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  3. 2ABLB-ITV-R01R

2ABLB-ITV-R01RTHE PRODUCT IS RF 2.4GHz WIRELESS DONGLE

ITVERS Corporation
THE PRODUCT IS RF 2.4GHz WIRELESS DONGLE - FCC ID 2ABLB-ITV-R01R - ITVERS Corporation
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Application Details

Equipment Class
DSS - Part 15 Spread Spectrum Transmitter
Date of Grant
Jan 28, 2014
Application Purpose
Original Equipment
Date of Application
Jan 28, 2014
Equipment Note
THE PRODUCT IS RF 2.4GHz WIRELESS DONGLE
Frequency Range
2402.00000000 - 2478.00000000
Company
ITVERS Corporation
Country
South Korea

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Parts List/Tune Up Info

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Schematics

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

Smart Touch Solution ITV R01 USER’S Manual ITV - R01 USER’S Manual S p ecification Touch Air Remote Model name ITV-R01T Interface RF 2.4GHz p Interface(receiver) USB2.0 Dimension 136mm(L) X 45.4mm(H) X 24.2mm(W) Weight 46g (71g with battery) Temperature -10 ~ 50 Batter y DC1.5V Type AAA * 2ea Distance 20m Power consumption 6mA (MAX) Voltage 1.9V ~ 3.6V OS Windows XP,VISTA,8 / Androids S p ecification Touch Air Receiver Model name ITV-R01R Interface RF 2.4GHz(2.402~2.478GHz) p Interface(receiver) Full Speed USB2.0 compliant Dimension 18mm(L) X 6mm(H) X 13mm(W) Weight 1g Temperature -10 ~ 50 Modulation GFSK RF Channels 39 within the 2.4GHz ISM band USB D l U External Crystal 16MHz Voltage 4.5V ~ 5.5V (USB) USB D ong l e U sage 1. Plug in the USB port and wait 30 sec when installs at first time. OS Windows XP,VISTA,8 / Androids 2. Replug in the USB Po rt If fails installing. Warning y THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION Warning IS SUBJECT TO THE FOLLOWING TWO 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. y NOTE: THE GRANTEE IS NOT RE SPONSIBLE FOR ANY CHANGES OR MODIFICATIONS NOT EXPRESSLY APPROVED BY THE PARTY RESPONSIBLE FOR COMPLIANCE SUCH MODIFICA TIONS COULD VOID THE USER ’ S AUTHORITY TO COMPLIANCE . SUCH MODIFICATIONS COULD VOID THE USER S AUTHORITY TO OPERATE THE EQUIPMENT. View & Features Touch Air Remote ■ More accurate pointing than gyro products. ■ Less tiredness when doing the mouse pointing. View & Features ■ Power consumption : Lower than any other RF remotes , around 6mA(max ) against normal RF remote’s 12mA including ordinary touchpad Gyro remote trackballs etc touchpad , Gyro remote , trackballs , etc . Î Long last with the power of battery (max 1 year) ■ Design : ■ Design : Ergonomic design with nice grip by hand. More cute & pretty than Toy products. ■ Size : ■ Size : Small , portable size enables to control easily your PC, TV with one hand. ■ Can use at pc STB TV with various OS (windows pc apple pc ■ Can use at pc , STB , TV with various OS (windows pc , apple pc , Android pc) to control easily by accurate mouse pointing. Quick Reference Guide Touch Air Remote Virtual keyboard (at Windows) Home [User Manual] 1. Insert batteries (AAA *2ea)2. Put the USB receiver into the USB port of your Computer (TV, system) Touch pad: Fn key : Multimedia keys “ON” Esc [sleep mode] 3. Smart sleep mode" for saving power after 5 minutes without touching it. Î wake u p b y p ushin g mouse click buttons or , Touch pad:-mouse pointing- tap (click)Scroll wheel Mouse click buttons : Left & Right button pyp g , cursor buttons 4. Fn on : media buttons ON(Play & Pause / REW & FF / Vol up & down / Mute) Î Push the Fn key again to resume the : Left & Right button Cursor Buttons : up/down/left/right Media buttons Î Push the Fn key again to resume the mouse pointing with click buttons. Î Touch the touchpad 2times also enables the Fn Key off automatically.(media buttons off) Media buttons(by Fn “ON”) :-Play & Pause- Vol up & down - reward & forward [Pairing] 5. Basically this Smart Remote is already connected (pairing done) with USB dongle. But when pairing is disconnected by accident or -mute by any activity unintended : Î Please Keep pushing the “Esc” button for 3 seconds to pair with the USB receiver. Î kee p the distance with the USB receiver p close around 30 cm while doing this pairing Touch Air Remote [Warning]To avoid the risk of inju ry, damage to the Remocon, ● avoid long periods of repetiti ve motions or incorrect body position, poor work habits which can be associated with physical discomfort and injury to nerves, tendons, muscles. : If you feel pain, numbness, weakness, swelling, burning, cramping, stiffness in your hands , wrists , arms , shoulders , neck , back , p lease consult a q ualified health p rofessional. ,,, ,,,p q p ● Be careful to keep children away from this Remocon : Small parts of this Remocon can form a choking hazard for children(especially under 3years old). ● Do not immerse this Remocon in water or other liquid. ● Do not use this Remocon if it has sustained any kind of damage. ● Do not heat, open, puncture, mutilate , or dispose the Batteries in fire. ● Do not mix new and old batteries(this may ca use batteries to run out of power quickly) ● Do not mix new and old batteries(this may ca use batteries to run out of power quickly) or different types of batteries (ex: carbon-zinc with alkaline or rechar geable with disposal). ● Do Not Attempt to : take apart, open, service, or modify this device. Doing so could present the risk of el ectric shock or other hazard. Any evidence of any attempt to open and/or modify the device, in cluding any peeling, puncturing will void the Limited Warranty. ● T his RF device(frequency around 2.4Ghz ) can be causing interference to othe r radio-communications devices such as Radio, TV, Wireless LAN, Cordless phones, etc. : Relocate the antenna of the other devices, or move this device farther away from them. : To avoid Wireless LAN's speed issues, se t your LAN's channel around "11"~"13". [Packages]Remote Controller, USB receiver , Manual [System Requirement]● Windo s XP o Highe // Mac OS 10 0 X o Highe s ppo t USB po t ● Windo w s XP o r Highe r // Mac OS 10 . 0 X o r Highe r s u ppo r t USB po r t . ● USB 2.0 or Higher version. Touch Air Remote [Regulatory Information]This device is complied with CE, FCC, KCC Standards. This device is for only home or office use. Not intended for use in machinery, medical, industrial applications. This Class B digital apparatus complies with Part 15 of the U.S. Federal Communications Commission (FCC) rules, Canadian ICES-003 and RSS-210. Operation is subject to the following two conditions : (1) this device may not cause interference, and (2) this device must accept any interference received, including interference th at may cause undesired ope…

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Block Diagram

ITV-R01 Block Diagram & Circuit Explanation - ITVR01 TX Remocon Block Diagram Touch Air (ITV-R01) Remote Controller has configured Touch PAD Module, Key Function and nRF24LE1 The nRF24LE1 uses the same 2.4 GHz GFSK RF transceiver with embedded protocol engine (Enhanced ShockBurst™) that is found in the nRF24L01+ single chip RF transceiver. The RF transceiver is designed for operation in the world wide ISM frequency band at 2.402 - 2.478 GHz and is very well suited for ultra low power wireless applications. Touch-PAD Module KEY Matrix Battery Power Source Transmitter BLOCK Diagram nRF24LE1 RF ANT The RF transceiver module is configured and operated through the RF transceiver map. This register map is accessed by the MCU through a dedicated on-chip Serial Peripheral interface (SPI) and is available in all power modes of the RF transceiver module. The embedded protocol engine (Enhanced ShockBurst™) enables data packet communication and supports various modes from manual operation to advanced autonomous protocol operation. Data FIFOs in the RF transceiver module ensure a smooth data flow between the RF transceiver module and the nRF24LE1 MCU. The rest of this chapter is written in the context of the RF transceiver module as the core and the rest of the nRF24LE1 as external circuitry to this module. Touch PAD Module operates 3 step like this and communicate I2C with nRF24LE1 Main CPU ▶ ACTIVE mode Touch module stay in ACTIVE mode when it detected touch. If Touch module detect touch then data transfer to RCU. ▶IDLE mode Touch module operation translate to idle mode when it detected no touch over 5s. If Touch module detect touch then translate to Active mode immediately. ▶ SLEEP mode Touch module operation translate to sleep mode when it detected CS_IN high. If Touch module detect CS_IN low then translate to Active mode immediately. The DATA which created by Touch PAD Module is transferred by nRF24LE1 and It is received by the USB Dongle. The Key Function Button has a Android OS version and Window OS version Mac OS Keyboard Function.. - Dongle RX Block Diagram The nRF24LU1+ is a unique single chip solution enabling ultra compact USB dongles for wireless peripherals. The USB Dongle supports Full speed 2.0 compliant device controller The nRF24LU1+ uses the same 2.4GHz GFSK RF transceiver with embedded protocol engine (Enhanced ShockBurst™) that is found in the nRF24L01+ single chip RF Transceiver and the nRF24LE1 on-chip solution. The RF Transceiver is designed for operation in the world wide ISM frequency band at 2.402 - 2.478GHz and is very well suited for ultra low power wireless applications. The RF Transceiver module is configured and operated through the RF transceiver map. This register map is accessed by the MCU through a dedicated on-chip Serial Peripheral interface (SPI) and is available in all power modes of the RF Transceiver module. Receiver RF ANT The embedded protocol engine (Enhanced ShockBurst™) enables data packet communication and supports various modes from manual operation to advanced autonomous protocol operation. Data FIFOs in the RF Transceiver module ensure a smooth data flow between the RF Transceiver module and the nRF24LU1+ MCU. Equipment Identification Code FCC NOTICE 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 communication. 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 difference from that to which the receiver is connected. - Consult the dealer of an experienced radio/TV technician for help. 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. THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION IS SUBJECT TO THE FOLLOWING TWO CONDITIONS: (1) THIS DEVICE MAY NOT CAUSE HARMFUL INTERFERENCE, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDERSIRED OPERATION.

Cover Letter(s)

KOREA TECHNOLOGY INSTITUTE CO., LTD. 51-19, Sanglim3-Riri, Docheok-Myeun, Gwangju-Shi, Gyeunggi-Do, Korea http://www.emc.re.kr E-mail: [email protected] Tel: 82-31-763-6709, Fax: 82-31-764-6709 Declaration Of Conformity FCC Registration Number KR0023 Test Report No. KTI13EF11008 Test Site Korea Technology Institute Co. Ltd. Manufacture ITVERS Corporation Date of Test November 22, 2013 Contact Person Mr. Seongbin Lim / R&D Chief Engineer Tel.+82-2-780-1185/ Fax. +82-2-780-1195 Product Type RF 2.4GHz Wireless Dongle Model ITV-R01R FCC Rule Part(s) Part 15, Subpart B Classification Class B The device bearing the trade name and model specified above has been shown to comply with the applicable technical standard as indicated in the measurement report and was tested in accordance with the measurement procedures specified in ANSI C.63.4-2003. I attest to the accuracy of data and all measurement reported herein were performed by me or were made under my supervision and are correct to the best of my knowledge and belief. I assume full responsibility for the completeness of these measurements and vouch for the qualification of all persons taking them. Ph.D. Gyung Chan, Min/ President

External Photos

KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 1 of 4 External photo (Front) KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 2 of 4 External photo (Rear) KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 3 of 4 External photo (Left) KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 4 of 4 External photo (Right)

ID Label/Location Info

KTI13EF11007 FCC ID: 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 1 of 1 Label location FCC ID Label Location

ID Label/Location Info

KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 1 of 1 FCC ID Sample Label ITVERS Corporation FCC ID: 2ABLB-ITV-R01R Model No.: ITV-R01R Rating: 5.0V , 0.5A MSIP-CRM-ITv-ITV-R01R Made In Korea

Internal Photos

KTI13EF11007 FCC ID : 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 1 of 1 Internal photo – Main Board

Operational Description

KTI13EF11007 FCC ID : SOD2ABLB-ITV-RO1R Korea Technology Institute Co., Ltd. Page 1 of 1 Antenna Requirement PCB Pattern Antenna

Operational Description

Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 nRF2.4GHz_USB_Dongle APPROVAL SHEET Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 Schematic (회로도)

Operational Description

ITV-R01 Block Diagram & Circuit Explanation - ITVR01 TX Remocon Block Diagram Touch Air (ITV-R01) Remote Controller has configured Touch PAD Module, Key Function and nRF24LE1 The nRF24LE1 uses the same 2.4 GHz GFSK RF transceiver with embedded protocol engine (Enhanced ShockBurst™) that is found in the nRF24L01+ single chip RF transceiver. The RF transceiver is designed for operation in the world wide ISM frequency band at 2.402 - 2.478 GHz and is very well suited for ultra low power wireless applications. The RF transceiver module is configured and operated through the RF transceiver map. This register map is accessed by the MCU through a dedicated on-chip Serial Peripheral interface (SPI) and is available in all power modes of the RF transceiver module. The embedded protocol engine (Enhanced ShockBurst™) enables data packet communication and supports various modes from manual operation to advanced autonomous protocol operation. Data FIFOs in the RF transceiver module ensure a smooth data flow between the RF transceiver module and the nRF24LE1 MCU. The rest of this chapter is written in the context of the RF transceiver module as the core and the rest of the nRF24LE1 as external circuitry to this module. Touch PAD Module operates 3 step like this and communicate I2C with nRF24LE1 Main CPU ▶ ACTIVE mode Touch module stay in ACTIVE mode when it detected touch. If Touch module detect touch then data transfer to RCU. ▶IDLE mode Touch module operation translate to idle mode when it detected no touch over 5s. If Touch module detect touch then translate to Active mode immediately. ▶ SLEEP mode Touch module operation translate to sleep mode when it detected CS_IN high. If Touch module detect CS_IN low then translate to Active mode immediately. The DATA which created by Touch PAD Module is transferred by nRF24LE1 and It is received by the USB Dongle. The Key Function Button has a Android OS version and Window OS version Mac OS Keyboard Function.. - Dongle RX Block Diagram The nRF24LU1+ is a unique single chip solution enabling ultra compact USB dongles for wireless peripherals. The USB Dongle supports Full speed 2.0 compliant device controller The nRF24LU1+ uses the same 2.4GHz GFSK RF transceiver with embedded protocol engine (Enhanced ShockBurst™) that is found in the nRF24L01+ single chip RF Transceiver and the nRF24LE1 on-chip solution. The RF Transceiver is designed for operation in the world wide ISM frequency band at 2.402 - 2.478GHz and is very well suited for ultra low power wireless applications. The RF Transceiver module is configured and operated through the RF transceiver map. This register map is accessed by the MCU through a dedicated on-chip Serial Peripheral interface (SPI) and is available in all power modes of the RF Transceiver module. The embedded protocol engine (Enhanced ShockBurst™) enables data packet communication and supports various modes from manual operation to advanced autonomous protocol operation. Data FIFOs in the RF Transceiver module ensure a smooth data flow between the RF Transceiver module and the nRF24LU1+ MCU. Equipment Identification Code FCC NOTICE 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 communication. 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 difference from that to which the receiver is connected. - Consult the dealer of an experienced radio/TV technician for help. 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. THIS DEVICE COMPLIES WITH PART 15 OF THE FCC RULES. OPERATION IS SUBJECT TO THE FOLLOWING TWO CONDITIONS: (1) THIS DEVICE MAY NOT CAUSE HARMFUL INTERFERENCE, AND (2) THIS DEVICE MUST ACCEPT ANY INTERFERENCE RECEIVED, INCLUDING INTERFERENCE THAT MAY CAUSE UNDERSIRED OPERATION.

Operational Description

2. General Information 2.1 Product Description The ITVERS Corporation Model ITV-R01T (referred to as the EUT in this report) is used to remote controller which has a function of nRF24XX. The product specification described herein was obtained from product data sheet or user’s manual. Equipment Name RF 2.4GHz Wireless Remote Operating Frequency 2402 MHz ~ 2478 MHz RF Output Power -1.33 dBm Number of Channel 39 Channels Mode of Operation Duplex (Tx/RX) Modulation Type GFSK Antenna Type / Gain PCB Pattern Antenna /1.70dBi(Max)TX, -0.8dBi(Max)RX List of Each OSC. Or Crystal. Freq. 16 MHz Crystal Oscillator Rated Supply Voltage DC 3.0 V 3. EUT MODIFICATION - NONE. 4. Information about the FHSS characteristics 4.1 Pseudo Random Frequency hopping sequence Nordic has developed Gazell, an RF protocol designed for efficiency, low power consumption and minimum latency. Gazell incorporates frequency agility technology; this employs a simplified frequency hopping scheme where the transmitting and receiving pair establish communication on a particular frequency and then only hop to a different frequency should interference be experienced. The channel on which the interference was experienced is marked and not reused during that particular communication cycle Frequency hopping in Gazell In Gazell, the frequency hopping as seen on the air is completely determined by the Devices. The Host will for any frequency hopping policy on a Device still listen on all channels in turn, rotating through the complete channel table. The Host is configured in the same way for all Device modes, and does not even know a Device's synchronization mode or hopping policy. A Device can select which channels to use and how often to use them. Different Devices can choose different channel hopping policies if wanted. The available channel selection policies are different for the asynchronous and semi-synchronous modes: Channel selection policies in asynchronous mode A Gazell Device in asynchronous mode can be set up with two channel selection policies: -Frequency agility (FA) -Frequency hopping spread spectrum (FHSS) For the "frequency agility" policy, we first try the previous successful channel, assuming that this channel is still good. This is the channel that was used by the last acknowledged packet. We will stay on this channel as long as it is good. In a quiet environment we will then very seldom change channel. If we do not succeed transmitting on the previous good channel, a pseudo- random channel is selected from the channel table. For the "frequency hopping" policy we select a new pseudo-random channel from the channel table each time. This gives us frequency hopping spread spectrum behavior. The transmitted radio power is then spread evenly among all channels in the channel table. This behavior is required by some radio regulations when transmitting at high power, as when using a power amplifier. If we do not succeed on the first random channel, a new pseudo-random channel is selected from the channel table. Channel selection policies in semi-synchronous mode A Gazell Device in semi-synchronous mode can be set up with three channel selection policies: -Frequency agility (FA) -Frequency hopping spread spectrum (FHSS) -Low latency frequency hopping spread spectrum (smart FHSS) For the first two policies the selection of the first channel to try is the same as in asynchronous mode. The difference lies in how the secondary channel choice is made. In asynchronous mode, if the first channel choice in FA or FHSS mode fails, a pseudo-random channel will be tried. In synchronous mode, if the first channel choice in FA or FHSS mode fails, the estimated Host channel will be used instead. We have sync, so the Device knows the channel rotation at the Host, and just waits until the time slot for this channel comes up a the Host, before attempting to transmit. Details of Device channel selection and transmit operation are shown in the figure below. The third policy - low latency frequency hopping, or smart FHSS - is only meaningful for a synchronized Device. With this policy the Device immediately starts transmitting at the channel that the Host is listening on. If the Device is still in sync with the Host, we will hit the correct timer the first time, reducing latency and saving power. Frequency hopping spread spectrum is defined in the 2.4 GHz band and operates in around 39 frequencies ranging from 2.402 GHz to 2.478 GHz. Every frequency is GFSK modulated with channel width of 2MHz and rates defined as 2 Mbps. The frequency hopping code hops between 39 channels (channel 1 to channel 39) pseudo-randomly distributed in a 256-bytes constant table embedded in the code. The hopping functions as follows. Each time the transmitter sends a packet on a channel it starts waiting for an acknowledge packet (ACK) on the same channel. If the ACK is received within a predefined time-out (3ms in this example) the transmitter selects the next channel in the hopping table and sends the next packet on the newly selected channel. If an ACK is not received within the time-out period the packet is re-transmitted on the same channel. If this does not result in a valid ACK the transmitter hops to the next channel and repeats the procedure above. This process is repeated until an ACK is received or a time-out (3 seconds in the demo applications) is reached and if the time-out is reached the function returns with an error. For the Hop pattern of 2412MHz, 2414MHz, 2402MHz, 2406MHz ,24014MHz, The sequential hops are +2MHz, -12MHz, +12MHz, +4MHz, +14MHz You can use a channel number and it might look like channel 2,4,19,3,7,32,2,15,etc,etc. These represent Channel numbers. 4.2 Equal Hopping Frequency Use In normal operation, the initial pseudorandom list of frequency hopping locations is volatile in terms of the number of hopping frequencies in use and the sequence of which they occur. These elements combined result in an unpredictable hopping sequence with p…

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Parts List/Tune Up Info

Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 PARTS LIST

Schematics

Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 PCB LAYOUT 1. TOP PATTERN 2. TOP SOLDER MASK Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 3. TOP SILK 4. Bottom Pattern & SOLDER 5. Drill DATA Nordic 2.4GHz USB Dongle 생산자료 ITVERS_Version 01 2013/07/09 6. Value & Reference Number        

Test Report

KTI13EF11007 FCC ID: 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 1 of 29 Te s t R e p o r t Test Report No.: KTI13EF11007 Registration No.: KR0023 Applicant: ITVERS Corporation Applicant Address: 1224, Lifecombi Bldg, 61-4 Yeouido-dong, Yeongdeungpo-gu, Seoul, Korea 150-732 Product: RF 2.4GHz Wireless Remote FCC ID: 2ABLB-ITV-R01R Model No. ITV-R01R Receipt No.: 13-11007 Date of receipt: November 18, 2013 Date of Issue: November 22, 2013 Testing location Korea Technology Institute Co., Ltd. 51-19, Sanglim3-Ri, Docheok-Myeon, Gwangju-Shi, Gyeonggi-Do, Korea Test Standards: FCC/ANSI. C63.4: 2003 Rule Parts: FCC Part 15.247 Subpart C, ANSI C 63.4-2003 Method of Measurement FCC Public Notice DA 00-705 Test Result: The above-mentioned product has been tested with compliance. Tested by: M. G. Ji / Engineer Approved by: S. H. Song /Technical Manager Signature Date November 22, 2013 Signature Date November 22, 2013 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. KTI13EF11007 FCC ID: 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 2 of 29 ≫≫ Contents ≪≪ 1. Verification of compliance 3 2. General Information 4 2.1 Product Description 4 3. EUT MODIFICATION 4 4. Information about the FHSS characteristics 4 5. Test Summary 6 5.1 Test Items and results 6 5.2 Additions, deviations, exclusions from standard 6 5.3 Related Submittal(s) / Grant(s) 6 5.4 Purpose of the test 6 5.5 Test Methodology 6 5.6 Test Facility 6 6. System Test Configuration 7 6.1 Characteristics of equipment 7 6.2 Used Peripherals list 7 6.3 Mode of operation during the test 7 6.4 Uncertainty 7 6.5 Test setup of EUT 8 7. Measurement results 9 7.1 Carrier Frequency Separation 9 7.2 Number of Hopping Frequencies 11 7.3 20dB Bandwidth 14 7.4 Time of Occupancy(Dwell Time) 18 7.5 Peak Output Power 20 7.6 Band-edge (at 20 dB below) 24 7.7 Test data for radiated emission 27 7.8 AC Conducted Emission 32 7.9 Antenna Requirement 34 KTI13EF11007 FCC ID: 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 3 of 29 1. Verification of compliance Applicant : ITVERS Corporation Address : #1224, Lifecombi Bldg, 61-4 Yeouido-dong, Yeongdeungpo-gu, Seoul, Korea 150-732 FCC ID : 2ABLB-ITV-R01R Model Name : ITV-R01R Brand Name : Serial Number : N/A Date : November 21, 2013 Equipment Class DSS – PART 15 SPREAD SPETRUM TRANSMITTER Kind of Equipment RF 2.4GHz Wireless Dongle Measurement Procedures FCC Public Notice DA 00-705, ANSI C63.4-2003, Type of Equipment Tested Pre-Production Kind of Equipment Authorization Requested Certification Equipment Will Be Operated Under FCC Rules Part(s) FCC PART 15 SUBPART C Section 15.247 Modifications On The Equipment To Achieve Compliance None Final Test was Conducted On 10m Open area test site - The above equipment was tested by Korea Technology Institute Co., Ltd. for compliance with the requirement set forth in the FCC Rules and Regulations. This said equipment in the configuration described in this report, shows the maximum emission levels emanation from equipment are within the compliance requirements. KTI13EF11007 FCC ID: 2ABLB-ITV-R01R Korea Technology Institute Co., Ltd. Page 4 of 29 2. General Information 2.1 Product Description The ITVERS Corporation Model ITV-R01R (referred to as the EUT in this report) is used to remote Toys controller which has a function of Bluetooth. The product specification described herein was obtained from product data sheet or user’s manual. Equipment Name RF 2.4GHz Wireless Dongle Operating Frequency 2402 MHz ~ 2478 MHz RF Output Power -9.17 dBm Number of Channel 39 Channels Mode of Operation Duplex Modulation Type GFSK Antenna Type / Gain PCB Pattern Antenna / -0.80 dBi (Max) List of Each OSC. Or Crystal. Freq. 26 MHz Rated Supply Voltage DC 5.0 V 3. EUT MODIFICATION - NONE. 4. Information about the FHSS characteristics 4.1 Pseudorandom frequency hopping sequence Frequency hopping spread spectrum (FHSS) is a method of transmitting radio signals by shifting carriers across numerous channels with pseudorandom sequence which is already known to the sender and receiver. Frequency hopping spread spectrum is defined in the 2.4 GHz band and operates in around 39 frequencies ranging from 2.402 GHz to 2.480 GHz. Every frequency is GFSK modulated with channel width of 2MHz and rates defined as 2 Mbps respectively. Frequency hopping spread spectrum is a robust technology with only very little influence from reflections, noise and other environmental factors. The active system numbers in same geographical areas is higher than an equivalent number for direct sequence spread spectrum systems. Thus it is suited well for installations designed to cover large areas where numerous co-located systems are needed. They are also used in cellular deployments for fixed broadband wireless access where direct sequence spread spectrum cannot be used. A variation of frequency hopping spread spectrum is adaptive frequency hopping spread spectrum that improves resistance to radio frequency interference by avoiding crowded frequency in hopping sequence 4.2 Equal Hopping Frequency Use If the EUT can operate over a range of frequencies, called a frequency band the output power at different frequencies across the E…

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Contact Information

Applicant

HYE KYOUNG KWON
[email protected]82-2-780-1185Fax: 82-2-780-1195

Test Firm

Korea Technology Institute Co., LtdSeung Hyun Song
[email protected]82-31-763-6709Fax: 82-31-764-6709

Technical Specifications

#Rule PartsFrequency RangePower Output
115C2.40 GHz - 2.48 GHz100.00 µW
Grant Notes
Power listed is conducted.

Other Applications from ITVERS Corporation

Wefie ROBOSTICK - FCC ID 2ABLB-S01-001 - ITVERS Corporation
2ABLB-S01-001

Wefie ROBOSTICK

Sep 07, 2015

Equipment Class

DTS - Digital Transmission System
2ABLB-ITV-R01T

THE PRODUCT IS RF 2.4GHz WIRELESS REMOTE

Feb 02, 2014

Equipment Class

DSS - Part 15 Spread Spectrum Transmitter