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SLWSTK6000A Datasheet, PDF (14/80 Pages) Silicon Laboratories – ConfidentialMighty Gecko Wireless SoC EFR32MG1X232
EFR32MG1X232 Data Sheet
Electrical Characteristics
4. Electrical Characteristics
Confidential 4.1 TestConditions
4.1.1 Typical Values
Typical values are based on TAMB=25 °C and VDD=3.3 V, as defined in 4.3.1 General Operating Conditions, by production test and/or
technology characterization unless otherwise specified.
Radio performance numbers are measured in conducted mode, based on Silicon Labs reference designs using output power-specific
external RF impedance-matching networks, further identified in Section 5. Application Circuits, for interfacing to a 50 Ω antenna.
4.1.2 Minimum and Maximum Values
Minimum and maximum values represent the worst conditions of ambient temperature, supply voltage and frequencies, as defined in
4.3.1 General Operating Conditions.
4.2 Absolute Maximum Ratings
The absolute maximum ratings are stress ratings, and functional operation under such conditions is not guaranteed. Stress beyond the
limits specified in may affect the device reliability or cause permanent damage to the device. Functional operating conditions are given
in 4.3.1 General Operating Conditions.
Table 4.1. Absolute Maximum Ratings
Parameter
Symbol
Storage temperature range TSTG
External main supply voltage VDDMAX
External main supply voltage VDDRAMPMAX
ramp rate
Voltage on any 5V tolerant
GPIO pin1
VDIGPIN
Voltage on non-5V tolerant
GPIO pins
Voltage on HFXO pins
VHFXOPIN
Voltage on RF pins
2G4RF_IOP and
2G4RF_ION
VMAX2G4
Total current into VSS ground IVSSMAX
lines (sink)
Current per I/O pin (sink)
Current per I/O pin (source)
IIOMAX
Current for all I/O pins (sink) IIOALLMAX
Test Condition
Min
-50
0
-
-0.3
-0.3
-0.3
TBD
-
-
-
-
Typ
Max
Unit
-
150
°C
-
3.8
V
-
1
V / µs
-
Min of 5.25 V
and IOVDD
+2
-
IOVDD+0.3 V
-
1.4
V
-
TBD
V
-
TBD
mA
-
50
mA
-
50
mA
-
TBD
mA
Current for all I/O pins
-
-
TBD
mA
(source)
Voltage difference between ΔVDD
AVDD and VREGVDD
-
-
0.3
V
Note:
1. When a GPIO pin is routed to the analog module through the APORT, the maximum voltage = IOVDD.
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