TREK 323 Highly sensitive versatile instrument used for a variety of electrostatic applications including material evaluation, electret studies, charge accumulation, etc

2022-03-11
●The Trek® 323 electrostatic voltmeter performs highly sensitive voltage measurements using a variety of Trek sideview probes with various body types (round, square). The Trek 323 is specifically designed for high sensitivity applications and performs highly accurate, non-contacting measurement of electrostatic potentials of 0 to 100 V over a wide range of probe-to-surface distances.
●The Trek 323 is a versatile instrument used for a variety of electrostatic applications including materials evaluation, electret studies, charge accumulation on disk drive assemblies, and other extremely sensitive ESD sensitive components.
●PRODUCT HIGHLIGHTS
■Response speed control adjusts the speed/noise trade-off of the AC response
■Drift/spacing null adjustment minimizes the variation in zero offset voltage as the probe-to-test surface spacing changes
■Easy-to-read front panel 3.5 digit LED display
■Monitor the detected output voltage through a 1:1 voltage monitor output and a switch selectable scale of 10:1 or 20:1 voltage monitor output
■Patented low impedance probes assure measurement accuracy essentially independent of probe-to-test-surface spacing, humidity conditions, and contamination such as airborne dust, toner, ions and chemicals
■NIST-traceable Certificate of Calibration provided with each unit

Advanced Energy

TREK 323323Trek 6000B-8323-L323-HTrek 323-LTrek 323-HTrek 6000B-161705417047

More

Part#

electrostatic voltmeter

More

electrostatic applications ]materials evaluation ]electret studies ]charge accumulation ]ESD sensitive components ]

More

Datasheet

More

More

Please see the document for details

More

More

English Chinese Chinese and English Japanese

2021/4/23

ENG-ESVM-Trek-323-235-02

239 KB

- The full preview is over. If you want to read the whole 4 page document,please Sign in/Register -
  • +1 Like
  • Add to Favorites

Recommend

All reproduced articles on this site are for the purpose of conveying more information and clearly indicate the source. If media or individuals who do not want to be reproduced can contact us, which will be deleted.

Contact Us

Email: