
Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.
- 2 - - 3 - CHAPTER 1. INTRODUCTION .................................................................... 5 1.1 Product Introduction......................................................................................... 5 1.2 Product Features and Specification.................................................................. 7 CHAPTER 2. HOW TO USE ....................................................................... 12 2.1 Detailed Product Parts .....................................................................................12 2.2 LC Screen Layout ........................................................................................14 2.3 Fingerprint Use .................................................................................................15 2.4 Authentication...................................................................................................16 2.4.1Fingerprint....................................................................................................16 2.4.2Password.......................................................................................................20 2.4.3RF Card (optional)........................................................................................20 2.4.3Others: Automatic Attendance Mode............................................................21 CHAPTER 3. ENVIRONMENT SETTING ................................................... 22 3.1 Menu Composition ...........................................................................................22 3.2 Entering into Menu ..........................................................................................25 3.3 Basic Menu ........................................................................................................26 3.4 Detailed Menu ...................................................................................................28 3.4.1 User Management........................................................................................28 - 4 - 3.4.2 Fingerprint Sensor Setting ...........................................................................43 3.4.3 UI (User Interface) Setting ..........................................................................51 3.4.4 System Setting .............................................................................................54 3.4.5 Network Setting ........................................................................................62 3.4.6 Cofirmation of Terminal Information .......................................................68 3.4.7 Factory Default Setting................................................................................70 APPENDIX 1: NETWORK CONNECTION ERROR AND SOLUTIONS ..... 74 APPENDIX 2: TERMINAL INITIALIZATION ERROR AND SOLUTIONS .. 76 APPENDIX 3: LAW AND REGULATION.................................................... 77 APPENDIX 4: WIEGAND PROTOCOL FORMAT ...................................... 78 APPENDIX 5 : EMERGENCY SCREEN..................................................... 80 - 5 - - 6 - Termin al NAC-2500 Access Server Remote Manager Remote Monitor - 7 - - 8 - - 9 - - 10 - - 11 - - 12 - - 13 - - 14 - - 15 - - 16 - 2.4.1Fingerprint • - 17 - • • - 18 - • - 19 - • - 20 - 2.4.2Password 2.4.3RF Card (optional) - 21 - 2.4.3Others: Automatic Attendance Mode - 22 - Higher menu Detailed Menu Sub menu 1User registration 2User info change 3User deletion 1 User Management 4Deletion of all users 1Sensor brightness (1~100) 11:1 mode 2Security level 21:N mode (Please try menu 3 times after setting number 1) 3Capture mode 4Time setting for fingerprint input 5AUTO-ON setting 2 Fingerprint sensor setting 61:N time setting 1Whether to use 1:N time setting or not - 23 - 2Time setting (“time setting” possible only when it is on) 1Language 2Voice guideline 3 UI setting 3Button tone 1Log storing 2RF card 1OFF 226BIT 3WIEGAND 334BIT 4Function key setting 5Authentication mode 6Time setting 7Terminal mode 4 System Setting 8Time zone 1Terminal ID 1DHCP yes or no? 2Terminal IP 3Sebnet Mask 4Gateway 2TCP/IP 5Server IP 3Time limit 5 Network 4Port setting 1Number of users 6 Information 2Firmware version 1DB Format 7 Factory default 2Factory format - 24 - 3Number of registered fingerprints 4Number of characters in ID 5Reset terminal - 25 - - 26 - - 27 - - 28 - 3.4.1 User Management - 29 - - 30 - • • - 31 - • - 32 - - 33 - - 34 - - 35 - - 36 - - 37 - - 38 - - 39 - - 40 - - 41 - - 42 - - 43 - 3.4.2 Fingerprint Sensor Setting - 44 - • - 45 - - 46 - - 47 - - 48 - - 49 - - 50 -
CPU CPU OSC OSC X-TAL X-TAL MEMORY FPGA MEMORY FPGA NETWORK NETWORK RF RF SENSOR SENSOR
KTI06EF07002 FCC ID: - Korea Technology Institute Co., Ltd. Page 1 of 4 External photo (front) KTI06EF07002 FCC ID: - Korea Technology Institute Co., Ltd. Page 2 of 4 External photo (Rear) KTI06EF07002 FCC ID: - Korea Technology Institute Co., Ltd. Page 3 of 4 Adaptor photo (front) KTI06EF07002 FCC ID: - Korea Technology Institute Co., Ltd. Page 4 of 4 Adaptor photo (Rear)
KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 1 of 1 Label location FCC Label Location
KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 1 of 1 FCC ID Sample Label
KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 1 of 11 Internal photo (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 2 of 11 Internal photo 1 (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 3 of 11 Internal photo 1 (Rear) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 4 of 11 Internal photo 2 (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 5 of 11 Internal photo 2 (Rear) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 6 of 11 Internal photo 3 (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 7 of 11 Internal photo 3 (Rear) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 8 of 11 Internal photo 4 (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 9 of 11 Internal photo 4 (Rear) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 10 of 11 Internal photo 5 (Front) KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 11 of 11 Internal photo 5 (Rear)
KTI06EF07002 FCC ID: - Korea Technology Institute Co., Ltd. Page 1 of 1 Operational Description The EUT is a low power 1 25 KHz transceiver using loop coil antenna. The EUT is powered from AC Adapter (output :DC12V). The EUT is Power ON and operate continuously in TRANSMITTING and READIN G mode. The EUT will only be marketed to corporations. It works in conjunction with security systems in offices and factories.
Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 Title A 113, 5 15, 2006 NAC-2500 ES Board VER 0.5 History - 2005.08.08: Create File (ver 0.1) - 2005.09.01: Modify SDRAM Address, U4 Pin out, C35, C36 Circuit (ver 0.2) U9 A22 - 2005.12.16: ES - 2006.1. : ES2 INDEX 1. Title 2. Out Connector 3. OPP/LCD Conn 4. RF/AutoON/Keypad Conn 5. Power 6. CPU 7. Memory 8. FPGA 9. Reset & RTC 10. Voice 11. Bead 12. Option B/D Conn 13. Comm (485) Date: 2006-06-01Time : 02:04:19 \01.\060601_NAC-2500 \Circuit diagram\EB-0037A_NAC250 RTCK nSRST TDO TCK TMS nTRST TDI EX_DOOR_MONITOR EX_DOOR_OPEN CONTACT_A COMMON CONTACT_B EXT_B EXT_A WIEGAND_1 WIEGAND_0 +5VA +3V +5VA Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 OutConnector B 213, 5 15, 2006 POWER BOTTOM SIDE MAIN BD <-> MULTI-ICE DOOR CTRL BOTTOM SIDE A B (TRX+) (TRX-) Silk Screen In Case of WIEGAND, user MUST PULL UP with 5V RS-485 WIEGAND OUTPUT BOTTOM SIDEBOTTOM SIDE J5 C51 C0.1UF/16V J1 MOLEX 3P 2.5MM (5267-3A) 1 2 3 C40 NC C41 NC C52 C0.1UF/16V C1 E22UF/50V + R3 10K D13 1N4148 BL2MPZ2012S221A BL20 MPZ2012S221A D14 1N4148 J16 Point ( 1mm) 12 BL30 MPZ2012S221A BL1 MPZ2012S221A C2 E22UF/50V J17 Point ( 1mm) 12 BL16 MPZ2012S221A R1 4.7K C50 T47UF/16 J5 MOLEX 4P 2.5MM (5267-4A) 1 2 3 4 J2 MOLEX 6P 2.5MM (5267-6A) 1 2 3 4 5 6 J3 MOLEX 2P (90136-1202-ST) 1 2 R2 4.7K D1 SS210 J4 MOLEX 9P 1.25MM (53047-0910) 1 2 3 4 5 6 7 8 9 RA1 10KA D2 SS210 Date: 2006-06-01Time : 02:04:19 \01.\060601_NAC-2500 \Circuit diagram\EB-0037A_NAC250 SD7 VADJ_VAR VADJ_GND SD0 SD1 SD2 VADJ_GND SD3 SD4 SD6 SD5 SD[7..0] VADJ_VAR SDA SYSCLK HSYNC SENSOR_LEDON VSYNC SDATA7 SDATA6 SDATA5 SDATA4 SDATA3 SDATA2 SDATA1 SDATA0 SCL PIXCLK SYSCLK VSYNC HSYNC SDATA0 SDATA1 SDATA2 SDATA3 SDATA4 SDATA5 SDATA6 SDATA7 SDA SCL SENSOR_LEDON PIXCLK LCD_E1 LCD_E2 LCD_RW LCD_DI SD0 SD1 SD2 SD3 SD4 SD5 SD6 SD7 VADJ_VAR LCD_RESET LCD_RESET LCD_E1 LCD_E2 LCD_RW LCD_DI SENSOR_LEDON SDATA0 SDATA1 SDATA2 SDA SDATA3 SDATA4 SDATA5 SDATA6 SDATA7 SYSCLK VSYNC HSYNC PIXCLK SCL CPU_RESERVED_1 CPU_RESERVED_2 +5V -5VA +5VA AVCC_BL +3VA +3V +5VA AVCC_BL +3V SD[7..0] Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 OPP LCD CONN B 313, 5 15, 2006 MAIN BD <-> LCD TOP SIDE MAIN BD <-> SENSOR TOP SIDE TP7 1 R5 4.7K J6 MOLEX 20P 0.5MM (52559-2072) 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 TP18 1 TP11 1 R4 4.7K TP31 1 TP13 1 TP29 1 TP34 1 TP28 1 TP22 1 TP20 1 TP12 1 TP5 1 TP15 1 R6 1KBL31 MPZ2012S221A TP19 1 TP26 1 RA3 1KA 1234 5678 C42 NC TP30 1 TP3 1 TP33 1 TP17 1 TP9 1 TP21 1 J7 MOLEX 18P 1MM (52207-1885) (Top Contact) 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 TP2 1 TP32 1 TP24 1 TP23 1 TP16 1 TP35 1 RA2 1KA 1234 5678 TP8 1 TP1 1 TP6 1 TP10 1 BL32MPZ2012S221A R7 10K 1 3 2 TP4 1 TP27 1 TP25 1 C3 SFI0603 TP14 1 Date: 2006-06-01Time : 02:04:19 \01.\060601_NAC-2500 \Circuit diagram\EB-0037A_NAC250 CPU_AUTO_ON LED_ON_NET LED_ON_AUTH LED_ON_FAIL KEYPAD_RST KEYIN0 KEYIN1 KEYIN2 KEYIN3 KEYOUT5 KEYOUT0 KEYOUT1 KEYOUT2 KEYOUT3 KEYOUT4 SPK+ SPK- CPU_AUTO_ON RF_DATA1 RF_DATA0 KEYIN3 KEYIN1 KEYIN0 KEYIN2 LED_ON_NET LED_ON_AUTH LED_ON_FAIL KEYPAD_RST SPK+ SPK- KEYOUT3 KEYOUT1 KEYOUT0 KEYOUT4 KEYOUT2 KEYOUT5 +5VA +3V +3V +5VA +3VA +3VA +3VA +3V +3VA +3VA Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 InConnector 2 B 413, 5 15, 2006 MAIN BD <-> AUTO-ON BD 1) Main BD <-> RF BD 2) WIEGAND INPUT C5C9 TP57 1 J9 MOLEX 4P 2.5MM (5267-4A) 1 2 3 4 TP53 1 J10 MOLEX 3P 1.25MM (53398-0390) 1 2 3 TP47 1 TP42 1 C13 BC2 C0.1UF/16V TP52 1 TP55 1 TP37 1 D15 1N4148 TP38 1 TP39 1 J8 MOLEX 20P 0.5MM (52559-2072) 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 TP48 1 C14 T4.7UF/20V C8C4 TP58 1 TP41 1 TP44 1 TP56 1 C10C7 TP43 1 C15 C0.1UF/16V TP54 1 BC1 C0.1UF/16V TP40 1 TP45 1 C6 D3 1N4148 C11 TP50 1 RA4 10KA TP49 1 TP36 1 C12 C16 SFI0603 R8 2K D16 1N4148 TP51 1 TP46 1 Date: 2006-06-01Time : 02:04:19 \01.\060601_NAC-2500 \Circuit diagram\EB-0037A_NAC250 LCD_BL_ON PWR_EN +5VAAVCC_BL +5VA +1VA +3VA +3VA +2VA+5VA +5VA -5VA Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 POWER B 513, 5 15, 2006 (3216) TAB = OUT high enable (7343) (3216) (7343) 5V -> 3.3V 5V -> -5V 5V On/Off 5V ->2.5V 3.3V -> 1V U4 SC4211 NC 1 EN 2 VIN 3 NC 4 GND 8 FB 7 VO 6 NC 5 TP59 1 U2 XC6210B252MR CE 3 NC 4 VOUT 5 VIN 1 VSS 2 C18 T10UF/16 + TP64 1 TP61 1 U1 NCP1086ST IN 3 GND 1 OUT 2 TP63 1 C19 T47UF/16 + TP62 1 R12 1.5K U3 FDC6323L R1/C1 6 R2 1 VOUT/C1 3 VIN/R1 4 ON/OFF 5 VOUT/C1 2 U5 NCP1729 C- 3 GND 4 C+ 6 VOUT 1 VIN 2 SHDN 5 C31 T4.7UF/16 + C28 C1UF/10 R13 1.5k C17 C1UF/10 C24 T10UF/16 R920K C25 C1UF/10 C29 T4.7UF/16 + C27 T47UF/16 + TP60 1 C30 T4.7UF/16 + C20 C1UF/10 C22 C1UF/10 C23 C1UF/10 C26 T10UF/16 + R11 4.7K C21 C1UF/10 R10 4.7K Date: 2006-06-01Time : 02:04:19 \01.\060601_NAC-2500 \Circuit diagram\EB-0037A_NAC250 VER1 VER2 VER3 VER1 VER2 VER3 A1 A2 A3 A5 A4 A7 A6 A8 A10 A13 A9 A11 A14 A15 A12 BSEL2 BSEL1 A16 A19 A21 A17 A18 A22 A20 A25 A[22..1]BSEL0 BSEL0 D[31..0] D0 BSEL2BSEL1 D1 D2 D3 D4 D6 D7 D5 D8 D11 D10 D9 D12 D14 D15 D13 D17 D18 D19 D16 D23 D22 D20 D21 D24 D27 D25 D26 D28 D31 D30 D29 A17 A[11..2] A3 A4 A2 A5 A6 A7 A9 A10 A8 A11 D0 D1 D2 D3 D6 D4 D7 D5 D8 D[15..0] D10 D9 D11 D15 D13 D12 D14 P0 P1 P2 P3 P4 SENSOR_LEDON nCS0 nCS1 nCS3 nSDCS_0 CPU_AUTO_ON SDCKE_1 SDCLK_1 nSDRAS nOE nSDCAS nWE nOPP_IRQ nETN_IRQ TDO RTC_DATA RTC_SCLK RTC_nRST SDA nRESET_OUT DQM0 DQM2 DQM1 DQM3 LED_ON_NET LED_ON_AUTH LED_ON_FAIL nTRST HW_INIT TCK TMS TDI CLK_SENSOR F_PROGRAM F_INIT F_DONE F_CCLK F_DIN KEYIN3 KEYIN1 KEYIN2 KEYIN0 PWR_EN FLASH_WE P5 P6 nCPU_RESET P7 SBT SCL A17 CPU_DOOR_OPEN CPU_DOOR_MONITOR CPU_RELAY LCD_BL_ON FPGA_RESET KEYOUT0 KEYOUT1 KEYOUT2 KEYOUT3 KEYOUT4 KEYOUT5 A25 CPU_TXD_485 CPU_RXD_485 n485_RXD_EN 485_TXD_EN CPU_WIE1 CPU_WIE0 CPU_CHECK_NET_BD CPU_CHECK_RELAY_BD CPU_RESERVED_1 CPU_RESERVED_2 VOICE_RST nMR WDI +3V +1V +3V +1V +3V +3V +3V A[22..1] D[31..0] A[11..2] D[15..0] Title SizeDocument NumberRev Date:Sheetof EB4-0037A 0.5 CPU C 613, 5 15, 2006 Bypass Capacitors for CoreBypass Capacitors for VCCQ BC13 C0.1UF/16V R1…
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KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 1 of 22 Test Report field strengthTest Report No.: KTI06EF07002 Registration No.: 99058 Applicant: NITGEN Co.,Ltd. Applicant Address: #Sam-Oh Bldg, 3 rd Floor, 905-4 HoGye-dong DongAn-Gu, AnYang Product: Access Controller FCC ID: - Model No. NAC-2500R Receipt No.: 06-0603 Date of receipt:June 05, 2006 Date of Issue: July 07, 2006 Testing location Korea Technology Institute Co., Ltd. 51-19, Sanglim3-Ri, Docheok-Myeun, Gwangju-Shi, Gyeungki-Do, Korea Test Standards: FCC/ANSI. C63.4: 2003 Rule Parts: FCC Part 15, Class B Equipment Class: Digital device Test Result: The above-mentioned product has been tested with compliance. Tested by: T.W. Lee / Engineer Approved by: G. C. Min /President Signature Date Signature Date Other Aspects: Abbreviations: * OK, Pass=passed * Fail=failed * N/A=not applicable ☞ - This test report is not permitted to copy partly without our permission. - This test result is dependent on only equipment to be used. - This test result is based on a single evaluation of one sample of the above mentioned. - This test report must not be used by the client to claim product endorsement by NVLAP or any agency of the U.S Government. - We certify this test report has been based on the measurement standards that is traceable to the national or international standards. KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 2 of 22 ≫≫ Contents ≪≪ 1. 2. 3. 4. 5. 6. Contents List of Tables List of Figures List of Photographs General Test Site 2.1 Location 2.2 List of Test and Measurement Instruments 2.3 Test Data 2.4 Test Environment Description of the tested samples 3.1 Rating and Physical characteristics 3.2 Submitted documents Measurement conditions 4.1 Modes of operation 4.2 List of peripherals 4.3 Uncertainty 4.4 Test Setup Conducted Emission Test Radiated Emission Test 6.1 Antenna Requirement 6.2 Test and Measurements 2 2 2 2 3 3 3 4 4 4 5 5 5 6 6 6 6 7 8 12 12 13 List of Tables≫ Table 1 List of test and measurement equipment Table 2 Rating and Physical Characteristic Table 3 Test Data, Conducted Emissions Table 4 Test Data, Radiated Emissions Table 5 Measured values of the Field strength List o≫f Figures Figure 1 Test Setup Figure 2 Spectral Diagram, LINE-PE Figure 3 Spectral Diagram, Neutral-PE 4 5 11 12 15 7 9 10 KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 3 of 22 1. General This equipment has been shown to be capable of compliance with the applicable technical standards and was tested in accordance with the measurement procedures as indicated in this report. We attest to the accuracy of data. Korea Technology Institute Co., Ltd. performed all measurements reported herein. And were made under Chief Engineer’s supervisor. We assume full responsibility for the completeness of these measurements and vouch for the qualifications of all persons taking them. 2. Test Site Korea Technology Institute Co., Ltd. 2.1 Location 51-19, Sanglim3-Ri, Docheok-Myeun, Gwangju-Shi, Gyeungki-Do, Korea The Test Site is in compliance with ANSI C63.4/2001 for measurement of radio Interference. KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 4 of 22 2.2 List of Test and Measurement Instruments Table 1: List of Test and Measurement Equipment - Conducted Emissions Kind of Equipment Type S/N Calibrated until Spectrum Analyzer R3261C 61720417 02.2007 Field Strength Meter ESIB40 100093 05.2007 LISN KNW407 8-1157-2 01.2007 LISN EM-7823 115019 05.2007 Conducted Cable N/A N/A 11.2006 - Radiated Emissions Kind of Equipment Type S/N Calibrated until Field Strength Meter ESIB40 100093 05.2007 Spectrum Analyzer R3261C 61720417 02.2007 Pre Amplifier 8447D 2944A06874 11.2006 Loop Antenna 6502 3434 04.2007 Biconical Antenna VHA9103 1111 01.2007 LogPeriodic Antenna UHALP9107 1568 01.2007 Horn Antenna 3115 6443 07.2006 Open Site Cable N/A N/A 11.2006 Antenna Mast DETT-03 N/A N / A Antenna & Turntable controller DETT-04 91X519 N / A 2.3 Test Date Date of Application: June 23, 2006 Date of Test: June 27, 2006 2.4 Test Environment 25°C/43%/1003mbar KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 5 of 22 3. Description of the tested samples The EUT is a Access Controller. 3.1. Rating and Physical Characteristics Table 2: Rating and Physical Characteristics Function Spec. Type 128 * 32 Dots LCD Display Language Default: Korean, English Model / Type OPP03 / Optical Sensor Resolution 500 DPI Speed 1:1 mode: less than 1 sec / 1:N mode: Application Note Authentication Algorithm FRR: less than 0.1%, FAR: less than 0.001% #of registered users Terminal 780(1 finger prints per user) 400(2 finger prints per user) TCP/IP 10 base-T Ethernet (optional) Communication RS-485 Max. 115200bps (custom requirement) Size Case 90(W) * 200(L) * 48(H) mm Adapter 1 In: AC100V ~ 240V, 50/60Hz / Out: DC12V, 3A(24V OK) Power Adapter 2 In: AC100V ~ 240V, 50/60Hz / Out: DC 5V, 3A(24V OK) Guidelines recorded in voice Downloadable logo / firmware IP length ( 4~15 digits) Additional function Authentication results to be displayed in LED Network Board Door Control Board Optional RF Module( 125KHz HID) Storage -25°C ~ 65°C Temperature Operation -20°C ~ 60°C (with no dew condensation) Storage 15% ~ 90% RH Humidity Operation 25% ~ 85% RH 3.2 Submitted Documents - User’s Guide - Block Diagram KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 6 of 22 4. Measurement Conditions Testing Input Voltage: AC 220V 4.1 Modes of Operation The EUT was in the following operation mode during all testing; 1) EUT operates a finger print job with connection to the Note Pc 4.2 Additional Equipment DEVICE TYPE Manufacturer M/N S/N FCC ID Note PC Samsung SFM-3200LWN / A DOC Mouse EUNXING ELECTRONICS M2000 N / A DOC Adapter DongKwan samsung AD-9019 N / A DOC 4.3 Uncertainty 1) Radiated disturbance Uc (Combined standard Uncertainty) = ± 1.8dB Expanded uncertainty U=KUc K = 2 ∴ U = ± 3.6dB 2) Conducted disturbance Uc = ± 0.88dB U = KUc=2 x Uc =…
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KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 1 of 3 6. Photograph of the Test Set-Up Photograph 1 : Setup for radiated Emissions KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 2 of 3 Photograph 2 : Setup for Conducted Emissions KTI06EF07002 FCC ID:- Korea Technology Institute Co., Ltd. Page 3 of 3 Photograph 3 : Setup for Field strength
| # | Rule Parts | Frequency Range | Power Output |
|---|---|---|---|
| 1 | 15C | 0.125 MHz - 0.125 MHz | - |

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