A3230LLHLT Allegro Microsystems Inc, A3230LLHLT Datasheet - Page 8

IC SWITCH HALL EFFECT SOT23W

A3230LLHLT

Manufacturer Part Number
A3230LLHLT
Description
IC SWITCH HALL EFFECT SOT23W
Manufacturer
Allegro Microsystems Inc
Type
Bipolar Latchr
Datasheet

Specifications of A3230LLHLT

Sensing Range
25G Trip, -25G Release
Voltage - Supply
3.6 V ~ 24 V
Current - Supply
3.5mA
Current - Output (max)
60mA
Output Type
Digital, Open Drain
Features
Regulated Voltage
Operating Temperature
-40°C ~ 150°C
Package / Case
SOT-23W
Magnetic Type
Bipolar
Operating Supply Voltage (min)
3.6V
Operating Supply Voltage (typ)
5/9/12/15/18V
Operating Supply Voltage (max)
24V
Mag Sensor Operate Point (g)
25Gs
Mag Sensor Release Point (g)
-25Gs
Mag Sensor Hysteresis(g)
15Gs
Package Type
SOT-23W
Pin Count
3
Mounting
Surface Mount
Operating Temp Range
-40C to 150C
Operating Temperature Classification
Automotive
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Company:
Part Number:
A3230LLHLT
Quantity:
2 507
Company:
Part Number:
A3230LLHLT
Quantity:
2 507
A3230
Operation
The output of these devices switches low (turns on) when a
magnetic fi eld perpendicular to the Hall element exceeds the
operate point threshold, B
is V
up to the short circuit current limit, I
30 mA. When the magnetic fi eld is reduced below the release
point, B
ence in the magnetic operate and release points is the hysteresis,
B
ing of the output even in the presence of external mechanical
vibration and electrical noise.
There are three switching modes for bipolar devices, referred to
as latch, unipolar switch, and negative switch. Mode is deter-
mined by the switchpoint characteristics of the individual device.
Note that, as shown in fi gure 1, these switchpoints can lie in
either north or south polarity ranges. The values of the magnetic
parameters for the A3230 are specifi ed in the Magnetic Charac-
teristics table, on page 3.
Bipolar devices typically behave as latches (although these
devices are not guaranteed to do so). In this mode, magnetic
fi elds of opposite polarity and equivalent strengths are needed
to switch the output. When the magnetic fi elds are removed
(B  0) the device remains in the same state until a magnetic
Figure 1. Bipolar Device Output Switching Modes. These behaviors can be exhibited when using a circuit such as that shown in panel D. Panel A
displays the hysteresis when a device exhibits latch mode (note that the B
B
such as the A3230, can operate in any of the three modes.
HYS
HYS
V+
0
OUT(SAT)
band is more positive than B = 0), and panel C shows negative switch behavior (the B
, of the device. This built-in hysteresis allows clean switch-
B–
RP
, the device output goes high (turns off). The differ-
. The output transistor is capable of sinking current
B
HYS
0
(A)
OP
. After turn-on, the output voltage
B+
V
V
CC
OUT(SAT)
OM
, which is a minimum of
Chopper-Stabilized Hall Effect Bipolar Switch
V+
0
Functional Description
B– 0
B
HYS
(B)
HYS
band incorporates B= 0), panel B shows unipolar switch behavior (the
fi eld of the opposite polarity and of suffi cient strength causes
it to switch. The hysteresis of latch mode behavior is shown in
panel A of fi gure 1.
In contrast to latching, when a device exhibits unipolar switch-
ing, it only responds to a south magnetic fi eld. The fi eld must
be of suffi cient strength, > B
the fi eld is reduced beyond the B
back to the high state, as shown in panel B of fi gure 1. Devices
V
S
B+
V
V
CC
OUT(SAT)
HYS
C
0.1 µF
band is more negative than B = 0). Bipolar devices,
BYP
A3230
V+
0
115 Northeast Cutoff
1.508.853.5000; www.allegromicro.com
Allegro MicroSystems, Inc.
Worcester, Massachusetts 01615-0036 U.S.A.
VCC
GND
B–
OP
(D)
, for the device to operate. When
RP
VOUT
level, the device switches
(C)
B
HYS
R
LOAD
0
Output
B+
V
V
CC
OUT(SAT)
7

Related parts for A3230LLHLT