Adc - Espressif Systems ESP32 Series Hardware Design Manuallines

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2. Schematic Checklist and PCB Layout Design
Notice:
• Please note the requirements for the 32.768 KHz crystal.
– Equivalent series resistance (ESR) ⩽ 70 KΩ.
– Load capacitance at both ends should be configured according to the crystal's specification.
• The parallel resistor R4 is used for biasing the crystal circuit (5 MΩ < R4 ⩽ 10 MΩ).
• If the RTC source is not required, then pin12 (32K_XP) and pin13 (32K_XN) can be used as GPIOs.
Figure
7
shows the schematic of the external signal.
The value of C1 should be larger than 200 pF. The signal should meet the following requirements:
32K_XN input
Sine wave or square wave
2.1.5 RF
The output impedance of the RF pins of ESP32 (QFN 6*6) and ESP32 (QFN 5*5) are (30+j10) Ω and (35+j10) Ω,
respectively. A π-type matching network is essential for antenna matching in the circuit design. CLC structure is
recommended for the matching network.
ANT1
1
2
PCB ANT
GND
Note:
The parameters of the components in the matching network are subject to the actual antenna and PCB layout.

2.1.6 ADC

It is recommended that users add a 0.1 µF filter capacitor to a pad when using the ADC function.
• Pins SENSOR_VP or SENSOR_VN will trigger an input glitch lasting for 80 ns once SARADC1, or SARADC2,
or Hall sensor is initialized.
Espressif Systems
32K_XN
32 768 kHz signal
32K_XP
C1
Figure 7: Schematic of External Oscillator
L4
TBD
C15
C14
TBD
TBD
GND
GND
Figure 8: ESP32 RF Matching Schematics
ESP32
Amplitude (Vpp, unit: V)
0.6 < Vpp < VDD
C16
SENSOR_VP
270pF(NC)
SENSOR_VN
270pF(NC)
CHIP_PU
C17
GPIO34
10
GPIO35
11
12
GPIO32
7
ESP32 Hardware Design Guidelines V2.7
1
VDDA
2
LNA_IN
3
VDD3P3
4
VDD3P3
5
SENSOR_VP
6
SENSOR_CAPP
7
SENSOR_CAPN
8
SENSOR_VN
9
CHIP_PU
VDET_1
VDET_2

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