foxBMS-UnitTests
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The foxBMS Unit Tests API Documentation
epcos_b57251v5103j060.h
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/**
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*
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* @copyright © 2010 - 2021, Fraunhofer-Gesellschaft zur Foerderung der
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* angewandten Forschung e.V. All rights reserved.
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*
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* BSD 3-Clause License
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions are met:
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* 1. Redistributions of source code must retain the above copyright notice,
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* this list of conditions and the following disclaimer.
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* contributors may be used to endorse or promote products derived from
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* this software without specific prior written permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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* We kindly request you to use one or more of the following phrases to refer
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* to foxBMS in your hardware, software, documentation or advertising
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* materials:
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*
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* ″This product uses parts of foxBMS®″
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*
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* ″This product includes parts of foxBMS®″
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*
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* ″This product is derived from foxBMS®″
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*
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*/
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/**
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* @file epcos_b57251v5103j060.h
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* @author foxBMS Team
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* @date 2018-10-30 (date of creation)
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* @updated 2021-03-22 (date of last update)
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* @ingroup TEMPERATURE_SENSORS
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* @prefix TS
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*
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* @brief Resistive divider used for measuring temperature
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*
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* V_supply
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* --.--
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* |
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* +-.-+
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* | |
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* | | R_1
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* | |
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* +-.-+
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* |
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* .--- V_adc
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* |
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* +-.-+
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* | |
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* | | R_2
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* | |
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* +-.-+
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* |
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* --.--
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* GND
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*
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*/
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#ifndef FOXBMS__EPCOS_B57251V5103J060_H_
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#define FOXBMS__EPCOS_B57251V5103J060_H_
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/*========== Includes =======================================================*/
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#include "
general.h
"
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/*========== Macros and Definitions =========================================*/
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/**
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* Position of the NTC in the voltage resistor
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* true: NTC is positioned above the voltage tap for the ADC voltage.
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* This equals resistor R_1 in the above circuit diagram
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*
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* false: NTC is positioned below the voltage tap for the ADC voltage.
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* This equals resistor R_2 in the above circuit diagram
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*/
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#define TS_EPCOS_B57251V5103J060_POSITION_IN_RESISTOR_DIVIDER_IS_R_1 (false)
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/** Resistor divider supply voltage in volt */
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#define TS_EPCOS_B57251V5103J060_RESISTOR_DIVIDER_SUPPLY_VOLTAGE_V (2.5f)
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/**
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* Resistance value of the other resistor (not the NTC) in the resistor
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* divider in Ohm.
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*/
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#define TS_EPCOS_B57251V5103J060_RESISTOR_DIVIDER_RESISTANCE_R_1_R_2_Ohm (10000.0f)
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/*========== Extern Constant and Variable Declarations ======================*/
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/**
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* @brief returns temperature based on measured ADC voltage
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* @param adcVoltage_mV voltage in mV
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* @return corresponding temperature in deci °C or INT16_MAX/INT16_MIN if
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* NTC is shorted or got disconnected. The caller of this functions
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* needs to check for these return values to prevent invalid data.
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*/
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extern
int16_t
TS_Epc00GetTemperatureFromLut
(uint16_t adcVoltage_mV);
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/**
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* @brief returns temperature based on measured ADC voltage
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* @param adcVoltage_mV voltage in mV
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* @return corresponding temperature in deci °C
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*/
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extern
int16_t
TS_Epc00GetTemperatureFromPolynomial
(uint16_t adcVoltage_mV);
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/*========== Extern Function Prototypes =====================================*/
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/*========== Externalized Static Functions Prototypes (Unit Test) ===========*/
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#endif
/* FOXBMS__EPCOS_B57251V5103J060_H_ */
general.h
TODO.
TS_Epc00GetTemperatureFromPolynomial
int16_t TS_Epc00GetTemperatureFromPolynomial(uint16_t adcVoltage_mV)
returns temperature based on measured ADC voltage
Definition:
epcos_b57251v5103j060.c:195
TS_Epc00GetTemperatureFromLut
int16_t TS_Epc00GetTemperatureFromLut(uint16_t adcVoltage_mV)
returns temperature based on measured ADC voltage
Definition:
epcos_b57251v5103j060.c:145
src
app
driver
ts
epcos
b57251v5103j060
epcos_b57251v5103j060.h
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