Philips FMU-100 user manual Appendix 3 Messages for remote controlling RX Radiator

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Appendix 3: Messages for remote controlling RX Radiator

const

 

WM_MyVolUp=WM_USER + 1001;

volume up

WM_MyVolDown=WM_USER + 1002;

volume down

WM_MyMute=WM_USER + 1003;

mute

WM_MyUnmute=WM_USER + 1004;

unmute

WM_MyStatUp=WM_USER + 1005;

station up

WM_MyStatDown=WM_USER + 1006;

station down

WM_MyLastStat=WM_USER + 1007;

last station

WM_MySurf=WM_USER + 1008;

starts/stops surfing

WM_MyTuneStatNo=WM_USER + 1009;

wPar= 1 .. 24

WM_MyTuneFr=WM_USER + 1010;

wPar= 06000 to 13000

 

(for example wPar=8970 for fr. 89.7 MHz)

WM_MyMin=WM_USER + 1011;

minimize

WM_MyMax=WM_USER + 1012;

maximize

WM_MyThin=WM_USER + 1013;

thin window

WM_MyRecord=WM_USER + 1014;

starts/stops recording

WM_MyRadClose=WM_USER + 1015;

close RX Radiator

WM_MyRestore=WM_USER + 1016;

restores from minimized state

WM_MyMonoStereo=WM_USER + 1017;

toggles mono/stereo

WM_MyStereo=WM_USER + 1018;

stereo on

WM_MyMono=WM_USER + 1019;

mono on

WM_MyMuteUnmute=WM_USER + 1020;

toggles mute/unmute mode

WM_MyToggleThin=WM_USER + 1021;

toggles thin/maximized window

WM_MyToggleTray=WM_USER + 1022;

toggles tray icon/normal window

WM_MyFineTuneUp=WM_USER + 1023;

fine tune up

WM_MyFineTuneDown=WM_USER + 1024;

fine tune down

WM_MyCoarseTuneUp=WM_USER + 1025;

tune up

WM_MyCoarseTuneDown=WM_USER + 1026; tune down

WM_MyScanUp=WM_USER + 1027;

scan up

WM_MyScanDown=WM_USER + 1028;

scan down

WM_MyToggleOnTop=WM_USER + 1029;

toggless on/off always on top

WM_MyLCD=WM_USER + 1030;

set LCD text

WM_MyRecordName=WM_USER + 1031;

stop recording and save it with given name

WM_MyLockLCD=WM_USER + 1032;

prevent LCD from being updating

WM_MyReleaseLCD=WM_USER + 1033;

unlock LCD

WM_MyRefreshLCD=WM_USER + 1034;

force RX Radiator to refresh LCD

WM_MyLoopOn=WM_USER + 1035;

loop recording on

WM_MyLoopOff=WM_USER + 1036;

loop recording off

WM_MyToggleLoop=WM_USER + 1037;

toggles loop recording on/off

WM_MySleep=WM_USER + 1038;

toggles sleep timer on/off, parameters wPar:

 

0 for switching off and 10, 20, 30, 60, 120,

 

300 (minutes);

If lPar = 1, then Windows will be shut down

Example:

You can use it in some programming language (example in Delphi):

User Manual

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Contents RadioXtreme Hardware Setup Table of contents IntroductionSoftware Setup RX RadiatorAppendix 3 Messages for remote controlling RX Radiator Using remote controlHow to expand the frequency range? Getting HelpPackage Contents SpecificationsIntroduction Minimum System RequirementsDescription of the radio connectors Hardware SetupInstallation Software SetupChoosing the installer language Welcome screenChoosing components Installation folderInstallation progress Detail features, function and usage of RX RadiatorCompleting setup window RX RadiatorStandard RX Radiator window RX Radiator interfaceThin window Tray icon menuTuning Volume settings areaStations storing and setting ScanningNext station RecordingLast station Start/stop recordingHardware settings Configuration windowMiscellaneous Tuning Tuning range Volume controlTuning step RadioXtreme plugin configurationMore information about the plugin Save and exit Cancel Indicate recording using LEDGet firmware version Get DLL versionFile size limit Recording settingsRecord to PCM wave format no compression Recording formatWindows audio codecs smaller than PCM Miscellaneous OptionsShow hints Other recording options Stations list How often ScheduleTime Menu Script editor Script LCD Editor Mouse operations Frequency LCD label in full window Controlling RX Radiator from keyboardTray icon List of hot keys shortcutsDirect tuning using numerical keypad Remote Control Keys and Functions Using remote controlRX KeyCom RX CommanderDefining a new program for remote controlling Page Getting Help FAQ for RX RadiatorHow can I schedule recording? Contacting support Website for Update AcknowledgementAppendix 1 Command-line switches Stations List of parametersSound Other Appendix 3 Messages for remote controlling RX Radiator

FMU-100 specifications

The Philips FMU-100 is an innovative patient monitoring solution designed to enhance clinical efficiency and patient safety in various healthcare environments. As a part of Philips' extensive portfolio of medical devices, the FMU-100 stands out due to its advanced features, reliable performance, and user-friendly interface.

One of the key features of the FMU-100 is its multi-parameter monitoring capability. This device can seamlessly track vital signs such as heart rate, blood pressure, respiratory rate, and oxygen saturation levels in real-time. By providing comprehensive monitoring capabilities, healthcare professionals can quickly assess a patient's condition and make informed decisions, especially in critical care settings.

The FMU-100 is equipped with state-of-the-art connectivity options, allowing for easy integration with existing hospital information systems. With wireless and wired connectivity capabilities, data can be transmitted securely to central monitoring stations, electronic health records, or remote access devices. This ensures that clinicians have access to up-to-date information at their fingertips, further enhancing patient care while reducing the chances of data loss or errors.

Another significant aspect of the FMU-100 is its user-centric design. The device features a clear and intuitive interface, making it easy for healthcare staff to navigate and operate. The display offers high-resolution graphics and customizable layouts, allowing users to prioritize the information most relevant to their practice. In addition, the FMU-100 is designed to be portable, enabling it to be used effectively in a variety of settings, including emergency departments, transport applications, and patient rooms.

Moreover, the Philips FMU-100 incorporates advanced alarm management features. It utilizes smart alarm technology to reduce alarm fatigue among clinicians by delivering clinically relevant alerts while filtering out non-critical notifications. This sophisticated alarm system contributes to a more efficient workflow and ensures that healthcare providers focus on urgent patient needs.

The FMU-100 is also built with durability and environmental adaptability in mind. With its robust design, the device functions efficiently in diverse healthcare settings, whether in a bustling hospital ward or a mobile unit. The device is tested for various conditions, ensuring reliable performance under different operational circumstances.

In conclusion, the Philips FMU-100 represents a significant advancement in patient monitoring technology. With its multi-parameter tracking, seamless connectivity, intuitive design, superior alarm management, and durability, the FMU-100 is an invaluable tool for healthcare professionals aiming to provide optimal patient care. Its ability to enhance clinical workflows while ensuring patient safety positions it as a preferred choice in modern medical facilities.