5.1 RF Safety Requirements to 2.1091 for Mobile Transmitters – Cont. Power Output The EUT’s maximum expected output power as shown in the original grant of certification (FCC ID: HSW-2410M) was Frequency of Fundamental (MHz) Measurement (dBm)* Measurement (Watt)* FCC Limit* (Watt) 2401.916.20.0411.0 2440.016.80.0471.0 2483.516.80.0471.0 * Measurement includes 0.3 dB for cable loss MANUFACTURERTYPE OF ANTENNAMODELMPE CLASSIFICATION GAIN dBMAX EIRP dBm ACE DipoleACE-2400NF Mobile 2 dBi18.8 Cushcraft Yagi PC2415-RTNF fixed 15 dBi31.8 Mobile Mark Omni-Directional OD6-2400-RTNC Mobile 6 dBi22.8 Mobile Mark Omni-Directional OD12-2400PTA-RTNC Mobile 12 dBi28.8 Mobile Mark Corner Reflector SCR14-2400PTA-RTNC fixed 14 dBi30.8 Mobile Mark Patch P7-2400RTNC Mobile 7 dBi23.8 Cirronet Corporation. Patch PA2410 Mobile Appx. 3 dBi 19.8 Mobile Mark Vehicle MountRM3-2400-RTNC Mobile 2.5 dBi19.3 Mobile Mark Corner Reflector SCR9-2400-RN fixed 9 dBi25.8 MaxRad Whip MUF24005-RTNC Mobile 5 dBi21.8 Andrews Parabolic Dish 26T-2400 A fixed 24 dBi40.8 Andrews Parabolic Dish 18T-2400 A fixed 18 dBi34.8 The maximum EIRP expected for fixed installations is with the +24 dBi gain parabolic dish antenna. This would yield and maximum EIRP of 16.8 dBm + 24 dBi = +40.8 dBm. The maximum EIRP expected for mobile installations is with the +12 dBi gain omnidirectional antenna. This would yield and maximum EIRP of 16.8 dBm + 12 dBi = +28.8 dBm. FCC ID: HSW-HN2010 5.1 RF Safety Requirements to 2.1091 for Mobile Transmitters – Cont. Source Based Time Averaging Additionally, source based time averaging may be applied as the worse case transmit duty cycle is given as follows: Worst Case Transmit Duty Cycle for HN2010 This factor was calculated by first determining the worst case scenario for system operation - worst case being defined as the scenario when the HN2010 would be transmitting the longest period during a dwell. This worst case operating scenario is as follows: 1)point-to-point operation (only two units communicating with one another) 2)data flow is almost completely unidirectional (that is, one radio is relaying a large amount of data to the other radio with only synchronization data being passed back the other direction) 3)The amount of data being fed to the sending radio is exactly portioned out to fit the maximum packet size allowable (280 bytes). The radio cannot send more than 280 bytes on a single channel – additional data must be sent on the next hop. For this example, a remote unit is transferring a large data file to a base unit. The maximum transmit time by Remote on a single channel would be: = 280 bytes * 8 bits/byte * (1/460.8 Kbps) = 4.86 ms The minimum hop duration for this scenario would be 6.94 ms. This transmit pattern would continue on each channel and is considered repetitive. Therefore, for purposes of MPE, the transmission duty cycle correction factor is then calculated as: Duty cycle = (on time)/(total time) = 4.86/6.94 = 70.0 % FCC ID: HSW-HN2010 5.1 RF Safety Requirements to 2.1091 for Mobile Transmitters – Cont. This yields for a duty cycle correction of 10 log (0.70) = -1.5 dB. Therefore the maximum EIRP for fixed installations may be expected to be MANUFACTURERTYPE OF ANTENNAMODELMPE CLASSIFICATION GAIN dBMAX EIRP dBm ACE DipoleACE-2400NF Mobile 2 dBi17.3 Cushcraft Yagi PC2415-RTNF fixed 15 dBi30.3 Mobile Mark Omni-Directional OD6-2400-RTNC Mobile 6 dBi21.3 Mobile Mark Omni-Directional OD12-2400PTA-RTNC Mobile 12 dBi27.3 Mobile Mark Corner Reflector SCR14-2400PTA-RTNC fixed 14 dBi29.3 Mobile Mark Patch P7-2400RTNC Mobile 7 dBi22.3 Cirronet Corporation. Patch PA2410 Mobile Appx. 3 dBi 18.3 Mobile Mark Vehicle MountRM3-2400-RTNC Mobile 2.5 dBi18.0 Mobile Mark Corner Reflector SCR9-2400-RN fixed 9 dBi24.3 MaxRad Whip MUF24005-RTNC Mobile 5 dBi20.3 Andrews Parabolic Dish 26T-2400 A fixed 24 dBi39.3 Andrews Parabolic Dish 18T-2400 A fixed 18 dBi33.3 +40.8 dBm – 1.5 dB = +39.3 dBm Antilog(39.3 dBm/10) = 8511.4 mW The maximum EIRP for mobile installations may be expected to be +28.8 dBm – 1.5 dB = +27.3 dBm Antilog(27.3 dBm/10) = 537.0 mW FCC ID: HSW-HN2010 5.1 RF Safety Requirements to 2.1091 for Mobile Transmitters – Cont. MPE Calculations The limits for this unit (uncontrolled exposure) are 1.0 mW/cm 2 . Taking the RF Denisty Field Equation: S = (EIRP in mW)/(4πR 2 ) and solving for Distance R R = SQRT ((EIRP in mW)/(S4π)) Solving the above equation yields MANUFACTURERTYPE OF ANTENNAMODELMPE CLASSIFICATION GAIN dBDISTANCE R ACE DipoleACE-2400NF Mobile 2 dBi2.0 Cushcraft Yagi PC2415-RTNF fixed 15 dB…
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Cirronet Corporation FCC Part 15, Certification Application for the Model HN2010 July 3, 2002 MEASUREMENT/TECHNICAL REPORT COMPANY NAME:Cirronet Corporation. MODEL: HN2010 FCC ID:HSW-HN2010 DATE: July 3, 2002 This report concerns (check one): Original grant X Class II change_____ Equipment type: Frequency Hopping Spread Spectrum Transceiver Deferred grant requested per 47 CFR 0.457(d)(1)(ii)? yes_____ No X If yes, defer until:_________________ date N.A. agrees to notify the Commission by N.A. date of the intended date of announcement of the product so that the grant can be issued on that date. Report prepared by: United States Technologies, Inc. 3505 Francis Circle Alpharetta, GA 30004 Phone Number: (770) 740-0717 Fax Number: (770) 740-1508 FCC ID: HSW-HN2010 TABLE OF CONTENTS Agency Agreement Letter of Confidentiality SECTION 1 GENERAL INFORMATION 1.1 Product Description 1.2 Related Submittal(s) 1.3 Description of Information Provided 1.4 Copy of Name and Address Change 1.5 Professional Installation Justification SECTION 2 2.1 Test Report for the Original Part 15 Certification for the Modular Transceiver 2.2 Test Report for the Permissive Change Application for the Modular Transceiver 2.3 Test Report for Part 15 Class A Verification of the HN2010 SECTION 3 LABELING INFORMATION SECTION 4 BLOCK DIAGRAM / SCHEMATIC OF TRANSCEIVER SECTION 5 PHOTOGRAPHS SECTION 6 THEORY OF OPERATION SECTION 7 USER'S MANUAL SECTION 8 RF EXPOSURE INFORMATION FCC ID: HSW-HN2010 SECTION 1 GENERAL INFORMATION FCC ID: HSW-HN2010 GENERAL INFORMATION 1.1Product Description The Equipment Under Test (EUT) is a Cirronet Corporation, Model HN2010 transceiver which internally uses a modularly approved 2.4 GHz spread spectrum transceiver (HSW- 2410M). Since this device is typically professionally installed, this application is being submitted to certify the entire device (under a new ID number) in order to eliminate the need for non-standard connectors as allowed by 15.203. The HN-2010 is a wireless transceiver designed to provide repeater functionality between other HopNet products in point-to-point and point-to-multipoint applications. Two Cirronet WIT2410 transceiver modules (HSW-2410M) are used as the heart of the HN-2010 repeater. Additional power supply conditioning, battery backup, and interface circuitry has been designed into the HN-2010 to provide communications between the internal WIT2410s and between the outside world and the WIT2410 modules. A typical application for the HN-2010 would be as part of a remote data gathering system. The unit would be placed between two widely separated HopNet transceivers where it would serve as a repeater to relay data back and forth between the units. This repeater functionality allows the system integrator to provide wireless connectivity over much greater distances than could be obtained with a single pair of radios. Two antenna connectors are also provided at the front of the unit – one for each radio in the repeater. More detailed explanations of the function and use of the HN-2010 can be found in the HopNet product guide. 1.2Related Submittal(s)/Grant(s) The modular transceiver contained in this device has been previously approved under FCC ID: HSW-2410M by the FCC on 10/6/99 for use with seven different antennas. The modular transceiver was additionally approved through a permissive change by the FCC on 3/29/01 for use with an additional 5 antennas. A copy of these grants are provided on the following pages. FCC ID: HSW-HN2010 FCC ID: HSW-HN2010 FCC ID: HSW-HN2010 1.3 Description of Information Provided Since the EUT consists of 2 modularly approved transceivers and a previously tested composite device to the Part 15 Class A emissions requirements. The EUT is not being changed other than the fact that Cirronet wishes to use standard connectors vs. the non- standard connectors that were approved with the modular transceiver. Therefore, further testing has been deemed unnecessary. Copies of the previously issued test reports have been provided with this application. 1.4 Copy of Name and Address Change Cirronet was known as Digital Wireless Corporation at the time the original transceiver module was approved. A copy of their name change as submitted to the FCC is included on the following page. FCC ID: HSW-HN2010 FCC ID: HSW-HN2010 1.6 Professional Installation Justification – Provided by Cirronet For years, radio manufacturers such as California Microwave and Freewave Technologies have marketed and sold radios for use in the industrial monitoring and control market. These companies initially used licensed radio frequencies exclusively, but now also produce units operating under Part 15.247 using the 900MHz or 2.4GHz ISM band. The HN-2010 outdoor transceiver is designed for use in those markets and to compete against the products of those companies. California Microwave and Freewave currently claim the “Professional Installation” waiver to allow the use of a number of different antennas with their products. Cirronet would obviously like to work under the same set of operating rules for our equivalent product and so we formally request the professional installation waiver for compliance to part 15.203. Our justification for requesting this waiver is as follows. The HN-2010 is specifically marketed to and designed for system-level installers – not the general public. As previously indicated, the HN-2010 is designed to function as a wireless repeater between radios located in remote locations. As such, the HN-2010 is marketed to municipalities, utility companies, oil/gas pipeline companies, and other similar users that need to monitor or control remote devices a long distance away from the central facilities. The HN-2010 is marketed through magazines like “Wireless Mobility” and “Wireless Systems Design”. Both of these magazines have a very specialized readership and are directed specifically towards wireless system integrators – not the general public. The photos included in…
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Digital Wireless Corporation FCC Part 15, Certification Application WIT2410 July 12, 1999 MEASUREMENT/TECHNICAL REPORT COMPANY NAME: Digital Wireless Corporation MODEL: WIT2410 FCC ID: HSW-2410M DATE:July 12, 1999 This report concerns (check one): Original grant X Class II change_____ Equipment type: Deferred grant requested per 47 CFR 0.457(d)(1)(ii)? yes_____ No X If yes, defer until:_________________ date N.A. agrees to notify the Commission by N.A. date of the intended date of announcement of the product so that the grant can be issued on that date. Report prepared by: United States Technologies, Inc. 3505 Francis Circle Alpharetta, GA 30004 Phone Number: (770) 740-0717 Fax Number: (770) 740-1508 FCC ID: HSW-2410M TABLE OF CONTENTS LETTER OF CONFI…
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3505 Francis Circle · Alpharetta, Georgia · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 2.40 GHz - 2.47 GHz | 50.00 mW |
LBMA0ZZ2NR
Equipment Class
DTS - Digital Transmission SystemCommunication Module
Equipment Class
DTS - Digital Transmission System
Type 2EG BLE Module
Equipment Class
DTS - Digital Transmission System
Wireless 2.4 GHz Industrial Transceiver
Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Wireless Medical Telemetry Service Radio Module
Equipment Class
TNB - Licensed Non-Broadcast Station Transmitter