LT3755IUD#PBF Linear Technology, LT3755IUD#PBF Datasheet - Page 13

IC LED DRVR HP CONST CURR 16-QFN

LT3755IUD#PBF

Manufacturer Part Number
LT3755IUD#PBF
Description
IC LED DRVR HP CONST CURR 16-QFN
Manufacturer
Linear Technology
Type
High Power, Constant Currentr
Datasheet

Specifications of LT3755IUD#PBF

Constant Current
Yes
Constant Voltage
Yes
Topology
Flyback, Low Side, PWM, SEPIC, Step-Down (Buck), Step-Up (Boost)
Number Of Outputs
1
Internal Driver
No
Type - Primary
Automotive
Type - Secondary
White LED
Frequency
100kHz ~ 1MHz
Voltage - Supply
4.5 V ~ 40 V
Voltage - Output
75V
Mounting Type
Surface Mount
Package / Case
16-WQFN Exposed Pad
Operating Temperature
-40°C ~ 125°C
Current - Output / Channel
1A
Internal Switch(s)
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Efficiency
-

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applicaTions inForMaTion
zero and full current to achieve a precisely programmed
average current. To make PWM dimming more accurate,
the switch demand current is stored on the VC node dur-
ing the quiescent phase when PWM is low. This feature
minimizes recovery time when the PWM signal goes high.
To further improve the recovery time, a disconnect switch
may be used in the LED current path to prevent the ISP
node from discharging during the PWM signal low phase.
The minimum PWM on or off time is affected by choice
of operating frequency and external component selection.
The data sheet application titled “Buck Mode 500mA LED
Driver for 20kHz PWM Dimming” demonstrates regulated
current pulses as short as 1µs are achievable. The best
overall combination of PWM and analog dimming capabil-
ity is available if the minimum PWM pulse is at least six
switching cycles.
Programming the Switching Frequency
The RT frequency adjust pin allows the user to program
the switching frequency from 100kHz to 1MHz to optimize
efficiency/performance or external component size. Higher
frequency operation yields smaller component size but
increases switching losses and gate driving current, and
may not allow sufficiently high or low duty cycle operation.
Lower frequency operation gives better performance at the
cost of larger external component size. For an appropriate
R
RT pin to GND is required—do not leave this pin open.
Table 1. Switching Frequency vs R
T
resistor value see Table 1. An external resistor from the
f
OSC
1000
900
800
700
600
500
400
300
200
100
(kHz)
T
Value
R
T
10.0
11.8
13.0
15.4
17.8
21.0
26.7
35.7
53.6
100
(kΩ)
Duty Cycle Considerations
Switching duty cycle is a key variable defining converter
operation, therefore, its limits must be considered when
programming the switching frequency for a particular
application. The fixed minimum on-time and minimum
off-time (see Figure 4) and the switching frequency define
the minimum and maximum duty cycle of the switch,
respectively. The following equations express the mini-
mum/maximum duty cycle:
Min Duty Cycle = (minimum on-time) • switching
frequency
Max Duty Cycle = 1 – (minimum off-time) • switching
frequency
When calculating the operating limits, the typical values
for on/off-time in the data sheet should be increased by
at least 60ns to allow margin for PWM control latitude,
GATE rise/fall times and SW node rise/fall times.
Thermal Considerations
The LT3755 is rated to a maximum input voltage of 40V.
Careful attention must be paid to the internal power dis-
sipation of the IC at higher input voltages to ensure that
a junction temperature of 125°C (150°C for H-Grade) is
not exceeded. This junction limit is especially important
LT3755/LT3755-1/LT3755-2
300
250
200
150
100
50
Figure 4. Typical Minimum On and Off
Pulse Width vs Temperature
0
–50
C
GATE
–25
= 3300pF
MINIMUM OFF-TIME
MINIMUM ON-TIME
0
TEMPERATURE (°C)
25
50
75
100
125
37551 F04
150

37551fd

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