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Entube Z

Entube Z

Entube Z

Product catalog summary
Overview: The Entube-Z is a high bandwidth voltage transducer designed for single-ended measurements without the need for power supplies. It offers a compact form factor and covers voltage ranges from ±100V to ±5kV with up to 50MHz bandwidth and 0.5% signal accuracy. The device outputs a scaled-down version of the input signal, which can be processed by computer-based measurement platforms.
Specifications: The Entube-Z series includes models with varying scaling factors and input dynamic ranges. The maximum peak surge voltage ranges from 2kV to 30kV, and input impedance at 60Hz varies from >1 MΩ to >50 MΩ. The device offers a bandwidth range from 1MHz to 40MHz and maintains an accuracy of ±0.5%.
Mechanical Details: The transducer features a cylindrical shape with dimensions varying slightly between models. It uses BNC or SVH connectors for input and output, and the weight ranges from 34g to 180g depending on the model.
Environmental Conditions: The operating temperature range is from -35°C to 70°C, and the storage temperature range is from -40°C to 80°C.
Usage and Mounting: The Entube-Z can be mounted between the signal source and data acquisition system, with some models allowing inline use without mounting. It is important to secure the sensor to avoid accidental disconnection.
Safety Warning: The sensor is not a safety device and should not be used for safety-related applications. It lacks self-checking redundant circuitry, and failure could result in hazardous conditions.
Standards and Certifications: The device complies with CE standards.
Hardware Configuration: Ensure the input signal cable is de-energized before connection, and verify that connectors are clean. Connect the BNC cable to the sensor output and ensure proper grounding.
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Catalog excerpts

Entube Z-1

Entube-Z High Bandwidth Voltage Sensor The Entube-Z is a high bandwidth voltage transducer designed for single ended measurements in a very compact form factor, and without need for power supplies. This series covers the ranges of ±100V, ±200V, ±300V, ±400V, ±500V, ±750V, ±1kV, ±2kV, ±3kV, ±4kV and ±5kV with up to 50MHz bandwidth and 0.5% of signal accuracy. The Entube-Z generates a ±200mV or ±1V scaled down version of its input signal, which can then be processed by most computer based measurement platforms. Its compact form factor allows for very high channel densities, while delivering high performance for a low cost. SPECIFICATION Eletronical Scaling Factor (5V output voltage) Input dynamic range (Working Voltage) Max Peak Surge Voltage (60Hz sinewave for 100ms) HARDWARE DESCRIPTION The Entube Z sensor family operates as a single ended voltage divider that outputs a ±200mV or ±1V output signal, which can be processed by a computer based measurement platform. The coaxial input line connect to the sensor via a SHV or BNC connector, while the conditioned signal from the sensor comes out on a standard BNC Plug. Scaling Factor (5V output voltage) Input dynamic range (Working Voltage) Max Peak Surge Voltage (60Hz sinewave for 100ms) Input impedance at 60Hz Mounting Sample of Entube Z Integrated sensor noise (Referenced to input) Operating temperature Storage temperature Input-Output non-linearity Output voltage Gain temperature drift Max total phase shift at 60Hz Output type Single-ended signal Output Offset Voltage (Referenced to input) Due to its compact size and shape, the Entube Z sensor family can be easily mounted anywhere between the signal source and the data acquisition system. The versions up to 5kV may even be used inline with the cable and not require any mounting at all. All can be secured to fixtures using cable ties. Output connector Input connector (1-Pin Coaxial) Outer Dimensions (Cylindrical shape) Input connector (1-Pin Coaxial) Outer Dimensions (Cylindrical shape) (1) Form factor can vary for customized solutions. (2) High voltage connectors must always be cleaned prior to mating. The proper cleaning method is to wipe or spray the interface area with isopropyl alcohol and immediately blow an inert gas such as dry nitrogen over the interface area until dry. No other cleaning method should be attempted.

 Open the catalog to page 1
Entube Z-2

MERCHANICAL DIMENSIONS HARDWARE CONFIGURATION A. Connect BNC cable to sensor output. Make sure the BNC jack is connected to DAQ or at least properly grounded. B. Make sure Input Signal cable is de-energyzed to avoid arcing. Verify if input connectors are clean. Plug input signal into input connector of sensor. C. Secure sensor to avoid accidental disconnection during operation THIS SENSOR IS NOT A SAFETY DEVICE AND IS NOT INTENDED TO BE USED AS A SAFETY DEVICE. This sensor is designed only to detect and read certain data in an electronic manner and perform no use apart from that, specifically...

 Open the catalog to page 2

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