Table of Contents · The ISM43907 also enables coexistence support for external radios such as...

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ISM43907-L170-EVB User’s Manual DOC-907UM-2017-1.0 Confidential Inventek Systems Page 1 INVENTEK SYSTEMS ISM43907-L170-EVB Embedded SiP SoC 802.11 a/b/g/n Evaluation Board User’s Manual

Transcript of Table of Contents · The ISM43907 also enables coexistence support for external radios such as...

Page 1: Table of Contents · The ISM43907 also enables coexistence support for external radios such as cellular and LTE, GPS, and Ultra-Wideband. For the WLAN section, the host interface

ISM43907-L170-EVB User’s Manual

DOC-907UM-2017-1.0 Confidential Inventek Systems Page 1

INVENTEK SYSTEMS

ISM43907-L170-EVB

Embedded SiP SoC 802.11 a/b/g/n

Evaluation Board

User’s Manual

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Table of Contents

1 PART NUMBER DETAIL DESCRIPTION .......................................................................... 3 1.1 Ordering Information ...................................................................................................... 3 2 OVERVIEW ........................................................................................................................... 3 3 FEATURES ............................................................................................................................ 4 3.1 Limitations ...................................................................................................................... 4

4 ISM43907 EVB USER’s MANUAL OVERIVEW ............................................................... 5

4.1 Overview: ........................................................................................................................ 5

4.2 Antenna Options ............................................................................................................. 5

5 ISM43907 EVALUATION BOARD INTRODUCTION ...................................................... 6 6 ISM43907 EVALUATION BOARD FEATURES ................................................................ 7 6.1 Feature List ..................................................................................................................... 7

The ISM43907-L170-EVB provides a platform for the design and development of applications

that run on a ISM43907-L170 SiP. ................................................................................................. 7

7 ISM43907 EVALUATION BOARD HW LAYOUT & CONFIGURATION ...................... 8 7.1 ISM43907-L170-EVB Diagram ..................................................................................... 8 7.2 ISM43907-L170-EVB HW Interface Layout Placement ............................................. 10

7.2.1 Bottom View ............................................................................................................. 11 8 POWER SUPPLY ................................................................................................................. 12

8.1 Power source ................................................................................................................. 12 8.2 Reset source .................................................................................................................. 12

8.3 Audio............................................................................................................................. 12 8.4 UART ............................................................................................................................ 12 8.5 PWM ............................................................................................................................. 12

8.6 I2C................................................................................................................................. 12 8.7 SPI ................................................................................................................................. 13

8.8 GPIO ............................................................................................................................. 13 9 SCHEMATICS ..................................................................................................................... 18 9.1 Application schematic ................................................................................................... 18

9.1.1 Power Schematic ....................................................................................................... 19 9.1.2 USB to URAT, JTAG,& Reset ................................................................................. 20 9.1.3 External Flash ........................................................................................................... 21

9.1.4 I/O ............................................................................................................................. 22

10 REVISION CONTROL ........................................................................................................ 23 11 CONTACT INFORMATION ............................................................................................... 23

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1 PART NUMBER DETAIL DESCRIPTION

1.1 Ordering Information

Device Description Ordering Number ISM43907-L170 2.4/5G Wi-Fi SiP Module ISM43907-L170

ISM43907-L170-EVB 2.4/5G Wi-Fi SiP EVB, SDIO I/F Evaluation Board

ISM43907-L170-EVB

2 OVERVIEW The Inventek ISM43907 single-chip Dual Band, 2.4G/5G (802.11a/b/g/n). radio device provides the highest level of integration for a wireless system, with integrated dual band Wi-Fi based on Cypress’ IEEE802.11 a/b/g/n single-stream with support for antenna diversity and provisions for supporting future specifications. Thus, the ISM43907 can be used to enable wireless connectivity to the simplest existing sensor products with minimal engineering effort. The ISM43907 also includes integrated power amplifiers, LNAs and T/R switches for the 2.4 GHz and 5 GHz WLAN bands, greatly reducing the external part count, PCB footprint, and cost of the solution. The ISM43907 also integrates an embedded ARM CortexTM-R4 MCU, clock, and front end with the Dual Band radio. The ISM43907 is provided in the smallest LGA form-factor solution with minimal external components to drive down cost for mass volumes and allows for handheld device flexibility in size, form and function. Comprehensive power management circuitry and software ensure the system can meet the needs of high mobile devices that require minimal power consumption and reliable operations. The ISM43907 also enables coexistence support for external radios such as cellular and LTE, GPS, and Ultra-Wideband. For the WLAN section, the host interface is a SDIO v2.0 interface. The ISM43907 is a complete WiFi & MCU SiP which is designed for embedded wireless solution and a cost-effective, low power capabilities high performance MCU in M2M applications. The ISM43907 includes standards-based wireless technologies to enable IP infrastructures for smart grid, smart home, security, building automation, toys, robots, remote health and wellness monitoring and other M2M and IoT applications. The ISM43907 enables customers to reduce development time, lower manufacturing costs, save board space, ease certification, and minimize RF expertise required. Additionally, the ISM43907 is provided as a complete platform solution including software drivers, sample applications, API guide, user documentation and a world-class support community from Broadcom WICED Platform.

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3 FEATURES

The ISM43907 supports the following WLAN functions:

Dual-band 2.4 GHz and 5 GHz IEEE 802.11 a/b/g/n Frequency Band

IEEE802.11 a / b / g / n (single-stream), dual-band radio with internal Power Amplifiers,

LNAs and T/R switches

On-chip WLAN driver execution capable of supporting IEEE 802.11 functionality

Single and dual-antenna support

WLAN host interface :

o SDIO v2.0, including default and high-speed timing.

ARM 32-bit CortexTM-R4 embedded processor

SPI, UART serial interface options

JTAG debug interface

2MB of application SRAM, 640KB of ROM containing WICED SDK

Sensor applications support with ADC, I2C, I2S, GPIO, USB, PWM

Single-chip MAC/BB/RF On-chip functionality

Modulation Modes: WiFi: CCK and OFDM with BPSK, QPSK, 16 QAM, 64QAM

Hardware Encryption: WEP, WPA/WPA2

Supported Data Rates:

o IEEE 802.11b 1 – 11 Mbps

o IEEE 802.11a 6 – 54 Mbps

o IEEE 802.11g 6 – 54 Mbps

o IEEE 802.11n (2.4 GHz & 5GHz) 7.2 – 150Mbps

Advanced 1x1 802.11n features:

o Full/Half Guard Interval

o Frame Aggregation

o Space Time Block Coding (STBC)

o Low Density Parity Check (LDPC) Encoding

Two antenna configurations supporting antenna diversity.

WICED Fully compatible

MSL level 3

Supports BT/BLE COEX

Operating Temperature: -40C to +85C

RoHS compliant

Pb-Free

3.1 Limitations

Inventek Systems products are not authorized for use in safety-critical applications (such as life support) where a failure of the Inventek Systems product would reasonably be expected to cause severe personal injury or death.

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4 ISM43907 EVB USER’s MANUAL OVERIVEW

4.1 Overview:

This document provides information describing the ISM43907-L170-EVB (Evaluation Board), development platform. The ISM43907-L170-EVB User’s Manual is intended for engineers planning to use the Inventek ISM43907-L170-EVB in order to utilize and evaluate the Inventek ISM43907-L170 SiP radio.

4.2 Antenna Options

RF Test ports include U.Fl RF connector

o HIROSE U.FL RF connector, part number U.FL-R-SMT-1 (10)

o All boards are currently configured to use connector J38 with an external antenna

PCB Etched Antenna

o The PCB etched antenna (ANT4) can be used by removing C104 and placing an

8.2pF capacitor in location C103.

External Antenna

o The Inventek W2.4-5P-U dual band PCB antenna is included with the EVB

o More information on this antenna, please visit:

http://www.inventeksys.com/products-page/wifi-antennas/wi-fi-2-4-5ghz/

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5 ISM43907 EVALUATION BOARD INTRODUCTION

5.1 Introduction ISM43907-L170-EVB Development System The ISM43907-L170 SiP radio is a development system that facilitates Wireless Internet Connectivity for Embedded Devices. The ISM43907-L170-EVB development system, shown in Figure 1, is comprised of: • A software Development Kit with a tool chain and build system, a WiFi driver and software stack together with example applications. The SDK runs on a Windows or Linux PC. • A EVB. Applications developed using the WICED SDK is downloaded via USB to the Inventek ISM43907-L170 SiP on the ISM43907-L170-EVB Board. The ISM43907-L170 SiP consists of a Broadcom IEEE802.11 a/b/g/n WiFi chip and high-performance ARM CortexTM-R4 32-bit microcontroller.

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6 ISM43907 EVALUATION BOARD FEATURES

6.1 Feature List

The ISM43907-L170-EVB provides a platform for the design and development of applications that run on a ISM43907-L170 SiP.

Features Detail

ISM43907-L170 SiP The ISM43907-L170 SiP includes and Cypress host microprocessor, and Cypress WiFi Chip

-Cypress Microprocessor:

ARM-based 32-bit , 2MB of application SRAM, 640KB of ROM containing WICED SDK.

-Wi-FI SoC IEEE802.11 a/b/g/n

ISM43907-L170-EVB The ISM43907-L170-EVB is a complete WiFi networking solution and includes t h e ISM43907-L170 SiP, RF SMA connector and power supply

Program & Debug Interface

Applications are downloaded to the Cypress R4 embedded host and debugged using either the USB or the JTAG interface

USB-Serial UART Interface

A UART on the host microprocessor connects to the EVB USB-serial interface to enable serial communications with a PC terminal application

Expansion Header The expansion header facilitates custom sensor interfaces and expansion boards

Reset Switch Enable manual reset of the MCU

Power Supply The EVB may be powered directly from the USB interface or from an external +5V power supply.

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7 ISM43907 EVALUATION BOARD HW LAYOUT & CONFIGURATION

7.1 ISM43907-L170-EVB Diagram

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7.2 ISM43907-L170 Block Diagram

ISM43907-L170-EVB Diagram

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7.2 ISM43907-L170-EVB HW Interface Layout Placement

7.2.1 Top View

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7.2.1 Bottom View

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8 POWER SUPPLY

8.1 Power source The ISM43907-L170-EVB is designed to be powered by a 5 V DC power supply. It is possible to configure the evaluation board to use any of following two sources for the power supply: •5 V External power source hole on the board. The JP4 need connect Pin1 and pin2 •5 V DC power with 500 mA limitation from P1, the USB Micro-AB connecter, The JP4 need connect Pin2 and pin3

8.2 Reset source The reset signal of the ISM43907-L170-EVB board is low active and the reset source includes: •Reset button SW1.

8.3 Audio The ISM43907-L170-EVB board enables two channels of I2S function, one channel is connection to header (J4) and another is connection to header (J3).

8.4 UART The ISM43907-L170-EVB board enables one fast channel of UART and two slow channels of UART communication. Fast UART is connect to Header J12 (Pin8, pin 10, pin12, and pin14). 1st channel of slow UART (UART1) connects to R6, R8 & U1 (USB to UART IC), and Header J4 (Pin17, Pin19). 2nd Channel of slow UART connects to header J4 (Pin23 & Pin25).

8.5 PWM The ISM43907-L170-EVB board enables PWM control signal and connects to header J4.

8.6 I2C The ISM43907-L170-EVB board enables two channels of I2C function. One channel connects to J3 (Pin26 & Pin28). Another channel connects to J3 (pin27 & Pin29). •I2C signal traces need to pull high. •I2C signal traces need to pull high.

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8.7 SPI The ISM43907-L170-EVB board enables two channels of SPI function. The First channel connects to J3 ((Pin16, Pin18, Pin20, & Pin22). The Second channel connects to J3 (Pin1, Pin3, Pin5, & Pin7).

8.8 GPIO The ISM43907-L170-EVB board release GPIO function. The function is connecting to J2.

9.0 CONNECTORS 9.1 Power Supply Connector (Micro USB: P1) The ISM43907-L170-EVB board can be powered from 5V DC power supply via the external Mini USB connector (P1) or external power supply hole. -Micro USB Connector (P1)

Pin Description Pin Description

1 VBUS (5V) 4 NC

2 D- (connect to U1 pin 7) 5 GND

3 D+(connect to U1 pin 8)

Front View

9.2 Functional Pin Header

The ISM43907-L170-EVB board enables I2S, I2C, SPI, UART, PWM, BT_ADC, GPIO

function.

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Pin Description Pin Description 1 NC 2 GPIO_13_SDIO_MODE

3 NC 4 GPIO_12_CODEC_PDN

5 NC 6 GPIO_11_ACPU_BOOT_MODE

7 NC 8 GPIO10_DEEP_RST

9 NC 10 GPIO_9_USB_SEL

11 GPIO_16_USB_EN_AUD_SW 12 GPIO_7_WCPU_BOOT_MODE

13 GPIO_15 14 GPIO_1_GSPI_MODE

15 GPIO_14 16 GPIO_0_USB_CLT

- J3

Pin Description Pin Description 1 SPI_1_CS 2 SFLASH_MOSI_3

3 SPI_1_MOSI 4 SFLASH_MOSI_2

5 SPI_1_MISO 6 SFLASH_MOSI_1

7 SPI_1_CLK 8 SFLASH_MOSI_0

9 GND 10 SFLASH_CSN

11 I2S1_SD_OUT 12 SFLASH_CLK

13 I2S1_SD_IN_C 14 GND

15 GND 16 SPI_0_CS

17 I2S1_MCK 18 SPI_0_MOSI

19 GND 20 SPI_0_MISO

21 I2S1_WS_LRCK 22 SPI_0_CLK

23 I2S1_SCK_BCLK 24 GND

25 GND 26 I2C_1_SCL

27 I2C_0_SCL 28 I2C_1_SDA

29 I2C_0_SDA 30 GND

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J4

Pin Description Pin Description 1 USB2_HOST_DEV_SEL 2 PWM_5

3 GND 4 PWM_4 5 HIB_WAKE 6 PWM_3

7 HIB_REG_ON_IN 8 PWM_2

9 HIB_LPO_SEL 10 PWM_1

11 GND 12 PWM_0

13 RF_GPAIO_OUT 14 GND

15 GND 16 I2S0_SD_OUT

17 RF_SW_CTRL_7_UART_TX_OUT 18 I2S0_SD_IN_C

19 RF_SW_CTRL_6_UART_RX_IN 20 GND

21 GND 22 I2S0_MCK

23 RF_SW_CTRL_9_BT_SEC_OUT 24 GND 25 RF_SW_CTRL_8_BT_SEC_IN 26 I2S0_WS_LRCK

27 GND 28 GND

29 GND 30 I2S0_SCK_BCLK

J12

Pin Description Pin Description 1 USB2_DP 2 ANT1_DIV_RF_SW_CTRL_5

3 USB2_DN 4 ANT0_DIV_RF_SW_CTRL_4

5 PULL HIGH 6 NC

7 GND 8 UART0_CTS_IN

9 GND 10 UART0_RTS_OUT

11 GND 12 UART0_RXD_IN

13 GND 14 UART0_TXD_OUT

15 GND 16 NC

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J11

Pin Description Pin Description 1 GPIO_2_JTAG_TCK 2 GND

3 GPIO_3_JTAG_TMS 4 NC

5 GPIO_4_JTAG_TDI 6 NC

7 GPIO_5_JTAG_TDO 8 NC 9 GPIO_6_JTAG_TRST 10 NC

11 NC 12 NC 13 NC 14 NC

15 NC 16 GND

17 GND 18 NC 19 NC 20 NC

-JP4 -JP11

Pin Description

1 EXT_5V

2 5V_Input

3 VDD_5V-USB

Pin Description

1 VDDIO

2 JTAG_SEL

3 GND

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-JP12 -J5

Pin Description

1 GND

2 GPIO_8_TAP_SEL

3 VDDIO

- J6 -J7

Pin Description

1 GPIO1_GSPI_MODE

2 NC

Pin Description

1 GPIO_15

2 NC

Pin Description

1 GPIO_14

2 NC

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9 SCHEMATICS

9.1 Application schematic

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9.1.1 Power Schematic

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9.1.2 USB to URAT, JTAG,& Reset

USB to UART 1

FTDI_3V3

R18

1K

R16 0RFTDI_RESET

R15

1KJP1

header3

123

R17

10K

VDD_3V3

PUSH-TH-2PIN

SW1

SW-EVQ11L05R

1 2

C18

0.1uF

SW_SRST_LRESET_N_R

R21 1K

R19

10K

FTDI_3V3

U5

NC7SZ11P6X

4136

52

HEADR_SRST_L1

C19

0.1uF

FTDI_3V3

R20 10K

R22 10K

USB_FTDI_SRST_LSW_SRST_L

FTDI_3V3

RESET_N 4

C7 0.1uF

C6 0.1uF

U1

FT2232HL-R

VCCIO120

VCCIO231

VCCIO342

VCCIO456

VCORE112

VCORE237

VCORE364

VPLL9

VPHY4

VREGIN50

VREGOUT49

DM7

DP8

REF6

RESET#14

EECS63

EECLK62

EEDATA61

OSCI2

OSCO3

TEST13

GND11

GND25

GND311

GND415

GND525

GND635

GND747

GND851

ADBUS016

ADBUS117

ADBUS218

ADBUS319

ADBUS421

ADBUS522

ADBUS623

ADBUS724

ACBUS026

ACBUS127

ACBUS228

ACBUS329

ACBUS430

ACBUS532

ACBUS633

ACBUS734

BDBUS038

BDBUS139

BDBUS240

BDBUS341

BDBUS443

BDBUS544

BDBUS645

BDBUS746

BCBUS048

BCBUS152

BCBUS253

BCBUS354

BCBUS455

BCBUS557

BCBUS658

BCBUS7/PWRSAV#59

PWREN#60

SUSPEND#36

AGND10

U3

AT93C46D

DI3

SK2

CS1

ORG6

NC7

VCC8

DO4

GND5

U2 20pF@12MHz

13

24

FB1

MMZ1608B301C

1 2

FB2

MMZ1608B301C

1 2

FB3

MMZ1608B301C

12

C16

27pF

C17

27pF

C15 0.1uF

C3

4.7uF

C2

0.1uF

C4

0.1uF

C1

4.7uF

R11 10K

R12 10K

R14 10K

R13 2K2

R7 12K

FTDI_3V3

FTDI_3V3

FTDI_3V3

FTDI_3V3

VDD_5V-USB

REF

FTDI_RESET

OSCI

OSCO

DMDP

EECSEECLKEEDATA

GPIO_5_JTAG_TDO 1,3,4GPIO_3_JTAG_TMS 1,3,4

GPIO_4_JTAG_TDI 1,3,4GPIO_2_JTAG_TCK 1,3,4

BDBUS3_S4

R10

330

UART_RX_IN

C5 10uF

D1

LED/0603

FTDI_3V3

R6 1K

USB_FTDI_SRST_L

R2

100K_NC

R3

100K_NC

R4

100K_NC

R5

100K_NC

FTDI_3V3

VPLLVPHY

C9 0.1uF

C12 3.3uF

C11 0.1uF

C10 0.1uFVCORE

C14 0.1uF

C13 0.1uF

C8 0.1uF

JP2

header2

1

2

HEADR_SRST_L1

FB22

MMZ1608B301C

12

P1

USB-B

GND5

D+3

D-2

VBUS1

NC4

H1

H1

H2

H2

RF_SW_CTRL_7_UART_TX_OUT 3,4RF_SW_CTRL_6_UART_RX_IN 3,4

R8 0RUART_TX_OUT

GPIO_6_JTAG_TRST 3,4GPIO_6_JTAG_TRST

R1

100K_NC

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9.1.3 External Flash

U8

MX25L6433FZNI-08G

SI/SIO05

SCLK6

CS_L1

WP_L/SIO23

HLD_L/SIO37

GND4

SO/SIO12

VCC8

GND19

C540.1uF

SFLASH_CLK

FLASHSFLASH_MOSI_0

R48

0R_NC

SFLASH_MOSI_03,4

SFLASH_CLK3,4 SFLASH_MOSI_1 3,4

SFLASH_MOSI_23,4

SFLASH_MOSI_33,4

SFLASH_CSN3,4

VDD_3V3_Flash

VDDIO

R29

100K

R28 0R

R300R_NC

VDD_3V3_FlashVDDIO

R27

0R

R26

0R_NC

R36100K_NC

R34100K_NC

R35100K_NC

SPI_MOSI

SPI_SCK

R33100K_NC

SPI_MISO

SPI_NSS

VDD_3V3

U9

MICROSDF1_DNI

D21

D32

CMD3

VDD4

CLK5

VSS16

D07

D18

CD1H1

CD2H2

VSS2H3

VSS3H4

R38100K_NC

VDD_3V3_Flash

R37100K_NC

SPI_0_CLK3,4

SDIO_DATA_03,4

SPI_0_MOSI3,4

SPI_0_CS3,4

R49 0R_NCSDIO_DATA_13,4

R39 0R_NCSDIO_DATA_23,4

SDIO_CLK3,4

SPI_0_MISO3,4

SDIO_DATA_33,4

SDIO_CMD3,4

R40 0R_NCR41 0R_NC

R42 0R_NCR43 0R_NC

R44 0R_NCR45 0R_NC

R46 0R_NCR47 0R_NC

VDD_3V3_Flash

C55

0.1uF

VDDIO

R32

0R

R31

0R_NC

C560.5pF_NC

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9.1.4 I/O

JTAG_SEL4 GPIO_8_TAP_SEL 4

JP11

header3

123

JP12

header3

123

R50

4.7K

VDDIO

R55

4.7K

VDDIO

R51

4.7K

R54

4.7K

J4

CON20A

1234567891011121314151617181920

222426

212325

2830

2729

PWM_14PWM_04

PWM_34PWM_24

PWM_54PWM_44

I2S0_SD_OUT4I2S0_SD_IN_C4

I2S0_SCK_BCLK4

I2S0_WS_LRCK4

I2S0_MCK4

USB2_HOST_DEV_SEL 4

HIB_WAKE 4HIB_REG_ON_IN 4HIB_LPO_SEL 4

RF_SW_CTRL_9_BT_SEC_OUT 4RF_SW_CTRL_8_BT_SEC_IN 4

RF_GPAIO_OUT 4

RF_SW_CTRL_7_UART_TX_OUT 1,4RF_SW_CTRL_6_UART_RX_IN 1,4

J2

Jumper_2x8header100_2X8

11

22

33

44

55

66

77

88

99

1010

1111

1212

1313

1414

1515

1616

GPIO_1_GSPI_MODE4

GPIO_7_WCPU_BOOT_MODE4

GPIO_0_USB_CLT4

GPIO10_DEEP_RST4

GPIO_9_USB_SEL4

GPIO_12_CODEC_PDN4

GPIO_11_ACPU_BOOT_MODE4

BT_RESET_N 3,4

GPIO_13_SDIO_MODE4

GPIO_16_USB_EN_AUD_SW 4

GPIO_14 4

BT_RESET_N 3,4

GPIO_15 4

BT_HOST_WAKE 3,4

BT_LOP_IN 3,4

BT_DEV_WAKE 3,4

J3

CON20A

1234567891011121314151617181920

222426

212325

2830

2729

SFLASH_CLK3,4

SFLASH_MOSI_03,4SFLASH_CSN3,4

SFLASH_MOSI_23,4SFLASH_MOSI_13,4

SFLASH_MOSI_33,4

SPI_0_MISO3,4SPI_0_CLK3,4

SPI_0_CS3,4SPI_0_MOSI3,4

I2C_1_SCL4I2C_1_SDA4

SPI_1_MOSI 4SPI_1_CS 4

SPI_1_CLK 4SPI_1_MISO 4

I2C_0_SCL 4

I2S1_SD_OUT 4

I2C_0_SDA 4

I2S1_SD_IN_C 4

I2S1_SCK_BCLK 4I2S1_WS_LRCK 4

I2S1_MCK 4

GPIO_2_JTAG_TCK1,4

J11

CON20A

1 23 45 67 89 10

11 1213 1415 1617 1819 20

GPIO_3_JTAG_TMS1,4GPIO_4_JTAG_TDI1,4GPIO_5_JTAG_TDO1,4

GPIO_6_JTAG_TRST1,4

J12

Jumper_2x8header100_2X8

11

22

33

44

55

66

77

88

99

1010

1111

1212

1313

1414

1515

1616

UART0_TXD_OUT4

UART0_RXD_IN4

UART0_RTS_OUT4

UART0_CTS_IN4

R534.7K_NC

R524.7K_NC

R594.7K_NC

R574.7K_NC

R564.7K_NC

R58

4.7K

VDD_3V3

VDD_3V3

ANT0_DIV_RF_SW_CTRL_44

ANT1_DIV_RF_SW_CTRL_54 USB2_DP 4

USB2_DN 4

Page 23: Table of Contents · The ISM43907 also enables coexistence support for external radios such as cellular and LTE, GPS, and Ultra-Wideband. For the WLAN section, the host interface

ISM43907-L170-EVB User’s Manual

DOC-907UM-2017-1.0 Confidential Inventek Systems Page 23

10 REVISION CONTROL

Document: ISM43907-L170-EVB 802.11a/b/g/n Wi-Fi Evaluation Board

External Release DOC-907UM-2017-1.0

Date Author Revision Comment

3/08/2016 AS 1.0 Preliminary 6/23/2016 AS 1.0.1 Electrical Parameters

Validation Testing 10/03/2016 AS 1.1 Characterization

11/14/16 AS 1.8 Final Preliminary

2/17/17 AS 2.0 Release 8/22/17 KT 2.1 Updated Antenna

Options

11 CONTACT INFORMATION

Inventek Systems 2 Republic Road Billerica Ma, 01862 Tel: 978-667-1962 [email protected] www.inventeksys.com Copyright 2017, Inventek Systems. All Rights Reserved. This software, associated documentation and materials ("Software"), referenced and provided with this documentation is owned by Inventek Systems and is protected by and subject to worldwide patent protection (United States and foreign), United States copyright laws and international treaty provisions. Therefore, you may use this Software only as provided in the license agreement accompanying the software package from which you obtained this Software ("EULA"). If no EULA applies, Inventek Systems hereby grants you a personal, non-exclusive, non-transferable license to copy, modify, and compile the Software source code solely for use in connection with Inventek's integrated circuit products. Any reproduction, modification, translation, compilation, or representation of this Software except as specified above is prohibited without the express written permission of Inventek. Disclaimer: THIS SOFTWARE IS PROVIDED AS-IS, WITH NO WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING, BUT NOT LIMITED TO, NONINFRINGEMENT, IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE. Inventek reserves the right to make changes to the Software without notice. Inventek does not assume any liability arising out of the application or use of the Software or any product or circuit described in the Software. Inventek does not authorize its products for use in any products where a malfunction or failure of the Inventek product may reasonably be expected to result in significant property damage, injury, or death ("High Risk Product"). By including Inventek's product in a High Risk product, the manufacturer of such system or application assumes all risk of such use and in doing so agrees to indemnify Inventek against all liability. Inventek Systems reserves the right to make changes without further notice to any products or data herein to improve reliability, function, or design. The information contained within is believed to be accurate and reliable. However, Inventek does not assume any liability arising out of the application or use of this information, nor the application or use of any product or circuit described herein, neither does it convey any license under its patent rights nor the rights of others.