VT 5007-17a

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The VT 5007-17a is an IO card with an operating voltage of 24 VDC and a current consumption of less than 2 A. Produced by Bosch Rexroth Indramat, it belongs to the VT-5000 IO Cards series and has a compact Euro-card size of 100 x 160 mm. This card features a clock frequency of up to 1.5 kHz and a fuse rating of 2.5 A T.

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Product Description:

The Bosch Rexroth Indramat VT 5007-17a plays a major role in the VT-5000 series IO cards.

The IO card requires only 24 volts to power its operations while tolerating up to 40% more power than normal, with 5% less power being acceptable. It maintains stable operations between 22 volts and 35 volts as its energy-saving design uses under 50 VA and draws no more than 2 amperes. The VT 5007-17a model contains a 2.5 A time-lag fuse that adds robust safety protections. This controller enables efficient input data processing with the first four command inputs accepting ±9 V signals and a fifth command value from zero to ±10 V ranges. The enable signal reacts only when the voltage input reaches above 8.5 V and drops below 6.5 V for precise and efficient user control. This model allows users to set specific relay durations at 16.8 V while handling a 2150 Ω coil and allows 30 ms to 5 seconds time durations (+/- 20%) for better control. At maximum, there is a 1.8 Ampere solenoid current enabled through an output stage with an actual resistance of 5.4 Ohms, which covers difficult application areas.

The self-clocking clock generates 1.5 kHz simultaneously as a driver that sends 2.5 kHz ±10% sinusoidal signals to inductive position transducers. The card delivers precise voltage control between ±9 V and ±1% while managing external power loads up to ±25 mA, plus it features measurement sockets to track system performance. The component design based on Euro-card standards meets all environmental requirements by working between 0 to 50 °C while being safely stored between -25 to +85 °C. It can be purchased at Wake Industrial with a one-year warranty.

Card Dimensions
100 x 160 mm (Euro-card DIN 41 494)
Clock Frequency
Self-clocking up to 1.5 kHz
Connector
32-pin male, DIN 41612 form D
Current Consumption
< 2 A
Front Panel
128.4 mm H (3 HE), 5.08 mm W (1 TE)
Fuse Rating
2.5 A T
Input Commands
1–4: ±9 V; 5: ±10 V; Enable >8.5 V/<6.5 V
Nominal Voltage
24 VDC (+40%/–5%)
Operating Voltage Range
22 to 35 V
Permissible Operating Temp
0 to 50 °C
Power Consumption
< 50 VA
Ramp Time Range
30 ms to ~5 s (±20%)
Regulated Output Voltage
±9 V ±1%, load ≤ ±25 mA
Relay
operate 16.8 V, release 2.4 V, coil 2150 Ω
Sockets w/x
0 to ±6 V; w: –6=+100%, +6=–100%; Ri=100 Ω
Solenoid VT5007
1.8 A ±20%, 5.4 Ω (20 °C)
Storage Temperature
-25 to +85 °C
Transducer Oscillator
2.5 kHz ±10%, 5 V amplitude, 30 mA max
Weight
0.15 kg

Frequently Asked Questions about VT 5007-17a:

Q: What is the operating voltage range for the VT 5007-17a?

A: The VT 5007-17a operates smoothly between 22 volts and 35 volts, with a normal power requirement of 24 volts, tolerating up to 40% more or 5% less power.

Q: How does the VT 5007-17a manage power consumption and safety?

A: It uses under 50 VA of power and draws no more than 2 amperes, featuring a 2.5 A time-lag fuse for robust safety protections.

Q: What types of inputs does the VT 5007-17a accept?

A: The card accepts the first four command inputs at ±9 V signals and a fifth command value spanning from zero to ±10 V, facilitating versatile control options.

Q: What are the environmental and physical specifications of the VT 5007-17a?

A: The VT 5007-17a adheres to Euro-card standards, functioning optimally between 0 to 50 °C and can be safely stored from -25 °C to +85 °C.

Q: How does the enable signal function in the VT 5007-17a?

A: The enable signal becomes active when the voltage input reaches above 8.5 V and drops below 6.5 V, allowing for precise and efficient control.


Internal Product Review

  • ‘‘The VT 5007-17a is a critical component of the VT-5000 series, engineered to deliver reliable and efficient performance in automation systems. It supports a variety of demanding applications with its advanced input data processing capabilities and energy-efficient design, making it a preferred choice for complex industrial environments.’’

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