American National Standard Recommended Practice For An On Site Ad Hoc Test Method For Estimating Electromagnetic Immunity Of Medical Devices To Radiated Radio Frequency Rf Emissions From Rf Transmitters PDF Download

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American National Standard Recommended Practice for an On-Site, Ad Hoc Test Method for Estimating Electromagnetic Immunity of Medical Devices to Radiated Radio-Frequency (RF) Emissions from RF Transmitters - Redline

American National Standard Recommended Practice for an On-Site, Ad Hoc Test Method for Estimating Electromagnetic Immunity of Medical Devices to Radiated Radio-Frequency (RF) Emissions from RF Transmitters - Redline
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Release: 2014
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Draft American National Standard Recommended Practice For An On-Site, Ad Hoc Test Method For Estimating Electromagnetic Immunity Of Medical Devices To Radiated Radio-Frequency (Rf) Emissions From Rf Transmitters

Draft American National Standard Recommended Practice For An On-Site, Ad Hoc Test Method For Estimating Electromagnetic Immunity Of Medical Devices To Radiated Radio-Frequency (Rf) Emissions From Rf Transmitters
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Release: 2014
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American National Standard Recommended Practice for an On-site, Ad Hoc Test Method for Estimating Electromagnetic Immunity of Medical Devices to Radiated Radio-frequency (RF) Emissions from RF Transmitters

American National Standard Recommended Practice for an On-site, Ad Hoc Test Method for Estimating Electromagnetic Immunity of Medical Devices to Radiated Radio-frequency (RF) Emissions from RF Transmitters
Author:
Publisher:
Total Pages: 50
Release: 2014
Genre: Electromagnetic compatibility
ISBN: 9780738191607

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Abstract: A guide to evaluating electromagnetic immunity of medical devices against radiated radio-frequency (RF) emissions from common RF transmitters is provided in this recommended practice (e.g., two-way radios; walkie-talkies; mobile phones; wireless-enabled tablets, e-readers, laptop computers, and similar devices; RFID readers; networked mp3 players; two-way pagers; and wireless personal digital assistants [PDAs]). A comprehensive test or a guarantee is not provided by this protocol but, instead, a basic evaluation is given that can help identify medical devices that might be particularly vulnerable to interference from common RF transmitters. Existing or newly purchased medical devices can be evaluated by this ad hoc test protocol or the protocol can be implemented for prepurchase evaluation. This recommended practice applies to medical devices used in health-care facilities but can also be adapted to medical devices in home health-care or mobile health-care settings. It does not apply to implantable medical devices (e.g., pacemakers and defibrillators), transport environments such as ambulances and helicopters, or RF transmitters rated at more than 8 W of output power. Testing with transmitters greater than 8 W in health-care facilities is not recommended because of possible adverse effects on critical-care medical devices that are in use in nearby areas of the facility. Finally, in-band RF interference where the fundamental frequency of an RF transmitter overlaps with frequencies used by a hospital wireless network or monitoring or other medical device wireless links is not addressed by this recommended practice. Keywords: ad hoc testing, American National Standard, ANSI C63.18, electromagnetic compatibility, electromagnetic immunity, electromagnetic interference, EMC, EMI, health-care facilities, in situ testing, medical devices, on-site testing, portable radio frequency transmitters, test method, test procedure, wireless.


ANSI C63.18-1997

ANSI C63.18-1997
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Total Pages:
Release: 1997
Genre:
ISBN:

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American National Standard Recommended Practice for an On-site, Ad Hoc Test Method for Estimating Radiated Electromagnetic Immunity of Medical Devices to Specific Radio-frequency Transmitters

American National Standard Recommended Practice for an On-site, Ad Hoc Test Method for Estimating Radiated Electromagnetic Immunity of Medical Devices to Specific Radio-frequency Transmitters
Author:
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Total Pages: 26
Release: 1997
Genre: Electromagnetic compatibility
ISBN:

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Guidance is provided for health-care organizations in evaluating the radiated RF electromagnetic immunity of their existing inventories of medical devices to their existing inventories of RF transmitters, as well as to RF transmitters that are commonly available.


Bringing a Medical Device to the Market

Bringing a Medical Device to the Market
Author: Gennadi Saiko
Publisher: CRC Press
Total Pages: 274
Release: 2022-09-29
Genre: Medical
ISBN: 1000632180

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Many of us in science have this "Aha!" moment when the mental puzzle is put together and you get a clear picture of a product, which will change the world. Moreover, you have a clear understanding of how it can be a commercial success. So, you decide to start a new company, a startup, and have a clear path to success. However, soon you come face to face with reality, where things are much more complicated. Only a minute fraction of startups survives and becomes successful. This is particularly true in the complex world of medical devices. There are many good books on startups but this book is specifically about startups specializing in medical devices, which are very different from other ones. It is written by a MedDev entrepreneur for first-time MedTech entrepreneurs.


Electromagnetic Compatibility in Railways

Electromagnetic Compatibility in Railways
Author: Ade Ogunsola
Publisher: Springer Science & Business Media
Total Pages: 545
Release: 2012-08-14
Genre: Technology & Engineering
ISBN: 3642302815

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A railway is a complex distributed engineering system: the construction of a new railway or the modernisation of a existing one requires a deep understanding of the constitutive components and their interaction, inside the system itself and towards the outside world. The former covers the various subsystems (featuring a complex mix of high power sources, sensitive safety critical systems, intentional transmitters, etc.) and their interaction, including the specific functions and their relevance to safety. The latter represents all the additional possible external victims and sources of electromagnetic interaction. EMC thus starts from a comprehension of the emissions and immunity characteristics and the interactions between sources and victims, with a strong relationship to electromagnetics and to system modeling. On the other hand, the said functions are achieved and preserved and their relevance for safety is adequately handled, if the related requirements are well posed and managed throughout the process from the beginning. The link is represented by standards and their correct application, as a support to analysis, testing and demonstration.