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AS5043TR Datasheet(PDF) 13 Page - ams AG

Part No. AS5043TR
Description  PROGRAMMABLE 360째 MAGNETIC ANGLE ENCODER WITH ABSOLUTE SSI AND ANALOG OUTPUTS
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Manufacturer  AMSCO [ams AG]
Direct Link  http://www.ams.com
Logo AMSCO - ams AG

AS5043TR Datasheet(HTML) 13 Page - ams AG

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AS5043 Programmable 360° Magnetic Angle Encoder
Revision 1.4, 04-Apr-06
www.austriamicrosystems.com
Page 13 of 26
12.3 Digital-to-Analog Converter (DAC)
The DAC has a resolution of 10bit (1024 steps) and can
be configured for the following options
Internal or external reference
The default DAC reference is the voltage at pin #16
(VDD5V) divided by 2 (see Figure 14). Using this
reference, a system that has an output voltage
ratiometric to the supply voltage can be built.
Optionally, an external reference source, applied at pin#9
(DACref) can be used. This programming option is useful
for applications requiring a precise output voltage that is
independent of supply fluctuations, for current sink
outputs or for applications with a dynamic reference, e.g.
attenuation of audio signals.
0-100% or 10-90% full scale range
The reference voltage for the DAC is buffered internally.
The recommended range for the external reference
voltage is 0.2V to (VDD3V3 -0.2)V.
The DAC output voltage will be switched to 0V, when the
magnetic field is out of range, when the MagInc and
MagDec indicators are both =1 and the MagRngn-pin (#1)
will go low.
The default full scale output voltage range is 0-
100%*VDD5V. Due to limitations in the output stage of
an OP-Amp buffer, it cannot drive the output voltage from
0-100% rail-to-rail. Without load, the minimum output
voltage at 0° will be a few millivolts higher than 0V and
the maximum output voltage will be slightly lower than
VDD5V . With increasing load, the voltage drops will
increase accordingly.
As a programming option, an output range of 10-
90%*VDD5V can be selected. In this mode, there is no
saturation at the upper and lower output voltage limits
like in the 0-100% mode and it allows failure detection as
the output voltage will be outside the 10-90% limits,
when the magnetic field is in the “red” range (Vout=0V,
see Table 3) or when the supply to the chip is interrupted
(Vout=0V or VDD5V).
The unbuffered output of the DAC is accessible at pin
#10 (DACout). This output must not be loaded.
12.4 OP-AMP stage
The DAC output is buffered by a non-inverting Op-Amp
stage. The amplifier is supplied by VDD5V (pin #16) and
can hence provide output voltages up to 5V.
By allowing access to the inverting input of the Op-Amp
and with the addition of a few discrete components it can
be configured in many ways, like high current buffer,
current sink output, adjustable angle range, etc...
Per default, the gain of the Op-Amp must be set by two
external resistors (see Figure 14). Optionally, the fixed
internal gain setting (2x) may be programmed by OTP,
eliminating the need for external resistors.
12.4.1 Output Noise
The Noise level at the analog output depends on two
states of the digital angular output:
a)
the digital angular output value is stable
In this case, the output noise is the figure given
as Vnoise in paragraph 19.3.6. Note that the
noise level is given for the default gain of 2x
For other gains, it must be scaled accordingly.
b)
the digital output is at the edge of a step
In this case, the digital output may jitter
between two adjacent values. The rate of jitter
is specified as transition noise (parameter TN
in paragraph 19.5). The resulting output noise
is calculated by:
OPAMP
noise
Vout
noise
V
V
VDD
TN
V
,
,
360
5
+
=
where:
Vnoise, Vout
= noise level at pin Vout in Vrms
TN
= transition noise (see 19.5 in °rms)
VDD5V
= Supply voltage VDD5V in V
Vnoise,OPAMP
= noise level of OPAMP
(paragraph 19.3.6) in Vrms
12.5 Application Examples
See Application Note AN5043-10 for AS5043 Application
Examples.


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