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Q32M210 Datasheet, PDF (20/50 Pages) ON Semiconductor – Precision Mixed-Signal 32-bit Microcontroller SPI/SQI interface.
Q32M210
ELECTRICAL CHARACTERISTICS
Test Conditions
Typical Values
Unless otherwise noted, Typ values specify the typical
values based on design and characterization data under
normal operating conditions. Normal operating conditions
include a supply voltage (VBAT and VBATA) of 3.3 V and
an operating temperature of 25°C. For specific blocks the
details of the normal operation conditions are described in
their respective sections.
Minimum and Maximum Values
Unless otherwise noted, for range parameters, Min and
Max values specify the designed range or measurement
range and are guaranteed by design and/or characterization.
Range parameters include the term “Range” in their name.
For non−range parameters, the Min and Max values
specified may be based on factory production test limits,
design, or characterization data. Production test limits are
specified for typical temperature and supply voltage only.
Temperature Range
A • in the Conditions field for any parameter denotes
characterized over the complete operating temperature
range. The Typ values listed for those parameters are
guaranteed by design and/or characterization over the
complete range. If present, the Min and Max values for •
parameters may be based on factory production test limits,
design, or characterization data.
For more information related to the performance of the
device across the operating temperature range refer to the
Typical Operating Conditions plots.
Normal Operating Conditions
Unless otherwise noted, normal operating conditions
indicate an ambient temperature Ta = 25°C and a supply
voltage VBAT = VBATA = 3.3 V. VDDD, VADC, VREF,
and the Internal Oscillator are calibrated to their preset
factory calibration settings and correspond to their
respective Typ values. VDDIO0 and VDDIO1 are powered
externally from the VDDD Digital Supply Regulator. No
external loads are applied to digital I/O or analog pins. The
power supply for normal operating conditions is shown in
Figure 3.
VDDD
CVDDD
VREF
CVREF
VADC
CVADC
VDDD
Regulator
VREF
Precision Reference
VADC
Regulator
VDDIO0
4
VDDIO1
4
IREF
RIREF
VDDUSB
CVBAT
VBAT
VBATA
IBAT
+ 3.3 V
− VSS
RTCXTAL0
RTC
Sensor
Interface,
IF5
USBXTAL0
+ 3.3 V
−
USB_XTAL
USBXTAL1
RTCXTAL1
RTC_XTAL
Figure 3. Normal Operating Condition Configuration
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