E0105-917-001 Okuma
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The E0105-917-001 is a bolt-on steel operator panel with a zinc-plated finish. Designed by Okuma as part of their E5 Operator Panels series, the panel measures 12 mm x 35 mm x 2 mm. With a life cycle of 100,000 cycles, it operates effectively in temperatures ranging from -40°C to 120°C.
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Product Description:
The E0105-917-001 is part of Okuma’s E5 operator panels, designed for monitoring and optimal control of advanced automation systems. At its most basic form, the E0105-917-001 consists of an adjustable knob and a set of function buttons for parameter selection and calibration. With its compact front panel and screw-in mounting holes, this device can easily be used alongside other operator panels. The E0105-917-001’s front panel employs a resistant material that protects the device’s sensitive backplane. Since this device is intended to be a part of a larger device or module, the E0105-917-001’s backplane employs no casing.
Specifically, the E0105-917-001 incorporates a total of eight function keys and one large rotary knob. The rotary knob can be adjusted from 0 to 80. Typically, handwheel modules such as the E0105-917-001 can be used to adjust valves or other machinery within the automation system. During operation, this device can safely be adjusted to meet the requirements of a certain component. An indicator panel can additionally be added to the system to monitor critical components and parameters within the industrial system. Together with the indicator and operating panel, handwheel modules such as the E0105-917-001 can be used to effectively adjust valves. By default, however, adjustment must be done manually, usually by a qualified operator.
For the most advanced systems, handwheel panels such as the E0105-917-001 can be automated. To achieve this, a separate electromechanical actuator may be used, or the knob can be adjusted via a specialized circuit. The advantage of using the latter is that the adjustment of the knob can be integrated with little to no actuation delays. The disadvantage, however, is that specialized circuits are more complex to design.