
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. HAKIT-RTG Series Certified Amplifier Kit User Manual Models FCC ID HAKIT-RTGU-250 HAKIT-RTGIU-250 HAKIT-RTGU-500 HAKIT-RTGIU-500 MYF-LCUSB HAKIT-RTGXU-1000 HAKIT-RTGXIU-1000 MYF-LCUSBX (For 802.11b/g Wireless Networks) Revision: A / Date: 03/10 L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. FCC Information FCC Information This equipment complies with CFR 47, Part 15.19 of the FCC rules. Operation of the equipment 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. This device must not be co-located or operating in conjunction with any other antenna or transmitter NOTE: THE MANUFACTURER IS NOT RESPONSIBLE FOR ANY RADIO OR TV INTERFERENCE CAUSED BY UNAUTHORIZED MODIFICATIONS TO THIS EQUIPMENT. SUCH MODIFICATIONS COULD VOID THE USER’S AUTHORITY TO OPERATE THE EQUIPMENT. Federal Communications Commission (FCC) Requirements, Part 15 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. Regulatory information / Disclaimers Installation and use of this Wireless LAN device must be in strict accordance with the instructions included in the user documentation provided with the product. Any changes or modifications (including the antennas) made to this device that are not expressly approved by the manufacturer may void the user’s authority to operate the equipment. The manufacturer is not responsible for any radio or television interference caused by unauthorized modification of this device, or the substitution of the connecting cables and equipment other than manufacturer specified. It is the responsibility of the user to correct any interference caused by such unauthorized modification, substitution or attachment. Manufacturer and its authorized resellers or distributors will assume no liability for any damage or violation of government CAUTION: To maintain compliance with FCC’s RF exposure guidelines, this equipment should be installed and operated with minimum distance 20cm between the radiator and your body. Use only the supplied antenna. Unauthorized antenna, modification, or attachments could damage the transmitter and may violate FCC regulations. MPE Statement (Safety Information) Your device contains a low power transmitter. When device is transmitted it sends out Radio Frequency (RF) signal. Safety Information In order to maintain compliance with the FCC RF exposure guidelines, this equipment should be installed and operated with minimum distance 20cm between the radiator and your body. Use only with supplied antenna. Unauthorized antenna, modification, or attachments could damage the transmitter and may violate FCC regulations. L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. When locating the antenna or operating this device you must observe the following exposure limits: When this device is installed either as a fixed-mount or mobile application there is a minimum required separation distance of 20 cm from users. Non-Amplified Systems: For non-amplified systems simply attach the antenna into the antenna port on the USB adapter and proceed to USB Adapter Installation section. Indoor Amplified Systems: Amplifier connections are clearly labeled on the amplifier unit as shown below. 1. Connect the Antenna to the Amplifier output labeled “ANTENNA” 2. Connect the Radio to the Amplifier input labeled “RADIO” using a pigtail cable. 3. Plug the AC Adapter into the Amplifier’s DC power jack and wall outlet. Proceed to USB Adapter/Software Installation section. L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM E-MAIL: [email protected] PHONE: 1-800-343-1455 FAX: 1-978-689-9484 © L-com, Inc. All Rights Reserved. L-com Global Connectivity and the L-com logo are registered marks. Outdoor Amplified Systems: Amplifier connections are clearly labeled on the amplifier unit as shown below. 1. Connect the Antenna to the Amplifier output labeled “ANTENNA” 2. Connect the DC Injector output labeled “TO AMPLIFIER” to the Amplifier input labeled “RADIO” 3. Connect the Radio to the DC Injector input labeled “RADIO” using a pigtail cable. 4. Plug the AC Adapter into the DC Injector’s DC power jack and wall outlet. Proceed to USB Adapter/Software Installation section. L-COM, INC. 45 BEECHWOOD DRIVE NORTH ANDOVER, MA 01845 WWW.L-COM.COM …
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Re: Certification for L-Com Transceiver Model/PN(s): HAKIT-RTGU-250 HAKIT-RTGIU-250 HAKIT-RTGU-500 HAKIT-RTGIU-500 FCC ID: MYF-LCUSB POWER OF ATTORNEY A letter granting Valdis V. Liepa the Power of Attorney is on file and can be provided when so requested. March 31, 2010 Re: Certification for L-Com Transceiver Model/PN(s): HAKIT-RTGU-250 HAKIT-RTGIU-250 HAKIT-RTGU-500 HAKIT-RTGIU-500 FCC ID: MYF-LCUSB STATEMENT OF MODIFICATIONS There were no modifications made to the DUT by this test laboratory. (Also see Section 3.1 of the attached Test Report). _____________________ Valdis V. Liepa Research Scientist Re: Certification for L-Com Transceiver Model/PN(s): HAKIT-RTGU-250 HAKIT-RTGIU-250 HAKIT-RTGU-500 HAKIT-RTGIU-500 FCC ID: MYF-LCUSB GENERAL PRODUCT INFORMATION The device, for which certification is pursued, has been designed by: L-Com, Inc. 45 Beechwood Drive North Andover Massachusetts Contact: Kenneth Burgner [email protected] Tel: 978 682 6936 Fax: 978 689 9484 It will be manufactured by: L-Com, Inc. 45 Beechwood Drive North Andover Massachusetts 01845 Contact: Kenneth Burgner [email protected] Tel: 978 682 6936 Fax: 978 689 9484
March 31, 2010 American Telecommunications Certification Body, Inc. 6731 Whittier Avenue Suite C110 McLean, VA 22101 RE: Certification Application FCC ID: MYF-LCUSB IC: - Model/PN(s): HAKIT-RTGU-250, HAKIT-RTGIU-250, HAKIT-RTGU-500 HAKIT-RTGIU-500 Please find enclosed application materials for certification of L-Com Transceiver Note: 1) Portions of this submittal are filed Confidential. 2) A list of the modifications made is provided in Attestations. If there are any questions regarding the application or testing performed, please contact me at the above address or call 734-483-4211, fax 734-647-2106, or e-mail [email protected]. Sincerely, Valdis V. Liepa Research Scientist
Re: Certification for L-Com Transceiver FCC ID: MYF-LCUSB REQUEST FOR CONFIDENTIALITY Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, L-Com requests that a part of the subject application be held confidential. L-Com 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. Type of Confidentiality Requested Exhibit Short Term Permanent (1) ID Label & Location Short Term Permanent (3) External Photos Short Term Permanent 1 (4) Block Diagram Short Term Permanent (5) Schematics Short Term Permanent (7) Test Setup Photos Short Term Permanent (8) User’s Manual Short Term Permanent (9) Internal Photos Short Term Permanent (10) Parts List & Placement Short Term Permanent (11) RF Exposure Short Term Permanent (12) Description of Operation 1. Block Diagram includes internal oscillator frequency information that the manufacturer considers to be proprietary. Permanent Confidentiality: L-Com requests the exhibits listed above as permanently confidential be permanently withheld from public review. Short-Term Confidentiality (FCC Only): L-Com requests the exhibits selected above as short term confidential be withheld from public view for a period of 45 days from the date of the Grant of Equipment Authorization and prior to marketing. If there are any questions regarding this request, please contact me at the above address or call 734-483-4211, fax 734-647-2106 or e-mail [email protected]. Sincerely, Valdis V. Liepa, Research Scientist University of Michigan
March 31, 2010 Federal Communications Commission Equipment Approval Services P.O. Box 358315 Pittsburgh, PA 15251-5315 Re: Certification for L-Com Transceiver Model/PN(s): HAKIT-RTGU-250 HAKIT-RTGIU-250 HAKIT-RTGU-500 HAKIT-RTGIU-500 FCC ID: MYF-LCUSB Please find enclosed application materials for certification of L-Com Transceiver. We tested it and found it to comply with FCC Part 15. If there are any questions regarding the application or testing performed, please contact me at the above address or call 734-483-4211, fax 734-647-2106, or e-mail [email protected]. Sincerely, Valdis V. Liepa Research Scientist
RF Exposure Statement Requirement: According to CFR 15 §1.1307 (b)(1), systems operating under the provisions of this section shall be operated in a manner that ensure that the public is not exposed to radio frequency energy level in excess of the Commission’s guideline. SAR Testing: The USB radio and antenna employed in this system have already been approved together under the FCC ID: UDKZG-760E. The average output power under normal worst-case operation of the USB + antenna configuration (when operating duty cycle is applied) is 20.8 mW < 60/f(GHz) mW or 24.19 mW for d<2.5 cm (general population category). For the amplified systems, the user is instructed in the product manual to maintain no less than a 20 cm separation distance from this mobile device. Worst case conducted output power with the amplified system is measured to be 497 mW without duty cycle applied. Per the calculations below, SAR measurements are not necessary. Health Hazard: The following table summarizes the power density at a distance of 20 cm as calculated from FCC OET Bulletin 65. Potential Health Hazard Radiation Level Worst Case Ant.Gain (dBi)* Po** (mW) Duty Cycle*** (dB) EIRP **** (mW) S 20cm (mW/cm 2 ) Amplified System 2 497 - 787.04 0.157 USB radio + Antenna 2 26.9 -3.12 20.8 - USB radio + Antenna 2 12.3 - 19.5 - *Gain value provided from antenna manufacturer datasheet. ** Power output measured with radio in continuous transmit mode (100% on time) *** Duty Cycle is measured and applied for the worst case 802.11 b mode at maximum throughput. Measured using a crystal detector and high speed oscilloscope while a file transfer is made using the WLAN network at max 802.11 b mode 11 Mbps data rate. Duty cycle computed from data collected in Figure 1, on the following page. ****Note: EIRP employed is the greater of the average conducted output power and the EIRP. Figure 1 . Worst case 802.11b mode on time. The following equations were used in calculating duty cycle and power density (S). Duty Cycle = (-20.212 mV - -410.000 mV) / (390.000 mV - -410.000 mV) = 0.487 = -3.12 dB 10 )( 10)()( dBGain mWPomWEIRP 2 2 )(4 )( )/( cmR mWEIRP cmmWS , R = 20 cm
University of Michigan Radiation Laboratory FCC Part 15, IC RSS-210/Gen - Test Report No. 417124-559 Page 1 of 48 The University of Michigan Radiation Laboratory 3228 EECS Building Ann Arbor, MI 48109-2122 Tel: (734) 764-0500 Measured Radio Frequency Emissions From L-Com WLAN Transceiver FCC ID: MYF-LCUSB Report No. 417124-559 March 16, 2010 Copyright © 2010 For: L-Com, Inc. 45 Beechwood Drive North Andover Massachusetts Contact: Kenneth Burgner [email protected] Tel: 978 682 6936 Fax: 978 689 9484 PO: Verbal Tests supervised by: Measurements made by: Joseph D. Brunett Report approved by: _____________________ Valdis V. Liepa Test Report written by: Joseph D. Brunett Research Scientist Summary Tests for compliance with FCC Regulations, CFR 47, Part 15 and with Industry Canada RSS- 210/Gen, were performed on a L-Com, FCC ID: MYF-LCUSB. This device under test (DUT) is subject to the rules and regulations as a transceiver. In testing completed on March 20, 2010, the DUT tested met the allowed specifications for radiated emissions by 0.5 dB. Radiated digital emissions meet the Class B regulatory limit by more than 4.2 dB, and AC power line conducted emissions meet the Class B regulatory limit by 0.2 dB. University of Michigan Radiation Laboratory FCC Part 15, IC RSS-210/Gen - Test Report No. 417124-559 Page 2 of 48 Table of Contents 1 INTRODUCTION .............................................................................................................................................. 1 2 TEST PROCEDURE AND EQUIPMENT USED ........................................................................................... 1 3 DEVICE UNDER TEST .................................................................................................................................... 2 3.1 DESCRIPTION AND BLOCK DIAGRAM ............................................................................................................... 2 3.2 VARIANTS & SAMPLES ..................................................................................................................................... 3 3.3 MODES OF OPERATION ..................................................................................................................................... 3 3.4 EMI RELEVANT MODIFICATIONS ..................................................................................................................... 3 3.5 EXEMPTIONS .................................................................................................................................................... 3 4 EMISSION LIMITS .......................................................................................................................................... 4 4.1 RADIATED EMISSION LIMITS ............................................................................................................................ 4 4.2 POWER LINE CONDUCTED EMISSIONS LIMITS .................................................................................................. 4 5 MEASUREMENT PROCEDURES ................................................................................................................. 5 5.1 SEMI-ANECHOIC CHAMBER RADIATED EMISSIONS .......................................................................................... 5 5.2 OUTDOOR RADIATED EMISSIONS ..................................................................................................................... 5 5.3 RADIATED FIELD COMPUTATIONS ................................................................................................................... 5 5.4 INDOOR POWER LINE CONDUCTED EMISSIONS ................................................................................................ 5 5.5 SUPPLY VOLTAGE VARIATION ......................................................................................................................... 6 6 TEST RESULTS ................................................................................................................................................ 6 6.1 RADIATED EMISSIONS ...................................................................................................................................... 6 6.1.1 Peak-to -Average Ratio (15.35(b)) ......................................................................................................... 6 6.1.2 Emission Bandwidth (15.247(a)(2)) ....................................................................................................... 6 6.1.3 Radiated Spurious Emissions ................................................................................................................. 6 6.2 CONDUCTED EMISSIONS................................................................................................................................... 7 6.2.1 Output Power (15.247(b)) ...................................................................................................................... 7 6.2.2 AGC Amplifier Performance ................................................................................................................. 7 6.2.3 Computed Health Hazard EM Radiation Level ..................................................................................... 7 6.2.4 Peak Output Power Reduction (15.247(b)(4)(i)) ................................................................................... 8 6.2.5 RF Antenna Conducted Spurious Emissions (15.247(c)) ....................................................................... 8 6.2.6 Power Spectral Density and Line Spacing (15.247(d)) ......................................................................... 8 6.2.7 AC Power Line Conducted Emissions (15.207) ..................................................................................... 8 University of Michigan Radiation Laboratory FCC Part 15, IC RSS-210/Gen - Test Report No. 417124-559 Page 1 of 48 1 Introduction This L-Com transceiver was tested for compliance with FCC R…
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1301 Beal Ave. · Ann Arbor, Michigan · United States
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 2 | 15C | 2.44 GHz - 2.44 GHz | 497.00 mW |

2.4 GHz 802.11n Wireless USB Adapter
Equipment Class
DTS - Digital Transmission System
802.11b/g USB Dongle with Amplifier
Equipment Class
DTS - Digital Transmission System
Spread Spectrum Transmission System
Equipment Class
DTS - Digital Transmission System
Spread Spectrum Transmission System
Equipment Class
DTS - Digital Transmission System
Extended Range Wireless LAN
Equipment Class
DTS - Digital Transmission System