MEET
HAL® S3201
Advanced Multipurpose
Patient Simulator
The Most Advanced Capabilities
in Patient Simulation in One
Affordable Package
The HAL® 3201 sets a global standard for medical human patient simulation. Tetherless simulator technology allows the communications, compressor, and power supply to be inside HAL®, eliminating external tubes, wires, and compressors. HAL® operates continuously during transport and training can occur in the working environment.
Available Skin Tones at No Extra Charge

LIGHT

MEDIUM

DARK
FEATURE HIGHLIGHTS
General
  • •   Available in ethnic skin tones
  • •   Powered by an internal rechargeable battery or wall outlet
  • •   Simulator receives commands from a wireless tablet PC and operates at distances up to 300 meters
  • •   Use pre-programmed scenarios, modify them or create your own quickly and easily
  • •   Installation and training worldwide
Airway
  • •   Programmable airway: tongue edema, laryngospasm, and pharyngeal swelling
  • •   Multiple upper airway sounds synchronized with breathing
  • •   Right mainstem intubation
  • •   Sensors detect depth of intubation
  • •   Placement of conventional airway adjuncts
    •      Endotracheal intubation
    •      Retrograde intubation
  • •   View vocal cords with Sellick maneuver
  • •   Realistic surgical trachea allows tracheostomy or needle cricothyrotomy

Circualtion
  • •   Measure blood pressure by palpation or auscultation
  • •   Use real BP cuffs rather than a “virtual” cuff to measure blood pressure
  • •   Korotkoff sounds audible between systolic and diastolic pressures
  • •   Oxygen saturation detected using real monitors rather than a “virtual” value
  • •   Pulse sites synchronized with BP and heart rate
  • •   Bilateral IV arms with fill/drain sites
  • •   SubQ and IM injection sites
  • •   Intraosseous access at tibia
  • •   ECG monitoring using real devices
  • •   Defibrillate, cardiovert and pace using real devices
  • •   Multiple heart sounds, rates and intensities
  • •   ECG rhythms are generated in real time
  • •   Bilateral carotid, radial, brachial, femoral, popliteal and pedal pulses synchronized with ECG
  • •   Pulse strength synchronized with blood pressure
  • •   Pulse rate adjusts based on heart rate, ECG rhythm, cardiac arrhythmias, and even external cardiac pacing
Breathing
  • •   Control rate and depth of respiration and observe chest rise
  • •   Control 8 anterior and posterior lung sound quadrants independently
  • •   Chest rise and lung sounds are synchronized with selectable breathing patterns
  • •   CO2 on exhalation (4 levels) using replaceable cartridge concealed inside the simulator
  • •   Supports mechanical ventilation just like a real patient
  • •   Bilateral chest rise and fall
  • •   Unilateral chest rise simulates pneumothoraces
  • •   Bilateral needle decompression at second intercostal
  • •   Dynamic Airway and Lung compliance/resistance
    •      Ten levels of static compliance, 15-50 ml/cm H2O
    •      Ten levels of airway resistance
    •      Holds PEEP from 5 to 20cm H2O
    •      Exhales real and measurable CO2
    •      Receive real-time feedback from real mechanical ventilator
    •      Capable of assisting the ventilator at variable respiratory rates
    •      Compliance and resistance can be varied while connected to the ventilator

Cardiac
  • •   ECGs are generated in real time with physiologic variations never repeating textbook patterns
  • •   Heart sounds may be auscultated and are synchronized with ECG
  • •   eCPR™ sensors; Chest compressions are measured and logged
  • •   12 Lead ECG with integrated MI model
Instructor Or Automatic Mode
  • •   Vital signs are generated in real time
  • •   Drug library includes over 50 medications
  • •   In automatic mode, administrated medications will change vitals in real time simulating a real clinical situations
Speech
  • •   Wireless streaming audio
  • •   Create and store vocal responses in any language
Drug Recognition System
  • •   Identifies drug type and volume injected into veins of the right hand and forearm
  • •   Supplied with 20 syringes having wireless tags
  • •   Select medications from built-in drug library or add others with the easy-to-use, software template
Neural Responses
  • •   Eyes are controlled automatically by physiologic model or directly by the instructor
  • •   Select pupillary response to light

Vital Signs Monitor
  • •   Controlled via wireless tablet PC
  • •   Use selected configuration or create your own configuration to mimic the real monitors used in your facility
  • •   Share images such as ultrasounds, CT scans, lab results
  • •   Touchscreen control
Articulation Movement
  • •   Realistic joint articulation
  • •   Supports supine, prone, recumbent, and sitting positions
  • •   Seizure/convulsions
User Interface
  • •   Sensors track student actions
  • •   Changes in condition and care provided are time stamped and logged
  • •   26 pre-programmed scenarios which can be modified by the instructor even during the scenario
  • •   Create your own scenarios (add/edit)
  • •   Change the simulator’s condition during the scenario
Other
  • •   Central cyanosis
  • •   Fill bladder and perform Foley catheterization
  • •   Interchangeable genitalia
  • •   Supports placement of nasogastric tube
  • •   Auscultate bowel sounds

 

Wireless Solutions Optimized for Your Dynamic Learning Environment
Multipurpose
HAL offers an array of physical and physiological features capable of simulating lifelike cases in nearly all clinical settings, including prehospital, ED, OR, ICU, PACU, and general nursing.
Real Monitoring
HAL supports real 12-Lead ECG monitors, capnometers, oximeters, BP cuffs, defibrillators, and mechanical ventilators just like a real patient. No adapters, adjuncts, or special configuration required.
Tetherless
HAL’s tetherless and wireless design allows for point-of-injury care, transport, and patient handoff training. HAL is self-contained, quiet, and fully operational on battery power for up to 6 hours.
Dynamic Airway
and Lung Compliance
Train learners on vent management and patient treatment using a real mechanical ventilator. HAL’s respiratory controls let you adjust lung compliance, airway resistance, gasping, real EtCO2, and OSAT to simulate an infinite number of respiratory conditions. HAL can also hold PEEP from 5 to 20 cmH2O and trigger the vent’s assist mode during weaning.
12-Lead ECG Designer and 3D Myocardial Infarction Modeling
Train ECG interpretation and MI management using real native 12-lead equipment. Select rhythms from the built-in library, design your own using the point-by-point PQRST wave editor, or create an occlusion on the 3D heart model to auto-generate injury, ischemia, and necrosis.
Automatic Recognition of 50+ Virtual Drugs
Train medication administration and management to improve patient safety. The drug recognition sensors integrated into the arm vasculature detect the medication type, concentration, and dose administered. In response, the physiological model automatically simulates the effect on the patient.
HAL® S3201
Multipurpose Patient Simulator
for All Your Clinical Training Needs
that's Easy to Use
Reactive Eyes, Seizures
HAL has blinking eyes with photosensitive pupils. Control dilation, reactivity, and blink rate to simulate injury and state of consciousness.
Surgical Airway
Visible tongue edema, pharyngeal swelling, and laryngospasm. Perform an emergency cricothyrotomy or tracheotomy.
eCPR™ and Real EtCO2
Built-in ventilation and chest compression sensors capture CPR quality metrics. Measure EtCO2 using a real capnometer to monitor effectiveness.
Defibrillation
Monitor, capture, pace, and cardiovert using a real defibrillator, electrodes, and real energy.
Train general and specialized practitioners with
one patient simulator that does it all.
  • •   Active eyes
  • •   Cyanosis
  • •   Nasal/oral intubation
  • •   Intubation sensor
  • •   Tongue edema
  • •   Pharyngeal swelling
  • •   Laryngospasm
  • •   Surgical airway
  • •   Real EtCO2
  • •   Spontaneous breathing
  • •   Variable airway resistance
  • •   Variable lung compliance
  • •   Gasping
  • •   Heart sounds
  • •   Carotid pulses
  • •   Brachial/axillary pulses
  • •   Radial pulses
  • •   Femoral pulses
  • •   Popliteal pulse
  • •   Pedal pulse
  • •   Bowel sounds
  • •   Seizures
  • •   Streaming voice
  • •   Airway sounds
  • •   Mainstem intubation
  • •   Needle decompression
  • •   Supports bilateral chest tube insertion
  • •   Ventilation sensor
  • •   Lung sounds
  • •   Chest compression sensor
  • •   (Manual/auto) blood pressure
  • •   12-Lead monitoring
  • •   Oxygen saturation
  • •   Defibrillation/pacing
  • •   Bilateral IV/IM access
  • •   Drug recognition
  • •   Stomach distension
  • •   Intramuscular access
  • •   Urinary catheterization
  • •   Optional trauma arm/leg
HAL® S3201 is Powered by UNI®
Unified Simulator Control Software
Preconfigured and Ready
UNI comes preloaded and preconfigured in the rugged 12” wireless tablet PC included with the package.
3D Patient Visualization Monitor
This real-time 3D view of the patient ensures you never lose track of provider/patient interaction during the simulation.
Unified Scenario Designer
Create your own scenarios quickly and easily and share them with other UNI users and between Gaumard products.
Control View Replay
The built-in recorder captures UNI’s screen as data so you can review the simulation from the operator’s chair.
No Annual Operating License or Software Update Fees
Keeps your program’s operating costs down year after year.
Time-stamped Event Recording and Reporting
The automated event tracker and interaction recorder ensure important events are always captured so you can focus on the action.
Enhance Simulation-based Learning with the
Bedside Vital Signs Monitor
Includes 20-inch touchscreen virtual monitor or upgrade to a 12-inch tablet virtual monitor
Customize each trace independently; users can set alarms, and timescales
Display up to 12 numeric values including HR, ABP, CVP, PAWP, NIBP, CCO, SpO2, SvO2, RR, EtCO2, temperature, and time
Display up to 12 dynamic waveforms at once including: ECG Lead I, II, III, aVR, aVL, aVF, V1, V2, V3, V4, V5, V6, AVP, CVP, pulse, SvO2, respiration, capnography.
Share images such as x-rays, CT scans, lab results, or even multimedia presentations as the scenario progresses
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