NKG3184A
Abstract: KSS 12Mhz crystal oscillator
Text: LMX5251 www.ti.com SNOSCW3A – FEBRUARY 2004 – REVISED APRIL 2013 LMX5251 Bluetooth CMOS Radio Check for Samples: LMX5251 FEATURES – Integrated Radio Frequency Voltage Controlled Oscillator RFVCO – Dual on-chip Voltage Regulators:) – Input Voltages 2.85V–3.6V
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LMX5251
LMX5251
48-pin
NKG3184A
KSS 12Mhz crystal oscillator
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Untitled
Abstract: No abstract text available
Text: LMX5251 www.ti.com SNOSCW3A – FEBRUARY 2004 – REVISED APRIL 2013 LMX5251 Bluetooth CMOS Radio Check for Samples: LMX5251 FEATURES – Integrated Radio Frequency Voltage Controlled Oscillator RFVCO – Dual on-chip Voltage Regulators:) – Input Voltages 2.85V–3.6V
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LMX5251
LMX5251
48-pin
LMX5251SQ
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LMX5100
Abstract: No abstract text available
Text: LMX5251 www.ti.com SNOSCW3A – FEBRUARY 2004 – REVISED APRIL 2013 LMX5251 Bluetooth CMOS Radio Check for Samples: LMX5251 FEATURES – Integrated Radio Frequency Voltage Controlled Oscillator RFVCO – Dual on-chip Voltage Regulators:) – Input Voltages 2.85V–3.6V
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LMX5251
LMX5251
48-pin
LMX5251SQ
LMX5100
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125 kHz RFID parallel antenna center
Abstract: 125 kHz RFID antenna design guide 125 kHz RFID Antenna 125 kHz RFID parallel antenna 125 kHz "reader coil" Antenna Coil Antenna Coil 125 kHz RFID design conductivity meter circuit matching RFID loop antenna Q vlf antenna
Text: M Author: AN678 RFID Coil Design Youbok Lee Microchip Technology Inc. REVIEW OF A BASIC THEORY FOR ANTENNA COIL DESIGN Current and Magnetic Fields INTRODUCTION In a Radio Frequency Identification RFID application, an antenna coil is needed for two main reasons:
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AN678
D-81739
125 kHz RFID parallel antenna center
125 kHz RFID antenna design guide
125 kHz RFID Antenna
125 kHz RFID parallel antenna
125 kHz "reader coil"
Antenna Coil
Antenna Coil 125 kHz RFID design
conductivity meter circuit
matching RFID loop antenna Q
vlf antenna
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CC1100 CC2500 Wake on Radio
Abstract: msp430fg4618 lcd display codes CC2500 CIRCUIT THEORY Example code for touch pad interface using msp430 video sender wireless CC2500 cc2500 microcontroller interfacing code for two way audio communication for msp430 i rf beacon MSP430FG4618 Features
Text: Application Report SLAA365 – July 2007 Clear Channel Assessment Using TI MSP430 and CC2500 Radio Randy Wu . Technical Staff ABSTRACT This application report describes a 2.4-GHz anti-jamming frequency-hopping system
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SLAA365
MSP430
CC2500
CC1100 CC2500 Wake on Radio
msp430fg4618 lcd display codes
CC2500 CIRCUIT THEORY
Example code for touch pad interface using msp430
video sender wireless
cc2500 microcontroller interfacing
code for two way audio communication for msp430 i
rf beacon
MSP430FG4618 Features
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125 kHz RFID parallel antenna
Abstract: 125 kHz RFID parallel antenna center 125 kHz RFID antenna design guide Antenna Coil 125 kHz RFID design 125 kHz "reader coil" 153 kHz RFID square credit card reader vlf antenna 125 kHz RFID tag antenna LENZ 480
Text: M Author: AN678 RFID Coil Design Youbok Lee Microchip Technology Inc. REVIEW OF A BASIC THEORY FOR ANTENNA COIL DESIGN Current and Magnetic Fields INTRODUCTION In a Radio Frequency Identification RFID application, an antenna coil is needed for two main reasons:
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AN678
DS00678B-page
125 kHz RFID parallel antenna
125 kHz RFID parallel antenna center
125 kHz RFID antenna design guide
Antenna Coil 125 kHz RFID design
125 kHz "reader coil"
153 kHz RFID
square credit card reader
vlf antenna
125 kHz RFID tag antenna
LENZ 480
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mqc505
Abstract: UMA1010T splitter, circuit diagram MQC505 Series report on colpitts oscillator MQC505-898 sma 10101001 MD11 MD14 UMA1014T
Text: Philips Semiconductors Application note Application report for the UMA1014T frequency synthesizer In addition, there is one eighth of the crystal frequency available on an output for use with the Philips cellular radio chipset. This chipset uses a 1.2 MHz clock for the analogue and digital baseband circuits
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UMA1014T
UMA1014T
50kHz
SCO/AN91004
mqc505
UMA1010T
splitter, circuit diagram
MQC505 Series
report on colpitts oscillator
MQC505-898
sma 10101001
MD11
MD14
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splitter, circuit diagram
Abstract: report on colpitts oscillator uma1010 MD10 MD11 MD14 UMA1014T "RF Power Splitter" UMA1010T MC090001
Text: Philips Semiconductors Application note Application report for the UMA1014T frequency synthesizer In addition, there is one eighth of the crystal frequency available on an output for use with the Philips cellular radio chipset. This chipset uses a 1.2 MHz clock for the analogue and digital baseband circuits
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UMA1014T
UMA1014T
50kHz
SCO/AN91004
splitter, circuit diagram
report on colpitts oscillator
uma1010
MD10
MD11
MD14
"RF Power Splitter"
UMA1010T
MC090001
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APP1851
Abstract: LS12 MAX2320 SS11 s11s
Text: Maxim > App Notes > Wireless and RF Keywords: lna, rf, rfic, amplifier, stability, power gain, transmission lines, rfics, theory, smith chart, rf ics, radio frequency, amplifiers, low noise amplifier, amps Jan 09, 2003 APPLICATION NOTE 1851 Low-Noise Amplifier Stability Concept to Practical Considerations,
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MAX2320:
com/an1851
AN1851,
APP1851,
Appnote1851,
APP1851
LS12
MAX2320
SS11
s11s
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AN1849
Abstract: APP1849 LS12 LS22 MAX2320
Text: Maxim > App Notes > Wireless and RF Keywords: lna, rf, rfic, amplifier, stability, power gain, transmission lines, rfics, theory, smith chart, rf ics, radio frequency, amplifiers, low noise amplifier, amps Jan 09, 2003 APPLICATION NOTE 1849 Low-Noise Amplifier Stability Concept to Practical Considerations,
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MAX2320:
com/an1849
AN1849,
APP1849,
Appnote1849,
AN1849
APP1849
LS12
LS22
MAX2320
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Untitled
Abstract: No abstract text available
Text: BGX7100 3D HV QF N2 4 Transmitter IQ modulator Rev. 3 — 25 April 2012 Product data sheet 1. General description The BGX7100 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7100
BGX7100
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Untitled
Abstract: No abstract text available
Text: BGX7100 3D HV QF N2 4 Transmitter IQ modulator Rev. 5 — 3 September 2012 Product data sheet 1. General description The BGX7100 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7100
BGX7100
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Untitled
Abstract: No abstract text available
Text: BGX7100 3D HV QF N2 4 Transmitter IQ modulator Rev. 4 — 8 August 2012 Product data sheet 1. General description The BGX7100 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7100
BGX7100
signif34
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Untitled
Abstract: No abstract text available
Text: BGX7101 3D HV QF N2 4 Transmitter IQ modulator Rev. 4 — 10 January 2013 Product data sheet 1. General description The BGX7101 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7101
BGX7101
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matching with smith chart
Abstract: AN-1852 chart AN1852 APP1852 MAX2320 MAX2720 MAX2721 lna 30MHz to 2214
Text: Maxim > App Notes > WIRELESS, RF, AND CABLE Keywords: lna, rf, rfic, amplifier, stability, power gain, transmission lines, rfics, theory, smith chart, rf ics, radio frequency, amplifiers, low noise amplifier, amps Jan 09, 2003 APPLICATION NOTE 1852 Low-Noise Amplifier Stability Concept to Practical Considerations,
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com/an1852
MAX2320:
MAX2720:
MAX2721:
AN1852,
APP1852,
Appnote1852,
matching with smith chart
AN-1852
chart
AN1852
APP1852
MAX2320
MAX2720
MAX2721
lna 30MHz to
2214
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Untitled
Abstract: No abstract text available
Text: BGX7101 3D HV QF N2 4 Transmitter IQ modulator Rev. 1 — 25 April 2012 Product data sheet 1. General description The BGX7101 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7101
BGX7101
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Untitled
Abstract: No abstract text available
Text: BGX7100 3D HV QF N 24 Transmitter IQ modulator Rev. 5 — 3 September 2012 Product data sheet 1. General description The BGX7100 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7100
BGX7100
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Untitled
Abstract: No abstract text available
Text: BGX7101 3D HV QF N2 4 Transmitter IQ modulator Rev. 3 — 3 September 2012 Product data sheet 1. General description The BGX7101 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7101
BGX7101
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AN1849
Abstract: APP1849 LS12 LS22 MAX2320 MAX2720 MAX2721
Text: Maxim > App Notes > WIRELESS, RF, AND CABLE Keywords: lna, rf, rfic, amplifier, stability, power gain, transmission lines, rfics, theory, smith chart, rf ics, radio frequency, amplifiers, low noise amplifier, amps Jan 09, 2003 APPLICATION NOTE 1849 Low-Noise Amplifier Stability Concept to Practical Considerations,
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com/an1849
MAX2320:
MAX2720:
MAX2721:
AN1849,
APP1849,
Appnote1849,
AN1849
APP1849
LS12
LS22
MAX2320
MAX2720
MAX2721
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Untitled
Abstract: No abstract text available
Text: BGX7101 3D HV QF N 24 Transmitter IQ modulator Rev. 3 — 3 September 2012 Product data sheet 1. General description The BGX7101 device combines high performance, high linearity I and Q modulation paths for use in radio frequency up-conversion. It supports RF frequency outputs in the range
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BGX7101
BGX7101
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TAG 302-600
Abstract: PE42924
Text: Changing RF Design. Forever. TM 2013 Commercial Products Product Selection Guide First Edition Welcome to Peregrine Semiconductor UltraCMOS RF Process Technology Peregrine Semiconductor NASDAQ: PSMI is a fabless provider of high-performance radio-frequency (RF)
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Abstract: No abstract text available
Text: Digital MEMS Vibration Sensor with Embedded RF Transceiver ADIS16000/ADIS16229 Data Sheet FEATURES GENERAL DESCRIPTION Wireless vibration system, 902.5 MHz to 927.5 MHz Clear channel assessment and packet collision avoidance Error detection and correction in radio frequency RF
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ADIS16000)
ADIS16229)
512-point,
ADIS16000AMLZ
ADIS16229AMLZ
14-Pin
ML-14-4
D11483-0-8/13
6-16-2013-A
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fm transistor radio mini project
Abstract: HT 25-19 rf transistor HT 25-19 transistor RF antenna 433.92 project harp AN826 microchip simple fm transmitter mini project report fm transistor radio mini project report RF transmitter Receiver module projects cr2032 battery HOLDER
Text: AN242 Designing an FCC Approved ASK rfPIC Transmitter Author: Myron Loewen Microchip Technology Inc. INTRODUCTION This application note describes the design of a Federal Communications Commission FCC compliant board layout to give new radio frequency (RF) designers a
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AN242
rfHCS362
rfPIC12C509A.
D-85737
DS00242A-page
fm transistor radio mini project
HT 25-19 rf transistor
HT 25-19 transistor
RF antenna 433.92 project
harp
AN826 microchip
simple fm transmitter mini project report
fm transistor radio mini project report
RF transmitter Receiver module projects
cr2032 battery HOLDER
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Untitled
Abstract: No abstract text available
Text: H H G E C PLESSEY ADVANCE INFORMATION D.8.9640 2.0 SP8861 1.3GHz LOW POWER SINGLE-CHIP FREQUENCY SYNTHESISER Supersedes September 1990 Edition The SP8861 Is a low power single chip synthesiser intended for professional radio applications, and contains all
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OCR Scan
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SP8861
SP8861
318X10-7
1318pF
0153pF
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