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Xx Battery charger register allocation



Register offset Name Minimum value Maximum value Scaling factor Units Bits/ Sign
0-185 Reserved          
186-187 Battery Charger Current Limit 0 50,000 1 mA 32S
188 Battery Charger Calculated Ambient Temperature -255 255 1 Degrees C 16S
189 Battery Charger PCB Temperature -300 255 1 Degrees C 16S
190-191 Auxiliary Current Limit 0 4000 1 mA 32S
192 Fan Speed 1 10 2400 1 rpm 16S
193 Fan Speed 2 10 2400 1 rpm 16S
194 Battery Voltage (when remote Sense connected)     0.1 V 16S
195-255 Reserved          

 

Auxiliary & Flexible sender category codes

Type code Type Minimum value Maximum value Scaling factor Units
0 Unused 0 0    
1 Pressure 0 10000 1 Kpa
2 Temperature -50 10000 1 Degrees C
3 Level 0 200 1 %
4-65535 Reserved        

 

Fuel Level codes

Type code Type
0 Litres
1 Imperial Gallons
2 US Gallons
3-65535 Reserved

 

Engine operating state

Type code Type
0 Engine stopped
1 Pre-Start
2 Warming up
3 Running
4 Cooling down
5 Engine Stopped
6 Post run
7  
8-13 Available for SAE assignment
14 Reserved
15 Not available

 

 

DPTC filter lamp command

Type code Type
0 Off
1 On – solid
2-3 Reserved for SAE assignment
4 On Fast blink (1Hz)
5-6 Reserved for SAE assignment
7 Not available

 

 

Exhaust system high temperature lamp

Type code Type
0 Engine stopped
1 Pre-Start
2-6 Available for SAE assignment
7 Not available

 

DPTC Action regeneration forced

Type code Type
0 Not active
1 Active forced by switch
2 Active forced by service tool
3-6 Not Available
7 Not available

 

CAN link status codes

Type code Type
0 Link OK
1 Link Lost
2 Link Unknown
65535 Unimplemented
3-65534 Reserved

 

Auto DPF Regeneration Inhibit

Type code Type
0 Auto regeneration permitted
1 Auto regeneration inhibited
3-65534 Reserved

 

DEF Lamps

Type code Type
0 Off
1 On Steady (amber/yellow steady)
2 Flash Slow (red slow blink)
3 Flash Fast (red fast blink)
11 Bad Data
15 Unimplemented

 

Page 6 – Derived Instrumentation

Notes:

1. These are read only registers.

2. Registers 22, 23, 46, 47, 70 and 71 do indeed have limits of +/- 999.9%

3. Registers 78-81 return 0 for leading, 1 for indeterminate, 2 for lagging (72xx/73xx only)

4. Registers 85-108 have been added to support the 8680 although not all will be implemented initially.

5. Register 114 and similar: ‘average’ is the arithmetic average of all phases that are relevant to the current AC system.

6. Register 115 and similar: ‘difference’ is the difference between ‘max’ and min’.

7. Register 116 and similar: ‘min’ is the lowest of all phases that are relevant to the current AC system.

8. Register 117 and similar: ‘max’ is the highest of all phases that are relevant to the current AC system.

9. Registers 138-149: When the set is at full load, unity power factor and all phases are balanced, the average, max and min values will also be 100%, not 33.3% for a 3 phase system.

10. Register 150: This is a duplicate of register 21 to avoid mistakes if the register pattern were broken.

11. Registers 212,213: added as part of 87xx v5.3 development (time to empty in seconds)

Xx MkII register allocation

Register offset Name Minimum value Maximum value Scaling factor Units Bits/ Sign
0-1 Generator total watts -99,999,999 99,999,999 1 W 32S
2-3 Generator L1 VA 0 99,999,999 1 VA 32
4-5 Generator L2 VA 0 99,999,999 1 VA 32
6-7 Generator L3 VA 0 99,999,999 1 VA 32
8-9 Generator total VA 0 99,999,999 1 VA 32S
10-11 Generator L1 Var -99,999,999 99,999,999 1 Var 32S
12-13 Generator L2 Var -99,999,999 99,999,999 1 Var 32S
14-15 Generator L3 Var -99,999,999 99,999,999 1 Var 32S
16-17 Generator total Var -99,999,999 99,999,999 1 Var 32S
18 Generator power factor L1 -1 1 0.01   16S
19 Generator power factor L2 -1 1 0.01   16S
20 Generator power factor L3 -1 1 0.01   16S
21 Generator average power factor -1 1 0.01   16S
22 Generator percentage of full power -999.9 +999.9 0.1 % 16S
23 Generator percentage of full Var -999.9 +999.9 0.1 % 16S
24-25 Mains total watts -99,999,999 999,999,999 1 W 32S
26-27 Mains L1 VA 0 99,999,999 1 VA 32
28-29 Mains L2 VA 0 99,999,999 1 VA 32
30-31 Mains L3 VA 0 99,999,999 1 VA 32
32-33 Mains total VA 0 999,999,999 1 VA 32
34-35 Mains L1 Var -99,999,999 99,999,999 1 Var 32S
36-37 Mains L2 Var -99,999,999 99,999,999 1 Var 32S
38-39 Mains L3 Var -99,999,999 99,999,999 1 Var 32S
40-41 Mains total Var -999,999,999 999,999,999 1 Var 32S
42 Mains power factor L1 -1 1 0.01   16S
43 Mains power factor L2 -1 1 0.01   16S
44 Mains power factor L3 -1 1 0.01   16S
45 Mains average power factor -1 1 0.01   16S
46 Unimplemented -999.9 +999.9 0.1 % 16S
47 Unimplemented -999.9 +999.9 0.1 % 16S
48-49 Unimplemented -999,999,999 999,999,999 1 W 32S
50-51 Unimplemented 0 99,999,999 1 VA 32
52-53 Unimplemented 0 99,999,999 1 VA 32
54-55 Unimplemented 0 99,999,999 1 VA 32
56-57 Unimplemented 0 999,999,999 1 VA 32
58-59 Unimplemented -99,999,999 99,999,999 1 Var 32S
60-61 Unimplemented -99,999,999 99,999,999 1 Var 32S
62-63 Unimplemented -99,999,999 99,999,999 1 Var 32S
64-65 Unimplemented -999,999,999 999,999,999 1 Var 32S
66 Unimplemented -1 1 0.01   16S
67 Unimplemented -1 1 0.01   16S
68 Unimplemented -1 1 0.01   16S
69 Unimplemented -1 1 0.01   16S

 







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