Welch Allyn Medical Diagnostic Equipment 204el Heart Rate Monitor User Manual


 
Propaq Encore Reference Guide 137 Welch Allyn
Specifications
ECG
The ECG channel meets all the requirements for Cardiac Monitors Heart Rate Meters and
Alarms specified ANSI/AAMI EC13-1992, except for Standardizing Voltage (section 3.2.9.9).
The channel also meets the American National Standard, Safe Current Limits for
Electromedical Apparatus (ANSI/AAMI ES1-1993).
ECG Specifications
Characteristic Specification
Connector AAMI 6 pin or Hewlett-Packard compatible 12-pin style connector
(optional). (See the illustration at the bottom of this table.)
Selectable Leads I, II, III, aVR, aVL, aVF, V
Lead Fault Indicator LA, LL, RA, RL, C, multiple
ECG Size (sensitivity) in mV/cm 4, 2, 1, 0.5, 0.2
Display Sweep Speeds 12.5, 25, and 50 mm/sec
QRS Tone Volume High, Low, Medium, Off
QRS Tone Frequency 900 Hz. for Propaq Encore without Expansion Module, 665 Hertz when
equipped with SpO2 but SpO2 not being monitored; variable pitch with
SpO
2
option and SpO
2
being monitored
Freeze Buffer 3.9 seconds at 25 mm/sec
Bandwidth 0.5 to 40 Hz in Monitor Mode; 0.05 to 40 Hz in Extended Mode (see
Real-Time ECG Analog/Defib Sync specification).
Sample Rate 364 Hz
Input Protection Electrosurgery and defibrillator protected when used with specified ECG
cables. All models also include electrosurgery interference suppression.
Lead Fail Sense Current 50 nA dc for active leads
100-200 nA dc for driven lead, depending on number of electrodes
attached
Tall T-wave Rejection Meets and exceeds AAMI (USA) EC13-1992, section 3.1.2.1.c, for 1.2
mV T-wave and 1 mV QRS using AAMI test waveform.
Common Mode Rejection <
1 mV p-p RTI for 10V rms, 50/60 Hz input, 200 pF source impedance,
input unbalanced, FILTER function OFF
<
0.1 mV p-p RTI for 10V rms, 50/60 Hz input, 200 pF source
impedance, input unbalanced, FILTER function ON
Input Impedance >2.5 M
differential @ 60 Hz
Input Range (ac) 10 mV peak to peak
Input Range (dc) Up to ±300 mV
System Noise 30 µV peak-to-peak, R.T.I., with all inputs = 47K in parallel with .047 µF.