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"application note" antenna

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Abstract: AN11180 AN11180 UCODE I2C PCB antenna reference designs Rev. 1.0 — 24 October 2012 229310 , , inter-integrated circuit, I²C, Antenna Reference Design, PCB Antenna Design Abstract This application note describes five antenna reference designs for the UCODE I²C IC for implementation on a Printed Circuit , the electronics on the PCB. AN11180 AN11180 NXP Semiconductors UCODE I2C PCB antenna reference , antenna reference designs 1. Introduction 2 The UCODE ICs (or chips) with an Inter-Integrated ... NXP Semiconductors
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32 pages,
762.62 Kb

AN11180 TEXT
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Abstract: AN 1629 UHF RFID Label Antenna Design UHF Antenna Design Rev. 1.0 - 05.09.2008 Application note Document information Info Content Keywords UHF, label antenna design, UCODE , practical considerations of UHF label antenna design. The target is to guide the reader to a good understanding of UHF label antenna design in theory and in practice. NXP Semiconductors AN 1629 UHF RFID Label Antenna Label Antenna Design Revision history Rev Date Description 1.0 2008 / 09 ... NXP Semiconductors
Original
datasheet

56 pages,
1010.87 Kb

energy harvest meander-line antenna antenna and wave propagation TAG 1678 matching RFID loop antenna UHF rfid circuit Transponder 4d UHF rfid circuit 900mhz square loop antenna reactance matching RFID loop antenna Q meander antenna 868 Types of Radar Antenna nxp rfid uhf transponder uhf rfid nxp RFID loop antenna NXP antenna design guide nxp proximity antenna design RFID loop antenna design UHF rfid antenna chip antenna rfid UHF TEXT
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Abstract: Application Note AN058 AN058 Antenna Selection Guide By Richard Wallace Keywords · · · · · Antenna Radiation Pattern Bandwidth Reflection Anechoic Chamber 1 Introduction · · · · · , to consider when deciding what kind of antenna to use in a short range device (SRD) application. In addition different antenna types are presented, with their pros and cons. All of the antenna reference designs available on www.ti.com/lpw are presented. Important antenna parameters, different ... Texas Instruments
Original
datasheet

36 pages,
1185.78 Kb

meander hf antenna balun planar inverted f antenna INVERTED F PCB ANTENNA AN043 1 gHz spiral antenna ferrite antenna CC2510 balun matching circuit printed antenna 868 2.4 GHz spiral antenna monopole folded pcb antenna CC2500 RF pcb antenna AN058 RF pcb antenna AN058 meandering Monopole PCB Antenna DN024 AN058 meander folded antenna AN058 monopole pcb antenna AN058 MIFA Meandered Inverted F Antenna AN058 AN058 AN058 TEXT
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Abstract: AN127310 AN127310 UHF Golden Tag Antenna Design Guide UCODE EPC G2 Rev. 1.0 - 9 July 2006 Application note Document information Info Content Keywords Golden Tag, Antenna design, UCODE EPC G2 , Philips Semiconductors UHF Golden Tag Antenna Design Guide UCODE EPC G2 Revision history Rev , Philips Semiconductors UHF Golden Tag Antenna Design Guide UCODE EPC G2 1. Introduction In this , RF-communication, Antenna matching, influence of manufacturing tolerances can be found in AN 117610"UHF Antenna ... Philips Semiconductors
Original
datasheet

27 pages,
1813.38 Kb

RC5 philips RF loop antenna philips 23 RFID loop antenna design UCODE antenna 868 AN127310 EPC gen2 868mhz chip antenna philips RC5 patent UHF/Antenna UHF rfid antenna UCODE EPC G2 uhf loop antenna philips RC5 RFID loop antenna UATM-5000 antenna design guide 12NC philips resistor 12NC philips TEXT
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Abstract: Application Note Antenna Design for MLX90129 MLX90129 Scope This application note gives some guidelines to design an antenna for the RFID interface of the HF enabled sensor IC MLX90129 MLX90129. Antenna parameters calculation and prototyping tips are explained. Also, two antenna reference designs are provided to be , reader. In order to catch the electromagnetic field an antenna has to be connected to the MLX90129 MLX90129. In addition of catching the energy the antenna enables a wireless communication between the RFID reader and ... Melexis
Original
datasheet

8 pages,
204.8 Kb

small loop antenna 13.56 Hf spiral loop antenna design Antenna Coil 13.5 Mhz RFID design RFID pcb antenna 13.56MHz planar spiral coil 13.56 MHz spiral antenna RFID loop antenna HF RFID tag antenna design Antenna Coil 13.56 MHz RFID design 13,56 MHz RFID antenna 13.56MHz Reader antenna designing MLX90129 MLX90129 RFID loop antenna 13.56 MLX90129 MLX90129 RFID loop antenna 13.56MHz spiral MLX90129 MLX90129 pcb antenna 13.56 MHz MLX90129 MLX90129 RFID loop antenna 13.56MHz MLX90129 MLX90129 13.56 MHz RFID reader ic 2 meter range MLX90129 MLX90129 RFID loop antenna 13.56MHz coil MLX90129 MLX90129 HF RFID loop antenna design MLX90129 MLX90129 RFID loop antenna design MLX90129 MLX90129 MLX90129 MLX90129 MLX90129 TEXT
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Abstract: Application Note: W3070 W3070 Ceramic Dual Band Monopole Antenna. Confidential. Preliminary (07/09) 1 Application note Ceramic Dual Band Monopole Antenna EGSM900 EGSM900 and PCN1800 PCN1800 10 mm x 3.2 mm x 2 mm Ceramic Chip Antenna Ground Cleared Under Antenna: Version 1: 25 mm x 10 mm Version 2: 40 mm , Ceramic Dual Band Monopole Antenna. Confidential. Preliminary (07/09) 2 Table of Content General Features and Applications . 3 Terminal configuration and antenna ... Pulse Engineering
Original
datasheet

16 pages,
1743.74 Kb

W3070 TEXT
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Abstract: AMCA Series - Multilayer Chip Antenna Application Note AMCA31 AMCA31, AMCA52 AMCA52, AMCA62 AMCA62, AMCA72 AMCA72, AMCA81 AMCA81 , : Initial Release Source Control Drawing AMCA Series – Multilayer Chip Antenna Application Note , AMCA Series - Multilayer Chip Antenna Application Note Date of Issue: 10/16/13 Page (2) of (16 , . . 10 4.3. Tip No 3: Further examples of good antenna placement schemes , . 8 Figure (7) – Good and Bad Antenna placements ... Abracon
Original
datasheet

16 pages,
657.96 Kb

AMCA31 AMCA52 AMCA62 AMCA72 AMCA81 AMCA92 TEXT
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Abstract: AN 0971 Far field antenna design Rev 1.4 - 4 March 2008 Application note Document information Info Content Keywords UCODE EPC G2, G2XM, G2XL, Antenna design Abstract This application note provides general design for a far field label antenna. It covers antenna tuning, in order to meet the end applications requirements. AN 0971 NXP Semiconductors Far Field Antenna Design , Note 0971_Far Field Antenna Design for UCODE G2XM_G2XL IC" to "Application Note 0971_Far Field Antenna ... NXP Semiconductors
Original
datasheet

19 pages,
518.29 Kb

uhf rfid nxp internal antenna application note matching UHF RFID tag "application note" antenna UCODE EPC G2 uhf loop antenna small loop antenna application chip antenna rfid UHF UHF RFID loop antenna design matching RFID loop antenna UHF rfid antenna NXP g2xl AN-0971 NXP G2XM NXP G2XM EPC RFID loop antenna matching RFID loop antenna Q NXP UCODE G2XM RFID loop antenna design NXP antenna design guide TEXT
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Abstract: INTEGRATED CIRCUITS UCODE UHF Label Antenna Design Guide Application Note Revision 1.0 , Antenna Design Guide CONTENTS 1 INTRODUCTION 5 1.1 Scope 5 1.2 General , Flip Chip Parameter Variations 15 4.3 Presented Simulated Data 15 4.4 Antenna Track , 2 of 124 Philips Semiconductors Application Note UHF Label Antenna Design Guide 5.4 , 39 5.5.4 Losses of an Antenna 39 5.5.5 Bandwidth Considerations 41 5.6 ... Philips Semiconductors
Original
datasheet

124 pages,
4358.03 Kb

rfidantenna chip antenna rfid UHF SL3S30 A41E Philips power supply PE 1957 rfid reader 915MHZ matching RFID loop antenna 13.56 transponder chip antenna design guide loop antenna hfss transponder 4d G chip J34063 hfss 13.56 MHZ 13.56 MHz spiral antenna Types of Radar Antenna 13,56 MHz RFID antenna UHF rfid antenna dipole folded pcb antenna UHF rfid antenna hfss TEXT
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Abstract: AN 0969 Far Field Reference Antenna Design for the UCODE G2XM / G2XL IC Rev. 1.7 - 4th June , , G2XL, Reference Design, Antenna Design, Far Field, Broadband, Aluminum Abstract This application note is a reference antenna design guide for the UCODE G2XM / G2XL IC optimized to Mühlbauer assembly equipment. This document covers two aluminum based label antenna designs, as well as assembly parameters , Field Reference Antenna Design for the UCODE G2XM / G2XL IC". Change document title from "Application ... NXP Semiconductors
Original
datasheet

51 pages,
2384.6 Kb

UHF rfid antenna design matching UHF RFID tag RFID loop antenna design hfss chip antenna rfid UHF rfid reader 915MHZ ansoft hfss 225 400 MHz transmitting antenna FF98-4 TAP0604F uhf 860 960 mhz hfss NXP g2xl NXP antenna design guide loop antenna hfss UHF rfid antenna hfss TEXT
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Archived Files

Abstract Saved from Date Saved File Size Type Download
Application Note 23 MICRF001 MICRF001 Antenna Design Tutorial Application Note 28 Data Squelch Loop Antenna and Microchip HCS200 HCS200 Keeloq ® Encoder Keeloq® is a registered trademark of MICRF102 MICRF102 Reference Design with Loop Antenna TX102-3 TX102-3 Transmitter Board MICRF102 MICRF102 Reference Design with Loop Antenna to 50 Ohm Conversion Qwikradio™ RF Application
/datasheets/files/micrel/products/qwikradio.shtml
Micrel 26/06/2002 28.11 Kb SHTML qwikradio.shtml
BPSK circuit that transmits outgoing data by antenna load modulation. Designed to operate with a antenna coil. The M35101 M35101 is built with ST's proprietary single polysilicon CMOS EEPROM antenna current, which induces variations on the reader's antenna that can be detected with suitable individually select any of up to 256 devices within its antenna field. For maximum flexibility, each device can up by entering the reader's antenna field. Two different anti-collision algorithms are supported
/datasheets/files/stmicroelectronics/stonline/press/news/year1998/k524m-v1.htm
STMicroelectronics 31/05/2000 4.16 Kb HTM k524m-v1.htm
BPSK circuit that transmits outgoing data by antenna load modulation. Designed to operate with a antenna coil. The M35101 M35101 is built with ST's proprietary single polysilicon CMOS EEPROM antenna current, which induces variations on the reader's antenna that can be detected with suitable individually select any of up to 256 devices within its antenna field. For maximum flexibility, each device can up by entering the reader's antenna field. Two different anti-collision algorithms are supported
/datasheets/files/stmicroelectronics/stonline/press/news/k524m.htm
STMicroelectronics 14/06/1999 4.13 Kb HTM k524m.htm
STB5600 STB5600 GPS RF FRONT-END IC n ONE CHIP SYSTEM TO INTERFACE ACTIVE ANTENNA TO ST20GP1 ST20GP1 MICROCONTROLLER n antenna, via a ceramic RF filter. The gain between the antenna element and the STB5600 STB5600 is expected to be between 10dB and 35dB overall, made up of the antenna LNA gain, the feeder loss application circuit is shown in figure 1. The RF input from the antenna downlead is fed via a ceramic filter and matching circuit to the RF+,RF- pins. The external LNA in the antenna should have between 10 and
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6088-v1.htm
STMicroelectronics 02/04/1999 12.39 Kb HTM 6088-v1.htm
STB5600 STB5600 GPS RF FRONT-END IC n ONE CHIP SYSTEM TO INTERFACE ACTIVE ANTENNA TO ST20GP1 ST20GP1 MICROCONTROLLER n antenna, via a ceramic RF filter. The gain between the antenna element and the STB5600 STB5600 is expected to be between 10dB and 35dB overall, made up of the antenna LNA gain, the feeder loss application circuit is shown in figure 1. The RF input from the antenna downlead is fed via a ceramic filter and matching circuit to the RF+,RF- pins. The external LNA in the antenna should have between 10 and
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6088-v2.htm
STMicroelectronics 14/06/1999 12.35 Kb HTM 6088-v2.htm
BPSK circuit that transmits outgoing data by antenna load modulation. Designed to operate with a antenna coil. The M35101 M35101 is built with ST's proprietary single polysilicon CMOS EEPROM antenna current, which induces variations on the reader's antenna that can be detected with suitable individually select any of up to 256 devices within its antenna field. For maximum flexibility, each device can up by entering the reader's antenna field. Two different anti-collision algorithms are supported
/datasheets/files/stmicroelectronics/stonline/press/news/year1998/k524m.htm
STMicroelectronics 20/10/2000 4.21 Kb HTM k524m.htm
TO INTERFACE ACTIVE ANTENNA TO ST20GP1 ST20GP1 MICROCONTROLLER n COMPLETE RECEIVER USING NOVEL DUAL STB5600 STB5600 GPS front-end is fed with the signal from an active antenna, via a ceramic RF filter. The gain between the antenna element and the STB5600 STB5600 is expected to be between 10dB and 35dB overall, made up of the antenna LNA gain, the feeder loss, connector loss, and the ceramic filter loss. In order input from the antenna downlead is fed via a ceramic filter and matching circuit to the RF+,RF- pins.
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6088.htm
STMicroelectronics 20/10/2000 14.67 Kb HTM 6088.htm
ONE CHIP SYSTEM TO INTERFACE ACTIVE ANTENNA TO ST20GP1 ST20GP1 MICROCONTROLLER n COMPLETE RECEIVER USING active antenna, via a ceramic RF filter. The gain between the antenna element and the STB5600 STB5600 is expected to be between 10dB and 35dB overall, made up of the antenna LNA gain, the feeder application circuit is shown in figure 1. The RF input from the antenna downlead is fed via a ceramic filter and matching circuit to the RF+,RF- pins. The external LNA in the antenna should have between 10 and
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/6088-v3.htm
STMicroelectronics 25/05/2000 14.17 Kb HTM 6088-v3.htm
formed by these blocks (reported in figure 1): 1. The parabola is the antenna of the system and focuses nearest to the antenna) is disabled. The master receiver supplies the LNB by means of the MI input of the slave receiver. 4. The line length compensation function is useful when the antenna is connected to the Schematics are shown below. Figure 23: Two Antenna Ports Receiver AN1230 AN1230 - APPLICATION NOTE 14/17 REGULATOR /Os + TUNER 17V 24V + Figure 24: Single Antenna Receiver with Master Receiver Port Figure 25: Using
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/7238.htm
STMicroelectronics 20/10/2000 28.12 Kb HTM 7238.htm
): 1. The parabola is the antenna of the system and focuses the satellite signal to the LNB; 2. The occurs when two receivers are connected in series and the slave receiver (the nearest to the antenna) is line length compensation function is useful when the antenna is connected to the receiver by a long Figure 23: Two Antenna Ports Receiver AN1230 AN1230 - APPLICATION NOTE 14/17 REGULATOR (DOUBLE LNB) LNB /Os Vcc MCU I/Os + TUNER 17V 24V + Figure 24: Single Antenna Receiver with Master Receiver Port
/datasheets/files/stmicroelectronics/stonline/books/ascii/docs/7238-v1.htm
STMicroelectronics 16/11/2000 26.95 Kb HTM 7238-v1.htm