KX-TCD650RUC, KX-TCD650RUF - Panasonic Telephone Service Manual (repair manual). Page 68

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1177..33..44..   M
MM
MII B
Biittss
A
Addddrreessss
D
Deeffaauulltt
N
Naam
mee
T
Tyyppee
D
Deessccrriippttiioonn
F00
0B
EEToneConfig
D
bit 0 - Keytone on/off - 1/0
bit 1 - Call waiting on/off - 1/0
bit 2 - Range alarm on/off - 1/0
bit 3 - Battery low alarm on/off - 1/0
F01
06
UIConfig00
D
bit 0 - Direct call 1 = on /0 = off
bit 1 - StandbyDisplay00 00 = Off / 01 = Clock
bit 2 - StandbyDisplay01 10 = PpNo / 11 = FpNo
bit 3 - BatteryType 1 = Ni-Cd/0 = Ni-Mh
bit 4 - Call barring
bit 5 - Autio talk
bit 6 - TalkmodeDisplay00 00 = Talk time
bit 7 - TalkmodeDisplay01 01 = Talk cost 10=Phone
number
F02
00
CallCostEnabled
D
00 = CallCost Disabled
01 = CallCost Enabled
F03
--
UIGap01
-
1177..33..55..   B
Baatttteerryy ppaarraam
meetteerrss
A
Addddrreessss
D
Deeffaauulltt
N
Naam
mee
T
Tyyppee
D
Deessccrriippttiioonn
F04
4B
LowVoltage
D
Voltage on which to start battery low-indication.
The voltage has to be measured under this value for 8 secs
before the handset start signaling low battery.
LowVoltage[eeprom] = [ADC-steps] =
LowVoltage[mV] / (3.2 * 9.53[mV/step])
F05
48
NoVoltage
D
Voltage on which to turn off handset.
If the batteryvoltage gets below this level AND the handset
has been signaling low battery for at least 8 seconds the
handset will shut down.
NoVoltage[eeprom] = [ADC-steps] =
NoVoltage[mV] / (3.2 * 9.53[mV/step])
F06
6C
MaxVoltage
D
Max voltage allowed for battery. This is to prevent damage
on hardware if put in base with no batteries mounted. If the
batteryvoltage exceeds this level, the charging will be
stopped.
MaxVoltage[eeprom] = [ADC-steps] =
MaxVoltage[mV] / (3.2 * 9.53[mV/step])
F07
0A
StartCurrent
D
Current used at a cold start [mAh*2/100] ].
This value is subtracted every time the handset powers up.
StartCurrent[eeprom] = startcurrent[mAH]*50
F08
06
StbyCurrent
D
Current-compsumption when handset is in standby with
buzzer and backlight off.
StbyCurrent[eeprom] = consumption[mA]
F09
1C
UnlockCurrent
D
Current-compsumption when not locked to base with
buzzer and baclight off.
UnlockCurrent[eeprom] = consumption[mA]
F0A
47
MacCurrent
D
Current-compsumtion when handset is in conversation with
buzzer and backlight off.
MacCurrent[eeprom] = consumption[mA]
F0B
2E
BackLightCurrent
D
Current compsumtion when baclight is on. This is only the
consumption for one color. This value should not include
the consumption of the rest of the handset
BackLightCurrent[eeprom] = consumption[mA]
F0C
37
BuzzerCurrent
D
Current compsumtion when Buzzer is playing. This value
should not include any other consumptions than that of the
buzzer.
BuzzerCurrent[eeprom] = consumption[mA]
F0D
0A
LeakChargeCurrent
D
Leakcurrent when in charger.
LeakCurrent[eeprom] = IR51[mA]
When in charger, the charger will always supply the
handset with the current running through R51. This current
we have to take into consideration when charging.
F0E
78
FastChargeCurrent
D
Charge-current when in fast charge [mA].
The handset is in fastcharge-mode when BatteryCapacity is
less
than
´(ChargeTopLimit
/
100)
*
MaxCapacity´(BatteryCapacity < ChargeTopLimit% of
MaxCapacity)
F0F
64
TopChargeCurrent
D
Charge-current when in topoff charge [mA].
The
handset
charge
the
batteries
with
TopChargeCurrent[mA] when the BatetryCapacity is
between ´(ChargeTopLimit / 100) * Max(NiMH or
NiCd)Capacity´ and MaxCapacity(ChargeTopLimit% of
MaxCapacity < BatteryCapacity < MaxCapacity )
68
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