AD22103K

This is an overview of the AD22103K and the OSS-ECAL offering for the AD22103K. The AD22103K is a temperatures sensor IC (±0 to +100 °C) made by Analog Devices.
MCU interface : ADC

CAUTION:Please be sure to refer to the latest version of the Datasheet prior to actual design.

AD22103K

General description

The AD22103 is a monolithic temperature sensor with integrated signal processing circuitry that operates over a temperature range of 0 to +100°C, making it ideal for use in many 3.3-V applications.

Feature

  • 3.3V, single power supply operation
  • Temperature coefficient: 28mV/°C
  • Temperature measurement range: 0°C to +100°C
  • Accuracy: 2.5% or more of full scale
  • Linearity: 0.5% or more of full scale
  • Output voltage is proportional to (temperature x VS)
  • High voltage / low impedance output
  • Reverse voltage protection

Application

  • Microprocessor temperature control
  • Battery devices and low-power drives
  • Temperature monitoring of power supply
  • System temperature compensation
  • Board-level temperature sensor

OSS-ECAL specification

API Function

etSTS oAD22103K( etCMD cmd, float32* rlt )

The oAD22103K function is an API function that executes AD22103K processing according to the command in the argument.

Return valueetSTSOSS-ECAL status code
eSTS_FINCompleted successfully
eSTS_ERR_MINMinimum temperature error (rlt is minimum temperature)
eSTS_ERR_MAXMaximum temperature error (rlt is maximum temperature)
eSTS_ERR_HAL_ADCHAL ADC Error
eSTS_ERR_COMMAND_CODECommand selection error
eSTS_ERR_OTHERS_RUNOther components are executing the process
eSTS_ERR_HAL_OTHERS_RUNOther application is running HAL
eSTS_ERR_ADC_OBJECTAD conversion object selection error
Parameter INetCMD cmdOSS-ECAL command code
eCMD_STARTCommand to start AD conversion.
eCMD_READCommand that reads the AD conversion value, converts the AD conversion value to a characteristic Temperature, and stores the Temperature in rlt.

AD conversion value to temperature conversion equation
Voltage value = (AD conversion value × VDD) / ( 2AD bit )
Temperature = ((voltage value – voltage offset value) / gain) + Temperature offset value (Min, Max Limit)
eCMD_START_READCommand that starts AD conversion, waits for AD conversion to finish, reads out the AD conversion value, converts the AD conversion value to a characteristic Temperature, and stores the Temperature in rlt.

AD conversion value to temperature conversion equation
Voltage value = (AD conversion value × VDD) / ( 2AD bit )
Temperature = ((voltage value – voltage offset value) / gain) + Temperature offset value (Min, Max Limit)
Parameter OUTfloat32* rltTemperature ±0.0 to +100.0 [°C]

Command Correspondence Table by HAL

ArduinoeCMD_START_READ
ARM MbedeCMD_START_READ
Infineon ModusToolboxeCMD_START_READ
NXP MCUXpresso iMXRT1051B_1052BeCMD_START
eCMD_READ
eCMD_START_READ
Renesas SSPeCMD_START
eCMD_READ
eCMD_START_READ
STM STM32Cube FW_F4eCMD_START
eCMD_READ
eCMD_START_READ
etSTS oAD22103K_START(void)

The oAD22103K_START function is an API function to start AD conversion of the AD22103K.

Return valueetSTSOSS-ECAL status code
eSTS_FINCompleted successfully
eSTS_ERR_HAL_ADCHAL ADC Error
eSTS_ERR_OTHERS_RUNOther components are executing the process
eSTS_ERR_HAL_OTHERS_RUNOther application is running HAL
eSTS_ERR_ADC_OBJECTAD conversion object selection error

Function Correspondence Table by HAL

Arduino
ARM Mbed
Infineon ModusToolbox
NXP MCUXpresso iMXRT1051B_1052BX
Renesas SSPX
STM STM32Cube FW_F4X
etSTS oAD22103K_READ( float32* rlt )

The oAD22103K_READ function is an API function that checks for the end of AD conversion of the AD22103K, reads the AD conversion value, converts the AD conversion value to a characteristic temperature, and stores the temperature in rlt.

AD conversion value to temperature conversion equation
Voltage value = (AD conversion value × VDD) / ( 2AD bit )
Temperature = ((voltage value – voltage offset value) / gain) + Temperature offset value (Min, Max Limit)

Return valueetSTSOSS-ECAL status code
eSTS_FINCompleted successfully
eSTS_ERR_MINMinimum temperature error (rlt is minimum temperature)
eSTS_ERR_MAXMaximum temperature error (rlt is maximum temperature)
eSTS_ERR_HAL_ADCHAL ADC Error
eSTS_ERR_TIMEOUTADC Timeout error (AUTOSAR only)
eSTS_ERR_OTHERS_RUNOther components are executing the process
eSTS_ERR_ADC_OBJECTAD conversion object selection error
Parameter OUTfloat32* rltTemperature ±0.0 to +100.0 [°C]

Function Correspondence Table by HAL

Arduino
ARM Mbed
Infineon ModusToolbox
NXP MCUXpresso iMXRT1051B_1052BX
Renesas SSPX
STM STM32Cube FW_F4XTime-out time HAL_MAX_DELAY
etSTS oAD22103K_START_READ( float32* rlt )

The oAD22103K_START_READ function is an API function that starts an AD conversion of the AD22103K, waits for the AD conversion to finish, reads the AD conversion value, converts the AD conversion value to a temperature characteristic, and stores the temperature in rlt.

AD conversion value to temperature conversion equation
Voltage value = (AD conversion value × VDD) / ( 2AD bit )
Temperature = ((voltage value – voltage offset value) / gain) + Temperature offset value (Min, Max Limit)

Return valueetSTSOSS-ECAL status code
eSTS_FINCompleted successfully
eSTS_ERR_MINMinimum temperature error (rlt is minimum temperature)
eSTS_ERR_MAXMaximum temperature error (rlt is maximum temperature)
eSTS_ERR_HAL_ADCHAL ADC Error
eSTS_ERR_OTHERS_RUNOther components are executing the process
eSTS_ERR_HAL_OTHERS_RUNOther application is running HAL
eSTS_ERR_ADC_OBJECTAD conversion object selection error
Parameter OUTfloat32* rltTemperature ±0.0 to +100.0 [°C]

Function Correspondence Table by HAL

ArduinoX
ARM MbedX
Infineon ModusToolboxX
NXP MCUXpresso iMXRT1051B_1052BX
Renesas SSPX
STM STM32Cube FW_F4XTime-out time HAL_MAX_DELAY

HAL Support List

OSS-ECAL’s HAL support is as follows. (The list is being expanded sequentially.) Please note that even if the same HAL is used, different versions, MCUs, and development environments may not work together.

ManufacturerSDK/IDE ToolHAL NameVerHALNAMESupport
ArduinoArduino IDEArduino1.8.6ARDUINOX
ArmKeil MDK v6Mbed OS6.17.0MBEDX
DebianGNU/Linux10.3Linux
InfineonModusToolboxmtb-hal-cat12.4.3ModusToolboxX
NXPMCUXpresso SDKSDK_2.x_EVKB-IMXRT10502.16iMXRT1051B1052BX
NXPPlatformSDK_S32K1_2022_02AUTOSAR MCAL4.4MCAL
RenesasSynergy Software PackageHAL2.6.0SSPX
STMicroelectronicsSTM32CubeSTM32CubeF4V1.28.1STM32F4X
Development environment

The MCU and development environment during OSS-ECAL development are as follows.

HALNAMEManufacturerBoardMCUIDE
ARDUINOArduino1.Mega 2560 Rev3
2.Arduino Pro Mini 3.3V
ATmega2560
ATmega328P
Arduino IDE 2.3.3
MBEDSTMicroelectronicsSTM32 Nucleo-64 boardsSTM32F401RETxArm Keil Studio Cloud
LinuxBeagleBoardBeagleBone BlackTI AM335x
ModusToolboxInfineonCY8CPROTO-063-BLE PSoC 6 BLE Prototyping KitCYBLE-416045-02ModusToolbox
iMXRT1051B1052BNXPIMXRT1050-EVKBi.MX RT1050MCUXpresso IDE
MCALSTMicroelectronicsS32K144EVB-Q100S32K144S32 Design Studio for S32 Platform
SSPRenesasS7G2 SKR7FS7G27H3A01CFCe² studio for Renesas Synergy
STM32F4STMicroelectronicsSTM32 Nucleo-64 boardsSTM32F401RETxSTM32CubeIDE

File Structure

Folder*FileSummary
AD22103K_HALNAME_VERSION/samplesample.c (.cpp)Sample Application Program
sample.hSample Application Header
AD22103K_HALNAME_VERSIONoAD22103K.c (.cpp)OSS-ECAL Program for AD22103K
oAD22103K.hOSS-ECAL Header for AD22103K
AD22103K_ARDUINO.inoSample application programs for Arduino
oss_ecal.hOSS-ECAL Common Header (Ver 01.00.00 or later)
user_setting.c (.cpp)Const and Table of User setting
user_setting.hHeader of User setting
readme.mdReadme
OSS-ECAL Terms of Use.txtOSS-ECAL Terms of Use

* For HALNAME, please refer to HAL Support.

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Built-in How to

How to incorporate OSS-ECAL into user programs

How to incorporate multiple OSS-ECALs in a user program (same MCU function)

How to incorporate multiple OSS-ECALs in a user program (different MCU function)

How to incorporate multiple identical electronic components into a user program

How to reduce the impact on user programs by replacing electronic components

CAUTION

The sample version of OSS-ECAL is not intended to be used with Threads (Tasks) or interrupts of different priority. Please do not use it as in the example below.

Example: If each sensor is assigned to the same ADC group and the OSS-ECAL API is executed in processes with different priorities, correct values may not be obtained.
ADC Gr0 Ch0 Temperature sensor AD22100A 100ms cycle Thread (low priority) to take in temperature
ADC Gr0 Ch1 Pressure sensor   MPX5999D Event interrupts (high priority) to take pressure

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