A3425 Allegro MicroSystems, A3425 Datasheet - Page 8

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A3425

Manufacturer Part Number
A3425
Description
DUAL/ CHOPPER-STABILIZED/ ULTRA-SENSITIVE/ BIPOLAR HALL-EFFECT SWITCH
Manufacturer
Allegro MicroSystems
Datasheet

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circuitry can be used to determine the direction of move-
ment of the magnetic field across the face of the package.
For the direction signal to be appropriately updated, a
quadrature relationship must be maintained between the
ring magnet pole width*, the sensor-to-sensor spacing,
and, to a lesser extent, the magnetic switch points. For
optimal design, the sensor should be actuated with a ring
magnet pole width* two times the sensor-to-sensor
spacing. This will produce a sinusoidal magnetic field
whose period (denoted as ) is then four times the sensor-
to-sensor spacing. A quadrature relationship can also be
maintained for a ring magnet that has a period that satis-
fies the relationship n /4 = 1.0 mm, where n is any odd
integer. Therefore, ring magnets with pole-pair spacings
equal to 4 mm (n = 1), 1.3 mm (n = 3), etc. are permitted.
produced by a rotating ring magnet is shown above. Note
the desired phase shift between the two integrated sensors.
unless stated as “pole pair” (North and South).
OUT
OUT
3425
DUAL, CHOPPER-STABILIZED,
ULTRA-SENSITIVE,
BIPOLAR HALL-EFFECT SWITCH
+B
+B
-B
-B
The response of the device to the magnetic field
* “Pole” refers to a single pole (North or South)
E2
E1
B
OP2
B
B
OP1
RP2
B
RP1
External logic
transistor is sensed with a low-value (<1 ) on-chip
aluminum resistor. The voltage drop across this resistor is
fed back to control the base drive of that output. This
feedback prevents the output transistor from exceeding its
maximum current-density rating by limiting the output
current to between 30 mA and 55 mA. In this mode, the
device will come out of saturation and dissipate an in-
creased amount of power
where V
and the output transistor will be thermally stressed. This
stress, unless protected against, will cause the device
junction temperature to rise until it fails catastrophically.
from transient overloads and should not imply that output
short circuits are permitted.
Over-current limiting is intended to protect the device
OUT
= V
CC
Dwg. WH-012-1
- (I
P
D
OM
= V
x R
OUT
L
Current through each output
)
x I
OM

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