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Ebye Dual band WiFi serial port module with high-performance work in 2.4G and 5g frequency bands

[IC]:CC3235S

[Frequency]:2.4GHz/5GHz

[Power]:18dBm

[WiFi version]:802.11a/b/g/n

[Size]:20.5*17.5mm

[Introduction]:E103-W06 is a high-performance, highly reliable dual-band WIFI module launched by Chengdu Ebyte based on TI’s third-generation WIFI chip CC3235S. It has a built-in high-performance ARM Cortex-M4 processor and the maximum wireless transmit power can reach +18dBm.

Pin Definition
No. Name Type Correspon ding to the pin number of CC3235S Pin application
1 GND - - Ground wire, connected to the power reference ground
2 GND - - Ground wire, connected to the power reference ground
3 INDICATE - 1 Abnormal indication, abnormal: high, normal: low. (GPIO10 of CC3235)
4 S_LINK - 2 Socket connection indication, connect: high, disconnect: low. (GPIO11 of CC3235)
5 GPIO14 I/O 5 General IO port
6 GPIO15 I/O 6 General IO port
7 GPIO16 I/O 7 General IO port
8 GPIO17 I/O 8 General IO port
9 GPIO12 I/O 3 General IO port
10 GPIO13 I/O 4 WAKEUP wake-up pin
11 GPIO22 I/O 15 General IO port
12 JTAG_TDI I/O 16 JTAG emulation pin, JTAG TDI input; if not used, don’t connect
13 FLASH_SPI_MISO I - External serial FLASH programming interface: SPI data input
14 FLASH_SPI_nCS_IN I - External serial FLASH programming interface: SPI chip selection (active low)
15 FLASH_SPI_CLK I - External serial FLASH programming interface: SPI clock
16 GND - - Ground wire, connected to the power reference ground
17 FLASH_SPI_MOSI O - External serial FLASH programming interface: SPI data output
18 JTAG_TDO I/O 17 JTAG emulation pin, JTAG TDO output; if not used, don’t connect
19 GPIO28 I/O 18 General IO port
20 NC I/O - No pins connected, users don’t need to care
21 JTAG_TCK I/O 19 JTAG emulation pin, JTAG TCK input; if not used, no connection is required; the module has a built-in 100K pull-down resistor.
22 JTAG_TMS I/O 20 JTAG emulation pin, JTAG TMS input; don’t connect if not used.
23 SOP2 - 21 The SOP2 pin has a built-in 100K pull-down resistor; when in use, an external pull-up resistor 10K is required to pull the pin level high.
24 SOP1 - 34 The SOP1 pin has a built-in 100K pull-down resistor; when in use, an external pull-up resistor 10K is required to pull the pin level high
25 GND - - Ground wire, connected to the power reference ground
26 GND - - Ground wire, connected to the power reference ground
27 GND - - Ground wire, connected to the power reference ground
28 GND - - Ground wire, connected to the power reference ground
29 GND - - Ground wire, connected to the power reference ground
30 GND - - Ground wire, connected to the power reference ground
31 RF_ABG I/O 31 2.4G/5G RF input and output
32 GND - - Ground wire, connected to the power reference ground
33 NC - - No pins connected, users don’t need to care
34 SOP0 - 35 The SOP0 pin has a built-in 100K pull-down resistor; when in use, an external pull-up resistor 10K is required to pull the pin level high.
35 nRESET I 32 35rd and 36rd,the same
36 VBAT_RESET - - The nRESET pin has a built-in 100K pull-up resistor to the VBAT_RESET pin. Note: VBAT_RESET is not connected to VBAT1 or VBAT2 inside the module.The following connection methods are recommended:1.Only when nRESET will be in a defined state under all operating conditions, connect nRESET to a switch, external controller, or host.Keep VBAT_RESET unconnected at this time to save power.2.If nRESET cannot be in a defined state under all operating conditions,VBAT RESET must be connected to the main power supply (VBAT1 and VBAT2) of the module. Due to the internal pull-up resistor, the leakage current is expected to be (3.3 V/ 100 kΩ) mA.
37 VBAT1 Power 37,39 The module power supply is positive reference, the voltage range is 2.3 V to 3.6 V. Note: The module is not internally connected to VBAT2, so it needs to be short-connected to Pin 40 VBAT2 when in use; see the recommended connection diagram in Chapter 4 for details.
38 GND - - Ground wire, connected to the power reference ground
39 NC - - No pins connected, users don’t need to care
40 VBAT2 Power 10,44,54 The module power supply is positive reference, the voltage range is 2.3 V to 3.6 V. Note: The module is not internally connected to VBAT1, so it needs to be short-connected to Pin 37 VBAT1 when in use; see the recommended connection diagram in Chapter 4 for details.
41 NC - - No pins connected, users don’t need to care
42 GPIO30 I/O 53 General IO port
43 GND - - Ground wire, connected to the power reference ground
44 GPIO0 I/O 50 General IO port
45 NC - - No pins connected, users don’t need to care
46 TXD - 55 TTL serial port output, connected to the external RXD input pin (GPIO1 of CC3235)
47 RXD - 57 TTL serial port input, connected to the external TXD output pin (GPIO2 of CC3235)
48 GPIO3 I/O 58 General IO port
49 GPIO4 I/O 59 General IO port
50 GPIO5 I/O 60 General IO port
51 GPIO6 I/O 61 General IO port
52 GPIO7 I/O 62 General IO port
53 GPIO8 I/O 63 General IO port
54 W_LINK - 64 Wi-Fi connection indication, connect: high, disconnect: low. (GPIO9 of CC3235)
55 GND - - Ground wire, connected to the power reference ground
56 GND - - Ground wire, connected to the power reference ground
57 GND - - Ground wire, connected to the power reference ground
58 GND - - Ground wire, connected to the power reference ground
59 GND - - Ground wire, connected to the power reference ground
60 GND - - Ground wire, connected to the power reference ground
61 GND - - Ground wire, connected to the power reference ground
62 GND - - Ground wire, connected to the power reference ground
63 GND - - Ground wire, connected to the power reference ground