3. TECHNICAL BRIEF
- 40 -
Trickle Charge Current
When the battery voltage is below the minimum battery voltage VMIN given in the electrical specification,
the charger operates in a trickle/preconditioning mode, where the charge current is typically 14% of the
programmed charge current for the cradle input. If power comes from the USB input, the trickle mode
current is approximately 53mA.
End-of-Charge Indication
The CHG pin internal open-drain MOSFET turns off when the charge current falls below the IMIN threshold,
which is programmable for the cradle input and fixed for the USB input. Once the end-of charge-current is
reached, the CHG status will be latched. The latch can be reset at one of the following conditions:
1. The part is disabled and re-enabled
2. The selected input source has been removed and reapplied
3. The USBON turns LOW and turns back to HIGH for the USB input
4. The BAT pin voltage falls below the CV mode threshold Regardless of the CHG pin status, however, the
charger does not turn off as long as an input power source is attached.
Power Presence Indication
When either the USB or the cradle input voltage is above the POR threshold, the PPR pin internal open-
drain MOSFET turns on indicating the presence of input power.
Power-Good Range
Even if there is a power present, the charger will not deliver any current to the output if the powergood
conditions are not met. The following two conditions together define the power-good voltage range:
1. VCDRL or VUSB > VPOR
2. VCDRL or VUSB - VBAT > VOS
where the VOS is the offset voltage for the input and output voltage comparator, discussed shortly.
Both VPOR, VOS have hysteresis, as given in the Electrical Specification table.
The charger will not charge the battery if the input voltage does not meet the power-good conditions.
Thermal Foldback (Thermaguard™)
The thermal foldback function reduces the charge current when the internal temperature reaches the
thermal foldback threshold, which is typically 100˚C. This protects the charger
from excessive thermal stress at high input voltages.
Содержание M6100
Страница 1: ...Date February 2006 Issue 1 0 Service Manual Model M6100 Service Manual M6100 ...
Страница 3: ... 4 ...
Страница 15: ...3 TECHNICAL BRIEF 16 Figure 3 1 SKY74400 FUNCTIONAL BLOCK DIAGRAM ...
Страница 40: ...3 TECHNICAL BRIEF 41 3 7 CAMERA IC AIT813 U701 Figure 3 18 AIT813 APPLICATION BLOCKDIAGRAM ...
Страница 42: ...3 TECHNICAL BRIEF 43 3 8 MIDI IC YMU787 U708 Figure 3 20 YMU787 BLOCKDIAGRAM ...
Страница 57: ...4 TROUBLE SHOOTING 58 4 1 RX Trouble 4 TROUBLE SHOOTING SKY74400 FEM 13Mhz OSCILLATOR Figure 4 1 TEST POINT ...
Страница 63: ...4 2 TX Trouble 4 TROUBLE SHOOTING 64 SKY74400 FEM 13Mhz OSCILLATOR TEST POINT Figure 4 2 ...
Страница 81: ...4 TROUBLE SHOOTING 82 Graph 4 10 a BLUE RST Graph 4 10 b DEBUG_TX RX Graph 4 10 c PCM_SYNCS TX RX USC0 ...
Страница 98: ...4 TROUBLE SHOOTING 99 4 16 Camera and Flash Trouble Camera Module CN802 U704 U705 Figure 4 17 ...
Страница 103: ...5 DOWNLOAD AND CALIBRATION 104 3 Click Start button and then connect the phone and the cable START BTN Click ...
Страница 109: ... 110 ...
Страница 119: ... 120 8 PCB LAYOUT ...
Страница 120: ... 121 8 PCB LAYOUT ...
Страница 121: ... 122 8 PCB LAYOUT ...
Страница 122: ... 123 8 PCB LAYOUT ...
Страница 123: ... 124 ...
Страница 131: ...10 STAND ALONE TEST 132 Figure 10 2 HW test setting Figure 10 3 Ramping profile ...
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Страница 159: ...Note ...
Страница 160: ...Note ...