Instrucciones de uso

Cumplimiento de normas

El proyecto cumple con el Reglamento (UE) 2017/745 sobre productos sanitarios, la Directiva RoHS 2015/863/UE y la Directiva sobre equipos radioeléctricos (RED) 2014/53/UE.

Standard compliance
Reference Number (ID:year)Description
EN 60601-1:2006/ A1:2013Medical electrical equipment - Part 1: General requirements for basic safety and essential performance
EN 60601-12:2015/A1:2021Medical electrical equipment - Part 1-2: General requirements for basic safety and essential performance - Collateral Standard: Electromagnetic disturbances - Requirements and tests
EN 60601-16:2010+A1:2015 +A2:2021Medical electrical equipment - Part 1-6: General requirements for basic safety and essential performance - Collateral standard: Usability
EN 62304:2006+A1:2015Medical device software – Software life cycle processes
ISO 80601-2-56Particular requirements for basic safety and essential performance of clinical thermometers for body temperature measurement
EN ISO 14971:2019Medical devices – Application of risk management to medical devices
EN ISO 13485:2016Medical devices – Quality management systems – Requirements for regulatory purposes
EN ISO 152231:2021Symbols for use in the labelling of medical devices
EN ISO 109931:2020Biological evaluation of medical devices – Part 1: Evaluation and testing within a risk management process
EN 62366-1:2015 +A1:2020Medical devices - Part 1: Application of usability engineering to medical devices
EN 60601-1:2006/ A1:2013Medical electrical equipment – Part 1: General requirements for basic safety and essential performance
EN 60601-12:2015/A1:2021Medical electrical equipment - Part 1-2: General requirements for basic safety and essential performance - Collateral Standard: Electromagnetic disturbances - Requirements and tests

10.1. DECLARACIÓN DEL FABRICANTE SOBRE CEM

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos indicados debe asegurarse de que se utilicen en dicho entorno.

Manufacturer declaration on EMC
Emissions test ComplianceElectromagnetic environment - guidance
RF emissions CISPR 11Group 1The models listed above use RF energy only for their internal function. Therefore, their RF emissions are very low and are not likely to cause any interference in nearby electronic equipment.
RF emissions CISPR 11Class BThe models listed above use RF energy only for their internal function. Therefore, their RF emissions are very low and are not likely to cause any interference in nearby electronic equipment.
Harmonic emissions IEC 61000-3-2N/AThe models listed above use RF energy only for their internal function. Therefore, their RF emissions are very low and are not likely to cause any interference in nearby electronic equipment.
Voltage fluctuations / flicker emissions IEC 61000-3-3CompliesThe models listed above use RF energy only for their internal function. Therefore, their RF emissions are very low and are not likely to cause any interference in nearby electronic equipment.

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos indicados debe asegurarse de que se utilicen en dicho entorno.

PUERTO de acoplamiento al paciente

Patient coupling PORT
Immunity TestTest ConditionIEC 60601 Compliance level Electromagnetic environment - guidance
Electrostatic discharge (ESD) according to IEC 61000-4-2± 8 kV Contact ± 2, 4, 8, 15 kV Air± 8 kV Contact ± 15 kV AirFloors should be wood, concrete or ceramic tile. If floors are covered with synthetic material, the relative humidity should be at least 30%.
Conducted RF induced by RF fields IEC 61000-4-6 (a)3 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 80% AM 1kHzExempt from this requirement - cable length is less than 3 m-

Comentario: *No aplicable, unidad sin PUERTO de partes de entrada/salida de señal

a) Se excluyen los SIP/SOPS cuya longitud máxima de cable sea inferior a 3 m.

b) Esta prueba solo se aplica a las líneas de salida destinadas a conectarse directamente a cables de exterior.

c) Las bandas ISM (industriales, científicas y médicas) entre 0,15 MHz y 80 MHz son: de 6,765 MHz a 6,795 MHz; de 13,553 MHz a 13,567 MHz; de 26,957 MHz a 27,283 MHz; y de 40,66 MHz a 40,70 MHz. Las bandas de radioaficionados entre 0,15 MHz y 80 MHz son: de 1,8 MHz a 2,0 MHz; de 3,5 MHz a 4,0 MHz; de 5,3 MHz a 5,4 MHz; de 7 MHz a 7,3 MHz; de 10,1 MHz a 10,15 MHz; de 14 MHz a 14,2 MHz; de 18,07 MHz a 18,17 MHz; de 21,0 MHz a 21,4 MHz; de 24,89 MHz a 24,99 MHz; de 28,0 MHz a 29,7 MHz y de 50,0 MHz a 54,0 MHz.

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos indicados debe asegurarse de que se utilicen en dicho entorno.

Puerto de carcasa

Enclosure Port
Immunity TestTest ConditionIEC 60601 Compliance level Electromagnetic environment - guidance
Electrostatic discharge (ESD) IEC 61000-4-2±,8 kV Contact ± 2, 4, 8, 15 kV Air±8 kV Contact ± 15 kV Air*Floors should be wood, concrete or ceramic tile. If floors are covered with synthetic material, the relative humidity should be at least 30%
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-33 V/m 80 MHz – 2.7 GHz 80% AM 1 kHz3 V/m 80 MHz – 2.7 GHzThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3385 MHz (18Hz Pulse Modulation)27 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3450 MHz (FM+/-5 KHz deviation 1 kHz sine or 18 Hz Pulse Modulation)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3710 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3745 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3780 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3810 MHz (18 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3870 MHz (18 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-3930 MHz (18 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-31720 MHz (217 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-31845 MHz (217 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-31970 MHz (217 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-32450 MHz (217 Hz PM)28 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-35240 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-35500 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-35785 MHz (217 Hz PM)9 V/mThe mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
RATED power frequency magnetic fields IEC 61000-4-850 Hz or 60 Hz30 A/mThe power frequency magnetic fields should be at levels characteristic of a typical location in a typical commercial or hospital environment.
Proximity magnetic fields IEC 61000-4-3930 kHz (CW) (a) 134,2 kHz (2,1 kHz PM) 13,56 MHz (50 kHz PM)8 A/m 65 A/m (c) 7,5 A/m (c)a) This test is applicable only to ME EQUIPMENT and ME SYSTEMS intended for use in the HOME HEALTHCARE ENVIRONMENT. b) The carrier shall be modulated using a 50 % duty cycle square wave signal. c) r.m.s., before modulation is applied.

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos arriba indicados debe asegurarse de que se utilicen en dicho entorno.

PUERTO de alimentación de entrada en c.a.

Input a.c. power PORT
Immunity TestTest ConditionIEC 60601 Compliance levelElectromagnetic environment - guidance
Electrical fast transient/bursts IEC 610004-4± 2 kV 100 kHz Repetition frequency± 2 kVMains power quality should be that of a professional healthcare facility environment and Home healthcare environment.
Surges IEC 61000-4-5± 0.5 kV, ±1 kV line(s) to line(s) ± 0.5 kV, ±1 kV , ± 2 kV line(s) to ground (a)± 1 kV Differential modeMains power quality should be that of a professional healthcare facility environment and Home healthcare environment.
Conducted RF induced by RF fields IEC 61000-4-63 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 80% AM 1kHz3 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 80% AM 1 kHzMains power quality should be that of a professional healthcare facility environment and Home healthcare environment.
Voltage dips, short interruptions and voltage variations on power supply input lines IEC 61000-4-110% UT; 0°.45°, 90°, 135°, 180°, 225°, 270°, 315° 0% UT; 0° 0% UT; 70% 0% UT; 0%0.5 Cycles 1 Cycle 25/30 cycles (50/60 Hz) 250/300 Cycles (50/60 Hz) (5 s)Mains power quality should be that of a professional healthcare facility environment and home healthcare environment. If the user of the models listed above requires continued operation during power mains interruptions, it is recommended that the MESI mTABLET THERMO is powered from an uninterruptible power supply or battery.

Comentario:

a) No aplicable a EQUIPOS y SISTEMAS ELECTROMÉDICOS de CLASE II.

b) Las bandas ISM (industriales, científicas y médicas) entre 0,15 MHz y 80 MHz son: de 6,765 MHz a 6,795 MHz; de 13,553 MHz a 13,567 MHz; de 26,957 MHz a 27,283 MHz; y de 40,66 MHz a 40,70 MHz. Las bandas de radioaficionados entre 0,15 MHz y 80 MHz son: de 1,8 MHz a 2,0 MHz; de 3,5 MHz a 4,0 MHz; de 5,3 MHz a 5,4 MHz; de 7 MHz a 7,3 MHz; de 10,1 MHz a 10,15 MHz; de 14 MHz a 14,2 MHz; de 18,07 MHz a 18,17 MHz; de 21,0 MHz a 21,4 MHz; de 24,89 MHz a 24,99 MHz; de 28,0 MHz a 29,7 MHz y de 50,0 MHz a 54,0 MHz.

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos arriba indicados debe asegurarse de que se utilicen en dicho entorno.

PUERTO de partes de entrada/salida de señal

Signal input/output parts PORT
Immunity TestTest ConditionIEC 60601 Compliance level Electromagnetic environment - guidance
Electrostatic discharge (ESD) IEC 61000-4-2±,8 kV Contact ± 2, 4, 8, 15 kV Air±8 kV Contact ± 15 kV AirFloors should be wood, concrete or ceramic tile. If floors are covered with synthetic material, the relative humidity should be at least 30%.
Electrical fast transient/bursts IEC 610004-4 (a)± 1 kV 100 kHz Repetition frequency± 1 kVMains power quality should be that of a professional healthcare facility environment and Home healthcare environment.
Conducted RF induced by RF fields IEC 61000-4-6± 2 kV line(s) to groundNot applicable.Mains power quality should be that of a professional healthcare facility environment and home healthcare environment.
Conducted RF induced by RF fields IEC 61000-4-6 (a)3 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 80% AM 1kHz3 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 80% AM 1 kHzMains power quality should be that of a professional healthcare facility environment and Home healthcare environment.

Comentario: *No aplicable, unidad sin PUERTO de partes de entrada/salida de señal

a) Se excluyen los SIP/SOPS cuya longitud máxima de cable sea inferior a 3 m.

b) Esta prueba solo se aplica a las líneas de salida destinadas a conectarse directamente a cables de exterior.

c) Las bandas ISM (industriales, científicas y médicas) entre 0,15 MHz y 80 MHz son: de 6,765 MHz a 6,795 MHz; de 13,553 MHz a 13,567 MHz; de 26,957 MHz a 27,283 MHz; y de 40,66 MHz a 40,70 MHz. Las bandas de radioaficionados entre 0,15 MHz y 80 MHz son: de 1,8 MHz a 2,0 MHz; de 3,5 MHz a 4,0 MHz; de 5,3 MHz a 5,4 MHz; de 7 MHz a 7,3 MHz; de 10,1 MHz a 10,15 MHz; de 14 MHz a 14,2 MHz; de 18,07 MHz a 18,17 MHz; de 21,0 MHz a 21,4 MHz; de 24,89 MHz a 24,99 MHz; de 28,0 MHz a 29,7 MHz; y de 50,0 MHz a 54,0 MHz.

Guía y declaración del fabricante - inmunidad electromagnética

El MESI mTABLET THERMO está previsto para su uso en el entorno electromagnético especificado a continuación. El cliente o el usuario de los modelos arriba indicados debe asegurarse de que se utilicen en dicho entorno.

Guidance and manufacturer’s declaration - electromagnetic immunity
Immunity testIEC 60601 Test level Compliance levelElectromagnetic environment - guidance
Conducted RF induced by RF fields IEC 61000-4-6 Radiated RF EM fields and Proximity fields from RF wireless communications equipment IEC 61000-4-33 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 3 V/m 80 MHz – 2.7 GHz3 Vrms 150 kHz - 80 MHz 6 Vrms in ISM bands between 150 kHz - 80 MHz c) 3 V/mPortable and mobile RF communications equipment should not be used no closer to any part of the above listed models, including cables, than the recommended separation distance calculated from the equation applicable to the frequency of the transmitter. Recommended separation distance d = 1.2√P d = 1.2√P 80 MHz - 800 MHz d = 2.3√P 800 MHz – 2.7 GHz Where P is the maximum output power rating of the transmitter in watts (W) according to the transmitter manufacturer and d is the recommended separation distance in meters (m). Field strengths from fixed RF transmitters, as determined by an electromagnetic site survey a should be less than the compliance level in each frequency range. (b) Interference may occur in the vicinity of equipment marked with the following symbol:

NOTA 1: A 80 MHz y 800 MHz, se aplica el intervalo de frecuencia más alto.

NOTA 2: Estas directrices pueden no ser aplicables en todas las situaciones. La propagación electromagnética se ve afectada por la absorción y reflexión de estructuras, objetos y personas.

a) Las intensidades de campo de transmisores fijos, como las estaciones base de radiotelefonía (móvil/inalámbrica), las radios móviles terrestres, la radio de aficionados, la radiodifusión en AM y FM y la difusión de televisión, no pueden predecirse teóricamente con precisión. Para evaluar el entorno electromagnético debido a los transmisores fijos de RF, debe considerarse la realización de un estudio electromagnético del emplazamiento. Si la intensidad de campo medida en la ubicación en la que se utiliza el MESI mTABLET ABI supera el nivel de cumplimiento de RF aplicable indicado anteriormente, deben observarse los modelos arriba indicados para verificar su funcionamiento normal. Si se observa un funcionamiento anormal, pueden ser necesarias medidas adicionales, como reorientar o reubicar los modelos indicados.

b) En el intervalo de frecuencias de 150 kHz a 80 MHz, la intensidad de campo debe ser inferior a 3 V/m.

c) Las bandas ISM (industriales, científicas y médicas) entre 0,15 MHz y 80 MHz son: de 6,765 MHz a 6,795 MHz; de 13,553 MHz a 13,567 MHz; de 26,957 MHz a 27,283 MHz; y de 40,66 MHz a 40,70 MHz. Las bandas de radioaficionados entre 0,15 MHz y 80 MHz son: de 1,8 MHz a 2,0 MHz; de 3,5 MHz a 4,0 MHz; de 5,3 MHz a 5,4 MHz; de 7 MHz a 7,3 MHz; de 10,1 MHz a 10,15 MHz; de 14 MHz a 14,2 MHz; de 18,07 MHz a 18,17 MHz; de 21,0 MHz a 21,4 MHz; de 24,89 MHz a 24,99 MHz; de 28,0 MHz a 29,7 MHz y de 50,0 MHz a 54,0 MHz.

Distancias de protección recomendadas entre los equipos portátiles y móviles de comunicaciones por RF y los modelos arriba indicados

El MESI mTABLET THERMO está previsto para su uso en un entorno electromagnético en el que las perturbaciones de RF radiadas estén controladas. El cliente o el usuario de los modelos arriba indicados puede ayudar a prevenir las interferencias electromagnéticas manteniendo una distancia mínima entre los equipos portátiles y móviles de comunicaciones por RF (transmisores) y los modelos arriba indicados, conforme a las recomendaciones siguientes, en función de la potencia máxima de salida del equipo de comunicación.

Distancia de protección según la frecuencia del transmisor m

Separation distance according to frequency of transmitter m
Rated maximum output power of transmitter W150 kHz to 80 MHz d = 1.2√P80 MHz to 800 MHz d = 1.2√P800 MHz to 2.5 GHz d = 2.3 √P
0.010.120.120.23
0.10.380.380.73
11.21.22.3
103.83.87.3
100121223

Para los transmisores con una potencia máxima de salida no incluida en la lista anterior, la distancia de protección recomendada d en metros (m) puede determinarse utilizando la ecuación aplicable a la frecuencia del transmisor, donde P es la potencia máxima de salida del transmisor en vatios (W) según el fabricante del transmisor.

NOTA 1: A 80 MHz y 800 MHz, se aplica la distancia de protección correspondiente al intervalo de frecuencia más alto.

NOTA 4: Estas directrices pueden no ser aplicables en todas las situaciones. La propagación electromagnética se ve afectada por la absorción y reflexión de estructuras, objetos y personas.

10.2 FUNCIONAMIENTO ESENCIAL

El MESI THERMO MODULE forma parte del MESI mTABLET THERMO, cuyo funcionamiento esencial consiste en realizar una medición de la temperatura en las condiciones de funcionamiento especificadas. La medición se define como un proceso de medición y el almacenamiento de los datos en una MESI mTABLET UNIT. Debido a la alta sensibilidad del dispositivo, su uso previsto y sus modos de funcionamiento, el dispositivo es susceptible a interferencias electromagnéticas. Si su funcionamiento esencial se ve reducido, el dispositivo notificará al operador con mensajes de error sobre cualquier incidencia.

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