Conmed Saber 2400

Conmed Saber 2400

Conmed Saber 2400

Conmed Saber 2400

Conmed Saber 2400

In stock

Reviews Summary by AI:

Type: Electrosurgical Unit
Make: Conmed
Model: Saber 2400, 60-5600-002
Condition: Refurbished
Availability: In-Stock
Status: Supported by Denova Medical, Inc.

Availability: 1 in stock
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Description

Conmed Sabre 2400 Specifications

 

General

  • Pure Cut
    • Max Power: 300 W.
    • Max. P-P Voltage: 2000<./li>
    • Load (ohms): 300.
    • Crest Factor: 1.8.
  • Blend Cut
    • Max Power: 180 W.
    • Max. P-P Voltage: 2200.
    • Load (ohms): 300.
    • Crest Factor: 2.5.
  • Coag
    • Max Power: 120 W.
    • Max. P-P Voltage: 9000.
    • Load (ohms): 500.
    • Crest Factor: 7.0.
  • Bipolar
    • Max Power: 50 W.
    • Max. P-P Voltage: 280.
    • Load (ohms): 50.
    • Crest Factor: 1.5 – 12.1.

Dispersive Electrode Monitor

  • With a dual foil dispersive electrode, the Aspen Return Monitor will alarm above 150 ohms, below 10 ohms, and with a 20% increase in resistance above set point. With a single foil dispersive electrode, a two-wire continuity detector alarms at 10 ohms and above.

Operating Frequency

  • Cut: 416.7 kHz ± 0.01%.
  • Coag: 416.7 kHz ± 0.01%.

Pulse Repetition Frequency

  • Blend: 20.0 kHz ± 0.01%.
  • Coag: 25.0 kHz ± 0.01%.
  • Bipolar: 20.0 kHz ± 0.01%.

Input Voltage

  • 104-127 VRMS, 50/60 Hz, calibrated at 120V.

Input Current

  • Pure cut at 300: 7.0A max.

Line Frequency Leakage.

  • Patient connections to neutral: < 25 μA.
  • Chassis to neutral: < 25 μA typical.

RF Leakage Current

  • Less than 100 mA (200 ohms to ground).

Power Decrease

  • 1% typical. Pure cut set to 150 watts for 20 seconds.

Weight

  • 32 lbs (14.5 kg).

Dimensions

  • 6.75″H x 14.25″W x 21.5″D (17.1 x 36.2 x 54.6 cm).

Additional information

Manufacturer

Name

Part Number

60-5600-002

Specialty

Maximum Cut Power

Product Type

Cut Frequency

Cut Modes

Maximum_Coagulation_Power

Coag Frequency kHz

Coagulation Modes

Bipolar Output Power

Bipolar Frequency

Type

Return Electrode Monitoring