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Multiphase Signal Processing: Quantum Leap in the Sensing Technology
PRODUCT
ZF Transform Changes the Landscape of Position Sensing Industry
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Zero-Force (ZF) Transform
Groundbreaking Mathematical Transformation,
Multiphase Sinusoidal Signals to Two-Phase Orthogonal Signals.
When three-phase sinusoidal signals that are 120 degrees to each other are sensed, it is well known that the Clarke transformation converts the three-phase sinusoidal signals ‒ sin(θ), sin(θ-120°), sin(θ-240°) ‒ into two-phase orthogonal signals of sin(θ) and cos(θ). The present-day sensing technology that is based on the two-phase orthogonal signals has not been changed since the inception of the technology.
The generalized conversion method for arbitrary N-phase sinusoidal signals, that are shifted 360°/N from each other, has been unknown until the finding of the ZF Transform that is recently published in “Multiphase Sensor Signal Processing” (https://ieeexplore.ieee.org/document/9773991).
The applications of the ZF Transform are very diverse such as in position sensing, phase modulated digital communications, or time of flight (ToF) ranging, especially when the phases of the sin(θ) and cos(θ) signals carry the information that needs to be extracted.
Applications of the ZF Transform
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- Position Sensing (Rotary or Linear Motors)
- Time of Fight (ToF) Ranging
- Phase Modulated Digital Communications
The ZF Transform Offers
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- to Facilitate the Architectural Change in Position Sensing Devices
- to Improve the Sensing Accuracy
- to Relax the Manufacturing Requirements
- to Introduce the Digital Type Signal Sensing
- to Design the Devices Flexibly
Characteristics of the ZF Transform
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- Preserve the Fundamental Signal Component from the Sensed Input Multiphase Signals.
- Harmonic Components are Removed from the Input Signals.
- Amplitude of the Output Signal is Adjusted during the Transformation
- Phase of the Output Signal can be Shifted during the Transformation.
- Common Mode Noise in the Input Signals are Completely Canceled.
- Conveniently Implemented by the Operational Amplifiers.
PRODUCT
ZF Transform Changes the Landscape of Position Sensing Industry
01
ZF Encoder
Ultra Precision Hall Sensor Encoder Using the Motor Main Magnets. ZF Hall Sensor Encoders Drive Out the Optical Encoders.
02
ZF Resolver
No More Complicated Design and Manufacturing, Simple ZF Resolver Architecture Cuts the Cost by More Than Half. 1X VR Resolvers are Easily Realized. Super Thin and Light WR Resolvers.
03
ZF ToF Sensor
Current 2 or 4-Bucket Algorithm is Not an Answer.
Odd Number N-Phase ZF Synthesis is the Solution
SERVICE & SUPPORT
ZF Transform Changes the Landscape of Position Sensing Industry
ZF ENCODER
About Our Business
Team of Industry Veterans in Analog, Digital, and Systems.
We offer the innovative technologies to our partners and enable them to deliver advanced and differentiated products in position sensing and ToF ranging applications.
ZF Encoder inherits all the experiences of SJP, which has been providing advanced feedback control and customized motor control systems and services for more than 30 years.
Through continuous learning and innovations, we have come up with a unconventional multiphase signal processing technique. Multiphase signal processing, so called “zero-force (ZF) transform”, is a revolutionary finding that changes the architectural foundation that has presided over more than 100 years in position sensing.
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