
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 38 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 5Setup Photos Figure 1 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 0 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 39 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 2 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 0 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 40 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 3 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 90 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 41 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 4 – Radiated emissions 9 kHz to 30 MHz Antenna Facing EUT 90 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 42 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 5 – Radiated emissions 30 MHz to 1000 MHz TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 43 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 6 – Radiated emissions 30 MHz to 1000 MHz TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 44 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 7 – Conducted and temperature test setup TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 45 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 8 – AC Line Conducted Emissions TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 46 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 9 – AC Line Conducted Emissions
From: [email protected] [ mailto:[email protected]] Sent: Tuesday, November 19, 2013 7:20 AM To: Jeremy Luong Subject: Response to Inquiry to FCC (Tracking Number 915399) FCC Home | Search | RSS | Updates | E-Filing | Initiatives | Consumers | Find People Office of Engineering and Technology Inquiry on 11/14/2013 : Inquiry: Dear Sir/ Madam, I am looking for the certification guidance on an RFID device operating at 134.2 kHz. It is categorically excluded for routine RF Exposure evaluation, CFR Part 2.1091(c) and 2.1093(c). This device is professionally installed for the fixed use. It is an automatic feeding system for industrial farm animal. It is always used more than 35 cm away from any human being. It is a low power device and met CFR47 Part 15.209 limit Can TCB certify this product? Can PBA be used? For the purpose of RF exposure calculation, can the limit at 300kHz, CFR Part 1.1310 Table 1, extend to the operating frequency 134.2 kHz? The attached RF exposure calculation was done by extended limit to 134.2 kHz. I have also included user manual. I am looking forward to your advice. The linked image cannot be displayed. The file may have been moved, renamed, or deleted. Verify that the link points to the correct file and location. Sincerely, Jeremy Luong FCC response on 11/19/2013 Yes, TCB may certify. PBA is not required. Yes, it is appropriate to extend the limits at 300 kHz in Table 1 of 1.1310 for operations at 134 kHz. When using occupational exposure limits, the use conditions must satisfy occupational exposure requirements and be fully documented in test reports. This includes antenna installation and operating instructions. Attachment Details: Do not reply to this message. Please select the Reply to an Inquiry Response link from the OET Inquiry System to add any additional information pertaining to this inquiry.
PO Box 388 · Osborne, KS 67473 · USA TELEPHONE (515) 509-5443 EMAIL [email protected] WEB www.osborne-ind.com www.osborne-ind.com Authority to Act as Agent Date: 9-13-2013 TUV Rheinland Group 762 Park Avenue Youngsville, NC 27596 To Whom It May Concern: I appoint TUV Rheinland Group to act as our agent in the preparation of this application for equipment certification. I certify that submitted documents properly describe the device or system for which equipment certification is sought. I also certify that each unit manufactured, imported or marketed, as defined in the FCC or Industry Canada’s regulations will have affixed to it a label identical to that submitted for approval with this application. For instances where our authorized agent signs the application for certification on our behalf, I acknowledge that all responsibility for complying with the terms and conditions for Certification, as specified by TUV Rheinland Group, still resides with Osborne Industries, 120 N. Industrial Ave, Osborne, KS 67473 For TCB applications, 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. Thank you, Agency Agreement Expiration Date: _____September 1, 2014_____ By: J. Douglas Barnes (Signature) (Print name) Title: __Agent________________________ Telephone:303 663 3396 On behalf of: ___Osborne Industries, Inc (Company Name)
PO Box 388 · Osborne, KS 67473 · USA TELEPHONE (515) 509-5443 EMAIL [email protected] WEB www.osborne-ind.com www.osborne-ind.com Date: 9-13-13 Subject: Confidentiality Request for FCC ID: 2AAWGOSBIFC001 Pursuant to FCC 47 CRF 0.457(d) and 0.459 and IC RSP-100, Section 10, the applicant requests that a part of the subject FCC/IC application be held confidential. Type of Confidentiality Requested Exhibit Short Term X Permanent Block Diagrams Short Term Permanent Internal Photos Short Term X Permanent Operation Description/Theory of Operation X Short Term Permanent Tune-Up Procedure Short Term X Permanent Schematics Short Term Permanent User’s Manual ______Osborne Industries Inc______ 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: 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 TUV Rheinland in the event information regarding the product or the product is made available to the public. TUV Rheinland will then release the documents listed above for public disclosure pursuant to FCC Public Notice DA 04-1705. Sincerely, By: J. Douglas Barnes , Agent (Signature/Title) (Print name)
TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 1 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 External Photos FCC ID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 Power Supply Antenna IFC (TX Unit) TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 2 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Transmitter with control Electronics TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 3 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Antenna TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 4 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Right side view TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 5 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Left side View TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 6 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Backside View TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 7 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Underside of the unit TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 8 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Power Supply Unit TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI-00B401 Page 9 of 9 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Top View Power Supply
Label Location
TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 1 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Internal Photos FCC ID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 2 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Transmitter with control Electronics TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 3 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Transmitter Unit TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 4 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 TX Control Electronics Board TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 5 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 Backside Control Electronics Board TUV Rheinland 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 EUT: Fire System Model: KI -00B401 Page 6 of 6 EMC / Rev 10/9/2013 FCCID: 2AAWGOSBIFC001; IC: 11368A- OSBIFC001 TX Board TX Board Backside
FIRE ® System Antenna Tuning Page 1 of 2 FIRE ® Feed Intake Recording Equip ment Antenna Tuning Procedure Antenna Tuning Please read this procedure with user manual. Under some circumstances (such as antenna replacement), the antenna will require tuning to optimize the ID capabilities. To tune the antenna, proceed to the 'AA' (antenna adjust) menu in the 'HF' menu. When the button is pressed long at 'AA', the antenna adjust procedure is initiated. Optimizi ng the antenna tuning is accomplis hed one of two ways -- watching the display or the appropriate antenna LED. 2.7.6.1 Display The display will initially show a numeric value indicating a relative antenna signal. Turn the capacitor either clockwise or counter-clockwise until the value on the display reaches a maximum. W hen the maximum value is achieved, the antenna will be tuned and the butto n may now be pressed long to enter. Exit the menu to normal operation by pressing and holding the button (exit press). Refer to figure 4. 2.7.6.2 Antenna LED Operation An alternative to the display is to watch the LED for the appropriate antenna (RF1 for FIRE). Turn the capacitor (C – Figure 56) one direction or the other. If the LED is on, continue turning in the same direction. W hen the LED goes off, reverse the direction of the capacitor. The LED should now turn back on indicating the correct direction. Continue reversing the capacitor turning direction until the optimum tuning is achieved. Press the button long to enter. Exit the antenn a adjust menu to normal operation by pressing and holding the button (exit press). 2.7.6.3 Acceptable Reading Range The FIRE Feeder should have a minimum antenna reading range of 20 -24 cm (8 - 10") -- approximately halfway across the trough. If the range is less than the minimum, try optimizing the antenna tuning. If unable to achieve greater range, check antenna connections or replace the antenna and/or the electronics hardware. 2.7.7 Output Configuration Proper operation of the station requires the electronics hardware to know what is connected - mainly in the case of the dispenser. To set the board for the dispenser, proceed to the 'oc' menu option and press the button long. The board will now test each output and operate the device connected. The display will show the output number (1 in the case of the dispenser) follo wed initially by a dash (-), then the type of device connected (n - normally connected motor, i - inverse connected motor, or r - relay connection). The FI RE Feeder should return a 1i for the dispenser. W hen complete, the station will return to normal operation. FIRE ® System Antenna Tuning Page 2 of 2 Following the output configuration, the motor brake jumper needs to be set for the brake on port 1. This allows the board to stop the dispenser immediately after turning it off. If the brake is set to off, no damage will be done, but the motor will continue to spin for a short time before stopping. Figure 1. FIRE Feeder IFC components
Report Number: 31362102.001 Appendix A Page 1 of 5 EUT: Osborne IFC Models: KI-00B401 EMC / Rev 11/11/2013 FCCID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 RF Exposure Exhibit EUT Name: Osborne IFC Model Nos.: KI-00B401 CFR Part 1.1310 and RSS 102 Prepared for: Osborne Industries, Inc 120 N Industrial Ave Osborne, KS 67473 USA Tel: 785 346 2192 Prepared by: TUV Rheinland of North America, Inc. 1279 Quarry Lane Pleasanton, CA 94566 Tel: (925) 249-9123 Fax: (925) 249-9124 http://www.tuv.com/ Report/Issue Date: October 03, 2013 Report Number: 31362102.001 Appendix A TUV Rheinland Test Methodology 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001 Appendix A Page 2 of 5 EUT: Osborne IFC Models: KI-00B401 EMC / Rev 11/11/2013 FCCID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 Contents RF Exposure Exhibit ................................................................................................................. 1 1 Maximum Permissible Exposure ........................................................................................... 3 1.1 Test Methodology ........................................................................................................................ 3 1.2 RF Exposure Limit ..................................................................................................................... 3 1.2.1 EUT Operating Condition ..................................................................................................................... 4 1.2.2 Classification .......................................................................................................................................... 4 1.3 Test Results .................................................................................................................................. 4 1.3.1 Antenna details ....................................................................................................................................... 4 1.3.2 Output Power into Antenna & RF Exposure value at distance 20cm: ..................................................... 4 TUV Rheinland Test Methodology 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001 Appendix A Page 3 of 5 EUT: Osborne IFC Models: KI-00B401 EMC / Rev 11/11/2013 FCCID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 1 Maximum Permissible Exposure 1.1 Test Methodology In this document, we try to prove the safety of radiation harmfulness to the human body for our product. The limit for Maximum Permissible Exposure (MPE) specified in FCC 1.1310 is followed. The Gain of the antenna used in this product is measured in a Semi-Anechoic Chamber, and also the maximum total power input to the antenna is measured. Through the Friis transmission formula and the maximum gain of the antenna, we can calculate the distance, away from the product, where the limit of MPE is reached. Although the Friis transmission formula is a far field assumption, the calculated result of that is an over- prediction for near field power density. We will take that as the worst case to specify the safety range. 1.2 RF Exposure Limit According to FCC 1.1310 table 1: The criteria listed in the following table shall be used to evaluate the environmental impact of human exposure to radio-frequency (RF) radiation as specified in 1.1307(b) LIMITS FOR MAXIMUM PERMISSIBLE EXPOSURE (MPE) Frequency Range (MHz) Electric Field Strength (V/m) Magnetic Field Strength (A/m) Power Density (mW/cm2) Average Time (minutes) (A)Limits For Occupational / Control Exposures 0.3-1.34 614 1.63 *(100) 6 1.34-30 1842/f 4.89/f *(900/f²) 6 30-300 61.4 0.163 1.0 6 30-1500 ... ... F/300 6 1500-100000 ... ... 1.0 6 (B)Limits For General Population / Uncontrolled Exposure 0.3-1.34 614 1.63 *(100) 30 1.34-30 824/f 2.19/f *(180/f²) 30 30-300 27.5 0.073 0.2 30 30-1500 ... ... F(MHz)/1500MHz 30 1500-100000 ... ... 1.0 30 F = Frequency in MHz *=Plane wave equivalent density As per FCC KDB limit 9KHz to 0.3MHz are same as limit at 0.3MHz TUV Rheinland Test Results 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001 Appendix A Page 4 of 5 EUT: Osborne IFC Models: KI-00B401 EMC / Rev 11/11/2013 FCCID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 1.2.1 EUT Operating Condition The software provided by Manufacturer enabled the EUT to transmit at the maximum power for RFID KI-00B401. EUT transmits at 134.2 KHz into loop antenna 24cmx 25cm Antenna manufactured by Osborne Industries. Model Number is KR-FDE750. 1.2.2 Classification The antenna of the product, under normal use condition, is at least 20cm away from the body of the user. Warning statement to the user for keeping at least 20cm or more separation distance with the antenna should be included in user’s manual. So, this device is classified as a Mobile Device. 1.3 Test Results 1.3.1 Antenna details The transmitting antenna is loop antenna 22cmx 19cm Antenna manufactured by Osborne Industries, antenna Model Number KR-FDE750. Maximum current in the loop as per manufacturer 350 mA. Number turns 32. Total current in loop 32x 0.35= 11.2 Amps 1.3.2 Output Power into Antenna & RF Exposure value at distance 20cm: Simplified form of this Equation TUV Rheinland Test Results 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001 Appendix A Page 5 of 5 EUT: Osborne IFC Models: KI-00B401 EMC / Rev 11/11/2013 FCCID: 2AAWGOSBIFC001 IC: 11368A- OSBIFC001 For KI-00B401 induced magnetic field calculated as B = 0.000063974 Tesla or 0.63974 Gauss For calculation H filed worst case highest dimension the loop was used. The radius of the loop was taken as 11cm. H field at cm the antenna At 20cm with r= 11cm 11.2 X 0.0121/ 2 (0.0121+0.04) ³/² = 5.69 A/m this is above limit of 1.63 A/m Calculating the distance at which Magnetic field strength reaches 1.63A/m using the sam…
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Report Number: 31362102.001 Page 1 of 49 EUT: Osborne IFC Model: KI-00B401 Report Date: October 11, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Emissions Test Report EUT Name: Osborne IFC Model No.: KI-00B401 CFR 47 Part 15.209:2013 and RSS-210:2010 Prepared for: Richard Murphy Osborne Industries, Inc. 120 N Industrial Ave. Osborne, KS 67473 Tel: (785) 346-2192 Prepared by: TUV Rheinland of North America, Inc. 1279 Quarry Lane, Ste. A Pleasanton, CA 94566 Tel: (925) 249-9123 Fax: (925) 249-9124 http://www.tuv.com/ Report/Issue Date: October 11, 2013 Report Number: 31362102.001 Project Number: 0000112010 Revision Number: 1 Report Number: 31362102.001 Page 2 of 49 EUT: Osborne IFC Model: KI-00B401 Report Date: October 11, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Revisions Revision No. Dat e MM/DD/YYYY Reason for C hange Author 0 10/09/2013 Original Document N/A 1 10/11/2013 Added section 4.1 & 4.5 Suresh K Not e: L atest r evision report w ill r eplace all previou s reports. Statement of Compliance Report Number: 31362102.001 Page 3 of 49 EUT: Osborne IFC Model: KI-00B401 Report Date: October 11, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Manufacturer: Osborne Industries, Inc. 120 N Industrial Ave. Osborne, KS 67473 (785) 346-2192 Requester / Applicant: Richard Murphy Name of Equipment: Osborne IFC Model No. KI-00B401 Type of Equipment: Industrial, Scientific, or Medical (ISM) Application of Regulations: CFR 47 Part 15.209:2013 and RSS-210:2010 Test Dates: August 12, 2013 to August 29, 2013 Guidance Documents: Emissions: ANSI C63.10: 2009 Test Methods: Emissions: ANSI C63.10: 2009 The electromagnetic compatibility test and documented data described in this report has been performed and recorded by TUV Rheinland, in accordance with the standards and procedures listed herein. As the responsible authorized agent of the EMC laboratory, I hereby declare that the equipment described above has been shown to be compliant with the EMC requirements of the stated regulations and standards based on these results. If any special accessories and/or modifications were required for compliance, they are listed in the Executive Summary of this report. This report must not be used to claim product endorsement by A2LA or any agency of the U.S. Government. This report contains data that are not covered by A2LA accreditation. This report shall not be reproduced except in full, without the written authorization of TUV Rheinland of North America. Suresh Kondapalli October 11, 2013 Conan Boyle October 11, 2013 Test Engineer Date A2LA Signatory Date Industry Canada Testing Cert #3331.02 US5254 2932M-1 Table of Contents Report Number: 31362102.001 Page 4 of 49 EUT: Osborne IFC Model: KI-00B401 Report Date: October 11, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 1 Executive Summary _______________________________________________________ 7 1.1 Scope______________________________________________________________________ 7 1.2 Purpose____________________________________________________________________ 7 1.3 Summary of Test Results _____________________________________________________ 7 1.4 Special Accessories __________________________________________________________ 7 1.5 Equipment Modifications _____________________________________________________ 7 2 Laboratory Information ____________________________________________________ 8 2.1 Accreditations & Endorsements _______________________________________________ 8 2.1.1 US Federal Communications Commission _______________________________________________ 8 2.1.2 ILAC / A2LA _____________________________________________________________________ 8 2.1.3 Canada – Industry Canada ___________________________________________________________ 8 2.1.4 Japan – VCCI _____________________________________________________________________ 8 2.2 Test Facilities _______________________________________________________________ 9 2.2.1 Emission Test Facility ______________________________________________________________ 9 2.2.2 Immunity Test Facility ______________________________________________________________ 9 2.3 Measurement Uncertainty ____________________________________________________ 9 2.3.1 Sample Calculation – radiated & conducted emissions ____________________________________ 10 2.3.2 Measurement Uncertainties _________________________________________________________ 10 2.4 Calibration Traceability _____________________________________________________ 11 3 Product Information ______________________________________________________ 12 3.1 Product Description ________________________________________________________ 12 3.2 Equipment Configuration ___________________________________________________ 12 3.3 Operating Mode ___________________________________________________________ 12 3.4 Unique Antenna Connector __________________________________________________ 13 3.4.1 Results _________________________________________________________________________ 13 4 Emissions ______________________________________________________________ 14 4.1 Carrier Field Strength Requirements __________________________________________ 14 4.1.1 Test Method _____________________________________________________________________ 15 4.1.2 Results _________________________________________________________________________ 15 4.1 Occupied Bandwidth _______________________________________________________ 17 4.1.1 Test Method _____________________________________________________________________ 17 4.1.2 Results _________________________________________________________________________ 18 4.2 Transmitter Spurious Emissions ______________________________________________ 21 4.2.1 Test Methodology _________________________________________________________________ 21 4.2.2 Transmitter Spurious Emission Limit __________________________________________________ 22 4.2.3 Test Results ______________________________________________________________________ 22 4.2.4 Sample Calculation _____________________________…
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TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 38 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 5Setup Photos Figure 1 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 0 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 39 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 2 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 0 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 40 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 3 – Radiated Emissions 9 kHz to 30 MHz Antenna Facing EUT 90 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 41 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 4 – Radiated emissions 9 kHz to 30 MHz Antenna Facing EUT 90 Degrees TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 42 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 5 – Radiated emissions 30 MHz to 1000 MHz TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 43 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 6 – Radiated emissions 30 MHz to 1000 MHz TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 44 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 7 – Conducted and temperature test setup TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 45 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC001 Figure 8 – AC Line Conducted Emissions TUV RheinlandFrequency Stability 1279 Quarry Lane, Ste. A, Pleasanton, CA 95466 Tel: (925) 249-9123, Fax: (925) 249-9124 Report Number: 31362102.001Page 46 of 51 EUT: Osborne IFC Model: KI-00B401 Report Date: October 9, 2013 FCCID: 2AAWGOSBIFC001, IC: 11368A-OSBIFC0…
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| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 0.1342 MHz - 0.1342 MHz | 5.71 mW |