Hisco #:91-0775PVS-45325
MFG #:91-0775PVS

Item must be ordered in multiples of 1
The Simco-Ion 91-0775PVS is a Model 775PVS Periodic Verification System designed to verify ionizer performance and measure static charge. Built with ranging lights which help develop accurate and repeatable measurements by determining the exact distance where the voltage reading is correct. It offers a SAMPLE and HOLD feature for users who need to complete measurements in places difficult to reach with other types of instruments. The periodic verification system includes a flexible ground cord for an an increased accuracy.
The Simco-Ion 91-0775PVS Features:- Includes: Fieldmeter, detachable plate, and charger
- Digital display for an easy read
- Distance ranging lights
- Chopper circuit
- Sample and hold functions
- NIST-traceable calibration
- Voltage Rating: 9V
- Power Source: Battery
- Accuracy: ±5%
- Battery Type: 9 V Battery
- Indicator Light (Yes/No): Yes
- Dimensions: 4.2 x 2.4 x 0.9in
- Standards Met: CE
- Includes: 9 V Battery
Product Description
The Simco-Ion 91-0775PVS is a Model 775PVS Periodic Verification System designed to verify ionizer performance and measure static charge. Built with ranging lights which help develop accurate and repeatable measurements by determining the exact distance where the voltage reading is correct. It offers a SAMPLE and HOLD feature for users who need to complete measurements in places difficult to reach with other types of instruments. The periodic verification system includes a flexible ground cord for an an increased accuracy.
The Simco-Ion 91-0775PVS Features:- Includes: Fieldmeter, detachable plate, and charger
- Digital display for an easy read
- Distance ranging lights
- Chopper circuit
- Sample and hold functions
- NIST-traceable calibration
- Voltage Rating: 9V
- Power Source: Battery
- Accuracy: ±5%
- Battery Type: 9 V Battery
- Indicator Light (Yes/No): Yes
- Dimensions: 4.2 x 2.4 x 0.9in
- Standards Met: CE
- Includes: 9 V Battery
Technical Information
Additional Resources
Item must be ordered in multiples of 1