VT 5014 S35
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The Bosch Rexroth Indramat VT 5014 S35 is a high-performance amplifier card featuring a 2.5 kHz oscillator frequency and ±9 V regulated external voltage. It supports 1.8 A solenoid output and 100 Ω input resistance.
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Product Description:
The Bosch Indramat VT 5014 S35 is a compact but effective amplifier card. It is part of the VT-5000 IO Card series. It is designed to fit into ENGEL machines. The amplifier is accurate, stable, and capable of precise signals processing.
The VT 5014 S35 Amplifier has a 32-pin male connection that corresponds to DIN 41612 form D. It operates with a stable 24 VDC source that can vary from +40% to -5% off. The voltage input range is between 21.6 V and 33.6 V. The solenoid output stage can handle up to 1.8 A with 5.4 Ω resistance or 2.2 A with 10 Ω with a ±20% tolerance. The card includes both command and real-value measurement sockets. The external voltage is regulated at ±9 V ±1%, and loads up to ±25 mA can be supported. This amplifier card has 2.5 kHz oscillator frequency and 1.5 kHz internal clock frequency. It has multiple output channels to manage control over the system. The low and high voltage limit of this card are 22 V and 35 V. The front panel measures approximately 128.4 mm. The width of the front panel can reach 7 TE depending on the model.
The Bosch Rexroth Indramat designed the VT 5014 S35 Amplifier to perform effectively in temperatures ranging from 0 to 50 °C. It is stable enough to be used as an amplifier in complex machines. There are models with and without displays those weights approximately 0.21 Kg and 0.15 Kg respectively. The unit measures 200 mm long, 60 mm broad, and 140 mm high. This card from the VT-5000 IO Cards family is reliable and simple to incorporate.
Frequently Asked Questions about VT 5014 S35:
Q: How does the 2.5 kHz oscillator frequency benefit system performance in the VT 5014 S35?
A: The 2.5 kHz oscillator enables fast and responsive control signal processing. This ensures high precision and minimal delay in feedback-critical applications.
Q: How does the DIN 41612 form D connector impact integration in the VT 5014 S35 ?
A: The DIN 41612 connector standard ensures compatibility with a wide range of industrial backplanes. It simplifies system upgrades and field servicing.
Q: Why is a 100 Ω input resistance used for the analog sockets in the VT 5014 S35 ?
A: The 100 Ω input resistance minimizes signal loss and distortion. It’s optimal for preserving analog signal fidelity in industrial environments.
Q: How does the internal 1.5 kHz clock work alongside the oscillator in the VT 5014 S35?
A: The internal clock handles timing for internal processes like pulse-width modulation. It works in harmony with the oscillator to optimize real-time signal output.
Q: What role does the ±9 V regulated external voltage play in the VT 5014 S35 ?
A: The ±9 V regulated voltage provides a stable reference for connected sensors or command devices. This helps maintain consistent signal accuracy across operating conditions.