LBES5PL2EL-923 MURATA | Alldatasheet

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+ Bluetooth + 802.15.4 Tri-Radio Module NXP IW612 Chipset for 802.11a/b/g/n/ac/ax + Bluetooth 5.3 + IEEE 802.15.4 Datasheet - Rev. K ▪ Design Name: Type 2EL ▪ P/N: LBES5PL2EL-923

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Table of Contents

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet About This Document Murata’s Type 2EL is a small and very high-performance module based on NXP IW612 combo datasheet describes Type 2EL module in detail. Please be aware that an important notice concerning availability, standard warranty and use in critical applications of Murata products and disclaimers thereto appears at the end of this specification sheet. Audience & Purpose Intended audience includes any customer looking to integrate this module into their product. In particular RF, hardware, software, and systems engineers. Document Conventions Table 1 describes the document conventions. Table 1: Document Conventions Conventions Description Warning Note Indicates very important note. Users are strongly recommended to review. Info Note Intended for informational purposes. Users should review. Menu Reference Indicates menu navigation instructions. Example: Insert➔Tables➔Quick Tables➔Save Selection to Gallery External Hyperlink This symbol indicates a hyperlink to an external document or website. Example: Embedded Artists AB Click on the text to open the external link. Internal Hyperlink This symbol indicates a hyperlink within the document. Example: Scope Click on the text to open the link. Console input/output or code snippet Console I/O or Code Snippet This text Style denotes console input/output or a code snippet. # Console I/O comment // Code snippet comment Console I/O or Code Snippet Comment This text Style denotes a console input/output or code snippet comment.

  • Console I/O comment (preceded by “#”) is for informational purposes only and does not denote actual console input/output.
  • Code Snippet comment (preceded by “//”) may exist in the original code.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

1 Scope

This specification characterizes the IEEE 802.11 a/b/g/n/ac/ax + Bluetooth 5.3 BR/EDR/LE + 802.15.4 tri-radio solution combo module.

2 Key Features

Supports IEEE 802.11a/b/g/n/ac/ax specification: Dual band 2.4 GHz and 5 GHz Wi-Fi 6 SISO with 20 MHz, 40 MHz, and 80 MHz channels Up to MCS11 data rates (601 Mbps) Supports Bluetooth specification version 5.3 Supports IEEE 802.15.4 WLAN interface: SDIO 3.0 Bluetooth interface: HCI UART and PCM 802.15.4 interface: SPI Temperature Range: -40 °C to 85 °C Dimensions: 8.8 x 7.7 x 1.3 mm Weight: 0.22 g MSL: 3 Surface-mount type RoHS compliant

3 Ordering Information

Table 2 describes the ordering information. Table 2: Ordering Information Ordering Part Number Description LBES5PL2EL-923 Module order LBES5PL2EL-SMP Sample module order (If module samples are not available through distribution, contact Murata referencing this part number) EAR00409 Embedded Artists Type 2EL M.2 EVB (default EVB available through distribution) LBES5PL2EL-EVB Murata Type 2EL M.2 EVB (contact Murata as this is special order item) “Type 2EL” is design name of this module. Design name may be used in certification test report.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

4 Block Diagram

The Type 2EL block diagram is presented in Figure 1. Figure 1: Block Diagram

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

5 Certification Information

This section has information about radio and Bluetooth certification.

5.1 Radio Certification

Transmit output power setting is defined by “txpower_XX.bin” The transmit power files are hosted at Murata GitHub for Linux and FreeRTOS .Table3 shows the transmit power file required for each region. Table 3: Transmit Power Limit Files

5.2 Radio Regulatory Certification by Country

Murata have prepared the document about Radio Regulatory Certification separately. This document is designed to ensure that module manufacturers correctly communicate the necessary information to host manufacturers that incorporate their modules. Refer to 【Regulatory Information】:Type 2EL Radio Law Approval Application Note for Radio Law Certification user manual. If you don’t follow the rule written in Type 2EL Radio Law Approval Application Note, there is a risk of conflict Radio Law Certification. Please be sure to check the document.

5.3 Bluetooth Qualification

  • QDID: 202018
  • Set Bluetooth Tx Power to Class 1 by using bt_power_config_1.sh
  • For supported Bluetooth functions, refer to Bluetooth SIG site Country ID Country Code Tx Power Limit File Linux FreeRTOS USA (FCC) VPYLBES5PL2EL US txpower_US.bin TBD Canada (IC) 772C-LBES5PL2EL CA txpower_CA.bin TBD Europe EN300328/301893, EN300440 conducted test report is prepared. DE txpower_EU.bin TBD Japan Japanese type certification is prepared. 001-P02018 JP txpower_JP.bin TBD

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

6 Dimensions, Markings and Terminal Configurations

This section provides information about dimensions, markings, and terminal configuration for Type 2EL and the related parameters. Figure 2 shows the dimensions, markings, and terminal configurations. Figure 2: Dimensions, Markings and Terminal Configurations Table 4 describes the Type 2EL markings. Table 4: Markings Marking Meaning A Module Type B Inspection Number C Serial Number D 2D code E Murata Logo F Pin 1 Marking Table 5 describes the Type 2EL dimensions. Table 5: Dimensions Mark Dimensions (mm) Mark Dimensions (mm) Mark Dimensions (mm) T 1.3 maximum T1 0.04 typical (Bump) < Top View > < Side View > < Bottom View > LBES5PL2EL SA2021039 000000001 C B A D E F L W T1 T

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

7 Module Pin Descriptions

This section includes the pin descriptions of Type 2EL and pin assignments layout descriptions.

7.1 Pin Assignments

This section describes the pin assignments to terminals. Type 2EL pin-assignment top view is presented in Figure 4. Figure 4: Pin Assignments (Top View) Table 6 lists the Type 2EL terminal configurations. Table 6: Terminal Configurations No. Terminal Name No. Terminal Name No. Terminal Name No. Terminal Name

1 GND 29 GND 57 PCM_CLK 85 GND

2 GND 30 AVDD18_2 58 PCM_MCLK 86 GND

3 NC 31 AVDD18_1 59 PCM_DOUT 87 GND

4 SPI_FRM 32 GND 60 PCM_DIN 88 GND

5 SPI_INT 33 Reserved 61 PCM_SYNC 89 GND

6 SPI_RXD 34 Reserved 62 GND 90 GND

7 SPI_TXD 35 Reserved 63 IND_RST_WL 91 GND

8 SPI_CLK 36 Reserved 64 IND_RST_BT 92 GND

9 GND 37 RST_IND 65 Reserved 93 GND

10 PDn 38 IND_RST_15.4 66 Reserved 94 GND

11 GND 39 GND 67 GND 95 GND

12 AVDD33_1 40 SD_VIO 68 GND 96 GND

13 AVDD33_2 41 GND 69 WCI-2_SIN 97 GND

14 GND 42 SD_CMD 70 WCI-2_SOUT 98 GND

15 ANT0 43 GND 71 GND 99 GND

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet No. Terminal Name No. Terminal Name No. Terminal Name No. Terminal Name

16 GND 44 SD_CLK 72 SD_INT 100 GND

17 GND 45 SD_DAT[1] 73 WL_WAKE_OUT 101 GND

18 BT_15.4_IN 46 SD_DAT[3] 74 WL_WAKE_IN 102 GND 19 GND 47 SD_DAT[2] 75 BT15.4_WAKE_IN 103 GND 20 GND 48 SD_DAT[0] 76 BT15.4_WAKE_OU T 104 GND

21 GND 49 UART_TX 77 NC 105 GND

22 GND 50 UART_CTS 78 NC 106 GND

23 ANT1 51 UART_RX 79 NC 107 GND

24 RF_CNTL4 52 UART_RTS 80 NC

25 RF_CNTL3/

CONFIG_XOSC_SEL 53 GND 81 GND

26 RF_CNTL1 54 VIO 82 GND

27 RF_CNTL0 55 CONFIG_HOST[0] 83 GND

28 GND 56 CONFIG_HOST[1] 84 GND

7.2 Pin Descriptions

Table 7 shows the pin descriptions. Table 7: Pin Descriptions No. Terminal Name Type Connection to IC Terminal Description

1 GND Ground

2 GND Ground

3 NC NC Not Connected

4 SPI_FRM I/O SPI_FRM SPI frame input signal

5 SPI_INT I/O SPI_INT SPI interrupt output signal.

6 SPI_RXD I/O SPI_RXD SPI receive input signal

7 SPI_TXD I/O SPI_TXD SPI transmit output signal

8 SPI_CLK I/O SPI_CLK SPI clock input signal

9 GND Ground

10 PDn I PDn

Full Power-down (input) (active low) 0 = full power-down mode 1 = normal mode PDn can accept an input of 1.8V to 4.5V PDn may be driven by the host PDn must be high for normal operation No internal pull-up on this pin. This pin has an always-on internal weak pull- down.

11 GND Ground

12 AVDD33_1 Power AVDD33 Power supply

13 AVDD33_2 Power AVDD33 Power supply

14 GND Ground

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet No. Terminal Name Type Connection to IC Terminal Description

15 ANT0 I/O ANT0 is WLAN output and it’s also used for

BT/802.15.4 output when SANT mode.

16 GND Ground

17 GND Ground

18 BT_15.4_IN I BT/802.15.4 in (Feedback)

19 GND Ground

20 GND Ground

21 GND Ground

22 GND Ground

23 ANT1 O ANT1 is BT/802.15.4 output, and it should be connected to BT_15.4_IN when SANT mode.

24 RF_CNTL4 I/O RF_CNTL4 RF control line 4

CONFIG_XOSC_SEL I/O F_CNTL3/ CONFIG_ XOSC_SEL Reference clock frequency select 1=40 MHz RF control line 3

26 RF_CNTL1 O RF_CNTL1 RF control line 1

27 RF_CNTL0 O RF_CNTL0 RF control line 0

28 GND Ground

29 GND Ground

30 AVDD18_2 Power Power supply

31 AVDD18_1 Power Power supply

32 GND Ground

33 Reserved I/O GPIO[31]/JTAG_TDO Programable GPIO Pin. (JTAG_TDO) * NXP internal use only 34 Reserved I/O GPIO[29]/JTAG_TMS Programable GPIO Pin. (JTAG_TMS) * NXP internal use only 35 Reserved I/O GPIO[28]/JTAG_TCK Programable GPIO Pin. (JTAG_TCK) * NXP internal use only 36 Reserved I/O GPIO[30]/JTAG_TDI Programable GPIO Pin. (JTAG_TDI) * NXP internal use only

37 RST_IND I/O GPIO[22]/RST_IND

Bluetooth/802.15.4 independent software reset indicator to host output Multi-functional pin: GPIO[22] input/output 38 IND_RST_15.4 I/O GPIO[24]/ IND_RST_15.4 Independent software reset for 802.15.4 radio1 input Multi-functional pin: GPIO[24] input/output

39 GND Ground

40 SD_VIO Power Power supply

41 GND Ground

42 SD_CMD I/O SD_CMD

SDIO 4-bit mode: Command/response (input/output) SDIO 1-bit mode: Command line (input/output) 1 The request to reset either Bluetooth or 15.4 radio leads to reinitialization of both radios.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet No. Terminal Name Type Connection to IC Terminal Description

43 GND Ground

44 SD_CLK I SD_CLK SDIO 4-bit mode: Clock input

SDIO 1-bit mode: Clock input

45 SD_DAT[1] I/O SD_DAT[1] SDIO 4-bit mode: Data line bit[1]

SDIO 1-bit mode: Interrupt

46 SD_DAT[3] I/O SD_DAT[3] SDIO 4-bit mode: Data line bit[3]

SDIO 1-bit mode: Reserved

47 SD_DAT[2] I/O SD_DAT[2]

SDIO 4-bit mode: Data line bit[2] or read wait (optional) SDIO 1-bit mode: Read wait (optional)

48 SD_DAT[0] I/O SD_DAT[0] SDIO 4-bit mode: Data line bit[0]

SDIO 1-bit mode: Interrupt

49 UART_TX I/O UART_TX UART serial output signal

50 UART_CTS I/O UART_CTS UART clear-to-send input signal

51 UART_RX I/O UART_RX UART serial input signal

52 UART_RTS I/O UART_RTS UART request-to-send output signal

53 GND Ground

54 VIO Power Power supply

55 CONFIG_HOST[0] I CONFIG_HOST[0] Firmware Boot Option

Refer to sec 7.3 Configuration Pins

56 CONFIG_HOST[1] I CONFIG_HOST[1] Firmware Boot Option

Refer to sec 7.3 Configuration Pins

57 PCM_CLK I/O GPIO[4]/PCM_CLK

GPIO[4] input/output PCM clock signal.

  • Central mode: output
  • Peripheral mode: input I2S audio bit clock. . Central mode: output . Peripheral mode: input

58 PCM_MCLK I/O GPIO[3]/PCM_MCLK

GPIO[3] input/output PCM codec main clock signal (optional). Optional clock used for some codecs. Derived from PCM_CLK. I2S clock output signal O ptional clock used for some codecs. Derived from I2S_BCLK.

59 PCM_DOUT I/O GPIO[5]/PCM_DOUT

GPIO[5] input/output PCM transmit data signal (output). *Connect to PCM audio codec input data (for playback). I2S_DOUT - I2S transmit data signal (output). I2S audio codec input data (for playback).

60 PCM_DIN I/O GPIO[6]/PCM_DIN

GPIO[6] input/output PCM transmit data signal (input). *Connect to PCM audio codec output data (for recording). I2S_DIN - I2S receive data signal (input). PCM audio codec output data (for recording).

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet No. Terminal Name Type Connection to IC Terminal Description

61 PCM_SYNC I/O GPIO[7]/PCM_SYNC

GPIO[7] input/output PCM sync pulse signal (output if master, input if slave).

  • Central mode: output
  • Peripheral mode: input I2S_LRCLK - I2S left/right clock (output if master, input if slave).
  • Central mode: output
  • Peripheral mode: input

62 GND Ground

63 IND_RST_WL I/O GPIO[1]/IND_RST_WL Independent software reset for Wi-Fi input

Multi-functional pin: GPIO[1] input/output

64 IND_RST_BT I/O GPIO[2]/IND_RST_BT

Independent software reset for Bluetooth input *1 Multi-functional pin: GPIO[2] input/output

65 Reserved I/O GPIO[27] Programable GPIO Pin

66 Reserved I/O GPIO[23] Programable GPIO Pin

67 GND Ground

68 GND Ground

69 WCI-2_SIN I/O GPIO[25]/WCI-2_SIN Input signal from external radio. Multi-functional pin: GPIO[25] input/output

70 WCI-2_SOUT I/O GPIO[26]/WCI-2_SOUT

Output signal to external radio. Multi- functional pin: GPIO[26] input/output External radio coexistence interface

71 GND Ground

72 SD_INT I/O GPIO[21]/SD_INT

Out-of-band SDIO interface interrupt signal output. Multi-functional pin: GPIO[21] input/output

73 WL_WAKE_OUT I/O GPIO[17]/

WL_WAKE_OUT Wi-Fi radio wake-up output signal. Multi-functional pin: GPIO[17] input/output

74 WL_WAKE_IN I/O GPIO[16]/

WL_WAKE_IN Wi-Fi radio wake-up input signal. Multi-functional pin: GPIO[16] input/output 75 BT15.4_WAKE_IN I/O GPIO[18]/ BT15.4_WAKE_IN Bluetooth/802.15.4 radio wake-up input signal. Multi-functional pin: GPIO[18] input/output 76 BT15.4_WAKE_OUT I/O GPIO[19]/ BT15.4_WAKE_OUT Bluetooth/802.15.4 radio wake-up output signal. Multi-functional pin: GPIO[19] input/output

77 NC NC Not connected

78 NC NC Not connected

79 NC NC Not connected

80 NC NC Not connected

107 GND Ground

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

7.3 Configuration Pins

Table 8 describes the configuration pins. Table 8: Configuration Pins CONFIG_HOST[0] CONFIG_HOST[1] WLAN Bluetooth / Bluetooth LE

802.15.4 Remarks

Others Others Reserved Reserved Reserved Reserved

7.4 Pin States

Pin states information for the tables below include:

  • After firmware is downloaded, the pads (GPIO, Serial interface, RF control) are programmed in functional mode per the functionality of the pins.
  • For SDIO, once the command is received from the host, the pads are configured accordingly.
  • Pull-up and pull-down are only effective when the pad is in input mode.
  • The power-down state shown is the default configuration. Many pads have programmable power-down values, which can be set by firmware.
  • Do not need any termination to the open pins that have an Internal Pull-up/Pull-down resistor (PU/PD). Do not need any termination to the open pins in output mode. Table 9: I/O State Table Pin Name Supply No Pad Power State Reset State HW State PD State PD Prog Internal PU/PD Int’l Pull Value[Ω] SPI_FRM VIO tristate input input drive high yes nominal PU 100kΩ SPI_INT VIO tristate input input drive low Yes nominal PU 100kΩ SPI_RXD VIO tristate input input tristate Yes nominal PU 100kΩ SPI_TXD VIO tristate output low output low drive low yes nominal PU 100kΩ SPI_CLK VIO tristate input input tristate yes nominal PU 100kΩ RST_IND VIO tristate output high output low tristate yes nominal PU 100kΩ IND_RST_15.4 VIO tristate output low output low tristate yes weak PU 800kΩ UART_TX VIO tristate output high output high drive low yes nominal PU 100kΩ UART_CTS VIO tristate input input tristate yes nominal PU 100kΩ UART_RX VIO tristate input input tristate yes nominal PU 100kΩ UART_RTS VIO tristate output high output high drive high yes nominal PU 100kΩ PCM_CLK VIO tristate input input tristate yes weak PU 800kΩ PCM_MCLK VIO tristate input input tristate yes nominal PU 100kΩ PCM_DOUT VIO tristate input input tristate yes weak PU 800kΩ PCM_DIN VIO tristate input input tristate yes weak PU 800kΩ PCM_SYNC VIO tristate input input tristate yes nominal PU 100kΩ IND_RST_WL VIO tristate input input tristate yes nominal PU 100kΩ IND_RST_BT VIO tristate input input tristate yes nominal PU 100kΩ GPIO[27] VIO tristate input input tristate yes weak PU 800kΩ GPIO[23] VIO tristate input input tristate yes nominal PU 100kΩ

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Pin Name Supply No Pad Power State Reset State HW State PD State PD Prog Internal PU/PD Int’l Pull Value[Ω] WCI-2_SIN VIO tristate input input tristate yes nominal PU 100kΩ WCI-2_SOUT VIO tristate input input tristate yes nominal PU 100kΩ SD_INT VIO tristate output high output low drive low yes nominal PU 100kΩ WL_WAKE_OUT VIO tristate input input drive low yes nominal PU 100kΩ WL_WAKE_IN VIO tristate input input tristate yes weak PU 800kΩ BT15.4_WAKE_IN VIO tristate input input tristate yes weak PU 800kΩ BT15.4_WAKE_OUT VIO tristate input input drive low yes nominal PU 100kΩ XOSC_EN VIO tristate input input drive low yes nominal PU 100kΩ RF_CNTL4 VIO tristate input input drive low yes weak PU 800kΩ RF_CNTL3/ CONFIG_XOSC_SEL VIO tristate input input drive high yes weak PU 800kΩ RF_CNTL1 VIO tristate output high output high drive high yes weak PU 800kΩ RF_CNTL0 VIO tristate output low output low drive low yes nominal PU 100kΩ SD_CMD VIO_SD tristate input input tristate yes nominal PU 100kΩ SD_CLK VIO_SD tristate input input tristate yes nominal PU 100kΩ SD_DAT[1] VIO_SD tristate input input tristate yes nominal PU 100kΩ SD_DAT[3] VIO_SD tristate input input tristate yes nominal PU 100kΩ SD_DAT[2] VIO_SD tristate input input tristate yes nominal PU 100kΩ SD_DAT[0] VIO_SD tristate input input tristate yes nominal PU 100kΩ CONFIG_HOST[0] AVDD18 tristate input input tristate no weak PU 800kΩ CONFIG_HOST[1] AVDD18 tristate input input tristate no weak PU 800kΩ PDn AVDD33 weak PD 51kΩ

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

7.5 SDIO Pin Descriptions

Table 10 shows the SDIO pin descriptions. Table 10: SDIO Pin Descriptions No. Pin Name (i) SD 4-bit Mode (ii) SD 1-bit Mode

4 SDIO_CLK CLK Clock CLK Clock

5 SDIO_D0 DATA0 Data line 0 DATA Data line

45 SDIO_D1 DATA1 Data line 1 IRQ Interrupt

3 SDIO_D2 DATA2 Data line 2 RW Read wait (optional)

46 SDIO_D3 DATA3 Data line 3 NC Reserved

6 SDIO_CMD CMD Command/response CMD Command line

Figure 5 shows the SDIO modes. Figure 5: SDIO Pins

8 Absolute Maximum Ratings

Table 11 describes the absolute maximum ratings. Table 11: Absolute Maximum Ratings Parameter Minimum Maximum Unit Storage Temperature -50 +85 °C Supply Voltage AVDD33 3.96 V AVDD18 2.16 V SD_VIO 1.8V/3.3V 2.16 V 3.96 V VIO 1.8V/3.3V 2.16 V 3.96 V DATA[3:0] SD Host Type 2EL CMD CLK SD Host Type 2EL CMD CLK DATA IRQ (i) SD 4-bit Mode (ii) SD 1-bit Mode

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Stresses in excess of the absolute ratings may cause permanent damage. Functional operation is not implied under these conditions. Exposure to absolute ratings for extended periods of time may adversely affect reliability. No damage assuming only one parameter is set at limit at a time with all other parameters are set within operating condition.

9 Operating Conditions

9.1 Operating Conditions

Type 2EL operating conditions are described in Table 12. Table 12: Operating Conditions Parameter Minimum Typical Maximum Unit Operating Temperature -40 25 +85 °C Supply Voltage AVDD33 3.14 3.3 3.46 V AVDD18 1.71 1.8 1.89 V SD_VIO/VIO = 1.8V 1.71 1.8 1.89 V SD_VIO/VIO = 3.3V 3.14 3.3 3.46 V Peak current AVDD33 420 mA AVDD18 1009 mA

  • Operation beyond the recommended operating conditions is neither recommended nor guaranteed.
  • Peak current happens during DPD calibration when the firmware is downloaded.

9.2 Digital I/O Requirements

The digital I/O requirements are listed in Table 13. Table 13: Digital I/O Requirements Parameters Symbol Parameter Condition Minimum Typical Maximum Unit VIO I/O pad supply voltage 1.71 1.8 1.89 V VIH Input high voltage 0.7 * VIO VIO + 0.4 V VIL Input low voltage -0.4 0.3 * VIO V VHYS Input hysteresis 100 mV VOH Output high voltage VIO - 0.4 V VOL Output low voltage 0.4 V Symbol Parameter Condition Minimum Typical Maximum Unit VIO I/O pad supply voltage 1.71 1.8 1.89 V VIH Input high voltage 0.7 * VIO VIO + 0.4 V VIL Input low voltage -0.4 0.3 * VIO V VHYS Input hysteresis 100 mV VOH Output high voltage VIO - 0.4 V VOL Output low voltage 0.4 V

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

9.3 Package Thermal Conditions

  • RΨjt:3.12 ℃/W
  • RΨjt = (Tj - Tt)/P Tj: Junction temperature (℃), Tt: Top temperature (℃), P: Total Power Consumption (W) Figure 6: Package Thermal Conditions Silicon Die Tt RΨjt Tj

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

10 Power Sequence

10.1 Power-On Sequence

AVDD33, AVDD18, VIO, and VIO_SD can be powered on with 0 second minimum. The PDn signal when it is asserted (low) while all power supplies to the devices are high. Figure 7 shows the power-on sequence graph. Figure 7: Power-On Sequence Graph Table 14 shows the PDn pin (power-off) specifications. Power remains high at PDn assertion. Table 14: PDn Pin Specifications Symbol Parameter Condition Minimum Typical Maximum Unit TVIO_AVDD Power up timing of VIO, VIO_SD, AVDD33, and VIO18 0 ms TPU_RESET Valid power to PDn de-asserted 0 ms VIH Input high voltage 1.4 4.5 V VIL Input low voltage -0.4 0.5 V Minimum value is guaranteed for a valid rest. Smaller values may put the device in an undefined state.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

10.2 Power-Off Sequence

Figure 8 shows the power-off sequence graph. Figure 8: Power-Off Sequence Graph Table 15 shows the power-off sequence parameters. Table 15: Power-Off Sequence Parameters Symbol Parameter Condition Minimum Typical Maximum Unit TVIO_AVDD Power up timing of VIO, VIO_SD, AVDD33, and VIO18 ms TPU_RESET Valid power to PDn de- asserted ms VIH Input high voltage 1.4 4.5 V VIL Input low voltage - 0.4 0.5 V Minimum value is guaranteed for a valid rest. Smaller values may put the device in an undefined state.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

10.3 Host Reset Sequence

Figure 9 shows hot reset sequence graph. Figure 9: Host Reset Sequence Graph Table 16: Host Reset Sequence Parameters Symbol Parameter Condition Minimum Typical Maximum Unit tPU_RESET Valid power to PDn de- asserted 0 ms tPRW PDn pulse width 1 µs tINIT From PDn de-assertion to device ready (SDIO bus enumeration) ms VIH Input high voltage 1.4 4.5 V VIL Input low voltage -0.4 0.5 V Minimum value guaranteed for a valid rest. Smaller values may put the device in an undefined state.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

11 Interface Timing

This section describes the SDIO timing (default and high-speed mode), UART timing (default mode), and Bluetooth PCM timing.

11.1 SDIO Timing

11.1.1 Default Speed Mode

Figure 10 describes the SDIO protocol timing diagram in default speed mode. Figure 10: SDIO Protocol Timing Diagram - Default Mode

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

11.1.2 High Speed Mode

Figure 11 describes the SDIO protocol timing diagram in high-speed mode. Figure 11: SDIO Protocol Timing Diagram - High Speed Mode Table 17 describes the parameters for SDIO protocol timing parameters. Table 17: SDIO Protocol Timing Parameters Symbol Parameter Condition Minimum Typical Maximum Unit fPP Clock frequency Normal 0 25 MHz High-speed 0 50 MHz TWL Clock low time Normal 10 ns High-speed 7 ns TWH Clock high time Normal 10 ns High-speed 7 ns TISU Input setup time Normal 5 ns High-speed 6 ns TIH Input hold time Normal 5 ns High-speed 2 ns TOLDY Output delay time Normal 14 ns CL ≤ 40 pF (1 card) High-speed 14 ns TOH Output put hold time High-speed 2.5 ns For SDIO 2.0 running at 25 MHz and 50 MHz clock frequency, VIO_SD must be 3.3V.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Figure 15 shows the SDIO data timing diagram for DDR50 Mode. Figure 15: SDIO Data Timing Diagram - DDR50 Mode Table 20 describes the parameters for SDIO data timing for DDR50 mode. Table 20: SDIO Data Timing Parameters - DDR50 Mode Symbol Parameter Condition Minimum Typical Maximum Unit Clock TCLK Clock time

50 MHz (maximum) between rising

TCR, TCF Rise time, fall time TCR, TCF < 4.00 ms(maximum) at 50 MHz DDR50 3 0.2*TCLK ns DDR50 45 55 % CMD Input (referenced to clock rising edge) TIS Input setup time CCARD ≤ 10 pF (1card) DDR50 6 ns TIH Input hold time CCARD ≤ 10 pF (1card) DDR50 0.8 ns CMD Output (referenced to clock rising edge) TODLY Output delay time during data transfer mode CL ≤ 30 pF (1card) DDR50 13.7 ns TOHLD Output hold time CL ≤ 30 pF (1card) DDR50 1.5 ns DAT[3:0] Input (referenced to clock rising and falling edges) TIS2X Input setup time CCARD ≤ 10 pF (1card) DDR50 3 ns

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Symbol Parameter Condition Minimum Typical Maximum Unit TIH2X Input hold time CCARD ≤ 10 pF (1card) DDR50 0.8 ns DAT[3:0] Output (referenced to clock rising and falling edges) TOLD2x (max) Output delay time during data transfer mode CL ≤ 25 pF (1 card) DDR50 7.0 ns TOLDY2x (min) Output hold time CL ≤ 15 pF (1 card) DDR50 1.5 ns

11.2 UART Timing (Default Mode)

Default bard rate is 115200 bps. Baud rate is configurable by the host stack. Figure 16 shows UART timing diagram for default mode. Figure 16: UART Timing Diagram - Default Mode Table 21 describes the UART timing parameters for default mode. Table 21: UART Timing Parameters - Default Mode Symbol Parameter Condition Minimum Typical Maximum Unit TBAUD Baud rate 38.4 MHz 250 ns The acceptable deviation from the UART Rx target baud rate is ±3%.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

11.3 Bluetooth PCM Timing

This section describes the Bluetooth PCM timing data signal in master and slave mode.

11.3.1 Master Mode

Figure 17 and Figure 18 shows the Bluetooth PCM timing signals in master mode. Figure 17: Bluetooth PCM Timing Data Signal - Master Mode Figure 18: Bluetooth PCM Timing PCM_SYNC Signal - Master Mode Table 22 describes the signal parameters in master mode. Table 22: Symbol Definition for Data Signal & PCM_SYNC Signal - Master Mode Symbol Parameter Condition Minimum Typical Maximum Unit FBCLK Bit clock frequency 2/2.048 MHz Duty CycleBCLK Bit clock duty cycle 0.4 0.5 0.6 TBCLK rise/fall PCM_CLK rise/fall time 3 ns TDO Delay from PCM_CLK rising edge to PCM_DOUT rising edge 15 ns TDISU Setup time for PCM_DIN before PCM_CLK falling edge 20 ns

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Symbol Parameter Condition Minimum Typical Maximum Unit TDIHO Hold time for PCM_DIN after PCM_CLK falling edge 15 ns TBF Delay from PCM_CLK rising edge to PCM_SYNC rising edge 15 ns

11.3.2 Slave Mode

Figure 19 and Figure 20 shows the Bluetooth PCM timing signals in slave mode. Figure 19: Bluetooth PCM Timing Data Signal - Slave Mode Figure 20: Bluetooth PCM Timing PCM_SYNC Signal - Slave Mode Table 23 describes the signal parameters in slave mode. Table 23: Symbol Definition for Data Signal & PCM_SYNC Signal - Slave Mode Symbol Parameter Condition Minimum Typical Maximum Unit FBCLK Bit clock frequency 2/2.048 MHz Duty CycleBCLK Bit clock duty cycle 0.4 0.5 0.6 TBCLK rise/fall PCM_CLK rise/fall time 3 ns

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

12 DC/RF Characteristics

All DC/RF characteristics are defined by the following files: Table 25: DC/RF Characteristics Files Contents Filenames WLAN Tx Power TBD WLAN Regulatory Limit TBD Energy Detect TBD Bluetooth Power TBD Figure 22 shows the burst current definition. Figure 22: Burst Current Definition

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.1 DC/RF Characteristics for IEEE 802.11b - 2.4 GHz Table 26: Characteristic Values for IEEE 802.11b - 2.4 GHz Contents Items Specification IEEE 802.11b Mode DSSS / CCK Channel Frequency 2412 to 2472 MHz Data Rate 1, 2, 5.5, 11 Mbps 12.1.1 High-Rate Condition for IEEE 802.11b - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 18 dBm at module pad, 11 Mbps mode. Table 27: High-Rate Condition for IEEE 802.11b - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 148 180 mA
  • Tx mode Current 3.3V 234 290 mA
  • Rx mode Current 1.8V 101 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 16 18 20 dBm Spectrum Mask Margin
  • 1st side lobes 0 dB
  • 2nd side lobes 0 dB Power-on/off ramp 2.0 μs RF Carrier Suppression 15 dB Modulation Accuracy 35 % Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW =100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (FER ≤ 8%) -76 dBm Maximum Input Level (FER ≤ 8%) -10 dBm Adjacent Channel Rejection (FER < 8%) 35 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.1.2 Low-Rate Condition for IEEE 802.11b - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 18dBm at module pad,

1 Mbps mode

Table 28: Low-Rate Condition for IEEE 802.11b - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 146 180 mA
  • Tx mode Current 3.3V 225 270 mA
  • Rx mode Current 1.8V 101 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 16 18 20 dBm Spectrum Mask Margin
  • 1st side lobes 0 dB
  • 2nd side lobes 0 dB Power-on/off ramp 2.0 μs RF Carrier Suppression 15 dB Modulation Accuracy 35 % Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (FER ≤ 8%) -80 dBm Maximum Input Level (FER ≤ 8%) -4 dBm Adjacent Channel Rejection (FER< 8%) 35 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.2 DC/RF Characteristics for IEEE 802.11g - 2.4 GHz Table 29: Characteristic Values for IEEE 802.11g - 2.4 GHz Contents Items Specification IEEE 802.11g Mode OFDM Channel Frequency 2412 to 2472 MHz Data Rate 6, 9, 12, 18, 24, 36, 48, 54 Mbps 12.2.1 High-Rate Condition for IEEE 802.11g - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 16dBm at module pad, 54 Mbps mode Table 30: High-Rate Condition for IEEE 802.11g - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 163 200 mA
  • Tx mode Current 3.3V 197 240 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 14 16 18 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -40 dBr) 0 dB
  • 30 MHz to 33 MHz (-40 dBr) 0 dB Constellation Error (EVM) -25 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 -74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 8 7.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER < 10%) -65 dBm Maximum Input Level (PER < 10%) -20 dBm Adjacent Channel Rejection (PER < 10%) -1 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.2.2 Low-Rate Condition for IEEE 802.11g - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 16 dBm at module pad, 6 Mbps mode Table 31: Low-Rate Condition for IEEE 802.11g - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 164 200 mA
  • Tx mode Current 3.3V 201 260 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 14 16 18 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -40 dBr) 0 dB
  • 30 MHz to 33 MHz (-40 dBr) 0 dB Constellation Error (EVM) -25 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER < 10%) -82 dBm Maximum Input Level (PER < 10%) -20 dBm Adjacent Channel Rejection (PER < 10%) -1 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.3 DC/RF Characteristics for IEEE 802.11n - 2.4 GHz Table 32: Characteristic Values for IEEE 802.11n - 2.4 GHz Contents Items Specification IEEE 802.11n Mode OFDM Channel Frequency 2412 to 2472 MHz Data Rate MCS0-MCS7 12.3.1 High-Rate Condition for IEEE 802.11n - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 15 dBm at module pad, MCS7 mode Table 33: High-Rate Condition for IEEE 802.11n - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 164 200 mA
  • Tx mode Current 3.3V 188 230 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 13 15 17 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -64 dBm Maximum Input Level (PER < 10%) -20 dBm Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.3.2 Low-Rate Condition for IEEE 802.11n - 2.4 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 15 dBm at module pad, MCS0 mode Table 34: Low-Rate Condition for IEEE 802.11n - 2.4 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 164 200 mA
  • Tx mode Current 3.3V 188 230 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 13 15 17 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit 7. Minimum Input Level (PER ≤ 10%) -82 dBm 8. Maximum Input Level (PER < 10%) -20 dBm 9. Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.4 DC/RF Characteristics for IEEE802.11ax (HE20) – 2.4GHz Table 35: Characteristic Values for IEEE802.11ax (HE20) – 2.4GHz Contents Items Specification IEEE 802.11ax Mode OFDM Channel Frequency 2412 to 2472 MHz Data Rate MCS0-MCS11 12.4.1 High-Rate Condition for IEEE802.11ax (HE20) – 2.4GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 13 dBm at module pad, MCS11 mode Table 36: High-Rate Condition for IEEE802.11ax (HE20) – 2.4GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 165 200 mA
  • Tx mode Current 3.3V 170 210 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 11 13 15 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -35 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -59 dBm

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB 12.4.2 Low-Rate Condition for IEEE802.11ax (HE20) – 2.4GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 15 dBm at module pad, MCS0 mode Table 37: Low-Rate Condition for IEEE802.11ax (HE20) – 2.4GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 164 200 mA
  • Tx mode Current 3.3V 192 240 mA
  • Rx mode Current 1.8V 102 130 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 13 15 17 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -5 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -82 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.5 DC/RF Characteristics for IEEE 802.11a - 5 GHz Table 38: Characteristic Values for IEEE 802.11a - 5 GHz Contents Items Specification IEEE 802.11a Mode OFDM Channel Frequency 5180 to 5240 MHz, 5260 to 5320 MHz, 5500 to 5720 MHz, 5745 to 5825 MHz Data Rate 6, 9, 12, 18, 24, 36, 48, 54 Mbps 12.5.1 High-Rate Condition for IEEE 802.11a - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 16 dBm at module pad, 54 Mbps mode Table 39: High-Rate Condition for IEEE 802.11a - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 248 300 mA
  • Tx mode Current 3.3V 240 310 mA
  • Rx mode Current 1.8V 122 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 14 16 18 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -25 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -65 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -1 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.5.2 Low-Rate Condition for IEEE 802.11a - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, 6 Mbps mode Table 40: Low-Rate Condition for IEEE 802.11a - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 221 280 mA
  • Tx mode Current 3.3V 209 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -25 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -82 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -1 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.6 DC/RF Characteristics for IEEE 802.11n (HT20) - 5 GHz Table 41: Characteristic Values for IEEE 802.11n (HT20) - 5 GHz Contents Items Specification IEEE 802.11n Mode OFDM Channel Frequency 5180 to 5240 MHz, 5260 to 5320 MHz, 5500 to 5720 MHz, 5745 to 5825 MHz Data Rate MCS0 - MCS7 12.6.1 High-Rate Condition for IEEE 802.11n (HT20) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS7 mode Table 42: High-Rate Condition for IEEE 802.11n (HT20) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 221 280 mA
  • Tx mode Current 3.3V 209 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -64 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.6.2 Low-Rate Condition for IEEE 802.11n (HT20) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS0 mode Table 43: Low-Rate Condition for IEEE 802.11n (HT20) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 221 280 mA
  • Tx mode Current 3.3V 214 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -82 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.7 DC/RF Characteristics for IEEE 802.11ac (VHT20) - 5 GHz Table 44: Characteristic Values for IEEE 802.11ac (VHT20) - 5 GHz Contents Items Specification IEEE 802.11ac Mode OFDM Channel Frequency 5180 to 5240 MHz, 5260 to 5320 MHz, 5500 to 5720 MHz, 5745 to 5825 MHz Data Rate MCS0 - MCS8 12.7.1 High-Rate Condition for IEEE 802.11ac (VHT20) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS8 mode Table 45: High-Rate Condition for IEEE 802.11ac (VHT20) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 221 280 mA
  • Tx mode Current 3.3V 209 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -30 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -59 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.7.2 Low-Rate Condition for IEEE 802.11ac (VHT20) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14dBm at module pad, MCS0 mode Table 46: Low-Rate Condition for IEEE 802.11ac (VHT20) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 221 280 mA
  • Tx mode Current 3.3V 212 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -30 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -82 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.8 DC/RF Characteristics for IEEE802.11ax (HE20) - 5GHz Table 47: Characteristics Values for IEEE802.11ax (HE20) - 5GHz Contents Items Specification IEEE 802.11ax Mode OFDM Channel Frequency 5180 to 5240 MHz, 5260 to 5320 MHz, 5500 to 5720 MHz, 5745 to 5825 MHz Data Rate MCS0 - MCS11 12.8.1 High-Rate Condition for IEEE802.11ax (HE20) – 5GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 10 dBm at module pad, MCS11 mode Table 48: High-Rate Condition for IEEE802.11ax (HE20) - 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 207 280 mA
  • Tx mode Current 3.3V 169 230 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 8 10 12 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -35 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -59 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.8.2 Low-Rate Condition for IEEE802.11ax (HE20) – 5GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS0 mode Table 49: Low-Rate Condition for IEEE802.11ax (HE20) – 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 222 280 mA
  • Tx mode Current 3.3V 216 280 mA
  • Rx mode Current 1.8V 121 150 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 9 MHz to 11 MHz (0 ~ -20 dBr) 0 dB
  • 11 MHz to 20 MHz (-20 ~ -28 dBr) 0 dB
  • 20 MHz to 30 MHz (-28 ~ -45 dBr) 0 dB
  • 30 MHz to 33 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -5 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -82 dBm Maximum Input Level (PER < 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -7 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.9 DC/RF Characteristics for IEEE 802.11n (HT40) - 5 GHz Table 50: Characteristic Values for IEEE 802.11n (HT40) - 5 GHz Contents Items Specification IEEE 802.11n Mode OFDM Channel Frequency 5190 to 5795 MHz Data Rate MCS0 - MCS7 12.9.1 High-Rate Condition for IEEE 802.11n (HT40) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS7 mode Table 51: High-Rate Condition for IEEE 802.11n (HT40) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 231 290 mA
  • Tx mode Current 3.3V 203 280 mA
  • Rx mode Current 1.8V 140 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 1 00 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -61 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.9.2 Low-Rate Condition for IEEE 802.11n (HT40) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14dBm at module pad, MCS0 mode Table 52: Low-Rate Condition for IEEE 802.11n (HT40) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 232 290 mA
  • Tx mode Current 3.3V 205 280 mA
  • Rx mode Current 1.8V 140 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -27 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -79 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -2 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.10 DC/RF Characteristics for IEEE 802.11ac (VHT40) - 5 GHz Table 53: Characteristic Values for IEEE 802.11ac (VHT40) - 5 GHz Contents Items Specification IEEE 802.11ac Mode OFDM Channel Frequency 5190 to 5795 MHz Data Rate MCS0 - MCS9 12.10.1 High-Rate Condition for IEEE 802.11ac (VHT40) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 12 dBm at module pad, MCS9 mode Table 54: High-Rate Condition for IEEE 802.11ac (VHT40) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 225 290 mA
  • Tx mode Current 3.3V 179 250 mA
  • Rx mode Current 1.8V 141 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 10 12 14 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -54 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.10.2 Low-Rate Condition for IEEE 802.11ac (VHT40) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS0 mode Table 55: Low-Rate Condition for IEEE 802.11ac (VHT40) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 232 290 mA
  • Tx mode Current 3.3V 206 280 mA
  • Rx mode Current 1.8V 141 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -79 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.11 DC/RF Characteristics for IEEE802.11ax (HE40) - 5GHz Table 56: Characteristic Values for IEEE802.11ax (HE40) - 5GHz Contents Items Specification IEEE 802.11ax Mode OFDM Channel Frequency 5190 to 5795 MHz Data Rate MCS0 - MCS11 12.11.1 High-Rate Condition for IEEE802.11ax (HE40) – 5GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 10 dBm at module pad, MCS11 mode Table 57: High-Rate Condition for IEEE802.11ax (HE40) – 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 217 290 mA
  • Tx mode Current 3.3V 162 230 mA
  • Rx mode Current 1.8V 141 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 8 10 12 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -54 dBm Maximum Input Level (PER ≤ 10%) -30 dBm

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Adjacent Channel Rejection (PER ≤ 10%) -9 dB 12.11.2 Low-Rate Condition for IEEE802.11ax (HE40) – 5GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS0 mode Table 58: Low-Rate Condition for IEEE802.11ax (HE40) – 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 234 290 mA
  • Tx mode Current 3.3V 212 280 mA
  • Rx mode Current 1.8V 141 170 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 19 MHz to 21 MHz (0 ~ -20 dBr) 0 dB
  • 21 MHz to 40 MHz (-20 ~ -28 dBr) 0 dB
  • 40 MHz to 60 MHz (-28 ~ -45 dBr) 0 dB
  • 60 MHz to 80 MHz (-45 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -79 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.12 DC/RF Characteristics for IEEE 802.11ac (VHT80) - 5 GHz Table 59: Characteristic Values for IEEE 802.11ac (VHT80) - 5 GHz Contents Items Specification IEEE 802.11ac Mode OFDM Channel Frequency 5210 to 5775 MHz Data Rate MCS0 - MCS9 12.12.1 High-Rate Condition for IEEE 802.11ac (VHT80) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 12 dBm at module pad, MCS9 mode Table 60: High-Rate Condition for IEEE 802.11ac (VHT80) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 243 310 mA
  • Tx mode Current 3.3V 177 250 mA
  • Rx mode Current 1.8V 172 200 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 10 12 14 dBm Spectrum Mask Margin
  • 39 MHz to 41 MHz (0 ~ -20 dBr) 0 dB
  • 41 MHz to 80 MHz (-20 ~ -28 dBr) 0 dB
  • 80 MHz to 120 MHz (-28 ~ -40 dBr) 0 dB
  • 120 MHz to 140 MHz (-40 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -51 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.12.2 Low-Rate Condition for IEEE 802.11ac (VHT80) - 5 GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14 dBm at module pad, MCS0 mode Table 61: Low-Rate Condition for IEEE 802.11ac (VHT80) - 5 GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 250 310 mA
  • Tx mode Current 3.3V 208 290 mA
  • Rx mode Current 1.8V 172 200 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 39 MHz to 41 MHz (0~ -20 dBr) 0 dB
  • 41 MHz to 80 MHz (-20~ -28 dBr) 0 dB
  • 80 MHz to 120 MHz (-28~ -40 dBr) 0 dB
  • 120 MHz to 140 MHz (-40 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30-47 MHz (BW = 100 kHz) -36 dBm
  • 47-74 MHz (BW = 100 kHz) -54 dBm
  • 74-87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5-118 MHz (BW = 100 kHz) -54 dBm
  • 118-174 MHz (BW = 100 kHz) -36 dBm
  • 174-230 MHz (BW = 100 kHz) -54 dBm
  • 230-470 MHz (BW = 100 kHz) -36 dBm
  • 470-862 MHz (BW = 100 kHz) -54 dBm
  • 862-1000 MHz (BW = 100 kHz) -36 dBm
  • 1000-5150 MHz (BW = 1 MHz) -30 dBm
  • 5350-5470 MHz (BW = 1 MHz) -30 dBm
  • 5725-26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -76 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.13 DC/RF Characteristics for IEEE802.11ax (HE80) - 5GHz Table 62: Characteristics for IEEE802.11ax (HE80) - 5GHz Contents Items Specification IEEE 802.11ax Mode OFDM Channel Frequency 5210 to 5775 MHz Data Rate MCS0 - MCS11 12.13.1 High-Rate Condition for IEEE802.11ax (HE80) – 5GHz Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 10 dBm at module pad, MCS11 mode Table 63: High-Rate Condition for IEEE802.11ax (HE80) – 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 236 310 mA
  • Tx mode Current 3.3V 161 220 mA
  • Rx mode Current 1.8V 172 200 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 8 10 12 dBm Spectrum Mask Margin
  • 39 MHz to 41 MHz (0 ~ -20 dBr) 0 dB
  • 41 MHz to 80 MHz (-20 ~ -28 dBr) 0 dB
  • 80 MHz to 120 MHz (-28 ~ -40 dBr) 0 dB
  • 120 MHz to 140 MHz (-40 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -51 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet 12.13.2 Low-Rate Condition for IEEE802.11ax (HE80) - 5GHz Normal Condition: 25 °C, VBAT = 3.3V, MCS0 mode unless otherwise specified. Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V, Output power setting = 14dBm at module pad, MCS0 mode Table 64: Low-Rate Condition for IEEE802.11ax (HE80) – 5GHz Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current

  • Tx mode Current 1.8V 254 310 mA
  • Tx mode Current 3.3V 211 290 mA
  • Rx mode Current 1.8V 172 200 mA
  • Rx mode Current 3.3V 0.2 10 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 14 16 dBm Spectrum Mask Margin
  • 39 MHz to 41 MHz (0 ~ -20 dBr) 0 dB
  • 41 MHz to 80 MHz (-20 ~ -28 dBr) 0 dB
  • 80 MHz to 120 MHz (-28 ~ -40 dBr) 0 dB
  • 120 MHz to 140 MHz (-40 dBr) 0 dB Constellation Error (EVM) (Measured at enhanced mode) -32 dB Frequency Tolerance -20 20 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 5150 MHz (BW = 1 MHz) -30 dBm
  • 5350 - 5470 MHz (BW = 1 MHz) -30 dBm
  • 5725 - 26000 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 10%) -76 dBm Maximum Input Level (PER ≤ 10%) -30 dBm Adjacent Channel Rejection (PER ≤ 10%) -9 dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

12.14 DC/RF Characteristics for Bluetooth

Table 65: Characteristics Values for Bluetooth Contents Items Bluetooth Specification (power class) Version 5.3 (Class 1) Channel Frequency (spacing) 2402 to 2480 MHz (1 MHz) Number of RF Channel 79

12.14.1 Basic Data Rate Condition

Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V Table 66: Basic Data Rate Condition Item Contents Current Consumption Minimum Typical Maximum Unit

  • Tx mode DH5 Current 1.8V 323 390 mA
  • Tx mode DH5 Current 3.3V 0.2 3 mA
  • Rx mode DH5 Current 1.8V 123 150 mA
  • Rx mode DH5 Current 3.3V 0.2 3 mA Tx Characteristics Minimum Typical Maximum Unit Output Power@DH5 13 16 dBm Frequency Range 2400 2483.5 MHz 20 dB bandwidth 1 MHz Adjacent Channel Power3
  • [M-N] = 2 -20 dBm
  • [M-N] ≥ 3 -40 dBm Modulation Characteristics
  • Modulation Δf1avg 140 151 175 kHz
  • Modulation Δf2max 115 kHz
  • Modulation Δf2avg / Δf1avg 0.8 1 Carrier Frequency Drift
  • 1 slot -25 25 kHz
  • 3 slot / 5 slot -40 40 kHz
  • Maximum drift rate 20 kHz/50 μs Rx Characteristics Minimum Typical Maximum Unit BR Sensitivity (BER ≤ 0.1%) -96 -70 dBm Maximum Input Level (BER ≤ 0.1%) -20 dBm 3 Up to three spurious responses within Bluetooth limits are allowed.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

12.14.2 Enhanced Data Rate Condition

Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V Table 67: Enhance Data Rate Condition Item Contents Current Consumption Minimum Typical Maximum Unit

  • Tx mode 2DH5 Current 1.8V 192 240 mA
  • Tx mode 2DH5 Current 3.3V 0.2 3 mA
  • Rx mode 2DH5 Current 1.8V 123 150 mA
  • Rx mode 2DH5 Current 3.3V 0.2 3 mA
  • Tx mode 3DH5 Current 1.8V 191 240 mA
  • Tx mode 3DH5 Current 3.3V 0.2 3 mA
  • Rx mode 3DH5 Current 1.8V 123 150 mA
  • Rx mode 3DH5 Current 3.3V 0.2 3 mA Tx Characteristics Minimum Typical Maximum Unit Output Power@2DH5/3DH5 5 8 dBm Frequency Range 2400 2483.5 MHz 20 dB bandwidth 1 MHz Adjacent Channel Power4
  • [M-N] = 2 -20 dBm
  • [M-N] ≥ 3 -40 dBm EDR Relative Power -4 1 dB EDR Carrier Frequency Stability and Modulation Accuracy
  • ωi -75 75 kHz
  • ωi+ωo -75 75 kHz
  • ωo -10 10 kHz
  • RMS DEVM (DQPSK) 20 %
  • Peak DEVM (DQPSK) 35 %
  • 99% DEVM (DQPSK) 30 %
  • RMS DEVM (8 DPSK) 13 %
  • Peak DEVM (8 DPSK) 25 %
  • 99% DEVM (8 DPSK) 20 % Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit EDR Sensitivity (BER ≤ 0.007%) @ 8DPSK -88 -70 dBm Maximum Input Level (BER ≤ 0.1%) -20 dBm 4 Up to three spurious responses within Bluetooth limits are allowed.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

12.15 DC/RF Characteristics for Bluetooth Low Energy

Table 68: Characteristics Values for Bluetooth Low Energy Contents Items Bluetooth Specification (power class) Version 5.3 (Class 1.5) Channel Frequency (spacing) 2402 to 2480 MHz (2 MHz) Number of RF Channel 40 12.15.1 1 Mbps PHY Condition Conditions: 25 °C, VBAT = 3.3V, VIO = 1.8V Table 69: 1 Mbps PHY Condition Item Contents Current Consumption Minimum Typical Maximum Unit

  • Tx mode Current 1.8V 325 390 mA
  • Tx mode Current 3.3V 0.2 3
  • Rx mode Current 1.8V 123 150 mA
  • Rx mode Current 3.3V 0.2 3 Tx Characteristics Minimum Typical Maximum Unit Center Frequency 2402 2480 MHz Channel Spacing 2 MHz Number of RF channel 40 Output power 13 16 dBm In-band emission
  • fTX +/-2 MHz -20 dBm
  • fTX +/-[3+n] MHz; n = 0,1,2… -30 dBm Modulation Characteristics
  • Δf1avg 225 275 kHz
  • Δf2max (at 99.9%) 185 kHz
  • Δf2avg / Δf1avg 0.8 Stable Modulation Characteristics
  • Δf1avg 247.5 252.5 kHz
  • Δf2max (at 99.9%) 185 kHz
  • Δf2avg / Δf1avg 0.8 Carrier Frequency Offset and Drift
  • Frequency offset (fn); n = 0,1, 2, 3…k -150 150 kHz
  • Frequency drift (|f0-fn|); n = 2, 3, 4…k 50 kHz
  • Drift Rate
  • |f1 - f0| 23 kHz
  • |fn-fn-5|; n = 6, 7, 8... k 20 kHz Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Item Contents

  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Receiver sensitivity (PER < 30.8%) -97 -70 dBm Maximum input signal level (PER < 30.8%) -10 dBm PER Report Integrity (-30 dBm input) 50 65.4 % 12.15.2 2 Mbps PHY Condition Conditions: 25°C, VBAT = 3.3V, VIO = 1.8V Table 70: 2 Mbps PHY Condition Item Contents Current Consumption Minimum Typical Maximum Unit
  • Tx mode Current 1.8V 344 390 mA
  • Tx mode Current 3.3V 0.2 3 mA
  • Rx mode Current 1.8V 123 150 mA
  • Rx mode Current 3.3V 0.2 3 mA Tx Characteristics Minimum Typical Maximum Unit Center Frequency 2402 2480 MHz Channel Spacing 2 MHz Number of RF channel 40 Output power 13 16 dBm In-band emission
  • fTX +/-4 MHz -20 dBm
  • fTX+/-5 MHz -20 dBm
  • fTX+/-[6+n] MHz; n=0,1,2… -30 dBm Modulation Characteristics
  • Δf1avg 450 550 kHz
  • Δf2max (at 99.9%) 370 kHz
  • Δf2avg / Δf1avg 0.8 Stable Modulation Characteristics
  • Δf1avg 495 505 kHz
  • Δf2max (at 99.9%) 370 kHz
  • Δf2avg / Δf1avg 0.8 Carrier Frequency Offset and Drift
  • Frequency offset (fn); n = 0, 1, 2, 3…k -150 150 kHz
  • Frequency drift (|f0-fn|); n = 2, 3, 4…k 50 kHz
  • Drift Rate
  • |f1-f0| 23 kHz
  • fn-fn-5|; n = 6, 7, 8…k 20 kHz Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW = 100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Item Contents

  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Receiver sensitivity (PER < 30.8%) -97 -70 dBm Maximum input signal level (PER < 30.8%) -10 dBm PER Report Integrity (-30 dBm input) 50 65.4 % 12.16 DC/RF Characteristics for 802.15.4 Item Contents DC Characteristics Minimum Typical Maximum Unit DC Current
  • Tx mode Current 1.8V 392 550 mA
  • Tx mode Current 3.3V 0.2 3 mA
  • Rx mode Current 1.8V 120 150 mA
  • Rx mode Current 3.3V 0.2 3 mA Tx Characteristics Minimum Typical Maximum Unit Output Power 12 15 18 dBm Spectrum Mask Margin Transmit power spectral density (PSD) mask - - -30 dB Modulation Accuracy - - 35 % Frequency Tolerance -40 40 ppm Spurious Emissions
  • 30 - 47 MHz (BW = 100 kHz) -36 dBm
  • 47 - 74 MHz (BW = 100 kHz) -54 dBm
  • 74 - 87.5 MHz (BW = 100 kHz) -36 dBm
  • 87.5 - 118 MHz (BW =100 kHz) -54 dBm
  • 118 - 174 MHz (BW = 100 kHz) -36 dBm
  • 174 - 230 MHz (BW = 100 kHz) -54 dBm
  • 230 - 470 MHz (BW = 100 kHz) -36 dBm
  • 470 - 862 MHz (BW = 100 kHz) -54 dBm
  • 862 - 1000 MHz (BW = 100 kHz) -36 dBm
  • 1000 - 12750 MHz (BW = 1 MHz) -30 dBm Rx Characteristics Minimum Typical Maximum Unit Minimum Input Level (PER ≤ 1%) - - -85 dBm Maximum Input Level (FER ≤ 1%) -20 - - dBm Adjacent Channel Rejection (FER < 1%) 0 - - dB

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

13 Land Pattern

Figure 23 shows land pattern of Type 2EL. Figure 23: Land Pattern (Unit: mm) To avoid the short-circuit between the side shielding and a solder on the module land after the reflow, please locate the module land at 0.2 mm away from module outline as above figure.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

14 Tape and Reel Packing

This section contains the following topics:

  • Dimensions of Tape (Plastic tape)
  • Dimensions of Reel
  • Taping Diagrams
  • Leader and tail tape
  • Packaging

14.1 Dimensions of Tape (Plastic Tape)

Figure 24 is a graphical representation of the tape dimension (plastic tape)5. Figure 24: Dimensions of Tape (Plastic Tape) 5 Cumulative tolerance of maximum 40 +/- 0.15 mm for every 10 pitches. 1.45 ±0.05 2.0±0.1 1.75±0.1 0.3±0.05 12.0±0.1 7.5±0.1 1.5+0.1/-0.0 16.0±0.2 feeding direction 4.0±0.1 8.10±0.05 1.5+0/-0.0 9.20±0.05

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

14.2 Dimensions of Reel

Figure 25 shows the reel dimensions. Figure 25: Dimensions of Reel (Unit: mm) Φ13±2 2±0.5 (Φ100) (Φ330) 17.5 22.5 max.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

14.3 Taping Diagrams

Figure 26 shows the taping diagrams. Figure 26: Taping Diagrams Table 71: Taping Specifications Mark Description 1 Feeding Hole. As specified in Dimensions of Tape (Plastic Tape) 2 Hole for chip. As specified in Dimensions of Tape (Plastic Tape) 3 Cover tape. 62 μm in thickness. 4 Base tape. As specified in Dimensions of Tape (Plastic Tape) [2] [3] [4] [3] [1] Feeding Hole Chip Feeding Direction Pin 1 Marking

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

14.4 Leader and Tail Tape

The leader and tail tape are shown in Figure 27 Figure 27: Leader and Tail Tape

  • The tape for chips is wound clockwise, the feeding holes to the right side as the tape is pulled toward the user.
  • The cover tape and base tape are not adhered at no components area for 250 mm minimum.
  • Tear off strength against pulling of cover tape: 5 N minimum.
  • Packaging unit: 500 pcs./ reel
  • Material
  • Base tape: Plastic
  • Real: Plastic
  • Cover tape, cavity tape and reel are made the anti-static processing.
  • Peeling off force: 1.1 N maximum. in the direction of peeling as shown in Figure 28 Tail tape (No components) 40 to 200 mm Components No components 150 mm minimum Leader tape (Cover tape alone) 250 mm minimum Feeding direction

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Figure 28: Peeling Force

14.5 Packaging (Humidity Proof Packing)

The packaging is shown in Figure 29 Figure 29: Humidity Proof Packing Tape and reel must be sealed with the anti-humidity plastic bag. The bag contains the desiccant and the humidity indicator. 165 to 180 °

1.1 N maximum

湿度 インジケ-タ 乾燥剤 表示ラべル 防湿梱包袋 表示ラベル Label Label Desiccant Humidity Indicator Anti-humidity Plastic Bag

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

15 Notice

15.1 Storage Conditions

  • Please use this product within 6 months after receipt.
  • The product shall be stored without opening the packing under the ambient temperature from 5 to 35 °C and humidity from 20 ~ 70 %RH (Packing materials, in particular, may be deformed at the temperature over 40 °C).
  • The product left more than 6 months after reception; it needs to be confirmed the solderability before used.
  • The product shall be stored in noncorrosive gas (Cl2, NH3, SO2, NOX, etc.).
  • Any excess mechanical shock including, but not limited to, sticking the packing materials by sharp object, and dropping the product, shall not be applied in order not to damage the packing materials.
  • This product is applicable to MSL3 (Based on IPC/JEDEC J-STD-020)
  • After the packing opened, the product shall be stored at <30 °C / <60 %RH and the product shall be used within 168 hours.
  • When the color of the indicator in the packing changed, the product shall be baked before soldering.
  • Baking condition: 125 +5/-0 °C, 24 hours, 1 time
  • The products shall be baked on the heat-resistant tray because the materials (Base Tape, Reel Tape and Cover Tape) are not heat-resistant.

15.2 Handling Conditions

  • Be careful in handling or transporting products because excessive stress or mechanical shock may break products.
  • Handle with care if products may have cracks or damages on their terminals. If there is any such damage, the characteristics of products may change. Do not touch products with bare hands that may result in poor solder ability and destroy by static electrical charge.

15.3 Standard PCB Design (Land Pattern and Dimensions)

  • All the ground terminals should be connected to the ground patterns. Furthermore, the ground pattern should be provided between IN and OUT terminals. Please refer to the specifications for the standard land dimensions.
  • The recommended land pattern and dimensions is as Murata's standard. The characteristics of products may vary depending on the pattern drawing method, grounding method, land dimensions, land forming method of the NC terminals and the PCB material and thickness. Therefore, be sure to verify the characteristics in the actual set. When using non-standard lands, contact Murata beforehand.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

15.4 Notice for Chip Placer

When placing products on the PCB, products may be stressed and broken by uneven forces from a worn-out chucking locating claw or a suction nozzle. To prevent products from damages, be sure to follow the specifications for the maintenance of the chip placer being used. For the positioning of products on the PCB, be aware that mechanical chucking may damage products.

15.5 Soldering Conditions

The recommendation conditions of soldering are shown in Figure 30. Soldering must be carried out by the above-mentioned conditions to prevent products from damage. Set up the highest temperature of reflow within 260 °C. Contact Murata before use if concerning other soldering conditions. Figure 30: Reflow soldering standard conditions (Example)

15.6 Cleaning

This product is moisture sensitive; therefore, any cleaning is not recommended. If any cleaning process is done the customer is responsible for any issues or failures caused by the cleaning process. Please use the reflow within 2 times. Use rosin type flux or weakly active flux with a chlorine content of 0.2 wt. % or less. Within 120 s Pre-heating time(s) 220 °C Within 60 s Cooling down Slowly 180 °C 150 °C 250 °C Within 10 s Tpeak-5 °C

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

15.7 Operational Environment Conditions

Products are designed to work for electronic products under normal environmental conditions (ambient temperature, humidity, and pressure). Therefore, products have no problems to be used under the similar conditions to the above-mentioned. However, if products are used under the following circumstances, it may damage products and leakage of electricity and abnormal temperature may occur.

  • In an atmosphere containing corrosive gas (Cl2, NH3, SOX, NOX etc.).
  • In an atmosphere containing combustible and volatile gases.
  • Dusty place.
  • Direct sunlight place.
  • Water splashing place.
  • Humid place where water condenses.
  • Freezing place. If there are possibilities for products to be used under the preceding clause, consult with Murata before actual use. Do not apply static electricity or excessive voltage while assembling and measuring, as it might be a cause of degradation or destruction to apply static electricity to products.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

16 Precondition to Use Our Products

PLEASE READ THIS NOTICE BEFORE USING OUR PRODUCTS. Please make sure that your product has been evaluated and confirmed from the aspect of the fitness for the specifications of our product when our product is mounted to your product. All the items and parameters in this product specification/datasheet/catalog have been prescribed on the premise that our product is used for the purpose, under the condition and in the environment specified in this specification. You are requested not to use our product deviating from the condition and the environment specified in this specification. Please note that the only warranty that we provide regarding the products is its conformance to the specifications provided herein. Accordingly, we shall not be responsible for any defects in products or equipment incorporating such products, which are caused under the conditions other than those specified in this specification. WE HEREBY DISCLAIM ALL OTHER WARRANTIES REGARDING THE PRODUCTS, EXPRESS OR IMPLIED, INCLUDING WITHOUT LIMITATION ANY WARRANTY OF FITNESS FOR A PARTICULAR PURPOSE, THAT THEY ARE DEFECT -FREE, OR AGAINST INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS. You agree that you will use any and all software or program code (including but not limited to hcd, firmware, nvram, and blob) we may provide or to be embedded into our product (“Software”) provided that you use the Software bundled with our product. YOU AGREE THAT THE SOFTWARE SHALL BE PROVIDED TO YOU “AS IS” BASIS, MURATA MAKES NO REPRESENTATIONS OR WARRANTIES T HAT THE SOFTWARE IS ERROR -FREE OR WILL OPERATE WITHOUT INTERRUPTION. AND MORE, MURATA MAKES NO REPRESENTATIONS OR WARRANTIES OF ANY KIND WHETHER EXPRESS OR IMPLIED WITH RESPECT TO THE SOFTWARE. MURATA EXPRESSLY DISCLAIM ANY AND ALL WARRANTIES OR CONDITIONS OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE NOR THE WARRANTY OF TITLE OR NON - INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS. You shall indemnify and hold harmless us, our affiliates, and our licensor from and against any and all claims, costs, expe nses and liabilities (including attorney’s fees), which arise in connection with the using the Software. The product shall not be used in any application listed below which requires especially high reliability for the prevention of such defect as may direc tly cause damage to the third party's life, body or property. You acknowledge and agree that, if you use our products in such applications, we will not be responsible for any failure to meet such requirements. Furthermore, YOU AGREE TO INDEMNIFY AND DEFEND US AND OUR AFFILIATES AGAINST ALL CLAIMS, DAMAGES, COSTS, AND EXPENSES THAT MAY BE INCURRED, INCLUDING WITHOUT LIMITATION, ATTORNEY FEES AND COSTS, DUE TO THE USE OF OUR PRODUCTS AND THE SOFTWARE IN SUCH APPLICATIONS.

  • Aircraft equipment.
  • Aerospace equipment.
  • Undersea equipment.
  • Power plant control equipment.
  • Medical equipment.
  • Traffic signal equipment.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

  • Burning / explosion control equipment.
  • Disaster prevention / crime prevention equipment.
  • Transportation equipment (vehicles, trains, ships, elevator, etc.).
  • Application of similar complexity and/ or reliability requirements to the applications listed in the above.
  • We expressly prohibit you from analyzing, breaking, reverse-engineering, remodeling altering, and reproducing our product. Our product cannot be used for the product which is prohibited from being manufactured, used, and sold by the regulations and laws in the world. We do not warrant or represent that any license, either express or implied, is granted under any our patent right, cop yright, mask work right, or our other intellectual property right relating to any combination, machine, or process in which our products or services are used. Information provided by us regarding third -party products or services does not constitute a licen se from us to use such products or services or a warranty or endorsement thereof. Use of such information may require a license from a third party under the patents or other intellectual property of the third party, or a license from us under our patents or other intellectual property. Please do not use our products, our technical information and other data provided by us for the purpose of developing of mass-destruction weapons and the purpose of military use. Moreover, you must comply with "foreign exchan ge and foreign trade law", the "U.S. export administration regulations", etc. Please note that we may discontinue the manufacture of our products, due to reasons such as end of supply of materials and/or components from our suppliers. By signing on specifi cation sheet or approval sheet, you acknowledge that you are the legal representative for your company and that you understand and accept the validity of the contents herein. When you are not able to return the signed version of specification sheet or appr oval sheet within 30 days from receiving date of specification sheet or approval sheet, it shall be deemed to be your consent on the content of specification sheet or approval sheet. Customer acknowledges that engineering samples may deviate from specifica tions and may contain defects due to their development status. We reject any liability or product warranty for engineering samples. In particular we disclaim liability for damages caused by
  • The use of the engineering sample other than for evaluation purposes, particularly the installation or integration in the product to be sold by you,
  • Deviation or lapse in function of engineering sample,
  • Improper use of engineering samples.
  • We disclaim any liability for consequential and incidental damages. If you can’t agree with the above contents, please contact sales.

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet

Revision History

Date Changed Item Comments

2021.12.14 First Issue

A 2022.07.15 4. Block Diagram 7.1. Pin Assignments 7.2. Pin Descriptions 14. Reference Circuit

  • Remove external sleep clock
  • Change SLP_CLK_IN to DNC
  • Change Pin name: ANT → ANT0, BT_15.4_OUT → ANT1
  • Change SLP_CLK_IN to DNC
  • Change Pin name: ANT → ANT0, BT_15.4_OUT → ANT1
  • Change SLP_CLK_IN to DNC
  • Change Pin name: ANT → ANT0, BT_15.4_OUT → ANT1 B 2022.09.05 4. Block Diagram 14. Reference Circuit
  • Update
  • Update reference circuit based on latest information C 2022.11.04 Bluetooth version
  1. Absolute Maximum Ratings
  • Update to 5.3
  • Update
  • Revise value D 2023.01.20 7.2 Pin Descriptions

10.1 Power Up Sequence

10.2 Power Down Sequence

10.3 Hot Reset Sequence

11.4 802.15.4 SPI Timing

  1. Reference Circuit 16. Tape and Reel Packaging
  • Update the description of Pin #3
  • Added comment on termination of open pins.
  • Update the sequence picture.
  • Add power down sequence.
  • Add hot reset sequence.
  • Add SPI I/F timing sequence.
  • Add 802.11ax 2.4GHz HE20, 5GHz HE 20/40/80 and low/high rate table
  • Add uFL/trace dedicated antenna circuit.
  • Update from TBD E 2023.01.27 2. Key Features 3. Ordering Information 14. Reference Circuit 15. Notice
  • Updated information.
  • Added Embedded Artists’ M.2 module information.
  • Moved section to HW app note.
  • Moved section to before Preconditions section. Updated to new format F 2023.02.02 12 DC/RF Characteristics • Update Tx Power value G 2023.02.13 5.2 Bluetooth Qualification
  • Add QDID
  • Change pin name on Table 6: Terminal Configurations (JTAG pins are changed to “Reserved”, GPIO[21] to “SD_INT”, GPIO[23] to “Reserved”, and GPIO[27] to “Reserved”)
  • Change pin name
  • Add description on PCM_DOUT/DIN
  • Change Pin name on Table 9: I/O State Table

Type 2EL Wi-Fi + Bluetooth + 802.15.4 Tri-Radio Module Datasheet Revision Code Date Changed Item Comments H 2023.5.30 4. Block Diagram 9.2External Sleep Clock Requirements

11.1.4 SDR104 Modes

(up to 208 MHz) at 1.8V

15 Radio Regulatory Certification

  • Revise figure
  • Revise figure
  • Update Certification information
  • Int’l Pull Value 90kΩ→100kΩ
  • Remove this section
  • Revise figure
  • Update
  • Update information
  • Update I 2023.7.11 9.3 Package Thermal Conditions

14.3 Trace Antenna (Shared Antenna)

14.4 Trace Antenna

(Dedicated Antenna)

  • Update
  • Revise figure
  • Revise figure J 2023.10.11 4 Block Diagram

5.2 Radio Regulatory Certification

6 Dimensions, Markings and Terminal

  • Revise figure
  • Update Japan certification ID
  • Add new information
  • Revise figure
  • Revise figure
  • Revise list K 2023.10.20 5.1 Radio Certification
  • Revise ISED No.
  • Revise link name Copyright © Murata Manufacturing Co., Ltd. All rights reserved. The information and content in this document are provided “as-is” with no warranties of any kind and are for informational purpose only. Data and information have been carefully checked and are believed to be accurate; however, no liability or responsibility for any errors, omissions, or inaccuracies is assumed. Wi-Fi® is a registered trademark of Wi-Fi Alliance. The Bluetooth® word mark and logos are registered trademarks owned by Bluetooth SIG, Inc. Other brand and product names are trademarks or registered trademarks of their respective owners. Specifications are subject to change without notice.