LSP3312 [LITEON]

成立於1990年, 主要以设计并生产接触式影像感测器(CiS)为主。 2000年合并分离式元件    制造厂旭兴科技,2004年正式成立并发展类比IC产品,2005年透过合并立生半导体得以拥有一座6吋晶圆厂, 顺利为敦南”全方位电源管理解决方案”的整体目标奠下完整且坚实的基础建设。; 成立于1990年,主要以设计并生产接触式影像感测器( CIS)为主, 2000年合并分离式元件>>  >制造厂旭兴科技,2004年正式成立并发展类比IC产品,2005年透过合并立生半导体得以拥有一座6吋晶圆厂,顺利为敦南”全方位电源管理解决方案”的整体目标奠下完整且坚实的基础建设。
LSP3312
型号: LSP3312
厂家: LITE-ON TECHNOLOGY CORPORATION    LITE-ON TECHNOLOGY CORPORATION
描述:

成立於1990年, 主要以设计并生产接触式影像感测器(CiS)为主。 2000年合并分离式元件    制造厂旭兴科技,2004年正式成立并发展类比IC产品,2005年透过合并立生半导体得以拥有一座6吋晶圆厂, 顺利为敦南”全方位电源管理解决方案”的整体目标奠下完整且坚实的基础建设。
成立于1990年,主要以设计并生产接触式影像感测器( CIS)为主, 2000年合并分离式元件>>  >制造厂旭兴科技,2004年正式成立并发展类比IC产品,2005年透过合并立生半导体得以拥有一座6吋晶圆厂,顺利为敦南”全方位电源管理解决方案”的整体目标奠下完整且坚实的基础建设。

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LSP3312  
1A LED Driver with Internal Switch  
Features  
General Description  
Simple low parts count  
The LSP3312 is  
a
continuous mode  
inductive step-down converter, designed for  
driving single or multiple series connected  
LEDs efficiently from a voltage source higher  
than the LED voltage. The device operates  
from an input supply between 6V and 40V  
and provides and externally adjustable  
output current of up to 1A. Depending upon  
supply voltage and external components,  
this can provide up to 30 watts of output  
power.  
The LSP3312 includes the output switch and  
a high-side output current sensing circuit,  
which uses and external resistor to set the  
nominal average output current.  
Output current can be adjusted below the set  
values, bye applying an external control  
signal to the VSET pin.  
Internal 40V NDMOS switch  
1A output current  
Single pin on/off and brightness control  
Using DC voltage or PWM  
Soft-start  
High efficiency (up to 97%)  
Wide input voltage range 6V to 40V  
Output shutdown  
Up to 1MHz switching frequency  
Inherent open-circuit LED protection  
Typical 5% output current accuracy  
Package SOT23-5L,ESOP-8L  
Applications  
The VSET pin will accept either a DC  
voltage or a PWM waveform.  
Low voltage halogen replacement LEDs  
The soft-start time can be increased using  
an external capacitor from the VSET pin to  
ground.  
Applying a voltage of 0.2V or lower to the  
VSET pin turns the output off and switches  
the device into a low current standby state.  
Automotive lighting  
Low voltage industrial lighting  
LED back-up lighting  
Typical Application Circuit  
D1  
Rs  
0.3  
Ω
VIN(6V-40V)  
ISENSE  
VIN  
L1  
100uH  
LSP3312  
LX  
VSET  
C1  
10uF  
Floating  
LSP3312 Rev. Preliminary 0.1  
1 of 12  
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2010/08/23  
LSP3312  
1A LED Driver with Internal Switch  
Ordering Information  
LSP3312-X X X  
Output Voltage :  
Blank : ADJ  
Package :  
Packing :  
A : Tape & Reel  
C5SOT23-5L  
R8ESOP-8L  
Tape & Reel  
Device  
Package Code  
Package  
Part Number  
Quantity  
Suffix  
LSP3312-C5A  
LSP3312-R8A  
C5  
R8  
SOT23-5L  
ESOP-8L  
3000  
2500  
A
A
Pin Assignments  
ESOP-8L  
(TOP View)  
SOT23-5L  
(Top View)  
VIN  
PGND  
PGND  
LX  
1
2
3
4
8
7
6
5
LX  
VIN  
5
1
ISENSE  
AGND  
VSET  
Exposed  
Pad on  
Backside  
GND  
2
3
LX  
ISENSE  
VSET  
4
Pin Descriptions  
Pin Number  
Name  
Description  
SOT23-5L  
ESOP-8L  
1
2
5,6  
LX  
GND  
Drain of NDMOS switch  
Ground  
3
7,8  
AGND  
PGND  
Analog Ground  
Power Ground  
Multi-function On/Off and brightness control pin:  
Leave floating for normal operation.  
Drive to voltage below 0.1V to turn off output current  
Drive with DC voltage (0.4V < VSET< 2.4V) to adjust output  
current from 16% to 100% of IOUT nom  
Drive with PWM signal from open-collector or open-drain  
transistor, to adjust output current. Adjustment range 1% to  
100% of IOUT nom for f < 500Hz  
Connect a capacitor from this pin to ground to increase soft-  
start time.  
3
4
2
VSET  
(Default soft-start time = 0.1ms. Additional soft-start time is  
approx.1.5ms/nF)  
Connect resistor RS from this pin to VIN to define nominal  
average output current IOUTnom =0.1/Rs  
(Note: RSMIN = 0.1_ with VSET pin open-circuit)  
Input voltage (6V to 40V). Decouple to ground with 4.7µF or  
higher X7R ceramic capacitor close to device.  
This pin has to connect to ground.  
4
5
ISENSE  
1
9
VIN  
Exposed  
LSP3312 Rev. Preliminary 0.1  
2 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
Block Diagram  
D1  
VIN  
L1  
Rs  
VIN  
ISENSE  
LX  
GM  
C1  
Pre-  
regulator  
LDO1  
LDO2  
5V  
5V-Drv  
Low voltage  
detector  
OTP  
1.2V  
BG  
Logic  
&
Driver  
Ref  
VSET  
R2  
VSET  
GND  
EN  
Internal  
Enable  
R3  
I Limit  
Absolute Maximum Ratings  
Parameter  
Input Voltage Range  
LX,ISENSE Pin voltage  
VSET Pin voltage  
Value  
Unit  
V
V
V
-0.3 to 40  
-0.3 to 40  
-0.3 to 6  
Power Dissipation, PD  
mW  
°C/W  
°C/W  
°C/W  
°C/W  
°C  
SOT23-5L  
130  
TBD  
250  
Thermal Resistance(Junction to Case),θjC  
ESOP-8L  
SOT23-5L  
ESOP-8L  
Thermal Resistance(Junction to  
Environment) ,θjA  
Storage Temperature Range  
Maximum Junction Temperature  
TBD  
-65 to +150  
150  
°C  
Recommended Operating Conditions  
Parameter  
Input Supply Voltage  
Min  
6
Max  
36  
Unit  
V
Operating Junction Temperature  
-20  
+125  
°C  
LSP3312 Rev. Preliminary 0.1  
3 of 12  
www.liteon-semi.com  
2010/08/23  
LSP3312  
1A LED Driver with Internal Switch  
Electrical Characteristics  
(VIN = 16V, TA= 25°C unless otherwise specified.)  
Parameter  
Input Voltage  
Symbol  
Test Conditions  
Min Typ Max Unit  
VIN  
6
40  
V
Rs=0.3Ω  
Rs=0.1Ω  
Output Current  
ILED  
333  
mA  
Shutdown Current  
Quiescent Current without switching  
ISD  
IQ  
VSET pin grounded  
VSET pin floating, VIN  
20  
0.6  
40  
µA  
mA  
Mean current sense threshold  
Voltage  
Measured on Isense pin with  
respect to VIN  
Vsense  
95  
100  
105  
mV  
%
VSense_  
hys  
Isense  
Ven  
Venon  
Venoff  
RLX  
ILX(leak)  
Tss  
Sense threshold hysteresis  
13  
8
Isense pin input current  
Vset range on VSET pin  
DC voltage on VSET pin to enable  
DC voltage on VSET pin to disable  
LX switch on resistance  
LX switch leakage current  
Soft start time  
Vsense = Vin – 0.1  
For DC dimming  
Ven rising  
µA  
V
V
V
0.3  
2.5  
5
0.25  
0.2  
0.3  
Ven falling  
@ILX=100mA  
µA  
ms  
Vin=16V, Cen = 1nF  
1.5  
Vi=16V, Vo=9.6V (3 LEDS),  
L=47µH, I=0.25A (ILED=1A)  
Operating frequency  
FLX  
233  
KHz  
ns  
Recommended minimum switch  
ON time  
Recommended maximum switch  
frequency  
Max duty circle  
Recommended duty cycle range  
Ton_rec  
FLXmax  
For 4% accuracy  
500  
1.0  
75  
MHZ  
98  
%
%
DLX  
25  
Internal comparator propagation delay TPD*  
45  
150  
40  
ns  
Over temperature protection  
Temp protection hysteresis  
Current limit  
TOTP  
TOTP_hys  
IXLmax Peak inductor current  
1.5  
A
*parameters are not tested at production, but guaranteed by design.  
LSP3312 Rev. Preliminary 0.1  
4 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
Application Description  
Setting nominal average output current with external resistor Rs  
The nominal average output current in the LED(s) is determined by the value of the external  
current sense resistor (RS) connected between VIN and ISENSE and is given by:  
0.1  
IOUTnom  
=
Rs  
The table below gives values of nominal average output current for several preferred values of  
current setting resistor (RS) in the typical application circuit shown on page1.  
RS (Ω)  
Nominal average output current (mA)  
0.1  
0.13  
0.15  
0.3  
1000  
760  
667  
333  
The above values assume that he VSET pin is floating and at a nominal voltage of VREF (1.25V).  
Note that Rs=0.1Ω is the minimum allowed value of sense resistor under these conditions to  
maintain switch current below the specified maximum value. It is possible to use different values of  
Rs if the VSET pin is driven from an external voltage.  
Capacitor selection  
A low ESR capacitor should be used for input decoupling, as the ESR of this capacitor appears in  
series with the supply source impedance and lowers overall efficiency. This capacitor has to supply  
the relatively high peak current to the coil and smooth the current ripple on the input supply. A  
minimum value of 4.7uF is acceptable if the input source is close the device, but higher values will  
improve performance at lower input voltages, especially when the source impedance is high. The  
input capacitor should be placed as close as possible toe the IC.  
For maximum stability over temperature and voltage, capacitors with X7R,X5R, or better dielectric  
are recommended. Capacitors with Y5V dielectric are not suitable for decoupling in this application  
and should NOT be used.  
Inductor selection  
Recommended inductor values for the LSP3312 are in the range 33uF to 100uF. Higher values of  
inductance are recommended at higher supply voltages in order to minimize errors due to  
switching delays, which result in increased ripple and lower efficiency. Higher values of inductance  
also result in a smaller change in output current over the supply voltage range. The inductor should  
be mounted as close the to device as possible with low resistance connections toe the LX and VIN  
pins. The chosen coil should have a saturation current higher than the peak output current and a  
continuous current rating above the required mean output current.  
LSP3312 Rev. Preliminary 0.1  
5 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
The inductor value should be chosen to maintain operating duty cycle and switch ‘on’/’off’ times  
within the specified limits over the supply voltage and load current range. The following equations  
can be used as a guide.  
LX Switch ‘On’ time  
LI  
TON=  
VIN VLED ILED(RS + RL + RLX )  
LX Switch ‘Off’ time  
LI  
TOFF=  
VLED +VD + IlED(RS + RL)  
Where: L is the coil inductance; RL is the coil resistance; RS is the current sense resistance IlED is  
the required LED current ; I is the coil peak-peak ripple current (Internally set to 0.25 x ILED ); VIN  
is the supply voltage; VLED is the total LED forward voltage; RLX is the switch resistance (0.3Ω  
nominal); VD is the diode forward voltage at the required load current.  
Diode selection  
For maximum efficiency and performance, the rectifier (D1) should be a fast low capacitance  
Schottky diode with low reverse leakage at the maximum operating voltage and temperature. They  
also provide better efficiency than silicon diodes, due to a combination of lower forward voltage  
and reduced recovery time.  
It is important to select parts with a peak current rating above the peak coil current and a  
continuous current rating higher than the maximum output load current. It is very important to  
consider the reverse leakage of the diode when operating above 85°C. Excess leakage will  
increase the power dissipation in the device and if close to the load may create a thermal runaway  
condition.  
The higher forward voltage and overshoot due to reverse recovery time in silicon diodes will  
increase the peak voltage on the LX output. If a silicon diode is used, care should be taken to  
ensure that the total voltage appearing on the LX pin including supply ripple, does not exceed the  
specified maximum value.  
LSP3312 Rev. Preliminary 0.1  
6 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
Typical Performance Characteristics  
1.Quiescent Current vs Input  
2.Shutdown Current vs Input  
4.Duty Cycle vs LED Current  
(PWM=200Hz)  
3.Feedback Voltage vs Vin  
5.ILED vs VSET  
6.ILED vs VSET  
(VIN=16V,3 LEDs,47uH,Rs=0.15Ω)  
(VIN=16V,3 LEDs,100uH,Rs=0.3Ω)  
LSP3312 Rev. Preliminary 0.1  
7 of 12  
www.liteon-semi.com  
2010/08/23  
LSP3312  
1A LED Driver with Internal Switch  
Typical Performance Characteristics (Continued)  
7.Steady State Waveforms  
8.Start up Waveforms  
9.Dimming Waveforms (PWM=50%)  
10.Pulse skip mode  
LSP3312 Rev. Preliminary 0.1  
8 of 12  
www.liteon-semi.com  
2010/08/23  
LSP3312  
1A LED Driver with Internal Switch  
Typical Performance Characteristics (Continued)  
11.Efficiency vs Input Voltage  
12.Efficiency vs Input Voltage  
(Rs=0.3Ω,L=100uH)  
(Rs=0.15Ω,L=47uH)  
14.Operating Frequency vs Input Voltage  
13.Efficiency vs Input Voltage  
(Rs=0.3Ω,L=100uH)  
(Rs=0.1Ω,L=33uH)  
15. Operating Frequency vs Input Voltage  
16. Operating Frequency vs Input Voltage  
(Rs=0.15Ω,L=47uH)  
(Rs=0.1Ω,L=33uH)  
LSP3312 Rev. Preliminary 0.1  
9 of 12  
www.liteon-semi.com  
2010/08/23  
LSP3312  
1A LED Driver with Internal Switch  
Marking Information  
SOT23-5L  
XXVYW  
XX V YW  
Date Code  
YYear(9=2009,0=2010,1=2011,2=2012...)  
WWeek  
Week  
Code# 1  
1
2
2
3
3
4
4
5
5
6
6
7
7
8
8
9
9
10 11 12 13  
A
B
C
D
Week 14 15 16 17 18 19 20 21 22 23 24 25 26  
Code# E  
Week 27 28 29 30 31 32 33 34 35 36 37 38 39  
Code# T  
Week 40 41 42 43 44 45 46 47 48 49 50 51 52/53  
Code# g  
F
G
H
J
K
L
M
N
P
Q
R
S
U
V
W
X
Y
Z
a
b
c
d
e
f
h
I
m
n
p
q
s
t
u
v
w
x
Output Voltage  
Blank=ADJ  
Product Code  
AKLSP3312  
ESOP-8L  
LOGO  
LSC  
Part ID  
LSP3312  
VYYWWUZ  
V YYWW UZ  
Internal Code  
Date code  
YYYear(09=2009,10=2010,11=2011,12=2012...)  
WWWeek(01~53)  
Output Voltage  
Blank:ADJ  
LSP3312 Rev. Preliminary 0.1  
10 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
Package Information (All Dimensions in min)  
SOT23-5L  
SEATING PLANE  
D
b
L
L1  
E
E1  
c
L2  
e
e1  
GAUGE PLANE  
M1  
A2  
A
M2  
A1  
Dimensions In Millimeters  
Symbol  
Min  
Typ  
1.20  
0.10  
1.10  
-
Max  
1.35  
0.15  
1.20  
0.50  
0.22  
3.00  
3.00  
1.70  
A
A1  
A2  
b
c
D
E
E1  
e
e1  
L
1.05  
0.05  
1.00  
0.30  
0.08  
2.80  
2.60  
1.50  
-
2.90  
2.80  
1.60  
0.95 BSC  
1.90 BSC  
0.45  
0.30  
0.55  
L1  
L2  
M1  
M2  
0.60 REF  
0.25 BSC  
5°  
3°  
6°  
7°  
10°  
8°  
LSP3312 Rev. Preliminary 0.1  
11 of 12  
2010/08/23  
www.liteon-semi.com  
LSP3312  
1A LED Driver with Internal Switch  
Package Information (All Dimensions in min) (Continued)  
ESOP-8L  
D1  
L
VIEW “A”  
7ο(4х)  
D
7ο(4х)  
0.015х45ο  
e
B
VIEW “A”  
Dimensions In Millimeters  
Dimensions In Inches  
Nom  
Symbol  
Min  
1.35  
0.05  
1.35  
0.33  
0.19  
4.70  
3.202  
3.80  
2.313  
Nom  
1.60  
Max  
Min  
Max  
0.069  
0.006  
0.061  
0.020  
0.010  
0.200  
0.134  
0.160  
0.099  
A
A1  
A2  
B
C
D
D1  
E
E1  
e
H
L
1.75  
0.15  
1.55  
0.51  
0.25  
5.10  
3.402  
4.00  
2.513  
0.053  
0..002  
0.053  
0.013  
0.0075  
0.185  
0.126  
0.148  
0.091  
0.063  
1.45  
0.41  
0.20  
4.90  
0.057  
0.016  
0.008  
0.196  
3.90  
0.154  
1.27TYP.  
5.99  
0.050TYP.  
5.80  
0.38  
0ο  
6.30  
1.27  
8ο  
0.228  
0.015  
0ο  
0.236  
0.028  
0.248  
0.050  
8ο  
0.71  
θ
LSP3312 Rev. Preliminary 0.1  
12 of 12  
2010/08/23  
www.liteon-semi.com  

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