Part no.: Netzer DS-130
• 130 mm diameter
• SSI, BiSS-C
• Up to 21 bit resolution
• High tolerance to EMI, RFI and magnetic fields
The DS-130 is a member of the DS series of Electric Encoders a product line based on Netzer Precision Motion Sensor proprietary technology. Lightweight, compact and high performance (up to 21 bit resolution) these encoders provide unparalleled performance. The Electric Encoder is unique in being holistic, i.e., its output reading is the averaged outcome of the whole area of the rotor, This feature makes the Electric Encoder™ forgiving to mounting tolerances, mechanical wander etc. The absence of components such as ball bearings, flexible couplers, glass disc, light sources and detectors, along with very low power consumption makes the Electric Encoder virtually failure free. The internally shielded, DC operated Electric Encoder includes an electric field generator, a field receiver, a sinusoidal shaped dielectric rotor, and processing electronics. The output of Electric Encoder is a digital serial with absolute position single turn. The combination of precision, low profile, low weight and high reliability have made Netzer Precision encoders particularly suitable to a wide variety of industrial automation applications.
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Improved Encoder Accuracy Brings Hidden Benefits
Capacitive rotary encoders such as those from Netzer Precision are known for their low profile, high noise immunity and excellent accuracy. As a result, they are an excellent choice for applications such as camera systems, radar, slip-rings and robotic joints. Often times in these tasks the encoder is used for velocity feedback, ensuring a smooth […]
Implementation of SSI Interface
Synchronous Serial Interface (SSI) is a widely used serial interface standard for industrial applications especially, rotary encoders. It is a point-to-point connection from a master (e.g. PLC, microcontroller or other control systems) to a slave (e.g. the rotary encoder).
Synchronous Serial Interface (SSI) is a widely used serial interface standard for industrial applications between a master (i.g. controller) and a slave (i.g. sensor).
Accuracy, Resolution and Repeatability
There are several key terms that are critical to specifying the optimal position sensor for a given application. This application note defines these key terms and how they relate to the sensor’s role in the overall system performance. It is important to consider that precision is very much a system issue and can be dominated by mechanical errors such as eccentricity. This paper discusses the most significant mechanical error for rotary applications (eccentricity) and presents eccentricity tolerant position sensor solutions.