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LT3954IUHE 데이터 시트보기 (PDF) - Linear Technology

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LT3954IUHE Datasheet PDF : 26 Pages
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LT3954
APPLICATIONS INFORMATION
Table 1. (ISP-ISN) Threshold vs CTRL
VCRTL (V)
1.0
(ISP-ISN) Threshold (mV)
225
1.05
236
1.1
244.5
1.15
248.5
1.2
250
When CTRL is higher than 1.2V, the LED current is regu-
lated to:
ILED
=
250mV
RLED
The CTRL pin should not be left open (tie to VREF if not
used). The CTRL pin can also be used in conjunction with
a thermistor to provide overtemperature protection for
the LED load, or with a resistor divider to VIN to reduce
output power and switching current when VIN is low.
The presence of a time varying differential voltage signal
(ripple) across ISP and ISN at the switching frequency
is expected. The amplitude of this signal is increased by
high LED load current, low switching frequency and/or a
smaller value output filter capacitor. Some level of ripple
signal is acceptable: the compensation capacitor on the
VC pin filters the signal so the average difference between
ISP and ISN is regulated to the user-programmed value.
Ripple voltage amplitude (peak-to-peak) in excess of
50mV should not cause mis-operation, but may lead to
noticeable offset between the current regulation and the
user-programmed value.
Output Current Capability
An important consideration when using a switch with a
fixed current limit is whether the regulator will be able to
supply the load at the extremes of input and output voltage
range. Several equations are provided to help determine this
capability. Some margin to data sheet limits is included.
For boost converters:
IOUT(MAX
)
4.0A
VIN(MIN)
VOUT(MAX
)
For buck mode converters:
IOUT(MAX) 4.0A
For SEPIC and buck-boost mode converters:
IOUT(MAX
)
4.0A
VIN(MIN)
(VOUT(MAX) + VIN(MIN)
)
These equations assume the inductor value and switch-
ing frequency have been selected so that inductor ripple
current is ~800mA. Ripple current higher than this value
will reduce available output current. Be aware that current
limited operation at high duty cycle can greatly increase
inductor ripple current, so additional margin may be re-
quired at high duty cycle.
If some level of analog dimming is acceptable at minimum
supply levels, then the CTRL pin can be used with a resistor
divider to VIN (as shown on page 1) to provide a higher
output current at nominal VIN levels.
Programming Output Voltage (Constant Voltage
Regulation) or Open LED/Overvoltage Threshold
For a boost or SEPIC application, the output voltage can
be set by selecting the values of R3 and R4 (see Figure 2)
according to the following equation:
VOUT
=
1.25
R3 + R4
R4
VOUT
LT3954
R3
FB
R4
3954 F02
Figure 2. Feedback Resistor Connection for
Boost or SEPIC LED Driver
For a boost type LED driver, set the resistor from the
output to the FB pin such that the expected voltage level
during normal operation will not exceed 1.17V. For an LED
driver of buck mode or a buck-boost mode configuration,
the output voltage is typically level-shifted to a signal with
For more information www.linear.com/3954
3954fa
13

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