foxBMS
1.3.0
The foxBMS Battery Management System API Documentation

Resistive divider used for measuring temperature. More...
Go to the source code of this file.
Macros  
#define  TS_EPCOS_B57861S0103F045_ADC_VOLTAGE_V_MAX_V (float)((TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_SUPPLY_VOLTAGE_V * ts_b57861s0103f045Lut[ts_b57861s0103f045LutSize1].resistance_Ohm) / (ts_b57861s0103f045Lut[ts_b57861s0103f045LutSize1].resistance_Ohm+TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_RESISTANCE_R_1_R_2_Ohm)) 
Defines for calculating the ADC voltage on the ends of the operating range. More...  
#define  TS_EPCOS_B57861S0103F045_ADC_VOLTAGE_V_MIN_V (float)((TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_SUPPLY_VOLTAGE_V * ts_b57861s0103f045Lut[0].resistance_Ohm) / (ts_b57861s0103f045Lut[0].resistance_Ohm+TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_RESISTANCE_R_1_R_2_Ohm)) 
Defines for calculating the ADC voltage on the ends of the operating range. More...  
Functions  
int16_t  TS_Epc01GetTemperatureFromLut (uint16_t adcVoltage_mV) 
returns temperature based on measured ADC voltage More...  
int16_t  TS_Epc01GetTemperatureFromPolynomial (uint16_t adcVoltage_mV) 
returns temperature based on measured ADC voltage More...  
Variables  
static const TS_TEMPERATURE_SENSOR_LUT_s  ts_b57861s0103f045Lut [] 
static uint16_t  ts_b57861s0103f045LutSize = sizeof(ts_b57861s0103f045Lut) / sizeof(TS_TEMPERATURE_SENSOR_LUT_s) 
Resistive divider used for measuring temperature.
SPDXLicenseIdentifier: BSD3Clause
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Definition in file epcos_b57861s0103f045.c.
#define TS_EPCOS_B57861S0103F045_ADC_VOLTAGE_V_MAX_V (float)((TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_SUPPLY_VOLTAGE_V * ts_b57861s0103f045Lut[ts_b57861s0103f045LutSize1].resistance_Ohm) / (ts_b57861s0103f045Lut[ts_b57861s0103f045LutSize1].resistance_Ohm+TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_RESISTANCE_R_1_R_2_Ohm)) 
Defines for calculating the ADC voltage on the ends of the operating range.
The ADC voltage is calculated with the following formula:
V_adc = ((V_supply * R_ntc) / (R + R_ntc)) Depending on the position of the NTC in the voltage resistor (R1/R2), different R_ntc values are used for the calculation.
Definition at line 129 of file epcos_b57861s0103f045.c.
#define TS_EPCOS_B57861S0103F045_ADC_VOLTAGE_V_MIN_V (float)((TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_SUPPLY_VOLTAGE_V * ts_b57861s0103f045Lut[0].resistance_Ohm) / (ts_b57861s0103f045Lut[0].resistance_Ohm+TS_EPCOS_B57861S0103F045_RESISTOR_DIVIDER_RESISTANCE_R_1_R_2_Ohm)) 
Defines for calculating the ADC voltage on the ends of the operating range.
The ADC voltage is calculated with the following formula:
V_adc = ((V_supply * R_ntc) / (R + R_ntc)) Depending on the position of the NTC in the voltage resistor (R1/R2), different R_ntc values are used for the calculation.
Definition at line 131 of file epcos_b57861s0103f045.c.
int16_t TS_Epc01GetTemperatureFromLut  (  uint16_t  adcVoltage_mV  ) 
returns temperature based on measured ADC voltage
adcVoltage_mV  voltage in mV 
Definition at line 147 of file epcos_b57861s0103f045.c.
int16_t TS_Epc01GetTemperatureFromPolynomial  (  uint16_t  adcVoltage_mV  ) 
returns temperature based on measured ADC voltage
adcVoltage_mV  voltage in mV 
Definition at line 197 of file epcos_b57861s0103f045.c.

static 
LUT filled from higher resistance to lower resistance
Definition at line 67 of file epcos_b57861s0103f045.c.

static 
size of the ts_b57861s0103f045Lut LUT
Definition at line 115 of file epcos_b57861s0103f045.c.