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Abstract: No abstract text available
Text: AZD085 - A Standards Based approach to capacitive sensor EMC Problems J.D. van Wyk, M. Visser, D.B. Rademeyer I INTRODUCTION In its essence, capacitive sensing is a highly accurate analog measurement process, detecting changes in -15 -12 capacitance on the order of 10 to 10 Farads supported by extensive digital signal processing. If it was feasible to
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AZD085
AZD051
AZD015
AZD013
AZD008
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8015 microcontroller
Abstract: EN50142 EN50141 EN50140 EMC for PCB Layout AN898 EN50081-1 EN50081-2 EN50082-1 EN50082-2
Text: APPLICATION NOTE EMC GUIDE-LINES FOR MICROCONTROLLER - BASED APPLICATIONS by Edouard PRESSON and David JACQUINOD INTRODUCTION EMC must be taken into account at the very beginning of a project; the cost of correcting an EMC problem of an application encountered at the start of the production can be far greater
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EMC for PCB Layout
Abstract: EN50140 EMC PCB Layout 8015 microcontroller conducted emission EMC APPLICATION EN50141 HT 1000-4 EN50142 AN898
Text: APPLICATION NOTE EMC GUIDE-LINES FOR MICROCONTROLLER - BASED APPLICATIONS By Edouard PRESSON and David JACQUINOD INTRODUCTION EMC must be taken into account at the very beginning of a project; the cost of correcting an EMC problem of an application encountered at the start of the production
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8015 microcontroller
Abstract: EN50141
Text: APPLICATION NOTE EMC GUIDE-LINES FOR MICROCONTROLLER - BASED APPLICATIONS By Edouard PRESSON and David JACQUINOD INTRODUCTION EMC must be taken into account at the very beginning of a project; the cost of correcting an EMC problem of an application encountered at the start of the production
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AN2992
Abstract: AN2318 "x-ray machine" EN50015 capacitive touch 2005 shields opto counter system of ventilator machine capacitive touch 2005 shield CY8C21434-24LFXI LAYOUT GUIDELINES
Text: Application Note AN2318 EMC Design Considerations for PSoC CapSense Applications Author: Mark Lee Associated Project: No Associated Part Family: CY8C21x34 PSoC Designer Version: 4.2 Associated Application Notes: AN2155, AN2292 Abstract Designing capacitive touch sense systems with PSoC CapSense for compliance with EMC
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AN2318
CY8C21x34
AN2155,
AN2292
162nd
AN2992
AN2318
"x-ray machine"
EN50015
capacitive touch 2005 shields
opto counter
system of ventilator machine
capacitive touch 2005 shield
CY8C21434-24LFXI
LAYOUT GUIDELINES
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transistor x1 3001
Abstract: HFBC60-W/KS
Text: DC-DC CONVERTER HFBC60-W/KS RAILWAY CONVERTER. FOR CHASSIS MOUNTING HIGHLIGHTS + Output Power up to 60 Watts* + Efficiency up to 90% + Ultra Wide Input Range + Wide Temperature Range + Hold-up-time > 10ms + RoHS compliance + According to EN50155 INPUT PROTECTION
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HFBC60-W/KS
EN50155
D-74343
transistor x1 3001
HFBC60-W/KS
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AZD015
Abstract: IQS316 LMX324
Text: . IQ Switch ProxSense Application Note: TM AZD015 Radiated - Immunity Guidelines for ProxSense Designs Table of Contents 1 Introduction .1
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AZD015
AZD015
IQS316
LMX324
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electric field disturbance monitor
Abstract: IEC801 INA105 INA118 ISO213 OPA130 OPA131 OPA2234 input and output center tap transformer center tap voltage transformer
Text: Noise and Interference • What EMC means .3.2 • How to interpret EMC .3.3 • Methods to measure EMC .3.8 • Influences of components and PCBs .3.17 • Cables .3.33
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SZZA009
Abstract: AN032 CC2430 ISO STANDARDS for radio interference "slot antenna" microstrip EMC PCB Layout MURATA CERAMIC CHIP ANTENNA GPS 2.1 SDYA011 SWRA030
Text: Compliance By Design Presented By Bob Buczkiewicz 1 Presentation Overview • • • • About LS Research/ LS Compliance Regulatory Approval Overview/Guidelines Pros and Cons of using RF Modules Compliance Risk Mitigation – – – – RF Component Selection
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PCF8886
Abstract: No abstract text available
Text: AN11157 Capacitive touch sensing with high EMC performance Rev. 1 — 3 February 2012 Application note Document information Info Content Keywords EMC performance, Touch sensing, Design, Guidelines, PCF8885, PCA8885 Abstract NXP’s touch sensor family provides one of the highest immunity sensor
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AN11157
PCF8885,
PCA8885
PCF8886
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thyristor firing circuit
Abstract: Design of H.F. Wideband Power Transformers toroidal ring core choke Interface Isolators EIA-485 NM485D NMS1212 TRIAC thyristor "Interface Isolators" AC toroidal choke
Text: EMC design guidelines the databook EMC DESIGN GUIDELINES Contents power supply considerations . . . . . . . . . . . . . . . . . . . . 5 signal line considerations . . . . . . . . . . . . . . . . . . . . . . 5 PCB considerations 6 . . . . . . . . . . . . . . . . . . . . . . . . .
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Abstract: No abstract text available
Text: Bulletin No. GCM232-J Drawing No. LP0214 Released 4/04 Tel +1 717 767-6511 Fax +1 (717) 764-0839 www.redlion.net MODEL GCM232 - SERIAL CONVERTER MODULE (RS-232C/20 mA CURRENT LOOP) ! ALLOWS COMMUNICATIONS BETWEEN RS-232 CONTROL EQUIPMENT AND RLC PRODUCTS WITH 20 mA SERIAL
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GCM232-J
LP0214
GCM232
RS-232C/20
RS-232
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wheelchair circuit
Abstract: COP8788 TL092 Abstract schematic power transistor Abstract ignition COP8788EGMH IC Ensemble COP8788E COP888GG 74HC00
Text: National Semiconductor Application Note 1050 Robin Getz Bob Moeckel August 1996 1 0 ABSTRACT In today’s world with increasing numbers of both fixed and mobile electronic devices electromagnetic compatibility EMC is becoming a critical issue Disastrous if not annoying results occur if a system subsystem or component interferes with another through electromagnetic means The
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1307-FLZ
Abstract: No abstract text available
Text: DC-DC CONVERTER ACR 350/C RAILWAY CONVERTER. FOR CHASSIS MOUNTING HIGHLIGHTS + Output Power up to 360 Watts* + Efficiency up to 94% + Hold-up-time > 10ms + Redundant Operation + Wide Input Range + Wide Temperature Range + RoHS compliance + According to EN50155
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350/C
EN50155
D-74343
1307-FLZ
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IEC61967-4
Abstract: IEC61967 IEC61967-2 Christophe Basso smps PCB LAYOUT IEC62132-4 computer smps circuit AND8301 IEC62132 62132
Text: AND8301/D EMC Specifications and PCB Guidelines for SMPS Devices Prepared by: Matthew Majeika ON Semiconductor http://onsemi.com Introduction Electromagnetic compatibility EMC is a very important consideration in modern electronic design. With critical information being transmitted, received, stored and acted
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AND8301/D
IEC61967-4
IEC61967
IEC61967-2
Christophe Basso
smps PCB LAYOUT
IEC62132-4
computer smps circuit
AND8301
IEC62132
62132
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IC Ensemble
Abstract: soil exploration TL092 74HC00 74HC74 AN-643 C1995 signal path designer 74HC74 schematic application
Text: INTRODUCTION The control and minimization of Electro-Magnetic Interference EMI is a technology that is out of necessity growing rapidly EMI will be defined shortly but for now you might be more familiar with the terms Radio Noise Electrical Noise or Radio Frequency Interference (RFI) The technology’s explorations include a wide frequency spectrum from
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20-3A
IC Ensemble
soil exploration
TL092
74HC00
74HC74
AN-643
C1995
signal path designer
74HC74 schematic application
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minor project proposal on electronics
Abstract: TL092 AN-643 signal path designer national special function analog and digital circuits
Text: National Semiconductor Application Note 643 Joe Cocovich April 2001 INTRODUCTION The control and minimization of Electro-Magnetic Interference EMI is a technology that is, out of necessity, growing rapidly. EMI will be defined shortly but, for now, you might be
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ER226303
Abstract: rj45 connector to parallel port RJ45 low connector pcb board LAN9500 LAN9500i magnetic module ethernet schematic usb to rj45 PIN DIAGRAM OF RJ45 to usb RJ45 flat Lan RJ45 TAP UP
Text: AN 18.0 LAN9500/LAN9500i Layout Guidelines Chapter 1 Introduction The LAN9500/LAN9500i is a high performance solution for USB to 10/100 Ethernet port bridging. With applications ranging from embedded systems, set-top boxes, and PVR’s, to USB port replicators, USB
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LAN9500/LAN9500i
LAN9500/LAN9500i
ER226303
rj45 connector to parallel port
RJ45 low connector pcb board
LAN9500
LAN9500i
magnetic module ethernet
schematic usb to rj45
PIN DIAGRAM OF RJ45 to usb
RJ45 flat Lan
RJ45 TAP UP
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TL092
Abstract: AN-643 instrumentation wiring practice terminations receptor digital fm signal path designer
Text: INTRODUCTION The control and minimization of Electro-Magnetic Interference EMI is a technology that is, out of necessity, growing rapidly. EMI will be defined shortly but, for now, you might be more familiar with the terms Radio Noise, Electrical Noise, or
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an010562
TL092
AN-643
instrumentation wiring practice terminations
receptor digital fm
signal path designer
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TL092
Abstract: AN-643 signal path designer
Text: National Semiconductor Application Note 643 Joe Cocovich December 1989 INTRODUCTION The control and minimization of Electro-Magnetic Interference EMI is a technology that is, out of necessity, growing rapidly. EMI will be defined shortly but, for now, you might be
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Abstract: No abstract text available
Text: AN11267 EMC and system level ESD design guidelines for LCD drivers Rev. 1 — 11 February 2013 Application note Document information Info Content Keywords LCD, LCD driver, COG, Chip-On-Glass, EMC, EMI, ESD, Electro Magnetic Compatibility, Electro Magnetic Interference, Electrostatic
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AN11267
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1756-L61
Abstract: 1756-RMC1 Allen-Bradley 1756-L61 1756-L73 1756-BA1 BATTERY 1756-L62 1756-l63 1756-RMC3 1756-ESMCAP 1756-L75
Text: Technical Data 1756 ControlLogix Controllers Specifications ControlLogix Controller Catalog Numbers 1756-L61, 1756-L62, 1756-L63, 1756-L64, 1756-L65, 1756-L73, 1756-L75 GuardLogix Controller Catalog Numbers 1756-L61S, 1756-L62S, 1756-L63S, 1756-LSP ControlLogix-XT Controller Catalog Number
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1756-L61,
1756-L62,
1756-L63,
1756-L64,
1756-L65,
1756-L73,
1756-L75
1756-L61S,
1756-L62S,
1756-L63S,
1756-L61
1756-RMC1
Allen-Bradley 1756-L61
1756-L73
1756-BA1 BATTERY
1756-L62
1756-l63
1756-RMC3
1756-ESMCAP
1756-L75
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Untitled
Abstract: No abstract text available
Text: Bulletin No. GCM422-G Drawing No. LP0213 Released 2/05 Tel +1 717 767-6511 Fax +1 (717) 764-0839 www.redlion.net MODEL GCM422 - SERIAL CONVERTER MODULE [RS422/20 mA current loop] ! ALLOWS COMMUNICATIONS BETWEEN RS422 CONTROL EQUIPMENT AND RLC PRODUCTS WITH 20 mA SERIAL
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GCM422-G
LP0213
GCM422
RS422/20
RS422
RS485
RS-422
RS-485
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Untitled
Abstract: No abstract text available
Text: Appendix D TESTING CAPABILITIES The damaging effects of electrical phenomena continually threaten telecommunication equipment. Such threats can spring from any number of sources, including lightning, power surges, electrostatic discharge, radio frequency interference, and
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