DC beam current transformer
max. ± 20 A | NPCT
Bergoz Instrumentation
New Parametric Current Transformer
For non-destructive measurement of average beam current.
NPCT can be installed "in-air" over the vacuum chamber or "In-flange", embedded inside a conflat flange for direct mounting on the beam pipe.
See also In-flange Current Transformers
The New Parametric Current Transformer is the latest evolution of the Unser Transformer, commonly called DCCT, developed at CERN in 1966 by Klaus B. Unser.
Full scale range from ±20mA to ±20A controlled by TTL levels
5 uA/sqrt(Hz) resolution in every range
1 uA/sqrt(Hz) or lower resolution on option
Frequency response DC to 10 kHz
Linearity error < 0.1%
In-air sensor inner diameter from 55 to 245 mm to fit around any vacuum chamber
In-flange sensors from DN/NW25CF to DN/NW200CF flanges
In-flange with round aperture from 22.2mm to 198.4mm
Also for arbitrary shape vacuum chamber sections
NPCT package includes spares for electronics and power supply
For non-destructive measurement of average beam current.
NPCT can be installed "in-air" over the vacuum chamber or "In-flange", embedded inside a conflat flange for direct mounting on the beam pipe.
See also In-flange Current Transformers
The New Parametric Current Transformer is the latest evolution of the Unser Transformer, commonly called DCCT, developed at CERN in 1966 by Klaus B. Unser.
Full scale range from ±20mA to ±20A controlled by TTL levels
5 uA/sqrt(Hz) resolution in every range
1 uA/sqrt(Hz) or lower resolution on option
Frequency response DC to 10 kHz
Linearity error < 0.1%
In-air sensor inner diameter from 55 to 245 mm to fit around any vacuum chamber
In-flange sensors from DN/NW25CF to DN/NW200CF flanges
In-flange with round aperture from 22.2mm to 198.4mm
Also for arbitrary shape vacuum chamber sections
NPCT package includes spares for electronics and power supply
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