參數(shù)資料
型號(hào): P95020NQG
廠商: INTEGRATED DEVICE TECHNOLOGY INC
元件分類: 電源管理
英文描述: 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, QCC132
封裝: 10 X 10 MM, 0.85 MM HEIGHT, QFN-132
文件頁(yè)數(shù): 135/169頁(yè)
文件大?。?/td> 4297K
代理商: P95020NQG
第1頁(yè)第2頁(yè)第3頁(yè)第4頁(yè)第5頁(yè)第6頁(yè)第7頁(yè)第8頁(yè)第9頁(yè)第10頁(yè)第11頁(yè)第12頁(yè)第13頁(yè)第14頁(yè)第15頁(yè)第16頁(yè)第17頁(yè)第18頁(yè)第19頁(yè)第20頁(yè)第21頁(yè)第22頁(yè)第23頁(yè)第24頁(yè)第25頁(yè)第26頁(yè)第27頁(yè)第28頁(yè)第29頁(yè)第30頁(yè)第31頁(yè)第32頁(yè)第33頁(yè)第34頁(yè)第35頁(yè)第36頁(yè)第37頁(yè)第38頁(yè)第39頁(yè)第40頁(yè)第41頁(yè)第42頁(yè)第43頁(yè)第44頁(yè)第45頁(yè)第46頁(yè)第47頁(yè)第48頁(yè)第49頁(yè)第50頁(yè)第51頁(yè)第52頁(yè)第53頁(yè)第54頁(yè)第55頁(yè)第56頁(yè)第57頁(yè)第58頁(yè)第59頁(yè)第60頁(yè)第61頁(yè)第62頁(yè)第63頁(yè)第64頁(yè)第65頁(yè)第66頁(yè)第67頁(yè)第68頁(yè)第69頁(yè)第70頁(yè)第71頁(yè)第72頁(yè)第73頁(yè)第74頁(yè)第75頁(yè)第76頁(yè)第77頁(yè)第78頁(yè)第79頁(yè)第80頁(yè)第81頁(yè)第82頁(yè)第83頁(yè)第84頁(yè)第85頁(yè)第86頁(yè)第87頁(yè)第88頁(yè)第89頁(yè)第90頁(yè)第91頁(yè)第92頁(yè)第93頁(yè)第94頁(yè)第95頁(yè)第96頁(yè)第97頁(yè)第98頁(yè)第99頁(yè)第100頁(yè)第101頁(yè)第102頁(yè)第103頁(yè)第104頁(yè)第105頁(yè)第106頁(yè)第107頁(yè)第108頁(yè)第109頁(yè)第110頁(yè)第111頁(yè)第112頁(yè)第113頁(yè)第114頁(yè)第115頁(yè)第116頁(yè)第117頁(yè)第118頁(yè)第119頁(yè)第120頁(yè)第121頁(yè)第122頁(yè)第123頁(yè)第124頁(yè)第125頁(yè)第126頁(yè)第127頁(yè)第128頁(yè)第129頁(yè)第130頁(yè)第131頁(yè)第132頁(yè)第133頁(yè)第134頁(yè)當(dāng)前第135頁(yè)第136頁(yè)第137頁(yè)第138頁(yè)第139頁(yè)第140頁(yè)第141頁(yè)第142頁(yè)第143頁(yè)第144頁(yè)第145頁(yè)第146頁(yè)第147頁(yè)第148頁(yè)第149頁(yè)第150頁(yè)第151頁(yè)第152頁(yè)第153頁(yè)第154頁(yè)第155頁(yè)第156頁(yè)第157頁(yè)第158頁(yè)第159頁(yè)第160頁(yè)第161頁(yè)第162頁(yè)第163頁(yè)第164頁(yè)第165頁(yè)第166頁(yè)第167頁(yè)第168頁(yè)第169頁(yè)
IDTP95020
Product Datasheet
September 2, 2011 Revision 1.3 Final
68
2011 Integrated Device Technology, Inc.
Charger – Ideal Diode from
VBAT to VSYS
The charger has an internal ideal diode as well as a
controller for an optional external ideal diode. The ideal
diode controller is always on and will respond quickly
whenever VSYS drops below VBAT. If the load current
increases beyond the power allowed from the switching
regulator, additional power will be pulled from the battery
via the ideal diode. Furthermore, if power to VBUS (USB or
AC adaptor power) is removed, then all of the application
power will be provided by the battery via the ideal diode.
The ideal diode consists of a precision amplifier that
enables a large on-chip P-channel MOSFET transistor
whenever the voltage at VSYS is approximately 15mV
below the voltage at VBAT. The resistance of the internal
ideal diode is approximately 180m
Ω
. If this is sufficient for
the application, then no external components are
necessary. However, if more current is needed, an
external P-channel MOSFET transistor can be added from
VBAT to VSYS. When an external P-channel MOSFET
transistor is present, the CHRG_GATE pin of the
IDTP95020 drives its gate for automatic ideal diode
control. The source of the external P-channel MOSFET
should be connected to VSYS and the drain should be
connected to VBAT.
Charger – Charger / Discharger
The system includes a constant-current/constant-voltage
battery charger with automatic recharge, automatic
termination by termination current and safety timer. Also
included is low voltage trickle charging, bad cell detection
and a thermistor sensor input for battery temperature
range charge reduction.
Battery Preconditioning
When a battery charge cycle begins, the battery charger
first determines if the battery is deeply discharged. If the
battery voltage is below VTRKL, typically 2.8V, an automatic
trickle charge feature steps the battery charge current to
increase the voltage level (7 steps at 25mA/step
programmable by the Application Setting Register). If the
low voltage level persists for more than hour, the
battery charger automatically terminates and indicates via
the battery fault flag in the Status 1 Register that the
battery is defective. Once the battery voltage is above
VTRKL, the battery charger begins charging in full power
constant current mode. The current delivered to the
battery will try to reach ICHG (step 100mA, 1X ~15X
programmable by Charging Configuration Register), the
battery charger may or may not be able to charge at the
full programmed rate. The external load will always be
prioritized over the battery charge current. The USB (or
AC adapter) current limit programming will always be
observed.
Charge Termination
When the voltage on the battery reaches the pre-
programmed float voltage (4.1V or 4.2V), the battery
charger enters constant voltage mode and the charge
current will decrease as the battery becomes fully charged.
The charger offers several methods to terminate a charge
cycle by setting the Charging Termination Control Register
bits[1:0]. Refer to the register address definition section.
Intelligent Start and Automatic Recharge
When the charger is initially powered on, the charger
checks the battery voltage. If the VBAT pin is below the
recharge threshold of 3.9V (which corresponds to
approximately 50-60% battery capacity), the charger
enters charge mode and begins a full charge cycle. If the
VBAT pin is above 3.9V, the charger enters standby mode
and does not begin charging. This feature reduces
unnecessary charge cycle thus prolongs battery life. When
the charger is in standby mode, the charger continuously
monitors the voltage on the VBAT pin. When the voltage
drops below 3.9V and the temperature below 40°C, the
charge cycle is automatically restarted and the safety
timer and termination timer (if time termination is used) is
reset to 50% of the programmed time. This feature
eliminates the need for periodic charge cycle initiations
and ensures the battery is always fully charged.
Battery Temperature Monitor
The battery temperature is measured by placing a
negative temperature coefficient (NTC) thermistor close to
the battery pack. To use this feature, connect the NTC
thermistor, RNTC, between the NTC and ground and a
resistor, RNOM, from VNTC to the NTC pin. RNOM should be
a 1% resistor with a value equal to the value of the chosen
NTC thermistor at 25°C(R25). For applications requiring
greater than 750mA of charging current, a 10k NTC
thermistor is recommended. The charger will pause
charging when the NTC thermistor drops to 0.54 times the
value of R25 or approximately 5.4k. For a Vishay “Curve 1”
thermistor, this corresponds to approximately 40°C. As
the temperature drops, the resistance of the NTC
thermistor rises. The charger will also pause charging
when the value of the NTC thermistor increase to 3.25
相關(guān)PDF資料
PDF描述
P95020NQG8 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, QCC132
P95020ZNQGI8 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, QCC132
P95020ZLLG 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, PBGA124
P95020ZLLGI 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, PBGA124
P95020ZNQGI 2-CHANNEL POWER SUPPLY MANAGEMENT CKT, QCC132
相關(guān)代理商/技術(shù)參數(shù)
參數(shù)描述
P95020NQG8 制造商:Integrated Device Technology Inc 功能描述:Power Management and Control 132-Pin QFN EP T/R 制造商:Integrated Device Technology Inc 功能描述:POWER MANAGEMENT AUDIO & CONTROL - Tape and Reel 制造商:Integrated Device Technology Inc 功能描述:Integrates Audio, LED B/Light Pwr Mgt
P95020ZDLLG 制造商:Integrated Device Technology Inc 功能描述:124-LGA - Bulk
P95020ZDLLG8 制造商:Integrated Device Technology Inc 功能描述:124-LGA - Tape and Reel
P95020ZDNQG 制造商:Integrated Device Technology Inc 功能描述:132-VFQFPN - Bulk
P95020ZDNQG8 制造商:Integrated Device Technology Inc 功能描述:132-VFQFPN - Tape and Reel