ResMed 248551/1, 2011-09 manual Vrms

Page 34

Voltage dips,

<5% Ut (>95% dip in

< 12 V (>95% dip in

Mains power quality should be that of a typical

short

Ut) for 0.5 cycle

240V) for 0.5 cycle

commercial or hospital environment.

interruptions

40% Ut (60% dip in

96 V (60% dip in

If the user of the device requires continued

and voltage

operation during power mains interruptions, it is

Ut) for 5 cycles

240 V) for 5 cycles

variations on

recommended that the device be powered from

70% Ut (30% dip in

168 V (30% dip in

power supply

an uninterruptible power source.

input lines

Ut) for 25 cycles

240 V) for 25 cycles

 

IEC 61000-4-11

<5% Ut (>95% dip in

<12 V (>95% dip in

 

 

 

 

Ut) for 5 sec

240 V) for 5 sec

 

 

 

 

 

Power

3 A/m

3 A/m

Power frequency magnetic fields should be at

frequency

 

 

levels characteristic of a typical location in a

(50/60 Hz)

 

 

typical commercial or hospital environment.

magnetic field

 

 

 

IEC 61000-4-8

 

 

 

 

 

 

 

 

 

 

Portable and mobile RF communications

 

 

 

equipment should be used no closer to any part

 

 

 

of the device, including cables, than the

 

 

 

recommended separation distance calculated

 

 

 

from the equation applicable to the frequency of

 

 

 

the transmitter.

 

 

 

Recommended separation distance:

Conducted RF

3 Vrms

3 Vrms

d = 1.17 P

IEC 61000-4-6

150 kHz to 80 MHz

 

 

Radiated RF

10 V/m

3 V/m

d = 0.35 P 80 MHz to 800 MHz

IEC 61000-4-3

80 MHz to 2.5 GHz

 

d = 0.70 P 800 MHz to 2.5 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 metres (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:

 

 

 

 

NOTE 1: Ut is the AC mains voltage prior to application of the test level.

NOTE 2: At 80 MHz and 800 MHz, the higher frequency range applies.

NOTE 3: These guidelines may not apply in all situations. Electromagnetic propagation is affected by absorption and reflection from structures, objects and people.

aField strengths from fixed transmitters, such as base stations for radio (cellular/cordless) telephones and land mobile radios, amateur radio, AM and FM radio broadcast and TV broadcast cannot be predicted theoretically with accuracy. To assess the electromagnetic environment due to fixed RF transmitters, an electromagnetic site survey should be considered. If the measured field strength in the location in which the device is used exceeds the applicable RF compliance level above, the device should be observed to verify normal operation. If abnormal performance is observed, additional measures may be necessary, such as reorienting or relocating the device.

bOver the frequency range 150 kHz to 80 MHz, field strengths should be less than 10 V/m.

Recommended separation distances between portable and mobile RF communications equipment and the device

The device is intended for use in an environment in which radiated RF disturbances are controlled. The customer or the user of the device can help prevent electromagnetic interference by maintaining a minimum distance between portable and mobile RF communications equipment (transmitters) and the device as recommended below, according to the maximum output power of the communications equipment.

 

Separation distance according to frequency of transmitter (m)

Rated maximum output

150 kHz to 80 MHz

 

80 MHz to 800 MHz

 

800 MHz to 2.5 GHz

 

 

power of transmitter (W)

d = 1.17 P

 

d = 0.35 P

 

d = 0.7 P

 

 

 

 

 

 

0.01

0.17

 

0.04

 

0.07

 

 

 

 

 

 

0.1

0.37

 

0.11

 

0.22

 

 

 

 

 

 

1

1.17

 

0.35

 

0.7

 

 

 

 

 

 

English

Technical specifications

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Contents Stellar User GuideRespiratory Care Solutions Making quality of care easy Stellar 100 Stellar Contents Cleaning and maintenance Contraindications IntroductionIndications for use Adverse effectsStellar at a glance Humidification Internal batteryPatient interface ResMed USB stickSetting up for noninvasive use Mobile useSetting up for invasive use Attaching the H4i heated humidifier for noninvasive useHmef Attaching the pulse oximeter Working with other optional accessoriesAdding supplemental oxygen Stopping therapy using oxygen Starting therapy using oxygenUsing the FiO2 monitoring sensor Connecting a sensor Attaching an antibacterial filterStellar basics About the control panelLCD screen Starting therapyPerforming a functional test Check the FiO2 monitoring sensor if in use Starting therapyStopping therapy Check pulse oximeter if in useTurning off the power Working with alarmsTailoring treatment setup options Using mask-fitUsing the menus Enu Alarm Settings Alarm Volume Enu OptionsParameter Description Setup menu Configuration MenuOptions On, Auto Used Hours Info menuEvent Summary Device InformationData management Cleaning and maintenanceDaily Replacing the air filter WeeklyMonthly DisinfectionMultipatient use TroubleshootingAlarm troubleshooting ServicingLCD System Failure Problem / possible cause Action LCD Internal Battery EmptyLCD High Temperature 10, 11, 12 LCD Over PressureLCD Low Minute Ventilation Problem / possible cause Action LCD Circuit disconnectedLCD Internal Battery Low LCD Low Respiratory Rate!, High Respiratory RateOther troubleshooting Device does not stop when you remove your mask Problem / possible cause SolutionDevice does not start when you breathe into the mask Treatment pressure seems highTechnical specifications Weight Air outlet Alarm Volume RangeDimensions L x W x H Power supplyClassifications IECAir travel requirements Vrms Symbols General warnings and cautionsGeneral warnings and cautions Limited warranty Product Warranty periodApac