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LM2750LD-ADJ датащи(PDF) 4 Page - Texas Instruments

номер детали LM2750LD-ADJ
подробное описание детали  LM2750 Low Noise Switched Capacitor Boost Regulator
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производитель  TI [Texas Instruments]
домашняя страница  http://www.ti.com
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LM2750LD-ADJ датащи(HTML) 4 Page - Texas Instruments

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LM2750
SNVS180L – APRIL 2002 – REVISED MAY 2013
www.ti.com
Thermal Information
Junction-to-Ambient Thermal Resistance, WSON-10
Package (
θJA)
(1)
55°C/W
(1)
Junction-to-ambient thermal resistance (
θJA) is taken from a thermal modeling result, performed under the conditions and guidelines set
forth in the JEDEC standard JESD51-7. The test board is a 4 layer FR-4 board measuring 102mm x 76mm x 1.6mm with a 2 x 1 array
of thermal vias. The ground plane on the board is 50mm x 50mm. Thickness of copper layers are 36µm/18µm
/18µm/36µm(1.5oz/1oz/1oz/1.5oz). Ambient temperature in simulation is 22°C, still air. Power dissipation is 1W. The value of
θJA of the
LM2750 in WSON-10 could fall in a range as wide as 50ºC/W to 150ºC/W (if not wider), depending on PCB material, layout, and
environmental conditions. In applications where high maximum power dissipation exists (high VIN, high IOUT), special care must be paid
to thermal dissipation issues. For more information on these topics, see TI's AN-1187 Application Report (SNOA401) and the LAYOUT
RECOMMENDATIONS section of this datasheet.
Electrical Characteristics
(1) (2)
Typical values and limits in standard typeface apply for TJ = 25ºC. Limits in boldface type apply over the operating junction
temperature range. Unless otherwise specified: 2.9V
≤ VIN ≤ 5.6V, VOUT = 5.0V (LM2750-ADJ), V(SD) = VIN, CFLY = 1µF, CIN =
2 x 1µF, COUT = 2 x 1µF
(3).
Symbol
Parameter
Conditions
Min
Typ
Max
Units
2.9V
≤ VIN ≤ 5.6V,
4.80
5.0
5.20
IOUT ≤ 120mA
(-4%)
(+4%)
Output Voltage
V
VOUT
(LM2750-5.0)
(%)
2.7V
≤ VIN ≤ 2.9V,
4.80
5.0
5.20
IOUT ≤ 40mA
(-4%)
(+4%)
IQ
Operating Supply Current
IOUT = 0mA,
5
10
mA
VIH(MIN) ≤ V(SD) ≤VIN
12
ISD
Shutdown Supply Current
V(SD) = 0V
2
µA
VFB
Feedback Pin Voltage (LM2750-
VIN = 3.1V
1.170
1.232
1.294
V
ADJ)
IFB
Feedback Pin Input Current
VFB = 1.4V
1
nA
(LM2750-ADJ)
VR
Output Ripple
COUT = 10µF, IOUT = 100mA
4
mVp-p
COUT = 2.2µF, IOUT = 100mA
15
EPEAK
Peak Efficiency
VIN = 2.7V, IOUT = 40mA
87
%
(LM2750-5.0)
VIN = 2.9V, IOUT = 120mA
85
EAVG
Average Efficiency over Li-Ion Input VIN Range: 2.9V - 4.2V,
70
%
Range
IOUT = 120mA
(LM2750-5.0) (4)
VIN Range: 2.9V - 4.2V,
67
IOUT = 40mA
fSW
Switching Frequency
1.0
1.7
MHz
tON
VOUT Turn-On Time
VIN= 3.0V, IOUT = 100mA,
0.5
ms
(5)
ILIM
Current Limit
VOUT shorted to GND
300
mA
Shutdown Pin (SD) Characteristics
VIH
Logic-High SD Input
1.3
VIN
V
VIL
Logic-Low SD Input
0
0.4
V
IIH
SD Input Current (6)
1.3V
≤ V(SD) ≤ VIN
15
50
µA
IIL
SD Input Current
V(SD) = 0V
−1
1
µA
(1)
All voltages are with respect to the potential at the GND pin.
(2)
Min and Max limits are specified by design, test, or statistical analysis. Typical numbers represent the most likely norm.
(3)
CFLY, CIN, and COUT : Low-ESR Surface-Mount Ceramic Capacitors (MLCCs) used in setting electrical characteristics
(4)
Efficiency is measured versus VIN, with VIN being swept in small increments from 3.0V to 4.2V. The average is calculated from these
measurements results. Weighting to account for battery voltage discharge characteristics (VBAT vs. Time) is not done in computing the
average.
(5)
Turn-on time is measured from when SD signal is pulled high until the output voltage crosses 90% of its final value.
(6)
SD Input Current (IIH ) is due to a 200kΩ (typ.) pull-down resistor connected internally between the SD pin and GND.
4
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Copyright © 2002–2013, Texas Instruments Incorporated
Product Folder Links: LM2750


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