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Cadwell Cascade TCS-1000 Transcranial Electrical Stimulator – Advanced Neurostimulation Device for IONM and TcMEP

Cadwell Cascade TCS-1000 Transcranial Electrical Stimulator

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Product Overview

The Cadwell Cascade TCS-1000 Transcranial Electrical Stimulator is an advanced neurostimulation system built for intraoperative neuromonitoring (IONM), transcranial motor evoked potentials (TcMEPs), and cortical stimulation. It provides accurate, repeatable, and safe electrical stimulation for monitoring neural pathways during neurosurgical, spinal, and orthopedic procedures. Designed for use with the Cadwell Cascade IONM platforms, the TCS-1000 delivers superior performance, precision, and patient safety in every application.


Key Features

  • Precise stimulation control with adjustable current and pulse width

  • Supports single, dual, and train pulse modes for diverse monitoring needs

  • Digital display and intuitive control interface

  • Compatible with Cascade Pro and Cascade Elite systems

  • Advanced safety features to prevent overstimulation

  • Reliable TcMEP, cortical, and peripheral stimulation

  • Compact, lightweight design for easy OR integration

  • Ideal for neurosurgery, spine, and orthopedic applications


Technical Specifications

Specification Details
Model Cadwell Cascade TCS-1000
Type Transcranial Electrical Stimulator
Application Intraoperative Neuromonitoring (IONM)
Stimulation Modes Single / Train / Dual Pulses
Pulse Width 50 µs – 1 ms (Adjustable)
Frequency Range 1 – 1000 Hz
Current Output 0 – 1000 mA (Adjustable)
Display Digital LED Display
Connectivity Cadwell Cascade Pro & Elite
Power Requirements 100–240V AC, 50/60Hz
Dimensions 8 x 7 x 3 in (Approx.)
Weight 3.3 lbs (1.5 kg)
Vendor Cadwell Industries, Inc.

The Cadwell Cascade TCS-1000 Transcranial Electrical Stimulator offers precise and repeatable stimulation for intraoperative neuromonitoring (IONM) and motor evoked potential testing. With advanced digital controls, safety mechanisms, and full Cadwell system compatibility, it ensures optimal neurophysiological monitoring and enhanced patient protection during complex surgeries.

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