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LM5166DRCRG4 датащи(PDF) 21 Page - Texas Instruments

номер детали LM5166DRCRG4
подробное описание детали  LM5166 3-V to 65-V Input, 500-mA Synchronous Buck Converter With Ultra-Low IQ
PDF  57 Pages
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производитель  TI2 [Texas Instruments]
домашняя страница  https://www.ti.com
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LM5166DRCRG4 датащи(HTML) 21 Page - Texas Instruments

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VIN
1.22V
EN
Comparator
RUV1
RUV2
1.144V
HYS
RHYS
7
EN
9
21
LM5166
www.ti.com
SNVSA67B – DECEMBER 2016 – REVISED JUNE 2017
Product Folder Links: LM5166
Submit Documentation Feedback
Copyright © 2016–2017, Texas Instruments Incorporated
RFB1 in the range of 100 kΩ to 1 MΩ is recommended for most applications. A larger RFB1 consumes less DC
current, which is necessary if light-load efficiency is critical. However, RFB1 larger than 1 MΩ is not recommended
as the feedback path becomes more susceptible to noise. Larger feedback resistances generally require more
careful feedback path PCB layout. It is important to route the feedback trace away from the noisy area of the
PCB. For more PCB layout recommendations, see Layout.
7.3.5 Adjustable Current Limit
The LM5166 protects the system from overload conditions using cycle-by-cycle current limiting of the peak
inductor current. The current sensed in the high-side MOSFET is compared to the current limit threshold set by
the ILIM pin (see Table 3). Current is sensed after a 120-ns leading-edge blanking time following the high-side
MOSFET turnon. The propagation delay of the current limit comparator is 80 ns, typical.
(1)
For this current limit threshold selection, the ILIM pin may also be left open instead of using a 100-kΩ
or greater resistor.
(2)
This ILIM setting enables a function that modulates the ILIM levels during the first three switching cycles
as illustrated in Figure 42.
Table 3. Current Limit Thresholds
MODE OF
OPERATION
RILIM (kΩ)
TYPICAL IHS_LIM (mA) TYPICAL ILS_LIM (mA)
IOUT(max) (mA)
COT Mode
0
750
415
500
≥ 100(1)
500
315
300
PFM Mode
0
1250
N/A
500
24.9
1250(2)
N/A
500
56.2
750
N/A
300
≥ 100(1)
500
N/A
200
Note that in PFM mode, the inductor current ramps from zero to the chosen peak threshold every switching
cycle. Consequently, the maximum output current is equal to half the peak inductor current. The output current
capability in COT mode is higher and equal to the peak current threshold minus one-half the inductor ripple
current. The ripple current is determined by the input and output voltages and the chosen inductance and
switching frequency.
7.3.6 Precision Enable (EN) and Hysteresis (HYS)
The precision EN input supports adjustable input undervoltage lockout (UVLO) with hysteresis programmed
independently through the HYS pin for application specific power-up and power-down requirements. EN connects
to the input of a comparator with 76-mV hysteresis. The reference input of the comparator is connected to a
1.22-V bandgap reference. An external logic signal can be used to drive EN input to toggle the output on and off
for system sequencing or protection. The simplest way to enable operation is to connect EN directly to VIN. This
allows self-start-up of the LM5166 when VIN is within its valid operating range.
Figure 44. Input Voltage UVLO Using EN and HYS



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