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PDF AD8417 Data sheet ( Hoja de datos )

Número de pieza AD8417
Descripción Current Sense Amplifier
Fabricantes Analog Devices 
Logotipo Analog Devices Logotipo



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Data Sheet
Bidirectional, Zero Drift,
Current Sense Amplifier
AD8417
FEATURES
Typical 0.1 µV/°C offset drift
Maximum ±400 µV voltage offset over full temperature range
2.7 V to 5.5 V power supply operating range
Electromagnetic interference (EMI) filters Included
High common-mode input voltage range
−2 V to +70 V continuous
−4 V to +85 V survival
Initial gain = 60 V/V
Wide operating temperature range: −40°C to +125°C
Bidirectional operation
Available in 8-lead SOIC and 8-lead MSOP
Common-mode rejection ratio (CMRR): 86 dB, dc to 10 kHz
Qualified for automotive applications
APPLICATIONS
High-side current sensing in
Motor controls
Solenoid controls
Power management
Low-side current sensing
Diagnostic protection
GENERAL DESCRIPTION
The AD8417 is a high voltage, high resolution current shunt
amplifier. It features an initial gain of 60 V/V, with a maximum
±0.3% gain error over the entire temperature range. The
buffered output voltage directly interfaces with any typical
converter. The AD8417 offers excellent input common-mode
rejection from −2 V to +70 V. The AD8417 performs bidirectional
current measurements across a shunt resistor in a variety of
automotive and industrial applications, including motor control,
power management, and solenoid control.
The AD8417 offers breakthrough performance throughout the
−40°C to +125°C temperature range. It features a zero drift core,
which leads to a typical offset drift of 0.1 µV/°C throughout the
operating temperature range and the common-mode voltage
range. The AD8417 is qualified for automotive applications. The
device includes EMI filters and patented circuitry to enable
output accuracy with pulse-width modulation (PWM) type
input common-mode voltages. The typical input offset voltage
is ±200 µV. The AD8417 is offered in 8-lead MSOP and SOIC
packages.
Table 1. Related Devices
Part No. Description
AD8205 Current sense amplifier, gain = 50
AD8206 Current sense amplifier, gain = 20
AD8207 High accuracy current sense amplifier, gain = 20
AD8210 High speed current sense amplifier, gain = 20
AD8418A High accuracy current sense amplifier, gain = 20
70V
VCM
0V
50A
ISHUNT
–50A
VCM = –2V TO +70V
FUNCTIONAL BLOCK DIAGRAM
VS = 2.7V TO 5.5V
VS VREF1
ISHUNT
+IN
RSHUNT
–IN
EMI
FILTER
EMI
FILTER
+
G = 60
AD8417
OUT
VS
VS/2
GND
VREF2
Figure 1.
0V
VOUT
Rev. 0
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responsibilityisassumedbyAnalogDevices for itsuse,nor foranyinfringementsofpatentsor other
rights of third parties that may result from its use. Specifications subject to change without notice. No
license is granted by implication or otherwise under any patent or patent rights of Analog Devices.
Trademarksandregisteredtrademarksarethepropertyoftheirrespectiveowners.
One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A.
Tel: 781.329.4700
©2013 Analog Devices, Inc. All rights reserved.
Technical Support
www.analog.com
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AD8417 pdf
Data Sheet
PIN CONFIGURATION AND FUNCTION DESCRIPTIONS
AD8417
Table 4. Pin Function Descriptions
Pin No.
Mnemonic
1 −IN
2 GND
3 VREF2
4 NC
5 OUT
6 VS
7 VREF1
8 +IN
–IN 1
GND 2
VREF2 3
NC 4
AD8417
TOP VIEW
(Not to Scale)
8 +IN
7 VREF1
6 VS
5 OUT
NC = NO CONNECT. DO NOT
CONNECT TO THIS PIN.
Figure 2. Pin Configuration
Description
Negative Input.
Ground.
Reference Input 2.
No Connect. Do not connect to this pin.
Output.
Supply.
Reference Input 1.
Positive Input.
Rev. 0 | Page 5 of 16
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AD8417 arduino
Data Sheet
OUTPUT OFFSET ADJUSTMENT
The output of the AD8417 can be adjusted for unidirectional or
bidirectional operation.
UNIDIRECTIONAL OPERATION
Unidirectional operation allows the AD8417 to measure currents
through a resistive shunt in one direction. The basic modes for
unidirectional operation are ground referenced output mode
and VS referenced output mode.
For unidirectional operation, the output can be set at the negative
rail (near ground) or at the positive rail (near VS) when the
differential input is 0 V. The output moves to the opposite rail
when a correct polarity differential input voltage is applied. The
required polarity of the differential input depends on the output
voltage setting. If the output is set at the positive rail, the input
polarity must be negative to decrease the output. If the output is
set at ground, the polarity must be positive to increase the output.
Ground Referenced Output Mode
When using the AD8417 in ground referenced output mode, both
referenced inputs are tied to ground, which causes the output to sit
at the negative rail when there are zero differential volts at the input
(see Figure 27).
VS
AD8417
R4
R1
–IN –
+IN +
R2
R3
OUT
VREF1
VREF2
GND
Figure 27. Ground Referenced Output
AD8417
VS Referenced Output Mode
VS referenced output mode is set when both reference pins are tied
to the positive supply. It is typically used when the diagnostic
scheme requires detection of the amplifier and the wiring before
power is applied to the load (see Figure 28).
VS
AD8417
R4
R1
–IN –
+IN +
R2
R3
OUT
VREF1
VREF2
GND
Figure 28. VS Referenced Output
BIDIRECTIONAL OPERATION
Bidirectional operation allows the AD8417 to measure currents
through a resistive shunt in two directions.
In this case, the output is set anywhere within the output range.
Typically, it is set at half-scale for equal range in both directions.
In some cases, however, it is set at a voltage other than half scale
when the bidirectional current is nonsymmetrical.
Adjusting the output is accomplished by applying voltage(s) to
the referenced inputs. VREF1 and VREF2 are tied to internal
resistors that connect to an internal offset node. There is no
operational difference between the pins.
Rev. 0 | Page 11 of 16
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