A3282EUA Allegro Microsystems Inc, A3282EUA Datasheet - Page 10

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A3282EUA

Manufacturer Part Number
A3282EUA
Description
IC SWITCH HALL EFFECT 3-SIP
Manufacturer
Allegro Microsystems Inc
Type
Bipolar Latchr
Datasheets

Specifications of A3282EUA

Sensing Range
150G Trip, -150G Release
Voltage - Supply
3.6 V ~ 24 V
Current - Supply
3.5mA
Current - Output (max)
25mA
Output Type
Digital, Open Collector
Features
Regulated Voltage
Operating Temperature
-40°C ~ 85°C
Package / Case
3-SIP
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
A3282
Power Derating
The device must be operated below the maximum junction
temperature of the device, T
peak conditions, reliable operation may require derating sup-
plied power or improving the heat dissipation properties of the
application. This section presents a procedure for correlating
factors affecting operating T
the Allegro MicroSystems Web site.)
The Package Thermal Resistance, R
marizing the ability of the application and the device to dissipate
heat from the junction (die), through all paths to the ambient air.
Its primary component is the Effective Thermal Conductivity,
K, of the printed circuit board, including adjacent devices and
traces. Radiation from the die through the device case, R
relatively small component of R
T
overmolding.
The effect of varying power levels (Power Dissipation, P
be estimated. The following formulas represent the fundamental
relationships used to estimate T
For example, given common conditions such as: T
V
A worst-case estimate, P
able power level (V
at a selected R
A
CC
, and air motion are signifi cant external factors, damped by
T = P
T = P
= 12 V, I
P
T
D
J
= T
= V
A
D
CC
+ T = 25°C + 3°C = 28°C
×
CC
JA
×
R
= 1.5 mA, and R
I
JA
and T
CC
P
T
CC(max)
D
J
= 12 V
= 18 mW
= T
= V
A
D(max)
.
A
D
IN
, I
+ ΔT
×
J(max)
J
×
CC(max)
×
. (Thermal data is also available on
R
, represents the maximum allow-
×
1.5 mA = 18 mW
I
J
JA
JA
, at P
IN
. Under certain combinations of
JA
165 °C/W = 3°C
. Ambient air temperature,
), without exceeding T
(2)
JA
= 165 °C/W, then:
D
.
, is a fi gure of merit sum-
(1)
(3)
A
= 25°C,
JC
D
), can
J(max)
, is
Chopper-Stabilized Hall Effect Latch
,
Example: Reliability for V
low-K PCB.
Observe the worst-case ratings for the device, specifi cally:
R
I
Calculate the maximum allowable power level, P
invert equation 3:
This provides the allowable increase to T
power dissipation. Then, invert equation 2:
P
Finally, invert equation 1 with respect to voltage:
The result indicates that, at T
dissipate adequate amounts of heat at voltages ≤V
Compare V
able operation between V
R
V
CC(max)
JA
JA
CC(max)
V
T
D(max)
CC(est)
. If V
= 228 °C/W, T
max
= 5 mA.
is reliable under these conditions.
= T
= T
= P
CC(est)
CC(est)
J(max)
D(max)
max
≥ V
to V
÷ R
J(max)
– T
÷ I
CC(max)
JA
CC(max)
A
CC(max)
= 165 °C – 150 °C = 15 °C
= 165°C, V
CC(est)
= 15°C ÷ 228 °C/W = 66 mW
115 Northeast Cutoff
1.508.853.5000; www.allegromicro.com
CC
Allegro MicroSystems, Inc.
Worcester, Massachusetts 01615-0036 U.S.A.
, then operation between V
A
. If V
at T
= 66 mW ÷ 5 mA = 13 V
, the application and device can
and V
A
CC(est)
= 150°C, package LH, using a
CC(max)
CC(max)
J
≤ V
resulting from internal
= 24 V, and
CC(max)
requires enhanced
D(max)
CC(est)
, then reli-
CC(est)
. First,
.
and
9

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