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ATS642LSH Arkusz danych(PDF) 10 Page - Allegro MicroSystems

Numer części ATS642LSH
Szczegółowy opis  Two-Wire True Zero Speed Miniature Differential Peak-Detecting Gear Tooth Sensor with Continuous Calibration
PDF  16 Pages
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Producent  ALLEGRO [Allegro MicroSystems]
Strona internetowa  http://www.allegromicro.com
Logo ALLEGRO - Allegro MicroSystems

ATS642LSH Arkusz danych(HTML) 10 Page - Allegro MicroSystems

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ATS642LSH-DS
Worcester, Massachusetts 01615-0036 (508) 853-5000
115 Northeast Cutoff, Box 15036
www.allegromicro.com
Allegro MicroSystems, Inc.
True Zero Speed Miniature Differential Peak-Detecting Gear Tooth Sensor
ATS642LSH
Sensing Technology
The gear tooth sensor subassembly contains a single-chip dif-
ferential Hall effect sensor IC, an optimized samarium cobalt
magnet, and a flat ferrous pole piece. The Hall IC possesses two
Hall elements, which sense the magnetic profile of the ferrous
target simultaneously, but at different points (spaced at a 1.5 mm
pitch), generating a differential internal analog voltage (VPROC)
that is processed for precise switching of the digital output
signal.
The Hall IC is self-calibrating and also possesses a temperature
compensated amplifier and offset compensation circuitry. Its
voltage regulator provides supply noise rejection throughout the
operating voltage range. Changes in temperature do not greatly
affect this device due to the stable amplifier design and the offset
compensation circuitry. The Hall transducers and signal process-
ing electronics are integrated on the same silicon substrate, using
a proprietary BiCMOS process.
Target Profiling
An operating device is capable of providing digital information
that is representative of the mechanical features on a rotating tar-
get. The waveform diagram shown in figure 3 presents the auto-
matic translation of the mechanical profile, through the magnetic
profile that it induces, to the digital output signal of the sensor.
Output Polarity
Figure 3 shows the output polarity for the orientation of target
and sensor shown in figure 2. The target direction of rotation
shown is: perpendicular to the leads, across the face of the
device, from the pin 1 side to the pin 4 side. This results in the
sensor output switching from high, ICC(High), to low ICC(Low), as
the leading edge of a tooth (a rising mechanical edge, as detected
by the sensor) passes the sensor face. In this configuration, the
device output current switches to its low polarity when a tooth is
the target feature nearest to the sensor. If the direction of rota-
tion is reversed, then the output polarity inverts.
Note that output voltage polarity is dependent on the position of
the sense resistor, RSENSE (see figure 4).
Target (Gear)
Back-biasing Magnet
South Pole
North Pole
Case
(Pin 1 Side)
(Pin 4 Side)
Hall IC
Pole Piece
Element Pitch
(Concentrator)
Dual-Element
Hall Effect Device
Hall Element 1
Hall Element 2
of Sensor
Rotating Target
Branded Face
1
4
Functional Description
Figure 1. Relative motion of the target is detected by the dual Hall ele-
ments mounted on the Hall IC.
Figure 2. This left-to-right (pin 1 to pin 4) direction of target rotation
results in a low output signal when a tooth of the target gear is nearest
the face of the sensor (see figure 3). A right-to-left (pin 4 to pin 1) rota-
tion inverts the output signal polarity.
Figure 4: Voltages profiles for high side and low side two-wire sensing.
Figure 3. Output Profile of a ferrous target for the polarity indicated in
figure 2.
ATS642
VCC
GND
V
CC
I
CC
1
4
VOUT(L)
ATS642
VCC
GND
V
SUPPLY
1
4
VOUT(H)
I
CC
R
SENSE
R
SENSE
IOUT
VOUT(H)
V+
VOUT(L)
V+
I+
Representative
Differential
Magnetic Profile
Target
Mechanical Profile
Sensor Electrical
Output Profile, IOUT



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