Skip to main content Skip to search Skip to main navigation

P41000 High Voltage Transducer | Input up to ±100 V | High isolation up to 3600 V

Description

P41000 High Voltage Transducer | Input up to ±100 V | High isolation up to 3600 V

Universal high voltage transducers. Input signals from Vin = ±60 mV up to Vin = ±100 V.

  • Universal high voltage transducers
    for converting voltages, e.g. in shunt applications, from ±60 mV up to ±100 V to impressed ±20 mA, ±10 V or 4 ... 20 mA output signals.
  • New TransShield technology
    enables extremely compact modular housings
  • Working voltages up to 3600 V AC/DC
  • Protection against electric shock
    with protective separation up to 1800 V AC/DC according to EN 61140
  • Test voltages up to 15 kV AC
  • Excellent transmission properties: 
    • Gain error < 0.1 %
    • Cutoff frequency 5 kHz (low-pass filter / lower cutoff frequency on request)
    • Rise time T90 approx. 110 µs
  • Virtually no influence from common-mode voltages
    CMRR >150 dB
  • High immunity to transient interference
    T-CMRR >115 dB
  • Tremendous flexibility provided by
    • Calibrated switching of up to 16 input/output ranges (working voltage up to 2200 V)
    • Up to 16 customer-specific measuring ranges
    • 20 V to 253 V AC/DC broad-range power supply
  • Reliable function even with unstable supply
  • No damage in the case of erroneous power connection
  • Switchable models
    minimize required device variants and save stockkeeping costs
  • Robust
    thanks to vacuum encapsulation
  • Suitable for DC railway systems
    up to 3000 V DC
  • Mechanically stable
    for operation on ships, rail vehicles and land crafts
  • 5-year warranty

The P41000 isolation amplifiers have been specially conceived for measurements of bipolar voltages from millivolts to volts. They reliably isolate high potentials at the input circuit. The isolating distances are designed to withstand permanent voltages up to 3600 V AC/DC and fast transients up to 20 kV.

Protection against electric shock is achieved through protective separation according to EN 61140 between input and output and power supply. Specially designed for current measurements using a shunt resistor.

We look forward to hearing from you!
Contact Us

Technical details

Product Category: High Voltage Transducer
Device Type: High Voltage Transducers, Transducers for Shunt Applications, Universal Isolated Signal Conditioners
Input: (±)10 V, (±)500 mV ... (±)200 V, ≤ (±)500 mV
Output: 0 … 10 V, 0 … 20 mA, 4 … 20 mA, ±10 V, ±20 mA
Working Voltage, Min.: 50 V, 300 V, 1000 V, 2000 V, 3600 V
Test Voltage: 2.5 kV, 5 kV, 10 kV, 15 kV, 510 V
Fault Class: 0.1 %, < 0.5 %
Housing: 17.5 … 67.5 mm Modular housing
Cutoff Frequency: 5 kHz, < 1 kHz
Power Supply: 24 V AC, 24 V DC, 110 / 115 V AC, 220 / 230 V AC, Broad-range power supply, Loop-Powered, Others
Approvals: CSA, UL
Product Line: ProLine

Downloads

Manuals

[17369] User Manual
P41000
Version 06

Brochures

[18014] Brochure
Precision Devices
for the Rail Industry
[14160] Brochure
Product Overview Interface Technology
[18222] Brochure
RELIABLE EQUIPMENT FOR HIGH VOLTAGE TEST & MEASUREMENT
APPLICATIONS IN E-MOBILITY

Data Sheets

[1513] Data Sheet
VariTrans P 41000, P 42000 (inkl. D2), P 43000
Product Description | Specifications | Product Range

Certificates

[11463] EU Declaration of Conformity (DE, EN, FR)
Series VariTrans P4x000 (D*-nnnn/D*AG-nnnn/D*TRMS-nnnn)
No. EU221209A | 2023-11-29
[12071] Certificate of Compliance (UL)
P41000, P42000, P43000, P44200, P51000, P52000
MOTOR CONTROLLER ACCESSORIES OVER 1500 VOLTS
No. UL-US-L356768-11-22503102-1 | 202406-28
[14140] Quality Report (MTBF)
Document No. TX180416A
Failure Rate of Series P40000

Software

[11876] Knick Produktmakros (.pdf)
ePLAN Electric P8
[12154] Software (.zip)
ePLAN P8 Produktmakros

Our service

Lorem lorem ipsum ipsum dolor sit amet, consetetur sadipscing elitr, sed diam nonumy eirmod tempor invidunt ut labore et dolore magna aliquyam erat, sed diam voluptua. At vero eos et accusam et justo duo dolores et ea rebum. Stet clita kasd gubergren, no sea takimata sanctus est Lorem ipsum dolor sit amet. Lorem ipsum dolor sit amet, consetetur sadipscing elitr, sed diam nonumy eirmod tempor invidunt ut labore et dolore magna aliquyam erat, sed diam voluptua. At vero eos et accusam et justo duo dolores et ea rebum. Stet clita kasd gubergren, no sea takimata sanctus est Lorem ipsum dolor sit amet.

Used in Process or Applications

Test systems generate control voltages in a battery model in order to simulate temperature conditions for battery management systems (BMS) and evaluate the temperature management of the BMS.
For battery electric commercial vehicles, there is a quick-charging option via pantographs. This requires a contact between an external infrastructure system (with movable pantographs) and permanently installed charging rods on the vehicle roof. A DC roof container contains components that check the charging connection and the corresponding voltage, and establish the connection to the other on-board systems.
During battery tests, the charging and discharging operations (battery cycles) are continuously simulated in a HIL (hardware in the loop) configuration that corresponds to the typical use profiles when the electric vehicle is in operation. In the process, a series of parameters are measured, including capacity, battery efficiency, and self-discharging.

Relevant Blog Posts

Sturdy 2-Electrodes Conductivity Sensor SE625 with Coaxial Electrodes made of Titanium

The SE625 ensures reliable and accurate determination of the conductivity of ultrapure water in the semiconductor industry.

Combined pH- and ORP-Sensor SE555X/*-AMSN

Combined pH and ORP measurement in one sensor SE555 saves place and equipment costs for demanding requirements in the chemical industry, the food sector and for hygienic applications.

SE655X Digital and SE656X Digital - Digital Conductivity Sensors with Ex Certification

The SE655X digital and SE656X digital conductivity sensors with Memosens protocol are now also available with Ex certification.

New SE656N digital conductivity sensor

New toroidal Digital Conductivity Sensor with a large measuring range and consisting of PFA for using in aggressive media

How to get the sensor into the process

Sensors as the direct interface to the process must be exactly matched to the chemistry of the measured medium and to the prevailing pressure and temperature conditions.