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Color-coded template with 21 scalp electrode placement locations. Designed to aid in rapid, accurate placement of full 10/20 system of scalp electrode placement. Learn More
Blood Volume Pulse (BVP) Finger Sensor for GP-4 , GP-8 and GP-12 biofeedback devices from Physiocom Designs (formerly J&J Engineering). Can be used for Heart Rate Variability (HRV) training Learn More
Blood Volume Pulse (BVP) Finger Sensor for GP-4 , GP-8 and GP-12 biofeedback devices from Physiocom Designs (formerly J&J Engineering). Can be used for Heart Rate Variability (HRV) training Learn More
ProComp Infiniti (SA9310M) Temperature Sensor has a bead tip and is a Protected Pin style with a 4 pin barrel connector which slides into a receptacle located on a Thought Technology Encoder. Learn More
The Though Technology SA9321 is a single gold EEG ear clip electrode on one end with a 1.5mm (.060) DIN connection on the other end. For use with the T8740 DIN Cable or and standard DIN socket. Approximately 18" in length. Learn More
The Though Technology SA9321 is a single gold EEG ear clip electrode on one end with a 1.5mm (.060) DIN connection on the other end. For use with the T8740 DIN Cable or and standard DIN socket. Approximately 18" in length. Learn More
ProComp Infiniti (SA9310M) Temperature Sensor has a bead tip and is a Protected Pin style with a 4 pin barrel connector which slides into a receptacle located on a Thought Technology Encoder. Learn More
This EEG lead kit allows users to make either monopolar or bipolar single channel measurements. 1.5 mm DIN Connector to disc. Sintered silver/silver-chloride (Ag/AgCl) EEG electrodes and ear clips for DC and low frequency EEG applications. Cable is appox 40" in length. Learn More
EEG-Z3 is a pre-amplified electroencephalograph sensor with built in impedance checking and 3 modes of operation: regular EEG mode (above 2 Hz), low frequency mode (above 0.01 Hz) for evoked potentials (EP) and low frequency applications and DC mode for true DC operation (above 0 Hz) for slow cortical potentials (SCP). Learn More