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MA732 Datasheet(PDF) 9 Page - Monolithic Power Systems

Part # MA732
Description  14-Bit, Digital, Contactless Angle Sensor with ABZ Incremental & PWM Outputs
PDF  30 Pages
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Manufacturer  MPS [Monolithic Power Systems]
Direct Link  http://www.monolithicpower.com
Logo MPS - Monolithic Power Systems

MA732 Datasheet(HTML) 9 Page - Monolithic Power Systems

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MA732 – 14-BIT, DIGITAL ANGLE SENSOR WITH ABZ & PWM OUTPUTS
MA732 Rev. 1.1
MonolithicPower.com
9
8/8/2022
MPS Proprietary Information. Patent Protected. Unauthorized Photocopy and Duplication Prohibited.
© 2022 MPS. All Rights Reserved.
OPERATION
Sensor Front-End
The magnetic field is detected with integrated
Hall devices located in the center of the package.
The angle is measured using the SpinaxisTM
method, which digitizes the direction of the field
directly
without
complex
arctangent
computations or feedback loop based circuits
(interpolators).
The SpinaxisTM method is based on phase
detection, and generates a sinusoidal signal with
a phase that represents the angle of the
magnetic field. The angle is then obtained by a
time-to-digital converter, which measures the
time between the zero crossing of the sinusoidal
signal and the edge of a constant waveform (see
Figure 2). The time-to-digital is the output from
the front-end to the digital conditioning block.
Top
– Sine Waveform
Bottom
– Clock of Time-to-Digital Converter
Figure 2: Phase Detection Method
The output of the front-end delivers a digital
number proportional to the angle of the magnetic
field at a rate of 1MHz in a straightforward, open-
loop manner.
Digital Filtering
The front-end signal is further treated to achieve
the final effective resolution. This treatment does
not add any latency in steady conditions. The
filter transfer function can be calculated with
Equation (1):
2
1 2 s
H(s)
(1
s)
+
=
+
(1)
Where
τ is the filter time constant related to the
cutoff frequency by
τ = 0.38 / fcutoff. See the
General Characteristics section on page 5 for the
value of fcutoff.
Sensor Magnet Mounting
The sensitive volume of the MA732 is confined
to a region less than 100µm wide, and has
multiple integrated Hall devices. This volume is
located horizontally and vertically within 50µm of
the center of the QFN package. The sensor
detects the angle of the magnetic field projected
in a plane parallel to t
he package’s upper
surface. This means that the only relevant
magnetic field is the in-plane component (X and
Y components) in the middle point of the
package.
By default, if looking at the top of the package,
the angle increases when the magnetic field
rotates clockwise. Figure 3 shows the zero angle
of the unprogrammed sensor, where the cross
indicates the sensitive point. Both the rotation
direction
and
the
zero
angle
can
be
programmed.
Figure 3: Detection Point and Default Positive
Direction
This type of detection provides flexibility for the
design of an angular encoder. The sensor only
requires the magnetic vector to lie essentially
within the sensor plane with a field amplitude of
at least 40mT. The MA732 can work with fields
smaller than 40mT, but the linearity and
resolution performance may deviate from the
specifications.
The most straightforward mounting method is to
place the MA732 sensor on the rotation axis of a
permanent
magnet
(e.g.
a
diametrically
magnetized
cylinder)
(see
Figure
4).
The
recommended magnet is a Neodymium alloy
(N35) cylinder with dimensions of Ø5x3mm,
inserted into an aluminum shaft with a 1.5mm air
gap between the magnet and the sensor



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