User Manual for SPARKLEIOT models including: 2BCLP-ESP-12F, 2BCLPESP12F, ESP-12F Ultra-low Power WiFi Module, Ultra-low Power WiFi Module, WiFi Module
Shenzhen Siinst Technology Co., Ltd ESP-12F 2BCLP-ESP-12F 2BCLPESP12F esp 12f
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DocumentDocumentSPARKLEIOT® User Mannual VER:V1.1 Sparkleiot Technology Co. LTD ESP-12F 2018 3 18 NUMXH0012FEN Features SOC features Built-in Tensilica L106 ultra-low power consumption 32-bit cpu, the main frequency can be 80MHz and 160MHz, also support RTOS; Built-in TCP/IP protocol stack; Built-in 1 channel 10-bit high precision ADC; Interfaces include HSPI, UART, I2C, I2S, IR Remote Control, PWM, GPIO; 20uA deep-sleep current, less than 5uA cut- off current; 2ms wake-up time; 1.0mW consume power (DTIM3 and standby state); Wi-Fi features Support 802.11 b/g/n/e/i Support three modes: Station, SoftAP, and SoftAP+STA; Support Wi-Fi Direct (P2P); Support hardware acceleration for CCMP (CBC-MAC, computation mode), TKIP (MIC, RC4), WAPI(SMS4), WEP(RC4), CRC; P2P detection, P2P GO mode/GC mode and P2P power management; WPA/PA2 PSK and WPS; Support 802.11 i security: pre-certification and TSN; Support 802.11n (2.4 GHz); 802.1h/RFC1042 frame encapsulation; Support seamless roam; Support AT remote upgrade and cloud OTA upgrade; Support SmartConfig function for Android and iOS device. Module Interface 2xUART 1xADC 1xEn 1xWakeup pin 1xHSPI 1xI2C 1xI2S 11xGPIOs 4M SPI Flash Working temperature-40-105 Module size16mm×24mm Applications Serial transparent transmission; WiFi prober; Smart power plug/Smart LED light; Mesh networks; Sensor networks; Wireless location recognition; Wireless location system beacon; Industrial wireless control. Module Type Name ESP-12F Antenna Type PCB Antenna Module Structure Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 DOIT.AM® Datasheet Page 2 Update Record Date 2017-3-14 2017-3-18 Version V1.0 V1.1 Update Initial version Add system design ESP-S SPARKLEIOT® Table of Contents 1. Introduction ....................................................................................................................... 1 2. Interface Definition ........................................................................................................... 3 3. Shape and Size................................................................................................................... 5 4. Electronical Characteristics............................................................................................... 7 5. Power Consumption .......................................................................................................... 7 6. Wi-Fi RF Characteristics................................................................................................... 8 8. Module Schematic ........................................................................................................... 10 9. Minimum User System.................................................................................................... 11 10. The Recommended PCB Design................................................................................... 11 11. Peripheral Design Suggestion ....................................................................................... 13 Sparkleiot of Intelligence & Technology (www.sparleiot.com) Copyright@2016-2021 SPARKLEIOT® User Mannual 1. Introduction The WiFi module ESP-12F is manufactured by using a high-performance chip named ESP8266. This small chip is encapsulated an enhanced Tensilica's L106 diamond series 32-bit kennel CPU with a SRAM. Thus, ESP8266 has the complete function Wi-Fi function; it can be applied independently, and also can be used as a slaver working with other host CPU. When ESP8266 is applied as a slaver, it can start from the onboard flash. The built-in high-speed buffer is not only benefit to improve the system performance, but optimize the store system. In addition, ESP-12F WiFi module can be used as Wi-Fi adapter by SPI/SDIO or I2C/UART interface, when it is applied to other MCU design. The ESP-12F WiFi module supports the standard IEEE802.11 b/g/n/e/i protocol and the complete TCP/IP protocol stack. User can use it to add the WiFi function for the installed devices, and also can be viewed as a independent network controller. Anyway, ESP-12F module provides many probabilities with the best price. Fig. 1.1 ESP-12F Module Structure Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 1 SPARKLEIOT® User Mannual Technical parameters for ESP-12F are listed as follows. Table 1.1 ESP-12F Parameters Types Wi-Fi Hardware Software Types Items Frequency Transmit power Receiver sensitivity Antenna CPU Interface Working voltage Working current Working temperature Environment temperature Shape Wi-Fi working mode Security mode Encryption type Update firmware Software develop Network protocol Parameters 2.4G~2.5G(2400M~2483.5M) 802.11b: +14 dBm 802.11g: +14 dBm 802.11n: +14 dBm 802.11b: -91 dbm (11Mbps) 802.11g: -75 dbm54Mbps 802.11n: -72 dbmMCS7 PCB antenna / U.F.L antenna Tensilica L106 32 bit MCU UART/SDIO/SPI/I2C/I2S/IR control GPIO/ADC/PWM/SPI/I2C/I2S 2.5V ~ 3.6V Average current: 80 mA,Peak current: >200mA -40°C ~105°C -40°C ~ 105°C 16*24*3mm Station/SoftAP/SoftAP+Station WPA/WPA2 WEP/TKIP/AES UART Download/OTA Non-RTOS/RTOS/Arduino IDE etc. IPv4, TCP/UDP/HTTP/FTP/MQTT Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 2 SPARKLEIOT® User Mannual 2. Interface Definition ESP-12F module interface definition is shown as below Fig. 2.1 ESP-12F Pin Definition Working mode and pin function is shown in Table 2.1. Table 2.1 Working mode Mode GPIO0 Level UART Download Mode Low Flash Boot Mode High GPIO2 Level High High Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 3 SPARKLEIOT® User Mannual Table 2.2 Pin Function Definition Num 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 Name RST ADC EN IO16 IO14 IO12 IO13 VCC CS0 MISO IO9 IO10 MOSI SCLK GND IO15 IO2 IO0 IO4 IO5 RXD TXD Type Function I Effective: Low level. Used to reset the module I A/D pin. Voltage Range: 0-1V. 10bit resolution I Effective: High level. Used to enable the module I/O GPIO16. Used to wake up the module I/O GPIO14; HSPI_CLK I/O GPIO12;HSPI_MISO I/O GPIO13;HSPI_MOSI; UART0_CTS P POWER3.3V I/O GPIO11; SD_CMD; SPI_CS0 I/O GPIO7; SD_D0, SPI_MSIO I/O GPIO9; SD_D2 PIHD; HSPIHD I/O GPIO10; SD_D3; SPIWP; HSPIWP1 I/O GPIO8; SD_D1; SPI_MOSI1 I/O GPIO6; SD_CLK; SPI_CLK P GND I/O GPIO15; MTDO;HSPICS;UART0_RTS I/O GPIO2; UART1_TXD I/O GPIO0; SPI_CS2 I/O GPIO4 I/O GPIO5 I/O GPIO3; UART Rxd I/O GPIO1; UART Txd Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 4 SPARKLEIOT® User Mannual 3. Shape and Size Shape and size for ESP-12F can be shown as follows.The Flash of ESP-12F is 32 Mbits4M Bytes. Fig.3.1 Shape for ESP-12F Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 5 SPARKLEIOT® User Mannual (a) Vertical View Length 16 mm Width 24 mm (b) Side View Fig. 3.1 Size for ESP-12F Table 3.1 Size for ESP-12F Height PAD Size (bottom) Distance between Pins 3 mm 0.9 mm x 1.7mm 2 mm Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 6 SPARKLEIOT® User Mannual 4. Electronical Characteristics Parameters Store Temperature Sold Temperature Working Voltage VIL/VIH I/O VOL/VOH IMAX Electrostatic release quantity (Human model) Table 4.1 Electronical Characteristics Condition Min Classical - -40 Normal IPC/JEDEC STD-020 J- - - - 2.5 3.3 - -0.3/0.75VIO - - N/0.8VIO - - - - TAMB=25 - - Electrostatic release quantity (Human model) TAMB=25 - - Max 125 260 3.6 0.25VIO/3.6 0.1VIO/N 12 2 0.5 Unite V I/O KV KV 5. Power Consumption Table 5.1 Power Consumption Parameters Min Classical Max Unit Tx802.11b, CCK 11Mbps, POUT=+17dBm - 170 - mA Tx802.11g, OFDM 54 Mbps, POUT =+15dBm - 140 - mA Tx802.11n,MCS7,POUT =+13dBm - 120 - mA Rx 802.11b1024 Bytes, -80dBm - 50 - mA Rx 802.11g1024 Bytes, -70dBm Rx 802.11n1024 Bytes, -65dBm Modem-sleep Light-sleep Deep-sleep - 56 - mA - 56 - mA - 15 - mA - 0.9 - mA - 20 - A Note : Modem-Sleep mode can be used for the case that CPU is always working, e.g., PWM or I2S etc. If WiFi is connected and no data is to transmitted, in this case, WiFi modem can be closed to save power energy. For example, if at DTIM3 status, keep asleep at 300ms, Then, the module can wake up to receive the Beacon package within 3ms and the current being 15mA. : Light-Sleep mode can used for the case that CUP can stop the application temporally, e.g., Wi-Fi Switch . If Wi-Fi is connected and there is no data packet to transmitted, by the 802.11 standard (e.g., UAPSD), module can close Wi-Fi Modem and stop CPU to save power. For example, at DTIM3, keep up Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 7 SPARKLEIOT® User Mannual sleeping at 300ms, it would receive the Beacon package from AP after each 3ms, then the whole average current is about 0.9mA. Deep-Sleep mode is applied to the case that Wi-Fi is not necessary to connect all the time, just send a data packet after a long time (e.g., transmit one temperate data each 100s) . it just need 0.3s-1s to connect AP after each 300s, and the whole average current is much smaller 1mA. 6. Wi-Fi RF Characteristics The data in the following Table is gotten when voltage is 3.3V and 1.1V in the indoor temperature environment. Parameters Input frequencey Input impedance Input reflection Table 6.1 Wi-Fi RF Characteristics Min Classical Max 2412 - 2484 - 50 - - - -10 At 72.2Mbps, output power consumption for PA 15.5 16.5 17.5 Unite MHz dB dBm At 11b mode, output power consumption for PA 19.5 20.5 21.5 dBm Sensibility DSSS, 1Mbps CCK11, Mbps 6Mbps(1/2 BPSK) 54Mbps(3/4 64-QAM) HT20, MCS7(65 Mbps, 72.2 Mbps) Adjacent Inhibition OFDM, 6Mbps OFDM, 54Mbps HT20, MCS0 HT20, MCS7 - - - - - -98 - dBm - -91 - dBm - -93 - dBm - -75 - dBm - -72 - dBm - 37 - dB - 21 - dB - 37 - dB - 20 - dB Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 8 SPARKLEIOT® User Mannual 7. The Recommended Sold Temperature Curve 7. 1 Temperature Curve when sold Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 9 SPARKLEIOT® 8. Module Schematic User Mannual Fig. 8. 1 Module Schematic Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 10 SPARKLEIOT® User Mannual 9. Minimum User System This module can work just at 3.3V working voltage: Fig.9.1 minimum system Note (1) the working voltage for module is DC 3.3V; (2) the max current from IO of this module is 12mA; (3) RST Pin is enabled when it is low level; and EN pin is enabled when it is high level; (4) WiFi module is at update mode: GPIO0 is low level, then module reset to power; Wi-Fi module is at working mode: GPIO0 is at high level, and then reset to power; (5) Wi-Fi module is connected to RXD of the other MCU, and TXD is connected to RXD of the other MCU. 10. The Recommended PCB Design (Take XH-C3F as an example) ESP-12F Wi-Fi module can be sold on PCB board directly. For the high RF performance for the device, please notice the placement of the module. There are three ways to use the module. Solution 1:optical solution. The WiFi module is placed on the side of the board, and the antennas are all exposed, and there is no metal material around the antenna, including wires, metal casings, weight plates, and the like. Solution 2:suboptical solution. The WiFi module is placed on the side of the board, and the antenna below is hollowed out. There is a gap of not less than 5 mm reserved with the PCB, and there is no metal material around the antenna, including wires, metal casings, weight plates, and the like. Solution 3: The WiFi module is placed on the side of the board, and the PCB area under the antenna is empty, and copper cannot be laid. Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 11 SPARKLEIOT® User Mannual Fig.10.1 Solution 1 Fig.10.2 Solution 2 Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 12 SPARKLEIOT® User Mannual Fig.10.3 Solution 3 11. Peripheral Design Suggestion Wi-Fi module is already integrated into high-speed GPIO and Peripheral interface, which may be generated the switch noise. If there is a high request for the power consumption and EMI characteristics, it is suggested to connect a serial 10~100 ohm resistance, which can suppress overshoot when switching power supply, and can smooth signal. At the same time, it also can prevent electrostatic discharge (ESD). Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 13 SPARKLEIOT® User Mannual Disclaimer and Copyright Notice The information in this article, including the URL for reference, if there is any change, without prior notice. Documents are provided by the current version without any guarantee responsibility, including merchantability, suitable for any particular purpose or non-infringement guarantees, and any guarantees presented by any proposal, specification, or sample mentioned elsewhere. This document has no any responsibility, including the use of the information within this document produced by the infringement of any patent rights. This document in this, by estoppel or otherwise, grant any intellectual property licensing, whether express or implied license. The Wi-Fi alliance marks shall be owned by the Wi-Fi alliance. All the mentioned brand names, trademarks and registered trademarks presented in this document are the property of their respective owners, and hereby declare. Shenzhen Sparkleiot Technology Co., Ltd. is a national-level high-tech and innovative technology enterprise, focusing on R&D, production and sales of smart home and IOT products. The company was established in 2014. At the beginning of its establishment, it was adhering to the concept of "science and technology change lives, and products enter thousands of households". After just a few years, the company has continuously launched the market's cost-effective 2.4G WiFi module, 2.4G WiFi module,.4GWiFi module, and quickly won unanimous praise in the market. In 2018, the company established a smart home department, focusing on the smart electrical lighting industry. The company's products are exported to the Americas, Europe and other regions, and continue to receive praise from customers. Sparkleiot of Intelligence & Technology (www.sparkleiot.com) Copyright@2016-2021 Page 14 FCC Statement This device complies with part 15 of the FCC rules. Operation is subject to the following two conditions: (1) this device may not cause harmful interference, and (2) this device must accept any interference received, including interference that may cause undesired operation. Changes or modifications not expressly approved by the party responsible for compliance could void the user' s authority to operate the equipment. NOTE: This equipment has been tested and found to comply with the limits for a Class B digital device, pursuant to part 15 of the FCC Rules. These limits are designed to provide reasonable protection against harmful interference in a residential installation. This equipment generates uses and can radiate radio frequency energy and, if not installed and used in accordance with the instructions, may cause harmful interference to radio communications. However, there is no guarantee that interference will not occur in a particular installation. If this equipment does cause harmful interference to radio or television reception, which can be determined by turning the equipment off and on, the user is encouraged to try to correct the interference by one or more of the following measures: - Reorient or relocate the receivingantenna. - Increase the separation between the equipment and receiver. -Connect the equipment into an outlet on a circuit different from that to which the receiver is connected. -Consult the dealer or an experienced radio/TV technician for help important announcement Important Note: Radiation Exposure Statement This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator and your body. This transmitter must not be co-located or operating in conjunction with any other antenna or transmitter. Country Code selection feature to be disabled for products marketed to the US/Canada. This device is intended only for OEM integrators under the following conditions: 1. The antenna must be installed such that 20 cm is maintained between the antenna and users, and 2. The transmitter module may not be co-located with any other transmitter or antenna, 3. For all products market in US, OEM has to limit the operation channels in CH1 to CH11 for 2.4G band by supplied firmware programming tool. OEM shall not supply any tool or info to the end-user regarding to Regulatory Domain change. (if modular only test Channel 1-11) As long as the three conditions above are met, further transmitter testing will not be required. However, the OEM integrator is still responsible for testing their end-product for any additional compliance requirements required with this module installed. Important Note: In the event that these conditions cannot be met (for example certain laptop configurations or co-location with another transmitter), then the FCC authorization is no longer considered valid and the FCC ID cannot be used on the final product. In these circumstances, the OEM integrator will be responsible for re-evaluating the end product (including the transmitter) and obtaining a separate FCC authorization. End Product Labeling The final end product must be labeled in a visible area with the following" Contains FCC ID: 2BCLP-ESP-12F" Manual Information to the End User The OEM integrator has to be aware not to provide information to the end user regarding how to install or remove this RF module in the user's manual of the end product which integrates this module. The end user manual shall include all required regulatory information/warning as show in this manual. Integration instructions for host product manufacturers according to KDB 996369 D03 OEM Manual v01 2.2 List of applicable FCC rules CFR 47 FCC PART 15 SUBPART C has been investigated. It is applicable to the modular transmitter 2.3 Specific operational use conditions This module is stand-alone modular. If the end product will involve the Multiple simultaneously transmitting condition or different operational conditions for a stand-alone modular transmitter in a host, host manufacturer have to consult with module manufacturer for the installation method in end system. 2.4 Limited module procedures Not applicable 2.5 Trace antenna designs Not applicable 2.6 RF exposure considerations This equipment complies with FCC radiation exposure limits set forth for an uncontrolled environment. This equipment should be installed and operated with minimum distance 20cm between the radiator & your body. 2.7 Antennas This radio transmitter FCC ID:2BCLP-ESP-12F has been approved by Federal Communications Commission to operate with the antenna types listed below, with the maximum permissible gain indicated. Antenna types not included in this list that have a gain greater than the maximum gain indicated for any type listed are strictly prohibited for use with this device. Antenna No. 2.4GWiFi Model No. of antenna: / Type of antenna: PCB Antenna Gain of the antenna Frequency (Max.) range: 0.8dBi for 2412-2462MHz; 2.8 Label and compliance information The final end product must be labeled in a visible area with the following" Contains FCC ID:2BCLP-ESP-12F". 2.9 Information on test modes and additional testing requirements Host manufacturer is strongly recommended to confirm compliance with FCC requirements for the transmitter when the module is installed in the host. 2.10 Additional testing, Part 15 Subpart B disclaimer Host manufacturer is responsible for compliance of the host system with module installed with all other applicable requirements for the system such as Part 15 B.