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QHQ-150-00001Laerdal Resusci Anne Simulator

Laerdal Medical AS
Laerdal Resusci Anne Simulator - FCC ID QHQ-150-00001 - Laerdal Medical AS
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Application Details

Equipment Class
DXT - Part 15 Low Power Transceiver, Rx Verified
Date of Grant
Nov 22, 2004
Application Purpose
Original Equipment
Date of Application
Nov 22, 2004
Equipment Note
Laerdal Resusci Anne Simulator
Frequency Range
915.60600000 - 916.48400000
Company
Laerdal Medical AS
Country
Norway

Documents & Files

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Users Manual

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Block Diagram

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Cover Letter(s)

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External Photos

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ID Label/Location Info

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Internal Photos

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Operational Description

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Test Report

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Test Setup Photos

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Document Text

Text extracted from the exhibit documents filed with the FCC. Open a document above to read the original.

Users Manual

2004-10-08 1 Directions for Use Resusci Anne Simulator Table of Contents Table of Contents..............................................................................2 Introduction.....................................................................................3 Cautions and warnings .......................................................................3 Standards/Approvals..........................................................................4 Items included..................................................................................5 Unpack............................................................................................5 Attaching the Legs..............................................................................................5 Connect Blood Pressure Arm Cuff to torso...............................................................6 Getting started with Resusci Anne Simulator.........................................7 Airway Head.......................................................................................................7 Torso................................................................................................................8 Remote Control...............................................................................10 Overview of the Remote Control Device................................................................10 For Remote Control to properly recognize the Simulator.........................................11 Main Display ....................................................................................................11 Operation ........................................................................................................12 Setup: Remote Control Settings..........................................................................13 Programming ECG.............................................................................................16 Sounds............................................................................................................19 Blood Pressure and Pulse ...................................................................................21 CPR Performance Monitoring...............................................................................23 Breathing Parameters ........................................................................................24 Maintenance...................................................................................29 Periodic cleaning ...............................................................................................29 Changing the pupils...........................................................................................29 Attaching the Airway Head.................................................................................29 Changing the lung.............................................................................................31 Changing the Stomach.......................................................................................31 Changing Spontaneous Breathing bladder.............................................................31 Filling the spontaneous breathing air container......................................................32 Changing simulator batteries ..............................................................................32 Connecting external microphone (not supplied by Laerdal)......................................33 Connecting PC..................................................................................................33 Connecting AC power supply...............................................................................33 Attach the BP Arm.............................................................................................33 Connecting the IV Arm.......................................................................................33 Proper care of IV Arm........................................................................................33 Troubleshooting..............................................................................35 Technical Data................................................................................35 General ...........................................................................................................35 Wireless Remote Control....................................................................................35 Resusci Anne Simulator.....................................................................................35 Parts.............................................................................................36 2004-10-08 2 Introduction The Resusci Anne Simulator offers a variety of capabilities within basic and intermediate life support training for healthcare providers. The most significant capability is that of training in teams to improve teamwork and problem resolution skills. Each Resusci Anne Simulator model simulates a female adult of average physiology, and is designed to meeting the core learning objectives of those individuals that train in all areas of Basic healthcare to include CPR, defibrillation, base-line vital signs recognition and basic to intermediate (supraglottic) airway management procedures. Cautions and warnings • There are electronic components mounted inside the simulator’s airway management head. The following techniques should not be performed on this simulator due to the inability to properly sanitize the airway if they are performed: 1. Mouth-to-mouth/Mouth-to-mask ventilation 2. Insertion of simulated vomit for suctioning • Lubricate the oral and nasal airways liberally with the lubricant provided prior to inserting any instrument or tube into the airway. Additionally, instruments and tubes should also be lubricated prior to use. • Do not allow the manikin's skin to come in direct contact with ink or photocopied paper, as this can permanently stain the skin. Avoid using colored plastic gloves when h…

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Block Diagram

RS232 M I C / L i n e I n p u t U S B 9 V D C Keyboard On/ off RA VitalSim Control Board (Internal manikin board) AC/DC adapter Brachial/radial puls units and BP speaker C a r o t i d p u l s u n i t s S p e a k e r s t a c k Open Airway Sensor Defibrillation Loadbox I n t e r n a l B a t t e r i 1 2 V RF Link (916MHz) Resusci Anne Simulator System Overview S p e a k e r a n d o p t i c a l s e n s o r s f o r o p e n a i r w a y Laerdal Operating Device FCC ID. QHQ-FST1909 Ventillation/Compression sensors Handposition sensor Chestrise (Pneumatic valve) Airway Valve (RC servo) C u f f p r e s s u r e i n l e t Laerdal Resusci Anne Simulator Laerdal RA VitalSim Control Board Manikin modules PC / USBDC Input Serial Port MIC/Line input(Audio) DAC, ADC, Amplifiers,filters, drivers andsensors Radio link (for details; see schematics page 6)XTAL oscillator14,7456MHz MCUMotorola Coldfire MCF5272Main Oscillator: 66MHzUSB Oscillator: 48MHz Memory(SDRAM andFLASH) ON/OFF logicVoltage regulators Battery(Replaceable) Keyboard-ON/OFF switch-LED Loadbox-ECG-Defibrillation Arm with - Pulseunits- speaker (BP)- BP cuff inlet Blood pressure cuff inlet Speakerdstack -3 Speakers Chest rise module -Pneumatic Valve Airway valve-servo Head-speaker- optical sensors- Carotid pulse units Ventilation/ Compressionsensor unit- optical encoders Ventilation andCompressionMeasurment Hand position sensor-switches Hand positionsensing BP ARM control Chest soundcontrolChest rise controlAirway valvecontrolHeadcontrol Loadboxcontrol Laerdal Resusci Anne Simulator Operational description Laerdal Resusci Anne Simulator is a patient simulator (training manikin) intended for training of health personnel. RA VitalSim Control Board controls all the manikin modules: • Loadbox -ECG signal to chestskin connectors -Load resistor for defibrillation energy absorption. • Arm -Speaker for blood pressure sound -Radial and Brachial pulse units • Speaker stack - Speaker for heart sound - Speakers for right and left lung sounds • Chest rise module - Pneumatic valve • Airway valve - Servo • Head -Speaker for vocal sound -Sensors for open airway -Two Carotid pulse units • Ventilation/ Compression sensor unit - Optical encoder for ventilation measurement - Optical encoder for compression measurement • Hand position sensor unit -switch based sensors. Power Source • 8 Alkaline batteries (D-cells) or DC Input • Input voltage range:6V-14V RF • The RF circuit is based on IC; Chipcon CC1000 • RF Frequency: 915,606-916,484MHz (5 channels) • IF frequency: 150 kHz (typ) • IF bandwidth: 175kHz (typ) • XTAL oscillator 14,7456MHz (20ppm) • Modulation: FSK • Antenna: Internal monopole (PCB track) PCB • PCB contains 6 layers included ground plane and power plane. User Interface and connections • ON/OFF switch and LED indicator on manikin • Laerdal Operating Device (FCC Id. QHQ-FST1909) is the user remote control for the manikin • A PC connected to USB port controls manikin and presents data from the manikin • Serial Port. Connection to Laerdal Operating Device. Alternative to RF interface. When this is connected, the RF communication is disabled. • MIC/Line Input. For audio equipment (e.g. MIC or line output device) • BP Cuff. Cuff pressure inlet (not an electrical connection)

External Photos

Laerdal Resusci Anne Simulator External pictures FCC ID QHQ-150-00001 .

ID Label/Location Info

Resusci Anne Simulator Labels. FCC ID QHQ-150-00001 Placement of labels on QHQ-150-00001 Product identification label: Label with FCC statement:

Internal Photos

Resusci Anne Simulator Pictures. (FCC ID QHQ-150-00001) RA VitalSim Control Board Top side RA VitalSim Control Board Bottom side RA VitalSim Control Board RF part. Top side RA VitalSim Control Board RF part. Bottom side RA AMH Board (Airway Management Head Board). Top side. -This board is located in the head of the manikin RA AMH Board (Airway Management Head Board). Bottom side. RA Vital Sim Keyboard. Top side RA Vital Sim Keyboard. Bottom side Optical Encoder Board. Top side. -This board is located on Ventillation/Compression Sensor unit Optical Encoder Board. Bottom side. Loadbox board. Top side Loadbox board. Bottom side

Operational Description

RS232 M I C / L i n e I n p u t U S B 9 V D C Keyboard On/ off RA VitalSim Control Board (Internal manikin board) AC/DC adapter Brachial/radial puls units and BP speaker C a r o t i d p u l s u n i t s S p e a k e r s t a c k Open Airway Sensor Defibrillation Loadbox I n t e r n a l B a t t e r i 1 2 V RF Link (916MHz) Resusci Anne Simulator System Overview S p e a k e r a n d o p t i c a l s e n s o r s f o r o p e n a i r w a y Laerdal Operating Device FCC ID. QHQ-FST1909 Ventillation/Compression sensors Handposition sensor Chestrise (Pneumatic valve) Airway Valve (RC servo) C u f f p r e s s u r e i n l e t Laerdal Resusci Anne Simulator Laerdal RA VitalSim Control Board Manikin modules PC / USBDC Input Serial Port MIC/Line input(Audio) DAC, ADC, Amplifiers,filters, drivers andsensors Radio link (for details; see schematics page 6)XTAL oscillator14,7456MHz MCUMotorola Coldfire MCF5272Main Oscillator: 66MHzUSB Oscillator: 48MHz Memory(SDRAM andFLASH) ON/OFF logicVoltage regulators Battery(Replaceable) Keyboard-ON/OFF switch-LED Loadbox-ECG-Defibrillation Arm with - Pulseunits- speaker (BP)- BP cuff inlet Blood pressure cuff inlet Speakerdstack -3 Speakers Chest rise module -Pneumatic Valve Airway valve-servo Head-speaker- optical sensors- Carotid pulse units Ventilation/ Compressionsensor unit- optical encoders Ventilation andCompressionMeasurment Hand position sensor-switches Hand positionsensing BP ARM control Chest soundcontrolChest rise controlAirway valvecontrolHeadcontrol Loadboxcontrol Laerdal Resusci Anne Simulator Operational description Laerdal Resusci Anne Simulator is a patient simulator (training manikin) intended for training of health personnel. RA VitalSim Control Board controls all the manikin modules: • Loadbox -ECG signal to chestskin connectors -Load resistor for defibrillation energy absorption. • Arm -Speaker for blood pressure sound -Radial and Brachial pulse units • Speaker stack - Speaker for heart sound - Speakers for right and left lung sounds • Chest rise module - Pneumatic valve • Airway valve - Servo • Head -Speaker for vocal sound -Sensors for open airway -Two Carotid pulse units • Ventilation/ Compression sensor unit - Optical encoder for ventilation measurement - Optical encoder for compression measurement • Hand position sensor unit -switch based sensors. Power Source • 8 Alkaline batteries (D-cells) or DC Input • Input voltage range:6V-14V RF • The RF circuit is based on IC; Chipcon CC1000 • RF Frequency: 915,606-916,484MHz (5 channels) • IF frequency: 150 kHz (typ) • IF bandwidth: 175kHz (typ) • XTAL oscillator 14,7456MHz (20ppm) • Modulation: FSK • Antenna: Internal monopole (PCB track) PCB • PCB contains 6 layers included ground plane and power plane. User Interface and connections • ON/OFF switch and LED indicator on manikin • Laerdal Operating Device (FCC Id. QHQ-FST1909) is the user remote control for the manikin • A PC connected to USB port controls manikin and presents data from the manikin • Serial Port. Connection to Laerdal Operating Device. Alternative to RF interface. When this is connected, the RF communication is disabled. • MIC/Line Input. For audio equipment (e.g. MIC or line output device) • BP Cuff. Cuff pressure inlet (not an electrical connection)

Test Report

20dan-uk-i DELTA Danish Electronics, Light & Acoustics Venlighedsvej 4 2970 Hørsholm Denmark Tel. (+45) 72 19 40 00 Fax (+45) 72 19 40 01 www.delta.dk This report is issued under the rules of DANAK (Danish Accreditation). Further information about DANAK can be found at www.danak.dk. The report must not be reproduced, except in full, without the written approval of DELTA. Test Report DANAK Reg. no. 19 We help ideas meet the real world Emission tests to FCC requirements of Laerdal Resusci Anne Simulator Performed for Laerdal Medical AS DANAK-197698 Project no.: E501991-1 Page 1 of 14 5 annexes 22 November 2004 DANAK-197698 DELTA-E501991-1 Page 2 of 14 VS/BLJ Title Emission tests to FCC requirements of Laerdal Resusci Anne Simulator Test object Laerdal Resusci Anne Simulator FCC ID QHQ-150-00001 Report no. DANAK-197698 Project no. E501991-1 Test period 18 August to 22 September 2004 Client Laerdal Medical AS Tanke Svilandsgt. 30, P.O. Box 377 4001 Stavanger Norway Telephone: +47 5151 1700 Fax: +47 5151 1788 Contact person Mr. Håkon Hodne Manufacturer Laerdal Medical AS Specifications 47 CFR Part 15, Subpart C - Intentional Radiators Results The equipment under test was in compliance with the requirements. Test personnel Henrik Nielsen Date 22 November 2004 Responsible Vagn Sylvest Project Manager - EMC DELTA DANAK-197698 DELTA-E501991-1 Page 3 of 14 VS/BLJ Table of contents Page 1. Summaries 4 1.1 Technical report summary 4 1.2 Summary of tests 5 2. Test objects 6 2.1 Test object - Resusci Anne Simulator (Tx & Rx) 6 2.2 Test object - Resusci Anne Simulator - Control board only (Rx) 6 2.3 Test object - Power adapter for Resusci Anne Simulator (for Unit-1) 7 2.4 Test object - Power adapter for Resusci Anne Simulator (for Unit-2) 7 3. General test conditions 8 3.1 Test set-up 8 4. Test and results 10 4.1 Conducted emission, AC mains (FCC Part 15, Subpart C) 10 4.2 Radiated electromagnetic field (FCC Part 15, Subpart C) 11 4.3 Occupied bandwidth 13 4.4 Peak output field strength 14 Annex 1 List of instruments (1 page) Annex 2 Photos (2 pages) Annex 3 Test record sheets regarding conducted emission (2 pages) Annex 4 Test record sheets regarding radiated emission (6 pages) Annex 5 Occupied bandwidth / Peak output power (2 pages) DANAK-197698 DELTA-E501991-1 Page 4 of 14 VS/BLJ 1. Summaries 1.1 Technical report summary The tests reported in this document have been performed to demonstrate compliance with the requirements of FCC Part 15, Section 15.249 "Rules for transmitters in band 902 - 928 MHz". Furthermore, during the tests it was verified that the receiver was in compliance with the requirements of FCC Part 15. This report contains measurement data from tests performed at DELTA, Hørsholm, Denmark, an FCC listed and DANAK accredited test laboratory. 1.1.1 Applicable FCC rules for test 47 CFR Part 15, Subpart C - Intentional Radiators §15.207 Conducted limits §15.209 Radiated emission limits, general requirements §15.215 Additional provisions to the general radiated emission limitations §15.249 Operation within the bands 902 - 928 MHz, 2400 - 2583.5 MHz. The methods and procedures have been applied as specified in: §15.31 Measurements standards. This point to the following procedure used during the measurements in this report: ANSI C63.4:2003 Methods of Measurement of Radio-Noise Emissions from Low- Voltage Electrical and Electronic Equipment in the range of 9 kHz to 40 GHz. Furthermore, the requirements of the following have been applied: § 15.33 Frequency range of radiated measurements § 15.35 Measurement detector functions and bandwidths. DANAK-197698 DELTA-E501991-1 Page 5 of 14 VS/BLJ 1.2 Summary of tests The results of the emission tests can be summarised as follows: Tests of Intentional Radiator Key references to requirement FCC Part 15 Subpart C Conducted emission, AC mains § 15.207 Passed Radiated electromagnetic field emission §15.209 Passed Radiated emission limits, additional provisions§15.215 and §15.249 Passed Emission in restricted bands §15.205 Passed Abbreviations Passed : The requirements are met. Failed : The requirements are not met. Not done : No test was performed. N/A : Not applicable. Not relevant : The test was not relevant for the test object. The test results relate only to the objects tested. DANAK-197698 DELTA-E501991-1 Page 6 of 14 VS/BLJ 2. Test objects The Resusci Anne Simulator is used for basic and intermediate life support training for healthcare providers and is intended for use in professional training facilities. This manikin can be programmed to perform a variety of capabilities using either a PC via an USB interface or a Laerdal Operating Device using RF link on 916 MHz carrier. On the main board of the manikin is mounted a radio transceiver for communication with the operating device. The test object can on the air interface receive and transmit data on one of five customer selected frequencies between 915.606 MHz and 916.484 MHz. The carrier is FSK modulated with 64 kHz swing at a bit rate of 9600 bps. During test two modules were used, one programmed to Rx-only (Unit-2) and the other to constant Tx. 2.1 Test object - Resusci Anne Simulator (Tx & Rx) Category Short Range Device Manufacturer Laerdal Medical AS Model / type RA BLS Simulator Part no. 150-00001 Serial no. Unit-1 FCC ID QHQ-150-00001 Supply voltage 9 VDC via 230 VAC adapter Operational mode TX-only 2.2 Test object - Resusci Anne Simulator - Control board only (Rx) Category Short Range Device Manufacturer Laerdal Medical AS Model / type RA BLS Simulator Part no. FST1959 Serial no. Unit-2 FCC ID QHQ-150-00001 Supply voltage 9 VDC via 230 VAC adapter Operational mode Rx-only Note This unit consist of a bare PCB with the RF cir- cuit and digital control electronics. Main pur- pose is to verify that LO leakage is within specifications. DANAK-197698 DELTA-E501991-1 Page 7 of 14 VS/BLJ 2.3 Test object - Power adapter for Resusci Anne Simulator (for Unit-1) Category IT Manufacturer Friwo Model / typ…

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Test Setup Photos

20fotorap-uk-k DELTA Danish Electronics, Light & Acoustics Venlighedsvej 4 2970 Hørsholm Denmark Tel. (+45) 72 19 40 00 Fax (+45) 72 19 40 01 www.delta.dk Photos We help ideas meet the real world Emission tests to FCC requirements of Laerdal Resusci Anne Simulator Performed for Laerdal Medical AS Page 1 of 3 This exhibit is an extract of DELTA Test Report E501991-1 DANAK-197698 dated 22 November 2004 containing only the photos of the test set-ups DANAK-197698 DELTA-E501991-1 Page 2 of 3 xx/xx Photo A2.1 Test setup for conducted emission measurements. Photo A2.2 Test setup for radiated emission measurements 30-1000 MHz. DANAK-197698 DELTA-E501991-1 Page 3 of 3 xx/xx Photo A2.3 Test setup for radiated emission measurements 30-1000 MHz. Photo A2.4 Test setup for radiated emission measurements 1-10 GHz.

Contact Information

Applicant

Mari Kaada(Corporate Regulatory Affairs Manager)
[email protected]+4751511700Fax: +4751511717

Test Firm

DELTA Electronic TestingJorgen Christensen
[email protected]45-4586-7722Fax: 45-4586-5898

Technical Specifications

#Rule PartsFrequency RangePower Output
115C915.606 MHz - 916.484 MHz-
Confidentiality
Long Term

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