參數(shù)資料
型號: LTC3625IDE-1#PBF
廠商: LINEAR TECHNOLOGY CORP
元件分類: 電源管理
英文描述: POWER SUPPLY SUPPORT CKT, PDSO12
封裝: 3 X 4 MM, 0.75 MM HEIGHT, LEAD FREE, PLASTIC, MO-229WGED, DFN-12
文件頁數(shù): 3/16頁
文件大?。?/td> 262K
代理商: LTC3625IDE-1#PBF
LTC3625/LTC3625-1
3625f
applicaTions inForMaTion
Programming Charge Current/Maximum Input Current
The CBOT charge current is programmed with a single
resistor connecting the PROG pin to ground. The program
resistor and buck output current are calculated using the
following equation:
R
h
V
I
PROG
BUCK
=
.
1 2
where hPROG=118,000(typical).Excludingquiescentcur-
rent, IBUCK is always greater than the average buck input
current. An RPROG resistor value of less than 53.6k will
causetheLTC3625/LTC3625-1toenterovercurrentprotec-
tion mode and proceed to charge at 2.65A (typical).
The effective buck input current can be calculated as:
I
V
VIN
BUCK
MID
IN
=
ε
where
εBUCK is the buck converter efficiency (see the
TypicalPerformanceCharacteristicsgraphBuckEfficiency
vs VMID).
Output Voltage Programming
The LTC3625/LTC3625-1 have a VSEL input pin that
allows the user to set the output threshold voltage to
either 4.8V/4.0V or 5.3V/4.5V by forcing a low or high at
the VSELpinrespectively.Inthesingleinductorapplication
the chip will balance the supercapacitors to within 50mV
(typical) of each other, resulting in a possible 25mV of
over/undercharge per cell. In the dual inductor application
the chip will balance the supercapacitors to within 100mV
(typical) of each other, resulting in a possible 50mV of
over/undercharge per cell.
Thermal Management
Ifthejunctiontemperatureincreasesaboveapproximately
150°C, the thermal shutdown circuitry automatically de-
activates the output. To reduce the maximum junction
temperature, a good thermal connection to the PC board
is recommended. Connecting the exposed pad (Pin 13) of
theDFNpackagetoagroundplaneunderthedeviceontwo
layers of the PC board, will reduce the thermal resistance
of the package and PC board considerably.
VIN Capacitor Selection
The style and value of capacitors used with the LTC3625/
LTC3625-1 determine input voltage ripple. Because the
LTC3625/LTC3625-1useastep-downswitchingpowersup-
ply from VIN to VMID, its input current waveform contains
high frequency components. It is strongly recommended
that a low equivalent series resistance (ESR) multilayer
ceramic capacitor be used to bypass VIN.
Tantalum and aluminum capacitors are not recommended
because of their high ESR. The value of the capacitor on
VIN directly controls the amount of input ripple for a given
IBUCK. Increasing the size of this capacitor will reduce the
input ripple.
Multilayer ceramic chip capacitors typically have excep-
tional ESR performance. MLCCs combined with a tight
board layout and an unbroken ground plane will yield
very good performance and low EMI emissions. There are
several types of ceramic capacitors available, each having
considerably different characteristics. For example, X7R
ceramic capacitors have the best voltage and temperature
stability. X5R ceramic capacitors have higher packing
density but poorer performance over their rated voltage
and temperature ranges. Y5V ceramic capacitors have
the highest packing density, but must be used with cau-
tion because of their extreme non-linear characteristic of
capacitance verse voltage.
The actual in-circuit capacitance of a ceramic capacitor
should be measured with a small AC signal as is expected
in-circuit. Many vendors specify the capacitance versus
voltage with a 1VRMS AC test signal and as a result,
overstate the capacitance that the capacitor will present
in the application. Using similar operating conditions as
the application, the user must measure or request from
the vendor the actual capacitance to determine if the
selected capacitor meets the minimum capacitance that
the application requires.
Inductor Selection
Many different sizes and shapes of inductors are avail-
able from numerous manufacturers. Choosing the right
inductor from such a large selection of devices can be
overwhelming, but following a few basic guidelines will
make the selection process much simpler.
相關PDF資料
PDF描述
LTC3625EDE#TRPBF POWER SUPPLY SUPPORT CKT, PDSO12
LTC3625IDE-1#TRPBF POWER SUPPLY SUPPORT CKT, PDSO12
LTC3632EMS8E#TRPBF 0.06 A SWITCHING REGULATOR, PDSO8
LTC3632IDD#TRPBF 0.06 A SWITCHING REGULATOR, PDSO8
LTC3632EDD#PBF 0.06 A SWITCHING REGULATOR, PDSO8
相關代理商/技術參數(shù)
參數(shù)描述
LTC3626EUDC#PBF 功能描述:IC REG BUCK SYNC ADJ 1.2A 20QFN RoHS:是 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - DC DC 開關穩(wěn)壓器 系列:- 產(chǎn)品培訓模塊:MIC23xxx HyperLight Load™ Regulators 標準包裝:5,000 系列:HyperLight Load® 類型:降壓(降壓) 輸出類型:固定 輸出數(shù):1 輸出電壓:1.8V 輸入電壓:2.7 V ~ 5.5 V PWM 型:混合物 頻率 - 開關:4MHz 電流 - 輸出:2A 同步整流器:是 工作溫度:-40°C ~ 125°C 安裝類型:表面貼裝 封裝/外殼:8-VFDFN 裸露焊盤,8-MLF? 包裝:帶卷 (TR) 供應商設備封裝:8-MLF?(2x2) 產(chǎn)品目錄頁面:1094 (CN2011-ZH PDF) 其它名稱:576-3303-2
LTC3626EUDC#TRPBF 功能描述:IC REG BUCK SYNC ADJ 1.2A 20QFN RoHS:是 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - DC DC 開關穩(wěn)壓器 系列:- 標準包裝:2,500 系列:- 類型:降壓(降壓) 輸出類型:固定 輸出數(shù):1 輸出電壓:1.2V,1.5V,1.8V,2.5V 輸入電壓:2.7 V ~ 20 V PWM 型:- 頻率 - 開關:- 電流 - 輸出:50mA 同步整流器:是 工作溫度:-40°C ~ 125°C 安裝類型:表面貼裝 封裝/外殼:10-TFSOP,10-MSOP(0.118",3.00mm 寬)裸露焊盤 包裝:帶卷 (TR) 供應商設備封裝:10-MSOP 裸露焊盤
LTC3626IUDC#PBF 功能描述:IC REG BUCK SYNC ADJ 1.2A 20QFN RoHS:是 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - DC DC 開關穩(wěn)壓器 系列:- 設計資源:Design Support Tool 標準包裝:1 系列:- 類型:升壓(升壓) 輸出類型:固定 輸出數(shù):1 輸出電壓:3V 輸入電壓:0.75 V ~ 2 V PWM 型:- 頻率 - 開關:- 電流 - 輸出:100mA 同步整流器:是 工作溫度:-40°C ~ 85°C 安裝類型:表面貼裝 封裝/外殼:SOT-23-5 細型,TSOT-23-5 包裝:剪切帶 (CT) 供應商設備封裝:TSOT-23-5 其它名稱:AS1323-BTTT-30CT
LTC3626IUDC#TRPBF 功能描述:IC REG BUCK SYNC ADJ 1.2A 20QFN RoHS:是 類別:集成電路 (IC) >> PMIC - 穩(wěn)壓器 - DC DC 開關穩(wěn)壓器 系列:- 設計資源:Design Support Tool 標準包裝:1 系列:- 類型:升壓(升壓) 輸出類型:固定 輸出數(shù):1 輸出電壓:3V 輸入電壓:0.75 V ~ 2 V PWM 型:- 頻率 - 開關:- 電流 - 輸出:100mA 同步整流器:是 工作溫度:-40°C ~ 85°C 安裝類型:表面貼裝 封裝/外殼:SOT-23-5 細型,TSOT-23-5 包裝:剪切帶 (CT) 供應商設備封裝:TSOT-23-5 其它名稱:AS1323-BTTT-30CT
LTC3630AEDHC#PBF 制造商:Linear Technology 功能描述:IC REG BUCK SYNC ADJ 0.5A 16DFN