... | ... |
@@ -58,17 +58,18 @@ unsigned int mw_get_battery_adc_val(void) |
58 | 58 |
ENABLE_ADC(); |
59 | 59 |
|
60 | 60 |
/* WaitForAdcBusy(); */ |
61 |
- while (ADC12CTL1 & ADC12BUSY); |
|
61 |
+ while (ADC12CTL1 & ADC12BUSY) |
|
62 |
+ nop(); |
|
62 | 63 |
|
63 |
- /* Convert the ADC count for the battery input into a voltage |
|
64 |
+ /* Convert the ADC count for the battery input into a voltage |
|
64 | 65 |
* ADC12MEM1: Counts Battery Voltage in ADC counts |
65 | 66 |
* Result: Battery voltage in millivolts */ |
66 | 67 |
BATTERY_SENSE_DISABLE(); |
67 | 68 |
|
68 |
- return (unsigned int)(CONVERSION_FACTOR_BATTERY * (double)ADC12MEM1); |
|
69 |
+ return (unsigned int)(CONVERSION_FACTOR_BATTERY * (double)ADC12MEM1); |
|
69 | 70 |
} |
70 | 71 |
|
71 |
-unsigned char mw_get_battery_percentage_from_val(unsigned int BattVal) |
|
72 |
+uint8_t mw_get_battery_percentage_from_val(unsigned int BattVal) |
|
72 | 73 |
{ |
73 | 74 |
if (BattVal > BATTERY_FULL_LEVEL) |
74 | 75 |
BattVal = BATTERY_FULL_LEVEL; |
... | ... |
@@ -81,3 +82,20 @@ unsigned char mw_get_battery_percentage_from_val(unsigned int BattVal) |
81 | 82 |
return (unsigned char)BattVal; |
82 | 83 |
} |
83 | 84 |
|
85 |
+unsigned int mw_get_amblight_adc_val(void) |
|
86 |
+{ |
|
87 |
+ LIGHT_SENSE_ENABLE(); |
|
88 |
+ |
|
89 |
+ CLEAR_START_ADDR(); |
|
90 |
+ ADC12CTL1 |= ADC12CSTARTADD_2; |
|
91 |
+ ENABLE_ADC(); |
|
92 |
+ |
|
93 |
+ /* WaitForAdcBusy(); */ |
|
94 |
+ while (ADC12CTL1 & ADC12BUSY) |
|
95 |
+ nop(); |
|
96 |
+ |
|
97 |
+ LIGHT_SENSE_DISABLE(); |
|
98 |
+ |
|
99 |
+ return ADC12MEM2; |
|
100 |
+} |
|
101 |
+ |
1 | 1 |
new file mode 100644 |
... | ... |
@@ -0,0 +1,83 @@ |
1 |
+#include <msp430.h> |
|
2 |
+#include <msp430xgeneric.h> |
|
3 |
+#include <stdint.h> |
|
4 |
+ |
|
5 |
+#include "mw_main.h" |
|
6 |
+ |
|
7 |
+#define HARDWARE_CFG_INPUT_CHANNEL ( ADC12INCH_13 ) |
|
8 |
+#define BATTERY_SENSE_INPUT_CHANNEL ( ADC12INCH_15 ) |
|
9 |
+#define LIGHT_SENSE_INPUT_CHANNEL ( ADC12INCH_1 ) |
|
10 |
+ |
|
11 |
+#define ENABLE_ADC() { ADC12CTL0 |= ADC12ON; ADC12CTL0 |= ADC12ENC + ADC12SC; } |
|
12 |
+#define DISABLE_ADC() { ADC12CTL0 &= ~ADC12ENC; ADC12CTL0 &= ~ADC12ON; } |
|
13 |
+#define CLEAR_START_ADDR() { ADC12CTL1 &= 0x0FFF; } |
|
14 |
+ |
|
15 |
+const double CONVERSION_FACTOR_BATTERY = ((24300.0+38300.0)*2.5*1000.0)/(4095.0*24300.0); |
|
16 |
+#define BATTERY_FULL_LEVEL (4140) |
|
17 |
+#define BATTERY_CRITICAL_LEVEL (3300) |
|
18 |
+#define BATTERY_LEVEL_RANGE (BATTERY_FULL_LEVEL - BATTERY_CRITICAL_LEVEL) |
|
19 |
+ |
|
20 |
+/*! conversion factor */ |
|
21 |
+const double CONVERSION_FACTOR = 2.5*10000.0/4096.0; |
|
22 |
+ |
|
23 |
+ |
|
24 |
+void mw_init_adc(void) |
|
25 |
+{ |
|
26 |
+ REFCTL0 = REFMSTR | REFTCOFF; |
|
27 |
+ |
|
28 |
+ LIGHT_SENSE_INIT(); |
|
29 |
+ BATTERY_SENSE_INIT(); |
|
30 |
+ HARDWARE_CFG_SENSE_INIT(); |
|
31 |
+ |
|
32 |
+ /* allow conditional request for modosc */ |
|
33 |
+ UCSCTL8 |= MODOSCREQEN; |
|
34 |
+ |
|
35 |
+ /* select ADC12SC bit as sample and hold source (00) |
|
36 |
+ * and use pulse mode |
|
37 |
+ * use modosc / 8 because frequency must be 0.45 MHz to 2.7 MHz (0.625 MHz) |
|
38 |
+ */ |
|
39 |
+ ADC12CTL1 = ADC12CSTARTADD_0 + ADC12SHP + ADC12SSEL_0 + ADC12DIV_7; |
|
40 |
+ |
|
41 |
+ /* 12 bit resolution, only use reference when doing a conversion */ |
|
42 |
+ ADC12CTL2 = ADC12TCOFF + ADC12RES_2 + ADC12REFBURST; |
|
43 |
+ |
|
44 |
+ /* setup input channels */ |
|
45 |
+ ADC12MCTL0 = HARDWARE_CFG_INPUT_CHANNEL + ADC12EOS; |
|
46 |
+ ADC12MCTL1 = BATTERY_SENSE_INPUT_CHANNEL + ADC12EOS; |
|
47 |
+ ADC12MCTL2 = LIGHT_SENSE_INPUT_CHANNEL + ADC12EOS; |
|
48 |
+} |
|
49 |
+ |
|
50 |
+unsigned int mw_get_battery_adc_val(void) |
|
51 |
+{ |
|
52 |
+ BATTERY_SENSE_ENABLE(); |
|
53 |
+ |
|
54 |
+ /* low_bat_en assertion to bat_sense valid is ~100 ns */ |
|
55 |
+ /* Start battery sense conversion */ |
|
56 |
+ CLEAR_START_ADDR(); |
|
57 |
+ ADC12CTL1 |= ADC12CSTARTADD_1; |
|
58 |
+ ENABLE_ADC(); |
|
59 |
+ |
|
60 |
+ /* WaitForAdcBusy(); */ |
|
61 |
+ while (ADC12CTL1 & ADC12BUSY); |
|
62 |
+ |
|
63 |
+ /* Convert the ADC count for the battery input into a voltage |
|
64 |
+ * ADC12MEM1: Counts Battery Voltage in ADC counts |
|
65 |
+ * Result: Battery voltage in millivolts */ |
|
66 |
+ BATTERY_SENSE_DISABLE(); |
|
67 |
+ |
|
68 |
+ return (unsigned int)(CONVERSION_FACTOR_BATTERY * (double)ADC12MEM1); |
|
69 |
+} |
|
70 |
+ |
|
71 |
+unsigned char mw_get_battery_percentage_from_val(unsigned int BattVal) |
|
72 |
+{ |
|
73 |
+ if (BattVal > BATTERY_FULL_LEVEL) |
|
74 |
+ BattVal = BATTERY_FULL_LEVEL; |
|
75 |
+ if (BattVal < BATTERY_CRITICAL_LEVEL) |
|
76 |
+ BattVal = 0; |
|
77 |
+ else |
|
78 |
+ BattVal -= BATTERY_CRITICAL_LEVEL; |
|
79 |
+ BattVal = (BattVal > 0) ? (BattVal * 10 / (BATTERY_LEVEL_RANGE / 10)) : 0; |
|
80 |
+ |
|
81 |
+ return (unsigned char)BattVal; |
|
82 |
+} |
|
83 |
+ |