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Horner Electric APG HE693STP101

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HE693STP101

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The HE693STP101 stepper positioning module from Horner Electric is suited for precise control with a single axis. It operates efficiently under conditions of 5-95% humidity and uses RS-232/RS-485 communication ports for connectivity.

In Stock
Ships from Raleigh, NC
2 Year DO Supply Warranty
Not an Authorized Distributor: DO Supply is not an authorized distributor for listed manufacturers or tradenames and therefore the manufacturer's warranty does not apply. All of our products come with DO Supply's 2-year warranty.
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Technical specifications for HE693STP101

ManufacturerHorner Electric
Product TypeStepper Positioning Module
Product LineAPG
Part NumberHE693STP101
Weight0.75 lbs (0.34 kg)
Humidity5–95% non-condensing
Number of Axes1
Control TypeStepper Motor Indexer
Programming LanguageASCII BASIC
Instruction SetFloating-point math, including logarithmic and trigonometric functions
Communication PortsRS-232/RS-485
Encoder Input Frequency1.0 MHz
Step Output Frequency245 kHz
Step Output Voltage High2.5 VDC
Step Output Voltage Low0.5 VDC
Direction Output Voltage High2.5 VDC
Direction Output Voltage Low0.5 VDC
Power Consumption (Inrush)0.38 W (16.2 mA @ 24VDC)
Power Consumption (Steady State)0.17 W (7.15 mA @ 24VDC)

Horner Electric's HE693STP101 module represents a robust solution for stepper motor positioning. Capable of managing a single axis, this device is optimized for use in environments with humidity levels ranging from 5 to 95%, ensuring reliability in varying conditions. The module operates as a stepper motor indexer, allowing for detailed motor control via an intuitive programming approach using ASCII BASIC language. It features a comprehensive instruction set that includes floating-point calculations as well as advanced mathematical functions, such as logarithmic and trigonometric computations. Communication is facilitated through RS-232 and RS-485 ports, ensuring versatile connectivity options for different systems. The encoder input can handle frequencies up to 1.0 MHz, making it appropriate for high-precision applications. Its step output can achieve a frequency of 245 kHz, with output voltage levels at 2.5 VDC when high and 0.5 VDC when low. Similar voltage levels are used for direction outputs, providing consistent signaling performance. Regarding electrical consumption, the device shows an inrush power requirement of 0.38 W at 24VDC and a steady-state consumption of 0.17 W. This indicates efficient energy use, critical for long-term operation in automated systems.