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LM3401 Datasheet(PDF) 9 Page - Texas Instruments

Part # LM3401
Description  Hysteretic PFET Controller for High Power LED Drive
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

LM3401 Datasheet(HTML) 9 Page - Texas Instruments

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0
5
10
15
20
25
30
35
INPUT VOLTAGE (V)
0
250
500
750
1000
1250
1500
= calculated value
68 PH
22 PH
L =
D
fSW
- (2 x delay) x RSNS x (VIN - VANODE)
2 x SNSHYS
fSW =
2 x SNSHYS x L
RSNS x (VIN - VANODE)
D
+ (2 x delay)
50
110
175
255
340
425
505
VHYS (mV)
0
300
600
900
1200
1500
1800
0
300
600
900
1200
1500
1800
22 PH freq
68 PH freq
68 PH rip
22 PH rip
LM3401
www.ti.com
SNVS516C – AUGUST 2007 – REVISED MAY 2013
Figure 16. Switching Frequency and Ripple Current vs Hysteresis
SWITCHING FREQUENCY
Although hysteretic control is a simple control method, the switching frequency depends on application conditions
and components. If the inductance, input voltage, or LED forward voltage is changed, there will be a change in
the switching frequency. Therefore, care must be taken to select components which will provide the desired
frequency range. Usually, the best approach is to determine a nominal switching frequency for the application
and then select the inductor accordingly. Once the inductor is selected, VHYS can be adjusted to set the
frequency range more precisely. This design process usually involves a few iterations to select appropriate
standard values that will result in the desired frequency and ripple current.
Switching frequency can be approximately calculated using the formula:
(8)
Where D is the duty cycle, defined as (VOUT + VDIODE) / VIN, VANODE is 200 mV plus the sum of LED forward
voltages, and delay is the sum of the LM3401 propagation delay time and the PFET delay time. The LM3401
propagation delay is 46 ns typically (See the Propagation Delay curve). Alternately, the inductor value can be
calculated from a known frequency by re-arranging the same equation:
(9)
Switching frequency for a typical application is shown in Figure 17 along with the calculated frequency.
Figure 17. Frequency vs Input Voltage
Maximum switching frequency will typically occur around the input voltage which corresponds to 25% duty cycle.
Copyright © 2007–2013, Texas Instruments Incorporated
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