throbber

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`as) United States
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`a2) Patent Application Publication 10) Pub. No.: US 2010/0112940 Al
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` Yoon (43) Pub. Date: May6, 2010
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`US 20100112940A1
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`(54) APPARATUS AND METHOD FOR
`IMPROVING DATA TRANSMISSION SPEED
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`OF TERMINAL TRANSMITTING DATA
`USING NEAR FIELD COMMUNICATION
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`SCHEME
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`(30)
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`Foreign Application Priority Data
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`Nov. 5, 2008
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`(KR) woeeeceeceeeseteteees 10-2008-0109403
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`Publication Classification
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`.
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`Inventor:
`Young-Ho Yoon, Suwon-si (KR)
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`Correspondence Address:
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`Jefferson IP Law, LLP
`1130 Connecticut Ave., NW, Suite 420
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`Washington, DC 20036 (US)
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`Samsung Electronics Co., Ltd.,
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`Suwon-si (KR)
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`(75)
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`(73) Assignee:
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`(21) Appl. No.:
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`12/504,423
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`(22)
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`Filed:
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`Jul. 16, 2009
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`(51)
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`Int. Cl.
`(2006.01)
`HOAB 5/00
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`(52) US. Ch.cece ce ceeeneeeeeseeeseeceeeeenee 455/41.1
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`ABSTRACT
`(67)
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`An apparatus and a method for improving data transmission
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`speed in a terminal transmitting data using a Near Field Com-
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`munication (NFC)
`scheme are provided. The method
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`includes measuring NFC power, detecting a modulation
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`scheme corresponding to the measured NFC powerfrom an
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`approximate powertable, modulating data using the detected
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`modulation scheme, and transmitting the modulated data
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`using the NFC scheme.
`
`108
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`110
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`112
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`|—
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`DISPLAY UNIT k— CONTROLLER
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`STORAGE UNIT 744
`106
`aw
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`APPROXIMATE
`NE
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`POWER TABLE
`
`OMMUNICATION|
`C
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`7
`UN
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`INPUT UNIT
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`192
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`NFC POWER
`
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`MEASURING UNIT
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`[|
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`104
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`MODULATION
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`SCHEME DETECTOR
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`|
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`190
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`>
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`——>
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`Page | of 8
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`SAMSUNG EXHIBIT 1019
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`Page 1 of 8
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`SAMSUNG EXHIBIT 1019
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`

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`Patent Application Publication
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`May6, 2010 Sheet 1 of 3
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`US 2010/0112940 Al
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`|YOLOSISGSWSHOS
`NOLWINGOW
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`YSTIO“LNOO
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`AINAAvidSIG
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`90h|,
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`OJN
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`jNOLLVOINAWAIO0O
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`IvitUNA3OvHOLS
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`ALVAIXObdd
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`JTaV1HAMOd
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`201
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`YIMOdOIN
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`LINDONTENSV3N
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` ~001
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`801
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`LINALAdNI
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`rerOlt
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`Page 2 of 8
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`Page 2 of 8
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`Patent Applica
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`tion Publication
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`May 6, 2010 Sheet 2 of 3
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`US 2010/0112940 Al
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`YES
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`MEASURE NFC POWER
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`INITIALIZE N =1
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`215
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`201
`~
`DATA “<_
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`TRANSMISSION MENU
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`USING NFC SCHEME
`
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`ty, SELECTED?
`
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`
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`3\COMPARE
`
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`~~
`
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`POWER THRESHOLD
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`WITH NFC POWER USING
`
`
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`APPROXIMATE POWER TABLE
`
`
`
`(1<NFC POWER
`
`< ttl
`
`
`
`YES
`
`
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`
`DETECT MODULATION SCHEME
`
`
`CORRESPONDING TO rt FROM
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`APPROXIMATE POWER TABLE
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`MODULATE DATA USING DETECTED —Ott
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`MODULATION SCHEME
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` TRANSMIT DATA
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`Page 3 of 8
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`Page 3 of 8
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`Patent Application Publication
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`May 6, 2010 Sheet 3 of 3
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`US 2010/0112940 Al
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`6
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`
`BER GRAPH
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`{ ho L
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`10” |
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`10% |
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`—— APPROXIMATE BER
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`—*— EXACT BER
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`a0
`1 +
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`191%
`0
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`i
`5
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`tu
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`Page 4 of 8
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`10
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`20
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`i
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`25
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`POWER dB
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`l
`30
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`35
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`40
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`|
`45
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`RIG.S
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`Page 4 of 8
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`US 2010/0112940 Al
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`May6, 2010
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`APPARATUS AND METHOD FOR
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`IMPROVING DATA TRANSMISSION SPEED
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`OF TERMINAL TRANSMITTING DATA
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`USING NEAR FIELD COMMUNICATION
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`SCHEME
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`PRIORITY
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`[0001] This application claimsthe benefit under 35 U.S.C.
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`§119(a) of a Korean patent application filed in the Korean
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`Intellectual Property Office on November 5, 2008 and
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`assigned Serial No. 10-2008-0109403, the entire disclosure
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`of which is hereby incorporated by reference.
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`BACKGROUND OF THE INVENTION
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`1. Field of the Invention
`[0002]
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`[0003] The present invention relates to an apparatus and a
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`method for transmitting data using a Near Field Communi-
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`cation (NFC) scheme. Moreparticularly, the present inven-
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`tion relates to an apparatus and a method for improving data
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`transmission speed of a terminal transmitting data using an
`NFCscheme.
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`[0004]
`2. Description of the Related Art
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`[0005] As communication apparatuses and equipment
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`develop, mobile communication terminals have become an
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`essential element to everyday life. As a result, communication
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`terminal services requiring high bandwidth, such as Elec-
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`tronic (E)-mail, Digital Multimedia Broadcasting (DMB),
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`Digital Audio Broadcasting (DAB) and Digital Video Broad-
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`casting-Handheld (DVB-H), have increased. Also, as per-
`sonal mobile communication terminals such as cellular
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`phones and Personal Digital Assistants (PDAs) are used, a
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`short distance communication scheme is necessary which
`does not need a basestation.
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`[0006] Near Field Communication (NFC)isa type ofRadio
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`Frequency IDentification (RFID) which is a short distance
`communication schemethat does not need a basestation. The
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`NFC is a non-contact wireless communication technique
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`which may transmit data using a simple process and low
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`power within a maximum distance of 20 cm via a frequency
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`of 13.56 MHz. According to the NFC, when two or more
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`terminals are put close to each other, even withoutartificial
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`manipulation of a user, basic information, such as a phone
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`number, and data, such as an MP3file and images, may be
`transmitted and received between the terminals. The NFC
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`supports transmission speeds of 106 kbps, 212 kbps and 424
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`kbps, and is currently applied to a personal mobile commu-
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`nication apparatus, such as a cellular phone. However, since
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`the NFC uses a fixed modulation scheme (for example,
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`Amplitude Shift Keying (ASK) and Phase Shift Keying
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`(PSK)), transmission speed is low.
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`[0007] According to a long distance communication
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`scheme whichuses a general cellular phone network, such as
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`Global System for Mobile communications (GSM), General
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`Packet Radio Service (GPRS) and Code Division Multiple
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`Access (CDMA), data transmission speed and a Bit Error
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`Rate (BER) vary depending on time and space dueto a path
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`loss by multipath fading. Therefore, a base station determines
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`the BER and control power, and transmits data using a fixed
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`modulation method. In a case of using a cellular phone net-
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`work, such as High-Speed Downlink Packet Access (HS-
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`DPA), a base station transmits data using an AMC scheme.
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`Page 5 of 8
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`Thatis, the base station determines a target BER and power,
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`and transmits data using a modulation schemesuitable for the
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`power.
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`[0008] As described above, in a data transmission scheme
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`which uses a conventional cellular phone network, a base
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`station exists and a complicated process maybe applied to the
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`conventional cellular phone network. Accordingly, a trans-
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`mission speed maybe increased to meet circumstances ofthe
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`complicated process. However, inan NFC scheme which uses
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`a Point-to-Point schemewithouta base station, a complicated
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`process is difficult to apply. Therefore, the NFC has a limit in
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`transmission speed due to a simple communication process
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`and low power.
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`[0009] Therefore, a need exists for an apparatus and
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`method for improving data transmission speed of a commu-
`nication terminal.
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`SUMMARY OF THE INVENTION
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`[0010] An aspect of the present invention is to address at
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`least the above-mentioned problems and/or disadvantages
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`and to provide at
`least the advantages described below.
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`Accordingly, an aspect of the present invention is to provide
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`an apparatus and a method for improving data transmission
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`speed of a terminal which transmits data using a Near Field
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`Communication (NFC) scheme.
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`[0011] Another aspect ofthe present inventionis to provide
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`an apparatus and a method for improving data transmission
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`speed of a terminal which transmits data using an NFC
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`schemeby generating an approximate powertable represent-
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`ing a powerthreshold for each modulation scheme using an
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`approximate Bit Error Rate (BER) equation, and applying
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`Adaptive Modulation & Code (AMC) to the NFC scheme
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`using the approximate powertable.
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`[0012]
`In accordance with an aspect of the present inven-
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`tion, a data transmission method using a NFC scheme in a
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`mobile communication terminal is provided. The method
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`includes measuring NFC power, detecting a modulation
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`scheme corresponding to the measured NFC power in an
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`approximate powertable, modulating data using the detected
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`modulation scheme, and transmitting the modulated data
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`using the NFC scheme.
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`[0013]
`In accordance with another aspect of the present
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`invention, a data transmission apparatus using an NFC
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`schemein a mobile communication terminal is provided. The
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`apparatus includes an NFC power measuring unit for mea-
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`suring NFC power, a storage unit for storing an approximate
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`powertable, a modulation scheme detector for detecting a
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`modulation scheme corresponding to the measured NFC
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`power from the approximate powertable, and an NFC com-
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`munication unit for modulating data using the detected modu-
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`lation schemeandfor transmitting the modulated data using
`the NFC scheme.
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`[0014]
`In accordance with another aspect of the present
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`invention, a data transmission apparatus using an NFC
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`schemein a mobile communication terminal is provided. The
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`apparatus includes an NFC power measuring unit for mea-
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`suring NFC power, a modulation schemedetector for extract-
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`ing an approximate power table from a storage unit and
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`detecting a modulation scheme corresponding to the mea-
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`sured NFC powerfrom the approximate powertable, and an
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`NFC communication unit for modulating data using the
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`detected modulation scheme, and for transmitting the modu-
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`lated data using the NFC scheme.
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`Page 5 of 8
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`US 2010/0112940 Al
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`May6, 2010
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`[0015] Other aspects, advantages, and salient features of
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`the invention will become apparentto those skilled in the art
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`from the following detailed description, which, taken in con-
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`junction with the annexed drawings, discloses exemplary
`embodiments of the invention.
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`BRIEF DESCRIPTION OF THE DRAWINGS
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`[0016] The above and other aspects, features and advan-
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`tages of certain exemplary embodimentsofthe present inven-
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`tion will be more apparent from the following description
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`taken in conjunction with the accompanying drawings, in
`which:
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`[0017] FIG.1isa block diagram illustrating an apparatus of
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`a terminal for transmitting data using a Near Filed Commu-
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`nication (NFC) scheme according to an exemplary embodi-
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`mentof the present invention;
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`[0018]
`FIG. 2 isa flowchart illustrating a methodfor allow-
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`ing a terminalto transmit data using an NFC scheme accord-
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`ing to an exemplary embodimentofthe present invention; and
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`[0019]
`FIG. 3 is a graph comparing a conventional Adap-
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`tive Modulation & Coding (AMC)applying method with an
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`AMCapplying method using an approximate power table
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`according to an exemplary embodimentof the present inven-
`tion.
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`[0020] Throughout the drawings, like reference numerals
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`will be understood to refer to like parts, components and
`structures.
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`DETAILED DESCRIPTION OF EXEMPLARY
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`EMBODIMENTS
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`[0021] The following description with reference to the
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`accompanying drawingsis providedto assist in a comprehen-
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`sive understanding of exemplary embodiments of the present
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`invention as defined by the claims and their equivalents. It
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`includesvariousspecific details to assist in that understanding
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`but these are to be regarded as merely exemplary. Accord-
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`ingly, those of ordinary skill in the art will recognize that
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`various changes and modifications of the embodiments
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`described herein can be made without departing from the
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`scope andspirit of the invention. Also, descriptions of well-
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`known functions and constructions are omitted for clarity and
`conciseness.
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`[0022] The terms and wordsused in the following descrip-
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`tion and claimsare not limited to the bibliographical mean-
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`ings, but, are merely used bythe inventorto enable a clear and
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`consistent understanding of the invention. Accordingly, it
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`should be apparentto thoseskilled in the art that the following
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`description of exemplary embodiments of the present inven-
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`tion are providedfor illustration purpose only and notfor the
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`purposeoflimiting the invention as defined by the appended
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`claims andtheir equivalents.
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`It is to be understood that the singular forms “a,”
`[0023]
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`“an,” and “the” include plural referents unless the context
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`clearly dictates otherwise. Thus, for example, reference to “a
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`componentsurface”includes reference to one or more of such
`surfaces.
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`[0024] By the term “substantially” it is meant that the
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`recited characteristic, parameter, or value need not be
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`achieved exactly, but that deviations or variations, including
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`for example, tolerances, measurement error, measurement
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`accuracy limitations and other factors knownto thoseofskill
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`in the art, may occur in amountsthat do not preclude the effect
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`the characteristic was intended to provide.
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`[0025] Exemplary embodiments of the present invention
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`provide an apparatus and a methodfor improving data trans-
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`mission speed of a terminal which transmits data using a Near
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`Field Communication (NFC) scheme by generating an
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`approximate powertable representing a power threshold for
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`each modulation schemeusing an approximate Bit Error Rate
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`(BER) equation, and applying Adaptive Modulation & Cod-
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`ing (AMC) to the NFC schemeusing the approximate power
`table.
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`[0026]
`Inacase of the NFC, since communication is per-
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`formed using Line Of Sight (LOS)in a short distance range
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`within a maximum of 20 cm, multipath fading doesnotexist.
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`Therefore, a BER determination and complicated power con-
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`trol are not used in real-time during data communication.
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`Instead, an approximate powertable representing a power
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`threshold for each modulation scheme using an approximate
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`BER equation may be generated, and then AMC may be
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`applied to the NFC scheme using the approximate power
`table.
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`[0027] Assuming that the number of bits which may be
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`transmitted per symbol in an NFCsystem is n, a powerthresh-
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`old which maytransmit n bits per symbolfor T times may be
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`determined using Equation (1) below.
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`Ye = BER, (0.001)
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`qd)
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`[0028]
`Inanexemplary implementation, when Equation (1)
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`is arranged in terms of BER of n-ary Quadrature Amplitude
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`Modulation (QAM), assuming that a minimum BER(target
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`BER), 1.e., BERj, which may perform communication, is a
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`constant, Equation (1) may be expressed as an approximate
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`BERequation shown in Equation (2).
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`Yh —InSBERo)(2" -1)
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`@)
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`[0029]
`In Equation (2), BER, is variably set depending on
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`the type of data. Therefore, Equation (2) may generate an
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`approximate powertable representing a power threshold for
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`each modulation scheme using the approximate BER equa-
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`tion shown in Equation (2).
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`the
`[0030]
`For example, assuming that BER,=0.0001,
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`approximate power table may be generated as in Table 1
`below.
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`TABLE 1
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`n (Spectral Efficiency)
`1
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`2
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`3
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`4
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`5
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`6
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`7
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`8
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`Yr’ [dB]
`5.4805
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`10.2517
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`13.9314
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`17.2414
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`20.3914
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`23.4739
`
`26.5185
`
`29.5459
`
`
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`Modulation
`BPSK
`
`QPSK
`
`8QAM
`16QAM
`32QAM
`64QAM
`128QAM
`256QAM
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`[0031] Therefore, during data transmission, AMC may be
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`applied to the NFC scheme using the approximate power
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`table without BER determination and powercontrol. Thatis,
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`a terminal which intends to transmit data using the NFC
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`Page 6 of 8
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`Page 6 of 8
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`

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`US 2010/0112940 Al
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`May6, 2010
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`scheme measures NFC power and compares the measured
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`NFCpowerwith a powerthreshold ofthe approximate power
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`table as in Equation (3).
`(3)
`rf" <NFCPower <r7"*!
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`[0032] Here, in the case where a maximum valueis set to n
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`in the approximate powertable, since n+1 does not exist,
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`rt; ==NFCPower needs to be met rather than Equation (3).
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`Subsequently, r," meeting Equation (3) is searched and a
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`modulation scheme corresponding to the r,” searched from
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`the approximate powertable is detected. Data is then modu-
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`lated and transmitted using the detected modulation scheme.
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`[0033]
`For example, in a case of using the approximate
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`powertable shownin Table 1, a modulation schemeofdata is
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`detected as described below and data may be modulated and
`transmitted.
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`power<10.2517
`5.4805SNFC
`[0034]
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`==—=====>modulate using Binary Phase-Shift Key-
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`ing (BPSK)
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`power<13.9314
`[0035]
`10.2517SNFC
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`==—=—===>modulate using Quadrature Phase-Shift
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`Keying (QPSK)
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`power<17.2414
`13.9314NFC
`[0036]
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`===>modulate using 8 QAM
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`power<20.3914
`[0037]
`17.2414SNFC
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`===>modulate using 16 QAM
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`power<23.4739
`20.3914SNFC
`[0038]
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`===>modulate using 32 QAM
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`power<26.5185
`[0039]
`23.4739SNFC
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`===>modulate using 64 QAM
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`power<29.5459
`[0040]
`26.5185SNFC
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`===>modulate using 128 QAM
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`29.5459=NFC power
`==—=—=—=>modulate
`[0041]
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`using 256 QAM
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`[0042] FIG.1isa block diagram illustrating an apparatus of
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`aterminalfor transmitting data using an NFC scheme accord-
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`ing to an exemplary embodimentof the present invention.
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`[0043] As illustrated in FIG. 1, the terminal includes a
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`controler 100, an NFC power measuring unit 102, a modu-
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`lation scheme detector 104, an NFC communication unit 106,
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`an input unit 108, a display unit 110 and a storage unit 112.
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`[0044] Referring to FIG. 1, the controller 100 performs a
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`control and process for an overall operation of the terminal.
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`Moreparticularly, the controller 100 performs a control and
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`process for improving data transmission speedofthe terminal
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`whichtransmits data using an NFC schemeby applying AMC
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`to the NFC schemeusing an approximate powertable 114.
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`[0045] The NFC power measuring unit 102 measures NFC
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`poweraccording to a user’s selection of a data transmission
`menu which uses the NFC scheme.
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`[0046] The modulation schemedetector 104 extracts the
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`approximate power table 114 from the storage unit 112
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`according to the user’s selection of the data transmission
`menu which uses the NFC scheme. The modulation scheme
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`detector 104 then detects a modulation schemecorresponding
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`to the NFC power measured by the NFC power measuring
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`unit 102 from the extracted approximate powertable 114.
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`That is, the modulation scheme detector 104 compares a
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`powerthreshold for each modulation scheme with the mea-
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`sured NFC power using the extracted approximate power
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`table 114, thereby determining whether the measured NFC
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`power meets Equation (3). When the measured NFC power
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`meets Equation (3), the modulation scheme detector 104
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`detects a modulation scheme which meets Equation (3) and
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`correspondsto r;" from the approximate powertable 114.
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`[0047] The NFC communication unit 106 transmits/re-
`ceives data to/from a different terminal located in an area
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`where data transmission using the NFC schemeis possible.
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`Moreparticularly, the NFC communication unit 106 modu-
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`lates data using the modulation scheme detected by the modu-
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`lation scheme detector 104, and transmits the modulated data
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`using the NFC scheme.
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`[0048] The input unit 108 includesa plurality of function
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`keys, and provides data corresponding to a key pressed by the
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`userto the controller 100. The display unit 110 displays state
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`information, numbers andletters generated during an opera-
`tion of the terminal.
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`[0049] The storage unit 112 stores programs used for an
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`overall operation of the terminal and various information.
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`Moreparticularly, the storage unit 112 stores the approximate
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`powertable 114. Here, the approximate powertable 114 is a
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`table regarding a power threshold for each modulation
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`scheme. The power threshold for each modulation scheme
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`may be determined using the approximate BER equation
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`shown in Equation (2).
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`FIG. 2 isa flowchart illustrating a methodfor allow-
`[0050]
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`ing a terminalto transmit data using an NFC scheme accord-
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`ing to an exemplary embodimentofthe present invention.
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`[0051] Referring to FIG.2, in step 201, the terminal deter-
`mines whether a data transmission menu which uses the NFC
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`schemeis selected by a user’s key manipulation. When the
`selection of the data transmission menu which uses the NFC
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`schemeis detected, the terminal measures NFC powerin step
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`203, and performsinitialization by setting n=1 in step 205.
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`Here, n denotes the numberof bits which may be transmitted
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`per symbol.
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`[0052]
`In step 207, the terminal determines whether the
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`measured NFC power meets Equation (3) by comparing a
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`powerthreshold for each modulation scheme with the mea-
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`sured NFC powerusing an approximate power table. When
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`the measured NFC power does not meet Equation (3), the
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`terminal replaces n by n+1 in step 215, and returns to step 207
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`to repeatedly perform subsequentsteps.
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`[0053] On the other hand, when the measured NFC meets
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`Equation (3), the terminal detects a modulation scheme cor-
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`respondingto r,” meeting Equation (3) from the approximate
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`powertable in step 209.
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`[0054]
`In step 211, the terminal modulates data using the
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`detected modulation scheme, and in step 213, the terminal
`transmits the modulated data.
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`[0055] The terminal then endsthe process.
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`FIG. 3 is a graph comparing a conventional AMC
`[0056]
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`applying method with an AMC applying method using an
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`approximate powertable according to an exemplary embodi-
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`mentof the present invention.
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`[0057] Referring to FIG. 3, according to the conventional
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`AMCapplying method which uses a real BER, when 10000
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`bit-data per powerof 0.5 dB is transmitted using 1024 QAM,
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`a BER of 0.01% is generated. It is revealed that an AMC
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`applying method whichusesthe approximate BERaccording
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`to an exemplary embodiment of the present invention may
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`generate a BERsubstantially similar to that of the conven-
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`tional AMC applying method.
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`[0058] As described above, exemplary embodiments ofthe
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`
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`present invention may improve data transmission speed by
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`generating an approximate powertable representing a power
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`Page 7 of 8
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`Page 7 of 8
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`US 2010/0112940 Al
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`May6, 2010
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`7. The apparatus of claim 6, wherein the powerthreshold is
`
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`determined using an approximate Bit Error Rate (BER) equa-
`tion shown below:
`
`
`
`
`ype ~ FinSBER,)(2" -1)
`
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`threshold for each modulation scheme using an approximate
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`BERequation, and applying AMC to the NFC schemeusing
`
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`the approximate power table, thereby applying the AMC
`
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`using a simple process.
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`[0059] While the invention has been shown and described
`
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`
`
`with reference to certain exemplary embodiments thereof, it
`
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`
`
`will be understood by those skilled in the art that various
`
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`
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`
`
`changes in form and details may be madetherein without
`
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`
`
`
`departing from the spirit and scope ofthe invention as defined
`
`
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`
`
`
`by the appended claims and their equivalents.
`Whatis claimed is:
`
`
`
`
`
`
`
`
`
`1. A data transmission method using a Near Field Commu-
`
`
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`
`
`nication (NFC) schemein a mobile communication terminal,
`
`
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`the method comprising:
`
`
`
`measuring NFC power;
`
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`
`
`detecting a modulation scheme corresponding to the mea-
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`
`
`
`sured NFC powerusing an approximate powertable;
`
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`
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`modulating data using the detected modulation scheme;
`and
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`transmitting the modulated data using the NFC scheme.
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`2. The methodof claim 1, wherein the approximate power
`
`
`
`
`
`
`table comprises a table representing a power threshold for
`each modulation scheme.
`
`
`
`
`
`
`
`
`
`
`
`3. The method of claim 2, wherein the powerthresholdis
`
`
`
`
`
`
`
`
`determined using an approximate Bit Error Rate (BER) equa-
`tion shown below:
`
`
`
`
`
`
`
`
`
`2
`
`
`Yh =~ Zln(SBER)(2” — 1)
`
`
`
`
`
`
`
`
`
`wherein n is a number ofbits which is transmittable per
`
`
`
`
`
`
`
`symbol, r,” is a power threshold which may transmit n
`
`
`
`
`
`
`
`
`
`bits per symbol for T times, and BER,is a target BER
`
`
`
`
`
`
`which performs communication, BER, being a constant.
`
`
`
`
`
`
`
`4. The method of claim 2, wherein the detecting of the
`
`
`
`modulation scheme comprises:
`
`
`
`
`
`
`
`determining whether the measured NFC poweris included
`
`
`
`
`
`
`
`within a range between a k-th power threshold and a
`
`
`
`
`
`
`
`(k+1)-th power threshold of the approximate power
`
`
`table; and
`
`
`
`
`
`
`
`
`when the measured NFC poweris included within the
`
`
`
`
`
`range, detecting a modulation scheme corresponding to
`
`
`
`
`
`
`
`
`the k-th power threshold from the approximate power
`table.
`
`
`
`
`
`
`
`
`5. A data transmission apparatus using a Near Field Com-
`
`
`
`
`
`
`munication (NFC) schemein a mobile communication termi-
`
`
`
`
`nal, the apparatus comprising:
`
`
`
`
`
`
`
`
`
`an NFC power measuring unit for measuring NFC power;
`
`
`
`
`
`
`
`
`a storage unit for storing an approximate powertable;
`
`
`
`
`
`
`
`a modulation scheme detector for detecting a modulation
`
`
`
`
`
`
`
`scheme correspondingto the measured NFC powerfrom
`
`
`
`
`
`the approximate powertable; and
`
`
`
`
`
`
`
`
`an NFC communication unit for modulating data using the
`
`
`
`
`
`
`detected modulation scheme, and for transmitting the
`
`
`
`
`
`
`modulated data using the NFC scheme.
`
`
`
`
`
`
`
`
`6. The apparatus of claim 5, wherein the approximate
`
`
`
`
`
`
`
`powertable comprises a table representing a powerthreshold
`for each modulation scheme.
`
`
`
`
`
`
`
`
`Page 8 of 8
`
`
`
`
`
`
`
`wherein n is a numberof bits which is transmittable per
`
`
`
`
`
`
`
`symbol, r,” is a power threshold which maytransmit n
`
`
`
`
`
`
`
`
`
`bits per symbol for T times, and BER,is a target BER
`
`
`
`
`
`
`which performs communication, BER, being a constant.
`
`
`
`
`
`
`
`
`8. The apparatus of claim 6, wherein the modulation
`
`
`
`scheme detector comprises:
`
`
`
`
`
`
`
`
`a unit for determining whether the measured NFC poweris
`
`
`
`
`
`
`
`included within a range between a k-th powerthreshold
`
`
`
`
`
`
`
`and a (k+1)-th power threshold of the approximate
`
`
`
`powertable; and
`
`
`
`
`
`
`
`
`a unit for, when the measured NFC poweris included
`
`
`
`
`
`
`within the range, detecting a modulation schemecorre-
`
`
`
`
`
`
`
`sponding to the k-th power threshold from the approxi-
`
`
`
`mate powertable.
`
`
`
`
`
`
`
`9. A data transmission apparatus using a Near Field Com-
`
`
`
`
`
`
`munication (NFC) schemein a mobile communication termi-
`
`
`
`
`nal, the apparatus comprising:
`
`
`
`
`
`
`
`
`
`an NFC power measuring unit for measuring NFC power;
`
`
`
`
`
`
`
`a modulation scheme detector for extracting an approxi-
`
`
`
`
`
`
`
`
`mate power table from a storage unit and detecting a
`
`
`
`
`
`
`modulation scheme correspondingto the measured NFC
`
`
`
`
`
`
`
`power from the approximate powertable; and
`
`
`
`
`
`
`
`
`an NFC communication unit for modulating data using the
`
`
`
`
`
`
`detected modulation scheme, and for transmitting the
`
`
`
`
`
`
`modulated data using the NFC scheme.
`
`
`
`
`
`
`10. The apparatus of claim 9, wherein the approximate
`
`
`
`
`
`
`powertable comprises a table representing a powerthreshold
`for each modulation scheme.
`
`
`
`
`
`
`
`
`
`
`
`
`11. The apparatus ofclaim 10, wherein the powerthreshold
`
`
`
`
`
`
`
`is determined using an approximate Bit Error Rate (BER)
`
`
`
`equation shown below:
`
`
`
`
`
`
`
`
`
`
`
`
`
`
`ype —InSBERo)(2" -1)
`
`
`
`
`
`
`
`
`
`wherein n is a numberof bits which is transmittable per
`
`
`
`
`
`
`
`symbol, r,” is a power threshold which may transmit n
`
`
`
`
`
`
`
`
`
`bits per symbol for T times, and BER,is a target BER
`
`
`
`
`
`
`which performs communication, BER, being a constant.
`
`
`
`
`
`
`
`
`12. The apparatus of claim 10, wherein the modulation
`
`
`
`scheme detector comprises:
`
`
`
`
`
`
`
`
`a unit for determining whether the measured NFC poweris
`
`
`
`
`
`
`
`included within a range

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