Kenwood TH-D74A/E Operating Tips
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Amateur Radio Operations 2019 World Jamboree
Amateur Radio Operations 2019 World Jamboree Version 6, March 2019 All changes from Version 5 are highlighted in red. Table of Contents Table of Contents ................................................................................................................... 2 Overview ................................................................................................................................ 4 Activities Overview ................................................................................................................. 5 Demonstration Station ........................................................................................................... 7 ARDF --- FoxHunting .............................................................................................................. 12 International Space Station .................................................................................................. 13 WV8BSA VHF-UHF Repeaters ................................................................................................ 14 Media Staff ........................................................................................................................... 14 Facilities ............................................................................................................................... 14 Staff ..................................................................................................................................... 15 Organization Charts ............................................................................................................. -
47 CFR §97 - Rules of the Amateur Radio Service
47 CFR §97 - Rules of the Amateur Radio Service (updated January, 2014) Subpart A—General Provisions §97.1 Basis and purpose. The rules and regulations in this part are designed to provide an amateur radio service having a fundamental purpose as expressed in the following principles: (a) Recognition and enhancement of the value of the amateur service to the public as a voluntary noncommercial communication service, particularly with respect to providing emergency communications. (b) Continuation and extension of the amateur's proven ability to contribute to the advancement of the radio art. (c) Encouragement and improvement of the amateur service through rules which provide for advancing skills in both the communication and technical phases of the art. (d) Expansion of the existing reservoir within the amateur radio service of trained operators, technicians, and electronics experts. (e) Continuation and extension of the amateur's unique ability to enhance international goodwill. §97.3 Definitions. (a) The definitions of terms used in part 97 are: (1) Amateur operator. A person named in an amateur operator/primary license station grant on the ULS consolidated licensee database to be the control operator of an amateur station. (2) Amateur radio services. The amateur service, the amateur-satellite service and the radio amateur civil emergency service. (4) Amateur service. A radiocommunication service for the purpose of self-training, intercommunication and technical investigations carried out by amateurs, that is, duly authorized persons interested in radio technique solely with a personal aim and without pecuniary interest. (5) Amateur station. A station in an amateur radio service consisting of the apparatus necessary for carrying on radiocommunications. -
Teaching with Technology: a Proposal for Using Amateur Radio in the Classroom
DOCUMENT RESUME ED 378 943 IR 016 946 AUTHOR Newell, Peter R. TITLE Teaching with Technology: A Proposal for Using Amateur Radio in the Classroom. PUB DATE Dec 94 NOTE 29p.; Adapted from a paper submitted in partial fulfillment of class requirements for VTE 500, Contemporary Concepts in Vocational-Technical Education, Spring 1994, and published in the 1994 American Radio Relay League National Educational Workshop proceedings. A"AILLE FROMPeter R. Newell, 8226 Trevi Lane, Clay, NY 13041 ($10). PUB TYPE Viewpoints (Opinion/Position Papers, Essays, etc.) (120) Reports Evaluative/Feasibility (142) EDRS PRICE MF01/PCO2 Plus Postage. DESCRIPTORS *Communication (Thought Transfer); Educational Innovation; *Educational Radio; Educational' Technology; Elementary Secondary Education; Interdisciplinary Approach; Language Arts; Self Esteem; *Student Motivation; ''Teaching Methods; *Vocational Education IDENTIFIERS *Ham Radio ABSTRACT Amateur radio is a technology and activity that offers great potential when integrated into academic or vocational curricula. Programs with electrical, electronics, and electromechanical content can benefit from the use of amateur radio, and can also enhance language and communications skills. The biggest value of amateur radio may lie in its ability to enhance a student's motivation and self-esteem. In addition to its specific vocational and technical applications, amateur radio can assist in teaching basic skills and in reducing the isolation of students and teachers as it promotes interdisciplinary education and cultural awareness. Amateur radio is distinctly different from citizens band, as it is a noncommercial service. Ham operators do not need an electronics background, although technical knowledge and skills are helpful. Several examples of the educational use of amateur radio illustrate its potential for academic and vocational education. -
Supplemental Information for an Amateur Radio Facility
COMMONWEALTH O F MASSACHUSETTS C I T Y O F NEWTON SUPPLEMENTAL INFORMA TION FOR AN AMATEUR RADIO FACILITY ACCOMPANYING APPLICA TION FOR A BUILDING PERMI T, U N D E R § 6 . 9 . 4 . B. (“EQUIPMENT OWNED AND OPERATED BY AN AMATEUR RADIO OPERAT OR LICENSED BY THE FCC”) P A R C E L I D # 820070001900 ZON E S R 2 SUBMITTED ON BEHALF OF: A LEX ANDER KOPP, MD 106 H A R TM A N ROAD N EWTON, MA 02459 C ELL TELEPHONE : 617.584.0833 E- MAIL : AKOPP @ DRKOPPMD. COM BY: FRED HOPENGARTEN, ESQ. SIX WILLARCH ROAD LINCOLN, MA 01773 781/259-0088; FAX 419/858-2421 E-MAIL: [email protected] M A R C H 13, 2020 APPLICATION FOR A BUILDING PERMIT SUBMITTED BY ALEXANDER KOPP, MD TABLE OF CONTENTS Table of Contents .............................................................................................................................................. 2 Preamble ............................................................................................................................................................. 4 Executive Summary ........................................................................................................................................... 5 The Telecommunications Act of 1996 (47 USC § 332 et seq.) Does Not Apply ....................................... 5 The Station Antenna Structure Complies with Newton’s Zoning Ordinance .......................................... 6 Amateur Radio is Not a Commercial Use ............................................................................................... 6 Permitted by -
The Beginner's Handbook of Amateur Radio
FM_Laster 9/25/01 12:46 PM Page i THE BEGINNER’S HANDBOOK OF AMATEUR RADIO This page intentionally left blank. FM_Laster 9/25/01 12:46 PM Page iii THE BEGINNER’S HANDBOOK OF AMATEUR RADIO Clay Laster, W5ZPV FOURTH EDITION McGraw-Hill New York San Francisco Washington, D.C. Auckland Bogotá Caracas Lisbon London Madrid Mexico City Milan Montreal New Delhi San Juan Singapore Sydney Tokyo Toronto McGraw-Hill abc Copyright © 2001 by The McGraw-Hill Companies. All rights reserved. Manufactured in the United States of America. Except as per- mitted under the United States Copyright Act of 1976, no part of this publication may be reproduced or distributed in any form or by any means, or stored in a database or retrieval system, without the prior written permission of the publisher. 0-07-139550-4 The material in this eBook also appears in the print version of this title: 0-07-136187-1. All trademarks are trademarks of their respective owners. Rather than put a trademark symbol after every occurrence of a trade- marked name, we use names in an editorial fashion only, and to the benefit of the trademark owner, with no intention of infringe- ment of the trademark. Where such designations appear in this book, they have been printed with initial caps. McGraw-Hill eBooks are available at special quantity discounts to use as premiums and sales promotions, or for use in corporate training programs. For more information, please contact George Hoare, Special Sales, at [email protected] or (212) 904-4069. TERMS OF USE This is a copyrighted work and The McGraw-Hill Companies, Inc. -
Echolink Users Guide
EchoLink Users Guide Version 1.0 Affiliated Club EchoLink Internet Linking for Amateur Radio What is Echolink? EchoLink uses VoIP (Voice Over Internet Protocol) to allow licensed amateur Radio Operators to communicate with other Amateurs via the Internet. It is primarily a Windows based application and is offered free of charge at http://www.echolink.org. There is also a new EchoLinux and EchoMac available. Now available is an iPhone and Android app that can be used to con- nect to operators around the world while you are on the go. It was developed by Jonathan Taylor (K1RFD) in 2002 (He received Hamvention 2003 Special Achievement Award). The system allows reliable worldwide connections to be made between radio amateurs, greatly enhancing Amateur Radio's communications capabilities. In essence it is the same as other VoIP applications (such as Skype), but with the unique addition of the ability to link to an amateur radio station's trans- ceiver. Before using the system it is necessary for a prospective user's call sign to be validated. The EchoLink system requires that each new user provide positive proof of license and identity before his or her call sign is added to the list of validated users. EchoLink Users Guide Version 1.0 | 3 Modes EchoLink can be operated strictly between two computers connected to the Internet using the PC soundcard with Speakers and a Microphone. EchoLink can be interfaced to a standard FM transceiver as a “simplex link” from your home QTH. EchoLink can be interfaced to a VHF or UHF repeater for more coverage. -
Statement of ARRL, the National Association for Amateur Radio
Statement of Michael Lisenco on behalf of ARRL, the national association for Amateur Radio Hearing entitled “This is not a Drill: An Examination of Emergency Alert Systems” Before the Senate Committee on Commerce, Science and Transportation United States Senate January 25, 2018 I. Summary of Testimony 1. In emergencies, prior to and during disasters and their immediate aftermath, when other communications systems have failed or are overwhelmed, volunteer Amateur Radio operators are ready, willing, able and prepared to provide alerting information, restoration communications; interoperable communications for first responders which lack that capability; health and welfare message traffic, and operations and support communications for disaster relief organizations and served agencies. 2. Radio Amateurs quickly re-establish communications during that critical window of time between a disaster’s occurrence and the re- establishment of normal communications. 3. Amateur Radio operators contributed substantially to the dissemination of accurate information following the recent missile alert in Hawaii; and Amateur Radio is a key component of communications planning in the event of an actual ballistic missile attack in Hawaii. 4. The extensive Amateur Radio deployment of 50 volunteers from the U.S. mainland to Puerto Rico, and the long-term dedication of more than 75 resident Amateur Radio operators in the first few days of the recovery effort following the devastation there was the best example of the value of Amateur Radio in disaster relief communications. Virtually all communications infrastructure on the Island was destroyed or crippled by the high winds. Amateur Radio operators provided restoration communications for weeks following the hurricane, and in fact local radio Amateurs are still providing communications for power utilities. -
Examining Ambiguities in the Automatic Packet Reporting System
Examining Ambiguities in the Automatic Packet Reporting System A Thesis Presented to the Faculty of California Polytechnic State University San Luis Obispo In Partial Fulfillment of the Requirements for the Degree Master of Science in Electrical Engineering by Kenneth W. Finnegan December 2014 © 2014 Kenneth W. Finnegan ALL RIGHTS RESERVED ii COMMITTEE MEMBERSHIP TITLE: Examining Ambiguities in the Automatic Packet Reporting System AUTHOR: Kenneth W. Finnegan DATE SUBMITTED: December 2014 REVISION: 1.2 COMMITTEE CHAIR: Bridget Benson, Ph.D. Assistant Professor, Electrical Engineering COMMITTEE MEMBER: John Bellardo, Ph.D. Associate Professor, Computer Science COMMITTEE MEMBER: Dennis Derickson, Ph.D. Department Chair, Electrical Engineering iii ABSTRACT Examining Ambiguities in the Automatic Packet Reporting System Kenneth W. Finnegan The Automatic Packet Reporting System (APRS) is an amateur radio packet network that has evolved over the last several decades in tandem with, and then arguably beyond, the lifetime of other VHF/UHF amateur packet networks, to the point where it is one of very few packet networks left on the amateur VHF/UHF bands. This is proving to be problematic due to the loss of institutional knowledge as older amateur radio operators who designed and built APRS and other AX.25-based packet networks abandon the hobby or pass away. The purpose of this document is to collect and curate a sufficient body of knowledge to ensure the continued usefulness of the APRS network, and re-examining the engineering decisions made during the network's evolution to look for possible improvements and identify deficiencies in documentation of the existing network. iv TABLE OF CONTENTS List of Figures vii 1 Preface 1 2 Introduction 3 2.1 History of APRS . -
Mind the Uppercase Letters
Integration of APRS Network with SDI Tomasz Kubik1,2, Wojciech Penar1 1 Wroclaw University of Technology 2 Wroclaw University of Environmental and Life Sciences Abstract. From the point of view of large information systems designers the most important thing is a certain abstraction enabling integration of heterogeneous solutions. Abstraction is associated with the standardization of protocols and interfaces of appropriate services. Behind this façade any device or sensor system may be hidden, even humans recording their measurements. This study presents selected topics and details related to two families of standards developed by OGC: OpenLS and SWE. It also dis- cusses the technical details of a solution built to intercept radio messages broadcast in the APRS network with telemetric information and weather conditions as payload. The basic assumptions and objectives of a prototype system that integrates elements of the APRS network and SWE are given. Keywords: SWE, OpenLS, APRS, SDI, web services 1. Introduction Modern measuring devices are no longer seen as tools for qualitative and quantitative measurements only. They have become parts of highly special- ized solutions, used for data acquisition and post-processing, offering hardware and software interfaces for communication. In the construction of these solutions the latest technologies from various fields are employed, including optics, precision mechanics, satellite and information technolo- gies. Thanks to the Internet and mobile technologies, several architectural and communication barriers caused by the wiring and placement of the sensors have been broken. Only recently the LBS (Location-Based Services) entered the field of IT. These are information services, available from mo- bile devices via mobile networks, giving possibility of utilization of a mobile This work was supported in part by the Polish Ministry of Science and Higher Edu- cation with funds for research for the years 2010-2013. -
Federal Communications Commission Record 10 FCC Red No
FCC 95-113 Federal Communications Commission Record 10 FCC Red No. 9 alleviate congestion in the 222-225 MHz band and to per Before the mit the development of new regional and nationwide pack Federal Communications Commission et networks. Washington, D.C. 20554 3. The 216-218 and 219-220 MHz bands currently are allocated on a primary basis to the maritime mobile service for Automated Maritime Telecommunications Systems (AMTS).2 The 218-219 MHz band is allocated on a primary ET Docket No. 93-40 basis to Interactive Video and Data Services (IVDS).3 In addition, frequencies within the 216-220 MHz band are In the Matter of allocated on a secondary basis to wildlife telemetry,4 fixed and land mobile services, and aeronautical mobile Allocation of the RM-7747 services.5 Television broadcast channel 13 operations oc 219-220 MHz Band for Use by cupy the adjacent 210-216 MHz band. the Amateur Radio Service 4. Packet radio systems transmit digital data in groups or "packets" .using a specified format. Radio channels used by these systems are occupied only during the time individual REPORT AND ORDER "packets" of data are actually being transmitted. Upon completion of a transmission the channel becomes avail Adopted: March 14,1995; Released: March 17,1995 able for other traffic. Amateurs use packet radio for trans mitting a variety of material, including messages, computer programs, graphic images and data bases. These systems can By the Commission: be used in times of emergency to efficiently carry a large volume of messages when other communications facilities are out-of-service or overloaded. -
Digital Modes RTTY
Digital Modes RTTY Digital communication modes represent one of the fastest growing areas of interest in amateur radio, with the past decade seeing many developments. While there are other digital modes that radio amateurs are experimenting with, RTTY, AMTOR, and Packet Radio are the main digital modes on amateur radio. Newer modes such as GTOR are also emerging as amateur radio continues to develop in the area of digital communications. Baudot code is still the common denominator of digital modes, but it is far from standardised itself. While many use the term Baudot Code, others use the term Murray Code. These two names acknowledge two important telegraph pioneers, both of whom made major contributions in this field, however the correct term is CCITT International Alphabet No. 2. The differences between in practical systems is apparent in the punctuation characters and would not be noticed between two operators unless they used punctuation such as ! : % @ etc. Baudot is sent at differing speeds in different areas. Most US operation is at 45.45 baud (a hangover from a speed limitation by the FCC of 60 wpm for any coded operation), at 45 baud in Europe, while all operation in New Zealand is at 50 baud (after a collective decision to standardise to the commercial speed). Nowadays, computers have almost completely taken over from the mechanical teleprinter, so baud rate changes are no longer the problem they once were. ASCII This is used to a very small degree on amateur bands. The proliferation of personal computers in the ham shack, often with in–built communications facilities designed to work on telephone networks, encourages this mode, however there are much more practical ways to use a computer on the air. -
PACKET RADIO from AEA to Z___Page 1 ABOUT the AUTHOR Some of Buck's Books About PACKET RADIO & Digi
ABOUT THE AUTHOR G. E. "Buck" Rogers Sr. K4ABT, is Senior Systems Engineer for ERICSSON Communications. Buck is a pioneer of packet radio, having written many feature articles for the leading Amateur radio, commercial and trade publications. He is PACKET RADIO Editor for CQ MAGAZINE, and authors the PACKET USERS NOTEBOOK, a monthly column in CQ. Some of Buck’s books about PACKET RADIO & Digital communications are: The PACKET RADIO AEA to Z Handbook The PACKET RADIO Beginner’s Guidebook The PACKET RADIO X-1J SysOp’s Handbook The PACKET RADIO Operator’s Handbook The PACKET RADIO OPERATORS MANUAL The PACKET RADIO General Information Handbook The "PRIME" Packet Radio Is Made Easy The PACKET USERS NOTEBOOK The ADVANCED PACKET RADIO HANDBOOK The PACKET COMMANDS HANDBOOK The GLOSSARY of PACKET TERMS HANDBOOK The RS-232 as related to PACKET HANDBOOK Buck conducts forums and seminars on packet radio and digital communications. Buck is an RF and Data Communications Engineer. He was instrumental in the design and implementation of the U. S. Air Force Local Area Network, Wide Area Network, and Global Information Networks (LAN, WAN & GIN). His credentials in other fields of R F communications include terrestrial microwave systems design, television/radio broadcast station design, and Public Service EDACS systems design. His communications consulting travels include the United States, Europe, Asia, and countries throughout the world. Buck is a licensed Amateur of 44 years, and holds the "lifetime" Commercial FCC First Class license (now called the General Class Commercial license) ABOUT THIS BOOK ______________________ PACKET RADIO from AEA to Z___Page 1 This book will provide detailed information for the newcomer to Packet Radio and to the seasoned veteran.