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Part Number:

VT-HMC-2-10/M-P-00/00

Manufacturer: Bosch Rexroth Indramat
Series: VT-HMC Digital Axis Controllers

Current response time:

4 Minutes

12 Seconds

  • Rated 4.4 (14 total ratings)
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
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Worldwide Delivery
Repair Options Available

The VT-HMC-2-10/M-P-00/00 from Bosch Rexroth Indramat is part of the VT-HMC Digital Axis Controllers series and features a flange-mounted design. It operates at 230/400 V AC, with a stroke length of 10 mm and cycle life of up to 100 million cycles. The controller has an IP67 protection rating.

Call for Availability
Part Number:

VT-HMC-2-10/M-P-00/00

Manufacturer: Bosch Rexroth Indramat
Series: VT-HMC Digital Axis Controllers

Current response time:

6 Minutes

13 Seconds

  • Rated 4.4 (14 total ratings)
  • Straightforward Pricing: No Rush Fees, No Credit Card Fees
Free Ground Shipping
Worldwide Delivery
Repair Options Available

The VT-HMC-2-10/M-P-00/00 from Bosch Rexroth Indramat is part of the VT-HMC Digital Axis Controllers series and features a flange-mounted design. It operates at 230/400 V AC, with a stroke length of 10 mm and cycle life of up to 100 million cycles. The controller has an IP67 protection rating.

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Product Description

Bosch Rexroth Indramat manufactured the VT-HACD-3-23/P-I-00/000. The digital axis controller is designed for industrial use where accuracy and reliability are key. With a dual input voltage of 230/400 V AC, it can be used with standard 3-phase power supplies. By reducing transformer core saturation and maintaining phase synchronization for internal timing components, the 50/60 Hz AC ensures global compatibility. Operating outside of the specified electrical parameters can cause inductive component thermal overload, incorrect control circuit energization or voltage regulation problems. To maintain the integrity of internal drive electronics and the electrohydraulic systems they control, you must adhere to these electrical specifications. A pressure-fed actuation mechanism requires a minimum of 10 bar of hydraulic or pneumatic supply to power the mechanically generated linear force output of 2 kN from the axis controller. Despite system resistances, including friction, inertia and process loads, the 2000 N output force is enough to start and maintain motion.

The work-energy concept can be used to calculate the quantifiable work output when this force is applied over the 10 mm stroke length. In automated assembly or process systems, this small but accurate displacement ensures regulated linear actuation, making it perfect for high-resolution positioning or force application applications. With a 20 ms reaction time, the unit has excellent dynamic behavior, making it suitable for real-time control in feedback-driven automation loops. This parameter is mainly influenced by damping coefficients, system inertia and the responsiveness of the internal valve or servo drive design. It is the time between receiving an input signal and the mechanical start of motion. In high bandwidth control systems, a fast reaction time reduces phase lag and improves control loop stability, which is important for applications like synchronized multi-axis motion, tool alignment and precision dosing. The mechanical construction with a flange mount housing design to counteract vibration and lateral stress during actuation supports this dynamic performance.

Environmentally, the VT-HMC-2-10/M-P-00/00 has an IP67 housing and is rated for -20°C to 60°C. During low-temperature start-up and high-temperature duty cycles, the wide temperature range ensures that material properties like fluid viscosity, coil resistance and elastomer elasticity remain within useful limits. The IP67 grade protects internal circuits and seals against particle abrasion and moisture-induced shorting or corrosion; it verifies protection against dust ingress and brief submersion in water. The M12 circular connector on the controller makes the electrical interface easier while keeping it clean from impurities and vibration. The 15 kg weight of the device ensures long-term operational stability of up to 100 million actuation cycles by contributing to its mechanical stiffness and vibration damping.

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