VT 5008S12

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The VT 5008S12 is an IO card designed with an operating voltage of 24 VDC (+40% / -5%). Manufactured by Bosch Rexroth Indramat, this card belongs to the VT-5000 IO Cards series and supports a self-clocking frequency of up to 1.5 kHz. It features a fuse rating of 2.5 A T and weighs approximately 0.15 kg.

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Product Description:

The Bosch Rexroth Indramat VT 5008S12 serves as an advanced IO card in industrial automation for precise control tasks.

This controller system uses 24VDC network power with a plus-40 percent minus five percent tolerance span and works best between 22V and 35V. This card functions on 50 V or less power usage and takes less than 2 amperes, therefore works as an efficient part for multiple systems. This IO card has 2.5 A T fusing built-in to handle overcurrent events safely. The card gives input command voltages to five standard outputs that range between ±9 V (a reference to M0) for inputs 1-4 while input 5 adjusts from 0 to ±10 V. The card responds to the enable command when the input voltage exceeds 8.5 V and below 6.5 V the enable ceases operation. The relay data has reliable performance with a response signal of 16.8 V and a release signal of 2.4 V that produces a coil resistance of 2150 Ω. Users can precisely program the device to trigger outputs between 30 milliseconds and either 1000 or 5000 milliseconds with a response tolerance of less than 20 percent. The output section delivers 2.2 amperes of solenoid power within a 20% tolerance range while handling a 10-ohm resistance at 20 degrees Celsius.

The VT 5008S12 clocks itself up to 1.5 kHz automatically though performs at 2.5 kHz frequency which remains within a 10% tolerance range and helps execute high-performance operations. With 30 mA maximum loading the regulator supplies ±9 V of voltage output power that can handle external loads to ±25 mA. The card connects with frontal DIN 41 612 Form D multiplied cables which comply with 32-pin male standards. The card fits inside the Euro-card system and matches DIN 41 494 dimensions (100 x 160 mm) with 128.4 mm (3 HE) front panel height. The device carries a lightweight 0.15 kg weight that facilitates its system integration.

Card dimensions
100 x 160 mm
Clock frequency
self-clocking up to approx. 1.5 kHz
Command input 5 voltage
0 to ± 10 V
Command inputs 1-4 voltage
± 9 V (ref. M0)
Connector
32-pin male (DIN 41612 Form D)
Current consumption
< 2 A
Enable input
active >8.5 V, inactive <6.5 V
Fuse rating
2.5 A time-delay
Max driver load
30 mA
Operating voltage
24 VDC (+40% / -5%)
Oscillator frequency
2.5 kHz ±10%
Power consumption
< 50 VA
Ramp time adjustment
30 ms to 5 s (±20%)
Regulated voltage
± 9 V ±1%, loadable 25 mA
Relay coil resistance
2150 Ω
Relay release voltage
2.4 V
Relay response voltage
16.8 V
Solenoid current
2.2 A ±20%
Solenoid resistance
10 Ω (at 20 °C)
Weight
approx. 0.15 kg

Frequently Asked Questions about VT 5008S12:

Q: What is the voltage and power efficiency of the VT 5008S12?

A: The VT 5008S12 operates on 24VDC with a tolerance of plus 40% to minus 5%, effectively functioning between 22V and 35V while consuming less than 50V and 2 amperes.

Q: What are the output capabilities of the VT 5008S12?

A: The card provides output voltages of ±9 V for inputs 1-4 and is adjustable from 0 to ±10 V for input 5, with the capability to deliver 2.2 amperes of solenoid power.

Q: How does the VT 5008S12 manage overcurrent protection?

A: It is equipped with a 2.5 A T-type fuse, designed to handle overcurrent events safely.

Q: What are the physical specifications of the VT 5008S12 that facilitate its integration?

A: The VT 5008S12 matches Euro-card dimensions at 100 x 160 mm and has a 3 HE front panel height of 128.4 mm, fitting standard industrial system frameworks.

Q: How does the VT 5008S12 ensure high-performance operations in industrial systems?

A: The device operates at a clock frequency of up to 2.5 kHz within a 10% tolerance, enabling precise and efficient control necessary for high-performance operations.


Internal Product Review

  • ‘‘The VT 5008S12 IO card is a cornerstone of advanced industrial automation, offering robust control and efficient power management. Its precise response settings and overcurrent protection make it ideal for demanding applications.’’

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