FCC TEST REPORT. for. 47 CFR FCC Rules and Regulations Part 15 Subpart B, Class A Digital Device

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Report No. : FV083127 FCC TEST REPORT for 47 CFR FCC Rules and Regulations Part 15 Subpart B, Class A Digital Device Equipment Model No. FCC ID Filing Type Applicant : Fan Free Touch Terminal : XP-3315H, XP-3312H, XP-3015H, XP-3012H, XP-3115H, TX-3000 : N/A : Verification : POSIFLEX TECHNOLOGY, INC. NO. 6, WU-CHUAN RD., WU-KU, (WU-KU INDUSTRIAL ZONE), TAIPEI HSIEN, TAIWAN, R.O.C. The test result refers exclusively to the test presented test model / sample. Without written approval of SPORTON International Inc., the test report shall not be reproduced except in full. Certificate or Test Report must not be used by the applicant to claim the product in this test report endorsement by TAF. SPORTON International Inc. 6F, No.106, Sec. 1, Hsin Tai Wu Rd., Hsi Chih, Taipei Hsien, Taiwan, R.O.C. SPORTON International Inc.

Report No. : FV083127 Table of Contents History of this test report...ii CERTIFICATE OF COMPLIANCE...1 1. General Description of Equipment under Test...2 1.1. Applicant...2 1.2. Manufacturer...2 1.3. Basic Description of Equipment under Test...2 1.4. Feature of Equipment under Test...3 2. Test Configuration of Equipment under Test...4 2.1. Test Manner...4 2.2. Description of Test System...5 2.3. Connection Diagram of Test System...8 3. Test Software...9 4. General Information of Test...10 4.1. Test Facility...10 4.2. Test Voltage...10 4.3. Standard for Methods of Measurement...10 4.4. Test in Compliance with...10 4.5. Frequency Range Investigated...10 4.6. Test Distance...10 5. Test of Conducted Powerline...11 5.1. Major Measuring Instruments...11 5.2. Test Procedures...11 5.3. Typical Test Setup Layout of Conducted Powerline...12 5.4. Test Result of AC Powerline Conducted Emission...13 5.5. Photographs of Conducted Powerline Test Configuration...15 6. Test of Radiated Emission...17 6.1. Major Measuring Instruments...17 6.2. Test Procedures...19 6.3. Typical Test Setup Layout of Radiated Emission...20 6.4. Test Result of Radiated Emission...21 6.5. Photographs of Radiated Emission Test Configuration...27 7. List of Measuring Equipment Used...28 8. Uncertainty of Test Site...29 Appendix A. Photographs of EUT... A1 ~ A106 SPORTON International Inc. FCC ID : N/A Page No. : i Issued Date : Sep. 21, 2010

Report No. : FV083127 History of this test report Original Report Issue Date: Sep. 21, 2010 No additional attachment. Additional attachment were issued as following record: Attachment No. Issue Date Description SPORTON International Inc. FCC ID : N/A Page No. : ii Issued Date : Sep. 21, 2010

Report No. : FV083127 Certificate No. : FV083127 CERTIFICATE OF COMPLIANCE for 47 CFR FCC Rules and Regulations Part 15 Subpart B, Class A Digital Device Equipment : Fan Free Touch Terminal Model No. : XP-3315H, XP-3312H, XP-3015H, XP-3012H, XP-3115H, TX-3000 FCC ID Applicant : N/A : POSIFLEX TECHNOLOGY, INC. NO. 6, WU-CHUAN RD., WU-KU, (WU-KU INDUSTRIAL ZONE), TAIPEI HSIEN, TAIWAN, R.O.C. I HEREBY CERTIFY THAT: The measurements shown in this test report were made in accordance with the procedures given in ANSI C63.4-2003 and the energy emitted by this equipment was passed FCC Part 15 Subpart B in both radiated and conducted emission class A limits. Testing was carried out on Sep. 13, 2010 at SPORTON International Inc. LAB. Castries Huang Supervisor SPORTON International Inc. 6F, No.106, Sec. 1, Hsin Tai Wu Rd., Hsi Chih, Taipei Hsien, Taiwan, R.O.C. SPORTON International Inc. FCC ID : N/A Page No. : 1 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 1. General Description of Equipment under Test 1.1. Applicant POSIFLEX TECHNOLOGY, INC. NO. 6, WU-CHUAN RD., WU-KU, (WU-KU INDUSTRIAL ZONE), TAIPEI HSIEN, TAIWAN, R.O.C. 1.2. Manufacturer Same as 1.1 1.3. Basic Description of Equipment under Test Equipment Model No. Trade Name RJ45 Cable : Fan Free Touch Terminal : XP-3315H, XP-3312H, XP-3015H, XP-3012H, XP-3115H, TX-3000 : POSIFLEX TECHNOLOGY, INC. : Non-Shielded, 10 m RJ45 to DB9M Cable : Non-Shielded, 0.2m CR Cable Power Supply Type AC Power Input DC Power Cable : Non-Shielded, 1.0 m : Switching : Non-Shielded, 1.8 m, 3 pin : Shielded, 1.2 m, 4 pin SPORTON International Inc. FCC ID : N/A Page No. : 2 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 1.4. Feature of Equipment under Test Models XP-3012H XP-3015H XP-3312H XP-3315H XP-3115H TX-3000 Item LCD Display (TFT LCD Panel) Digital 12" Digital 15" Digital 12" Digital 15" Digital 15" N/A CPU Intel Pine View D-SC 1.66G, 512K Cache (Single core or Dual core) VGA Port D-SUB 15Pin DRAM Memory DDR-II667Mhz, Max 2GB (SO-DIMM X 1) Ethernet Port 10/100/1000 MB CR Port X1, Control 2 cash drawers Serial Port 3, DB9 X 2, RJ-45 X 1 4, DB9 X3, RJ-45 X 1 Standard USB Port X 4 X 5 X 4 Touch Function USB Interface N/A Touch Sensor 5 Wire Touch Pad N/A UPS Yes N/A PS2 port X 1 Magnetic Stripe Yes N/A Reader Power switch On the top side Soft Switch Power Saving Suspension mode Storage device 2.5" SATA HDD or SSD HDD Indicator LED and Control panel switch Fan-Free system OS support Power ON/ standby, bi-color LED, Printer Error (RED), Paper Out (RED), paper feed / power ON switch / Brightness control buttons. Yes Windows XP Pro, WEPOS, POSReady, Win 7, Linux Power ON/ standby, bi-color LED, Ethernet Link LED on Ethernet Connector Power Supply 80W 120W 60W Printer build in 3" Thermal Printer (60mm/sec) 3" Thermal Printer (150mm /sec) N/A Printer auto cutter Yes N/A Maximum Paper 80mm N/A roller diameter Paper thickness Less then 86µm N/A LCD panel tilt angle 14~55 (degree) N/A LCD Panel : AUO / G150XG03 LCD Panel : STARRY/2-08-L121AU5-001L HDD : TOSHIBA/ MK1665GSX Battery : LONG / WP1223W Adapter : POSIFLEX / EA11353A-120 Input : 100-240V~2.5A, 50-60Hz Output : 12V / 10A Adapter : POSIFLEX / EA10953A Input : 100-240V~2.5A, 50-60Hz Output : 12V / 6.6A Adapter : POSIFLEX / EA1050A-120 Input : 100-240V~1.8A, 50-60Hz Output : 12V / 5.0A SPORTON International Inc. FCC ID : N/A Page No. : 3 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 2. Test Configuration of Equipment under Test 2.1. Test Manner a. The EUT has been associated with peripheral pursuant to ANSI C63.4-2003 and configuration operated in a manner which tended to maximize its emission characteristics in a typical application. b. The complete test system included remote workstation, HP LCD Monitor, HP PS2 Keyboard, LOGITECH USB Mouse, ACEEX Modem, APPLE ipod, POSIFLEX CASH Drawer and EUT for EMI test. The remote workstation included HP PC, COMPAQ Monitor, COMPAQ PS/2 Keyboard and HP PS/2 Mouse. c. The following mode was performed for EMI test: Mode 1. XP-3315H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 14, Adapter : 120W Mode 2. XP-3315H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 55, Adapter : 120W Mode 3. XP-3315H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 14, BATTERY only for radiation test Mode 4. XP-3312H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 55, Adapter : 120W Mode 5. XP-3015H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 55, Adapter : 80W Mode 6. XP-3012H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 55, Adapter : 80W Mode 7. XP-3115H, VGA : 1024 768 60Hz, LAN : 1Gbps, LCD panel tilt angle : 55, Adapter : 120W Mode 8. TX-3000, VGA : 1024 768 60Hz, LAN : 1Gbps, Adapter : 60W For conducion test, cause mode 7 generated the worst test result, it was reported as final data. For radiation test, cause mode 1 generated the worst test result, it was reported as final data. d. Frequency range investigated: conduction 150 khz to 30 MHz, radiation 30 MHz to 9,000 MHz. SPORTON International Inc. FCC ID : N/A Page No. : 4 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 2.2. Description of Test System Support Unit 1. LCD Monitor (HP) for local workstation FCC ID : N/A Model No. : HP w22 Power Supply Type : Switching Power Cord : Non-Shielded Serial No. : SP0029 Data Cable : Shielded, 360 degree via metal backshells, 1.7m Support Unit 2. PS/2 Keyboard (HP) for local workstation FCC ID : N/A Model No. : KB-0133 Serial No. : SP0054 Data Cable : Shielded, 360 degree via metal backshells, 1.6m Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. Support Unit 3. -- USB Mouse (LOGITECH) for local workstation FCC ID : N/A Model No. : M-BE58 Serial No. : SP0041 Data Cable : Shielded, 1.7m Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. Support Unit 4. -- Modem (ACEEX) for local workstation FCC ID : IFAXDM1414 Model No. : DM1414 Power Supply Type : Linear Power Cord : Non-Shielded Serial No. : SP0015 Data Cable : Shielded, 1.8m SPORTON International Inc. FCC ID : N/A Page No. : 5 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 Support Unit 5. ipod (APPLE) for local workstation FCC ID : N/A Model No. : A1137 Serial No. : SP0041 Data Cable : Shielded, 1.1m Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. Support Unit 6. CASH Drawer (POSIFLEX) for local workstation FCC ID : N/A Model No. : CR-2000 Support Unit 7. -- Personal Computer (HP) for remote workstation FCC ID : N/A Model No. : D330uT Power Supply Type : Switching Power Cord : Non-Shielded Serial No. : SP0059 Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. Support Unit 8. Monitor (COMPAQ) for remote workstation FCC ID : N/A Model No. : S510 Power Supply Type : Switching Power Cord : Non-Shielded Serial No. : SP0067 Data Cable : Shielded, 360 degree via metal backshells, 1.7m Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. SPORTON International Inc. FCC ID : N/A Page No. : 6 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 Support Unit 9. -- PS/2 Keyboard (COMPAQ) for remote workstation FCC ID : N/A Model No. : 6511-VA Serial No. : SP0054 Data Cable : Shielded, 1.6m Remark : This support device was tested to comply with FCC standards and authorized under a declaration of conformity. Support Unit 10. -- PS/2 Mouse (HP) for remote workstation FCC ID : JNZ211443 Model No. : M-S69 Serial No. : SP0045 Data Cable : Shielded, 1.8m SPORTON International Inc. FCC ID : N/A Page No. : 7 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 2.3. Connection Diagram of Test System 11 1 10 To remote workstation LCD Monitor EUT Case Drawer 7 8 9 4 5 6 ipod Nano*3 2 3 Modem*3 Keyboard Mouse 1. The I/O cable is connected from the EUT to the support unit 1. 2. The I/O cable is connected from the EUT to the support unit 2. 3. The I/O cable is connected from the EUT to the support unit 3. 4. The RJ45 to DB9M cable is connected from the EUT to the support unit 4 5. The I/O cable is connected from the EUT to the support unit 4. 6. The I/O cable is connected from the EUT to the support unit 4. 7. The I/O cable is connected from the EUT to the support unit 5. 8. The I/O cable is connected from the EUT to the support unit 5. 9. The I/O cable is connected from the EUT to the support unit 5. 10. The I/O cable is connected from the EUT to the support unit 6. 11. The RJ45 cable is connected from the EUT to the remote workstation. SPORTON International Inc. FCC ID : N/A Page No. : 8 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 3. Test Software Two executive programs, EMITEST.EXE & WINFCC.EXE under WIN XP, which generates a complete line of continuously repeating H pattern were used as the test software. The programs were executed as follows : a. Turn on the power of all equipment. b. The PC reads the test program from the hard disk drive and runs it. c. The PC sends H messages to the monitor, and the monitor displays H patterns on the screen. d. The PC sends signal messages to the modem. e. The PC sends signal messages to the internal Hard Disk, and the Hard Disk reads and writes the message. f. Repeat the steps from c to e. At the same time, the following programs were executed: - Executed WINTHRAX.EXE to read and write data from ipod. - Executed PPEMI to kept printing. - Executed TEST-CR to keep sending signals. - Executed PING.EXE to link with the remote workstation to receive and transmit data by RJ45 cable. SPORTON International Inc. FCC ID : N/A Page No. : 9 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 4. General Information of Test 4.1. Test Facility Test Site Location : No. 30-2, Lin 6, Diing-Fwu Tsuen, Lin-Kou-Hsiang, Taipei Hsien, Taiwan, R.O.C. TEL: 886-2-2601-1640 FAX: 886-2-2601-1695 Test Site No. : CO01-LK, OS02-LK Test Site Location : No. 52, Hwa Ya 1St Road, Hwa Ya Technology Park, Kwei-Shan Hsiang, TaoYuan Hsien, Taiwan, R.O.C. TEL : 886-3-3273456 FAX : 886-3-3180055 Test Site No. : 03CH04-HY 4.2. Test Voltage 120V/60Hz 4.3. Standard for Methods of Measurement ANSI C63.4-2003 4.4. Test in Compliance with FCC Rules and Regulations Part 15 Subpart B 4.5. Frequency Range Investigated a. Conduction: from 150 khz to 30 MHz b. Radiation: from 30 MHz to 9,000 MHz 4.6. Test Distance a. The test distance of radiated emission from antenna to EUT is 10 m (from 30MHz~1000MHz). b. The test distance of radiated emission from antenna to EUT is 3 m (from 1GHz~9GHz). SPORTON International Inc. FCC ID : N/A Page No. : 10 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 5. Test of Conducted Powerline Conducted Emissions were measured from 150 khz to 30 MHz with a bandwidth of 9 KHz and return leads of the EUT according to the methods defined in ANSI C63.4-2003 Section 3.1. The EUT was placed on a nonmetallic stand in a shielded room 0.8 meters above the ground plane as shown in section 5.3. The interface cables and equipment positioning were varied within limits of reasonable applications to determine the position produced maximum conducted emissions. 5.1. Major Measuring Instruments Test Receiver ( R&S ESCS 30 ) Attenuation 10 db Start Frequency 0.15 MHz Stop Frequency 30 MHz IF Bandwidth 9 khz 5.2. Test Procedures a. The EUT was placed 0.4 meter from the conducting wall of the shielding room was kept at least 80 centimeters from any other grounded conducting surface. b. Connect EUT to the power mains through a line impedance stabilization network (LISN). c. The LISN provides 50 ohm coupling impedance for the measuring instrument. d. The FCC states that a 50 ohm, 50 microhenry LISN should be used. e. Both sides of AC line were checked for maximum conducted interference. f. The frequency range from 150 khz to 30 MHz was searched. g. Set the test-receiver system to Peak Detect Function and Specified Bandwidth with Maximum Hold Mode. SPORTON International Inc. FCC ID : N/A Page No. : 11 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 5.3. Typical Test Setup Layout of Conducted Powerline SPORTON International Inc. FCC ID : N/A Page No. : 12 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 5.4. Test Result of AC Powerline Conducted Emission 5.4.1. Test Mode: Mode 7 Frequency Range of Test : from 0.15 MHz to 30 MHz Temperature : 27 Relative Humidity : 50 % Corrected Reading (dbuv) = LISN Factor + Cable Loss + Read Level = Level All emissions not reported here are more than 10 db below the prescribed limit. The test was passed at the minimum margin that marked by a frame in the following table SPORTON International Inc. FCC ID : N/A Page No. : 13 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 Test Engineer : Wilson Yeh SPORTON International Inc. FCC ID : N/A Page No. : 14 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 5.5. Photographs of Conducted Powerline Test Configuration The photographs show the configuration that generates the maximum emission. FRONT VIEW REAR VIEW SPORTON International Inc. FCC ID : N/A Page No. : 15 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 SIDE VIEW SPORTON International Inc. FCC ID : N/A Page No. : 16 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6. Test of Radiated Emission Radiated emissions from 30 MHz to 9,000 MHz were measured with a bandwidth of 120 khz for 30 MHz to 1000 MHz and 1 MHz for above 1GHz according to the methods defines in ANSI C63.4-2003. The EUT was placed on a nonmetallic stand, 0.8 meter above the ground plane, as shown in section 6.3. The interface cables and equipment positions were varied within limits of reasonable applications to determine the positions producing maximum radiated emissions. 6.1. Major Measuring Instruments 6.1.1. From 30MHz to 1GHz Amplifier ( HP 87405A ) RF Gain Signal Input 25 db 0.1 MHz - 1.3 GHz Spectrum Analyzer ( R&S FSP ) Attenuation Start Frequency Stop Frequency Resolution Bandwidth Signal Input 10 db 30 MHz 1000 MHz 120 khz 9 khz - 7 GHz Test Receiver ( R&S ESCS 30 ) Resolution Bandwidth Frequency Band Quasi-Peak Detector 120 khz 9 khz - 2.75 GHz ON for Quasi-Peak Mode OFF for Peak Mode SPORTON International Inc. FCC ID : N/A Page No. : 17 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6.1.2. From 1GHz to 9GHz Amplifier ( AGILENT 8449B ) RF Gain Signal Input 35 db 1 GHz - 26.5 GHz Spectrum Analyzer ( R&S FSP30 ) Attenuation 10 db Start Frequency Stop Frequency Resolution Bandwidth Video Bandwidth Signal Input 1 GHz 9 GHz 1 MHz 3 MHz 9 khz - 30 GHz SPORTON International Inc. FCC ID : N/A Page No. : 18 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6.2. Test Procedures a. The EUT was placed on a rotatable table top 0.8 meter above ground. b. The EUT was set 3/10 meters from the interference receiving antenna which was mounted on the top of a variable height antenna tower. c. The table was rotated 360 degrees to determine the position of the highest radiation. d. The antenna is a half wave dipole and its height is varied between one meter and four meters above ground to find the maximum value of the field strength both horizontal polarization and vertical polarization of the antenna are set to make the measurement. e. For each suspected emission the EUT was arranged to its worst case and then tune the antenna tower (from 1 M to 4 M) and turn table (from 0 degree to 360 degrees) to find the maximum reading. f. Set the test-receiver system to Peak Detect Function and specified bandwidth with Maximum Hold Mode. g. If the emission level of the EUT in peak mode was 3 db lower than the limit specified, then testing will be stopped and peak values of EUT will be reported, otherwise, the emissions which do not have 3 db margin will be repeated one by one using the quasi-peak method and reported. h. For testing above 1GHz, the emission level of the EUT in peak mode was 20dB lower than average limit (that means the emission level in peak mode also complies with the limit in average mode), then testing will be stopped and peak values of EUT will be reported, otherwise, the emissions will be measured in average mode again and reported. SPORTON International Inc. FCC ID : N/A Page No. : 19 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6.3. Typical Test Setup Layout of Radiated Emission SPORTON International Inc. FCC ID : N/A Page No. : 20 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6.4. Test Result of Radiated Emission 6.4.1. Test Mode: Mode 1 Frequency Range of Test : from 30 MHz to 9,000 MHz Temperature : 29 Relative Humidity : 43 % Emission level (dbuv/m) = 20 log Emission level (uv/m) Corrected Reading : Antenna Factor + Cable Loss + Read Level Preamp Factor = Level The test was passed at the minimum margin that marked by the frame in the following test record Test Distance: 10 m for 30MHz ~ 1GHz SPORTON International Inc. FCC ID : N/A Page No. : 21 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 SPORTON International Inc. FCC ID : N/A Page No. : 22 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 SPORTON International Inc. FCC ID : N/A Page No. : 23 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 SPORTON International Inc. FCC ID : N/A Page No. : 24 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 Test Distance: 3 m for 1GHz ~ 9GHz SPORTON International Inc. FCC ID : N/A Page No. : 25 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 Test Engineer : Kenny Chuang SPORTON International Inc. FCC ID : N/A Page No. : 26 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 6.5. Photographs of Radiated Emission Test Configuration The photographs show the configuration that generates the maximum emission. FRONT VIEW REAR VIEW SPORTON International Inc. FCC ID : N/A Page No. : 27 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 7. List of Measuring Equipment Used Instrument Manufacturer Model No. Serial No. Characteristics Calibration Date Remark Receiver R&S ESCS 30 838251/003 9 khz - 2.75 GHz Apr. 16, 2010 LISN Rolf Heine NNB-2/16Z 98087 9 khz - 30 MHz Oct. 07, 2009 Conduction (CO01-LK) Conduction (CO01-LK) RF Cable-CON Suhner Switzerland RG223/U CB017 9 khz - 30 MHz Nov. 04, 2009 Conduction (CO01-LK) Open Area Test Site SPORTON OATS-10 OS02-LK 30 MHz - 1 GHz 10m, 3m Sep. 19, 2009 Radiation (OS02-LK) Amplifier HP 87405A 3950M00135 0.1MHz 1.3GHz Mar. 19, 2010 Spectrum Analyzer R&S FSP 100641 9 khz 7 GHz Nov. 24, 2009 Receiver R&S ESCS 30 847793/003 9 khz - 2.75 GHz Oct. 21, 2009 Bilog Antenna CHASE CBL6111C 2715C 30 MHz - 1 GHz May 15, 2010 Turn Table EMCO 2080 9711-1090 0-360 degree N/A Antenna Mast EMCO 2075 9711-2114 1 m - 4 m N/A RF Cable-R10m BELDEN RG8/U CB007 30 MHz - 1 GHz Jan. 25, 2010 Radiation (OS02-LK) Radiation (OS02-LK) Radiation (OS02-LK) Radiation (OS02-LK) Radiation (OS02-LK) Radiation (OS02-LK) Radiation (OS02-LK) Spectrum Analyzer R&S FSP30 100792 9 khz 30GHz Apr. 01, 2010 Radiation Amplifier Agilent 8449B 3008A02326 1GHz 26.5 GHz Feb. 26, 2010 Radiation RF Cable-HIGH SUHNER SUCOFLEX 106 CB063-HF 1 GHz - 40 GHz Nov. 25, 2009 Radiation Horn Antenna ETS 3117 00091920 1GHz ~ 18GHz Oct. 22, 2009 Radiation Calibration Interval of instruments listed above is one year. SPORTON International Inc. FCC ID : N/A Page No. : 28 of 29 Issued Date : Sep. 21, 2010

Report No. : FV083127 8. Uncertainty of Test Site Uncertainty of Conducted Emission Measurement (150kHz ~ 30MHz) Contribution db Uncertainty of xi Probability Distribution u ( x i ) Receiver reading 0.15 Normal(k=2) 0.08 Cable loss 0.21 Normal(k=2) 0.11 AMN insertion loss 2.50 Rectangular 0.63 Receiver Spec 1.50 Rectangular 0.43 Site imperfection 1.56 Rectangular 0.90 Mismatch +0.34/-0.35 U-shape 0.24 combined standard uncertainty Uc(y) 1.21 Measuring uncertainty for a level of confidence of 95% U=2Uc(y) 2.42 Uncertainty of Radiated Emission Measurement (30MHz ~ 1000MHz) Contribution db Uncertainty of xi Probability Distribution u ( x i ) Receiver reading 0.18 Normal(k=2) 0.09 Antenna factor calibration 1.20 Normal(k=2) 0.60 Cable loss calibration 0.78 Normal(k=2) 0.39 Pre Amplifier Gain calibration 0.17 Normal(k=2) 0.09 RCV/SPA specification 2.50 Rectangular 0.72 Antenna Factor Interpolation for Frequency 1.00 Rectangular 0.29 Site imperfection 1.84 Rectangular 1.06 Mismatch +0.39/-0.41 U-shaped 0.28 combined standard uncertainty Uc(y) 1.53 Measuring uncertainty for a level of confidence of 95% U=2Uc(y) 3.06 SPORTON International Inc. FCC ID : N/A Page No. : 29 of 29 Issued Date : Sep. 21, 2010

APPENDIX A. Photographs of EUT SPORTON International Inc. Page Number : A1 of A106

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