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Linux/Documentation/hwmon/da9052.rst

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Diff markup

Differences between /Documentation/hwmon/da9052.rst (Version linux-6.12-rc7) and /Documentation/hwmon/da9052.rst (Version linux-4.19.323)


  1 Kernel driver da9052                              
  2 ====================                              
  3                                                   
  4 Supported chips:                                  
  5                                                   
  6   * Dialog Semiconductors DA9052-BC and DA9053    
  7                                                   
  8     Prefix: 'da9052'                              
  9                                                   
 10     Datasheet: Datasheet is not publicly avail    
 11                                                   
 12 Authors: David Dajun Chen <dchen@diasemi.com>      
 13                                                   
 14 Description                                       
 15 -----------                                       
 16                                                   
 17 The DA9052/53 provides an Analogue to Digital     
 18 resolution and track and hold circuitry combin    
 19 multiplexer. The analogue input multiplexer wi    
 20 different inputs. The track and hold circuit e    
 21 the input of the ADC during the conversion.       
 22                                                   
 23 The ADC is used to measure the following input    
 24                                                   
 25 ========= ====================================    
 26 Channel 0 VDDOUT - measurement of the system v    
 27 Channel 1 ICH - internal battery charger curre    
 28 Channel 2 TBAT - output from the battery NTC      
 29 Channel 3 VBAT - measurement of the battery vo    
 30 Channel 4 ADC_IN4 - high impedance input (0 -     
 31 Channel 5 ADC_IN5 - high impedance input (0 -     
 32 Channel 6 ADC_IN6 - high impedance input (0 -     
 33 Channel 7 XY - TSI interface to measure the X     
 34           screen resistive potentiometers         
 35 Channel 8 Internal Tjunc. - sense (internal te    
 36 Channel 9 VBBAT - measurement of the backup ba    
 37 ========= ====================================    
 38                                                   
 39 By using sysfs attributes we can measure the s    
 40 charging current ICH, battery temperature TBAT    
 41 TJUNC, battery voltage VBAT and the back up ba    
 42                                                   
 43 Voltage Monitoring                                
 44 ------------------                                
 45                                                   
 46 Voltages are sampled by a 10 bit ADC.             
 47                                                   
 48 The battery voltage is calculated as:             
 49                                                   
 50         Milli volt = ((ADC value * 1000) / 512    
 51                                                   
 52 The backup battery voltage is calculated as:      
 53                                                   
 54         Milli volt = (ADC value * 2500) / 512;    
 55                                                   
 56 The voltages on ADC channels 4, 5 and 6 are ca    
 57                                                   
 58         Milli volt = (ADC value * 2500) / 1023    
 59                                                   
 60 Temperature Monitoring                            
 61 ----------------------                            
 62                                                   
 63 Temperatures are sampled by a 10 bit ADC.  Jun    
 64 are monitored by the ADC channels.                
 65                                                   
 66 The junction temperature is calculated:           
 67                                                   
 68         Degrees celsius = 1.708 * (TJUNC_RES -    
 69                                                   
 70 The junction temperature attribute is supporte    
 71                                                   
 72 The battery temperature is calculated:            
 73                                                   
 74         Degree Celsius = 1 / (t1 + 1/298) - 27    
 75                                                   
 76 where t1 = (1/B)* ln(( ADCval * 2.5)/(R25*ITBA    
 77                                                   
 78 Default values of R25, B, ITBAT are 10e3, 3380    
                                                      

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