VT 5010 S22

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The Bosch Rexroth Indramat VT 5010 S22 IO card belongs to the VT-5000 IO Cards series and operates at a voltage range of 21.6 to 33.6 V DC with a typical current consumption of 0.6 A. It delivers an oscillator frequency around 5.4 kHz and supports a solenoid current output of up to 2.5 A. The card features analog inputs for pressure with resistance over 50 kΩ.

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Product Description:

The Bosch Rexroth Indramat VT 5010 S22 is part of the VT-5000 series of IO cards designed to satisfy industrial automation requirements.

This IO card works best within a power supply that falls between 22 to 35 V DC. Within its operating range of +40% / -10% from the nominal voltage of 24 V, the card can manage input voltages ranging from 21.6 to 33.6 V DC. Since the card supports a wide range of voltage levels, it functions well with a variety of industrial power supply types. Its core works at 0.6 amperes and spikes to 1.25 amperes under severe loads without any problems; however, the VT 5010 S22 typically uses less than 2 amperes of electricity. The card accepts control and real-time values through two analog input channels. psoll and swsoll admit signals between 0 to 10 volts (or ±10 volts for regenerative type) and show strong resistance over 50 kΩ. The card accepts both pressure and swivel angle actual values through 0 to 10 V or 0 to 5 V inputs, along with 0 to 20 mA inputs to handle different impedance setups and manage industrial operations accurately.

The card output section starts working when the enable input receives 12 V or more while generating 2.5A through a 2Ω resistor at its output stage. At 5.4 kHz, the oscillator delivers clear signals by producing around 1 V for swivel angle measurement and 3.6 V for valve actual value processing. The card's configurable outputs allow it to display machine states between -100% and +100%. It transmits pressure data from 0 to 10 V and swivel angle data between -10 V and +10 V. It can be purchased at Wake Industrial with a one-year warranty.

Actual Pressure Signal Output
0...10V
Actual Swivel Angle Signal Output
-10...+10V (-100%...+100%)
Analog Actual Pressure Input
0...10V (or 0...5V) or 0...20mA; Rin=100Ω
Analog Actual Swivel Angle Input
±10V (-100% to +100%); Rin=2kΩ
Analog Command Pressure Input
0...10V; Rin >50kΩ
Analog Command Swivel Angle Input
±10V (regenerative 0...10V); Rin >50kΩ
Current Consumption
<2A (typ. 0.6A, peak 1.25A)
Enable Input Voltage
>12V
Lower Limit Voltage
22V
Operating Voltage
24V DC (+40%/‑10%; 21.6‑33.6V)
Oscillator Amplitude (Dm2)
~3.6V (port 8a)
Oscillator Amplitude (Iw9)
~1V (port 12a/14a)
Oscillator Frequency
~5.4kHz
Solenoid Output Current
up to 2.5A (R20=2Ω)
Upper Limit Voltage
35V

Frequently Asked Questions about VT 5010 S22:

Q: What is the operating voltage range for the VT 5010 S22?

A: The VT 5010 S22 operates best within a power supply range of 22 to 35 V DC, handling input voltages from 21.6 to 33.6 V DC.

Q: How does the VT 5010 S22 handle power consumption and load conditions?

A: It runs on less than 2 amperes of normal power, with a core operation at 0.6 amperes that can spike to 1.25 amperes under heavy loads.

Q: What types of inputs does the VT 5010 S22 accept?

A: The card accepts two types of analog input channels for control and real-time values, with ranges from 0 to 10 volts or ±10 volts, handling different impedance setups to manage industrial operations accurately.

Q: How does the output section of the VT 5010 S22 function?

A: The output section starts operating when the enable input receives 12 V or more, delivering up to 2.5A through a 2Ω resistor at its output stage.

Q: What are the oscillator and output signal capabilities of the VT 5010 S22?

A: At 5.4 kHz, the oscillator delivers clear signals around 1 V for swivel angle measurement and 3.6 V for valve actual value processing, supporting outputs from 0 to 10 V and swivel angle information between -10 V and +10 V with adjustable outputs to display machine states.


Internal Product Review

  • ‘‘The VT 5010 S22 IO card is a vital part of the VT-5000 series, crafted to perform reliably in demanding industrial settings. With its capacity to manage significant power fluctuations and provide precise control inputs, this card is tailored for sophisticated automation tasks requiring high levels of accuracy and durability.’’

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