参数资料
型号: LTC3891HFE#TRPBF
厂商: LINEAR TECHNOLOGY CORP
元件分类: 稳压器
英文描述: SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PDSO20
封装: 4.40 MM, LEAD FREE, PLASTIC, TSSOP-20
文件页数: 10/32页
文件大小: 1931K
代理商: LTC3891HFE#TRPBF
LTC3891
18
3891f
APPLICATIONS INFORMATION
maximum RMS current of one channel must be used. The
maximum RMS capacitor current is given by:
CIN Required IRMS
IMAX
VIN
VOUT
( ) VIN – VOUT
(
)
1/2
(1)
This formula has a maximum at VIN = 2VOUT, where IRMS
= IOUT/2. This simple worst-case condition is commonly
used for design because even significant deviations do not
offermuchrelief.Notethatcapacitormanufacturers’ripple
current ratings are often based on only 2000 hours of life.
This makes it advisable to further derate the capacitor, or
to choose a capacitor rated at a higher temperature than
required. Several capacitors may be paralleled to meet
size or height requirements in the design. Due to the high
operating frequency of the LTC3891, ceramic capacitors
can also be used for CIN. Always consult the manufacturer
if there is any question.
A small (0.1μF to 1μF) bypass capacitor between the chip
VIN pin and ground, placed close to the LTC3891, is also
suggested. A small (≤10Ω) resistor placed between CIN
(C1) and the VIN pin provides further isolation.
The selection of COUT is driven by the effective series
resistance (ESR). Typically, once the ESR requirement
is satisfied, the capacitance is adequate for filtering. The
output ripple (VOUT) is approximated by:
Δ
VOUT ≈ ΔIL ESR+
1
8 f COUT
where f is the operating frequency, COUT is the output
capacitance and IL is the ripple current in the inductor.
The output ripple is highest at maximum input voltage
since IL increases with input voltage.
Setting Output Voltage
The LTC3891 output voltage is set by an external feed-
back resistor divider carefully placed across the output,
as shown in Figure 3. The regulated output voltage is
determined by:
VOUT = 0.8V 1+
RB
RA
To improve the frequency response, a feedforward ca-
pacitor, CFF, may be used. Great care should be taken to
route the VFB line away from noise sources, such as the
inductor or the SW line.
RUN Pin
The LTC3891 is enabled using the RUN pin. It has a rising
threshold of 1.21V with 50mV of hysteresis. Pulling the
RUN pin below 1.16V shuts down the main control loop.
Pulling it below 0.7V disables the controller and most
internal circuits, including the INTVCC LDOs. In this state,
the LTC3891 draws only 14μA of quiescent current.
Releasing the RUN pin allows a small 7μA internal current
to pull up the pin to enable the controller. The RUN pin may
be externally pulled up or driven directly by logic. When
driving the RUN pin with a low impedance source, do not
exceed the absolute maximum rating of 8V. The RUN pin
has an internal 11V voltage clamp that allows the RUN pin
to be connected through a resistor to a higher voltage (for
example, VIN), so long as the maximum current into the
RUN pin does not exceed 100μA.
TheRUNpincanbeimplementedasaUVLObyconnecting
it to the output of an external resistor divider network off
VIN, as shown in Figure 4.
LTC3891
VFB
VOUT
RB
CFF
RA
3891 F03
Figure 3. Setting Output Voltage
LTC3891
RUN
VIN
RB
RA
3891 F04
Figure 4. Using the RUN Pin as a UVLO
相关PDF资料
PDF描述
LTC3891HUDC#TRPBF SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PQCC20
LTC3891MPFE#TRPBF SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PDSO20
LTC3891MPUDC#PBF SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PQCC20
LTC3891MPUDC#TRPBF SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PQCC20
LTC3891MPFE#PBF SWITCHING CONTROLLER, 900 kHz SWITCHING FREQ-MAX, PDSO20
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