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ACS758KCB-150B-PSS-T 参数 Datasheet PDF下载

ACS758KCB-150B-PSS-T图片预览
型号: ACS758KCB-150B-PSS-T
PDF下载: 下载PDF文件 查看货源
内容描述: 耐热增强型全集成,基于霍尔效应的线性电流传感器IC 100 μΩ电流导体 [Thermally Enhanced, Fully Integrated, Hall Effect-Based Linear Current Sensor IC with 100 μΩ Current Conductor]
分类和应用: 模拟IC传感器信号电路信息通信管理
文件页数/大小: 16 页 / 587 K
品牌: ALLEGRO [ ALLEGRO MICROSYSTEMS ]
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ACS758xCB
Thermally Enhanced, Fully Integrated, Hall Effect-Based
Linear Current Sensor IC with
100
μΩ
Current Conductor
Characteristic Definitions
Definitions of Accuracy Characteristics
Sensitivity (Sens).
The change in device output in response to a
1 A change through the primary conductor. The sensitivity is the
product of the magnetic circuit sensitivity (G / A) and the linear
IC amplifier gain (mV/G). The linear IC amplifier gain is pro-
grammed at the factory to optimize the sensitivity (mV/A) for the
half-scale current of the device.
Noise (V
NOISE
).
The noise floor is derived from the thermal and
shot noise observed in Hall elements. Dividing the noise (mV)
by the sensitivity (mV/A) provides the smallest current that the
device is able to resolve.
Nonlinearity (E
LIN
).
The degree to which the voltage output
from the IC varies in direct proportion to the primary current
through its half-scale amplitude. Nonlinearity in the output can be
attributed to the saturation of the flux concentrator approaching
the half-scale current. The following equation is used to derive
the linearity:
100 1–
The ratiometric change (%) in the quiescent voltage output is
defined as:
V
IOUTQ(
V
IOUTQ(V
CC
)
V
IOUTQ(5V)
V)
=
V
CC
5V
%
and the ratiometric change (%) in sensitivity is defined as:
Sens
(
V
=
Sens
(V
CC
V
CC
Sens
(
5V
V
%
Quiescent output voltage (V
IOUT(Q)
).
The output of the device
when the primary current is zero. For a unipolar supply voltage,
it nominally remains at V
CC
2. Thus, V
CC
= 5 V translates into
V
IOUT(Q)
= 2.5 V. Variation in V
IOUT(Q)
can be attributed to the
resolution of the Allegro linear IC quiescent voltage trim, mag-
netic hysteresis, and thermal drift.
Electrical offset voltage (V
OE
).
The deviation of the device out-
put from its ideal quiescent value of V
CC
2 due to nonmagnetic
causes.
Magnetic offset error (I
ERROM
).
The magnetic offset is due to
the residual magnetism (remnant field) of the core material. The
magnetic offset error is highest when the magnetic circuit has
been saturated, usually when the device has been subjected to a
full-scale or high-current overload condition. The magnetic offset
is largely dependent on the material used as a flux concentrator.
The larger magnetic offsets are observed at the lower operating
temperatures.
Total Output Error (E
TOT
).
The maximum deviation of the
actual output from its ideal value, also referred to as
accuracy,
illustrated graphically in the output voltage versus current chart
on the following page.
E
TOT
is divided into four areas:

0 A at 25°C.
Accuracy at the zero current flow at 25°C, with-
out the effects of temperature.

0 A over
Δ
temperature.
Accuracy at the zero current flow
including temperature effects.

Half-scale current at 25°C.
Accuracy at the the half-scale current
at 25°C, without the effects of temperature.

Half-scale current over
Δ
temperature.
Accuracy at the half-
scale current flow including temperature effects.
{ [
Δ
gain
×
% sat (
V
IOUT
_half-scale amperes –
V
IOUT(Q)
)
2 (V
IOUT
_quarter-scale amperes –
V
IOUT(Q)
)
[{
where
gain = the gain variation as a function of temperature
changes from 25ºC,
% sat = the percentage of saturation of the flux concentra-
tor, which becomes significant as the current being sampled
approaches half-scale ±I
P
, and
V
IOUT_half-scale amperes
= the output voltage (V) when the
sampled current approximates half-scale ±I
P
.
Symmetry (E
SYM
).
The degree to which the absolute voltage
output from the IC varies in proportion to either a positive or
negative half-scale primary current. The following equation is
used to derive symmetry:
100
V
IOUT
_+ half-scale amperes –
V
IOUT(Q)
V
IOUT(Q)
V
IOUT
_–half-scale amperes
Ratiometry.
The device features a ratiometric output. This
means that the quiescent voltage output, V
IOUTQ
, and the mag-
netic sensitivity, Sens, are proportional to the supply voltage, V
CC
.
Allegro MicroSystems, Inc.
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
12