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LM3554 Fiches technique(PDF) 4 Page - Texas Instruments

No de pièce LM3554
Description  Synchronous Boost Converter with 1.2A Dual High Side LED Drivers and I2C Compatible
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Fabricant  TI1 [Texas Instruments]
Site Internet  http://www.ti.com
Logo TI1 - Texas Instruments

LM3554 Fiches technique(HTML) 4 Page - Texas Instruments

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LM3554
SNVS549A – JUNE 2009 – REVISED APRIL 2011
www.ti.com
Operating Ratings
(1) (2)
VIN
2.5V to 5.5V
Junction Temperature (TJ)
-30°C to +125°C
Ambient Temperature (TA)
(3)
-30°C to +85°C
(1)
Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings are conditions under
which operation of the device is guaranteed. Operating Ratings do not imply guaranteed performance limits. For guaranteed
performance limits and associated test conditions, see the Electrical Characteristics table.
(2)
All voltages are with respect to the potential at the GND pin.
(3)
In applications where high power dissipation and/or poor package thermal resistance is present, the maximum ambient temperature may
have to be derated. Maximum ambient temperature (TA-MAX) is dependent on the maximum operating junction temperature (TJ-MAX-OP =
+125°C), the maximum power dissipation of the device in the application (PD-MAX), and the junction-to-ambient thermal resistance of the
part/package in the application (
θJA), as given by the following equation: TA-MAX = TJ-MAX-OP – (θJA × PD-MAX).
Thermal Properties
Junction-to-Ambient Thermal Resistance (
θJA), TMD16 Package
(1)
60°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 2x1 array of
thermal via's. 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.
Electrical Characteristics
Limits in standard typeface are for TA = +25°C. Limits in boldface type apply over the full operating ambient temperature
range (-30°C
≤ TA ≤ +85°C). Unless otherwise specified, VIN = 3.6V, VHWEN = VIN.
(1) (2)
Symbol
Parameter
Conditions
Min
Typ
Max
Units
Current Source Specifications
600mA Flash
ILED1+ILED2
1128
1200
1284
LED Setting,
ILED1 or ILED2
541
600
657
VOUT = VIN
Current Source
ILED
mA
Accuracy
17mA Torch
Current Setting, ILED1+ILED2
30.4
33.8
37.2
VHR = 500mV
Current Source
Regulation
VHR
600mA setting, VOUT = 3.75V
300
mV
Voltage (VOUT -
VLED)
LED Current
IMATCH
600mA setting, VLED = 3.2V
0.35
%
Matching
Step-Up DC/DC Converter Specifications
Output Voltage
2.7V
≤ VIN ≤ 4.2V, IOUT = 0mA,
VREG
4.8
5
5.2
V
Accuracy
VENVM = VIN, OV bit = 0
Output Over-
On Threshold, 2.7V
≤ VIN ≤ 5.5V
5.4
5.6
5.7
Voltage
VOVP
V
Protection Trip
Off Threshold
5.3
Point(3)
PMOS Switch
RPMOS
IPMOS = 1A
150
m
On-Resistance
NMOS Switch
RNMOS
INMOS = 1A
150
m
On-Resistance
(1)
All voltages are with respect to the potential at the GND pin.
(2)
Min and Max limits are guaranteed by design, test, or statistical analysis. Typical (Typ) numbers are not guaranteed, but do represent
the most likely norm. Unless otherwise specified, conditions for typical specifications are: VIN = 3.6V and TA = +25°C.
(3)
The typical curve for Over-Voltage Protection (OVP) is measured in closed loop using the typical application circuit . The OVP value is
found by forcing an open circuit in the LED1 and LED2 path and recording the peak value of VOUT. The value given in the Electrical
Table is found in an open loop configuration by ramping the voltage at OUT until the OVP comparator trips. The closed loop data can
appear higher due to the stored energy in the inductor being dumped into the output capacitor after the OVP comparator trips. At worst
case is an open circuit condition where the output voltage can continue to rise after the OVP comparator trips by approximately
IIN×sqrt(L/COUT).
4
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