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24.3.1.6 I/O Pin Considerations
The maximum usable analog signal that can be applied to external opamp inputs (or seen on external opamp outputs) depends on
several factors: whether the signal is routed through the APORT, whether High Linearity mode is used, whether overvoltage is enabled,
and on the IOVDD/AVDD supply voltages, as shown in the
Table 24.3 Maximum Usable IO Voltage on page 801
table.
Table 24.3. Maximum Usable IO Voltage
Opamp Pin
Maximum IO Voltage (APORT
USED and OVT Enabled/
Disabled)
Maximum IO Voltage (APORT
UNUSED, OVT Enabled)
Maximum IO Voltage (APORT UN-
USED, OVT Disabled)
Opamp Inputs - Normal
Mode
MIN(AVDD, IOVDD)
MIN(AVDD, IOVDD)
MIN(AVDD, IOVDD)
Opamp Outputs
MIN(AVDD, IOVDD)
MIN(AVDD, IOVDD + 2 V)
MIN(AVDD, IOVDD)
24.3.1.7 Input Configuration
The inputs to the opamps are controlled through a set of input muxes. The mux connected to the positive input is configured by the
POSSEL bit-field in the VDACn_OPAx_MUX register. Similarly, the mux connected to the negative input is configured by setting the
NEGSEL bit-field in VDACn_OPAx_MUX. The input into the resistor ladder can be configured by setting the RESINMUX bit-field in
VDACn_OPAx_MUX.
24.3.1.8 Output Configuration
Each opamp has three outputs: the main output, an alternative output network with lower drive strength, and an APORT output with low
drive strength. These three outputs can be configured as shown in
Figure 24.3 Opamp Output Stage Overview on page 802
. The
main output can be used to drive the main output by setting MAINOUTEN in VDACn_OPAx_OUT. The alternative output can drive the
alternative output network by setting ALTOUTEN in VDACn_OPAx_OUT. The APORT output can drive the APORT selection mux by
setting APORTOUTEN in VDACn_OPAx_OUT.
Reference Manual
OPAMP - Operational Amplifier
silabs.com
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