參數(shù)資料
型號(hào): LTC1622CS8
廠商: LINEAR TECHNOLOGY CORP
元件分類: 穩(wěn)壓器
英文描述: Low Input Voltage Current Mode Step-Down DC/DC Controller
中文描述: 1 A SWITCHING CONTROLLER, 625 kHz SWITCHING FREQ-MAX, PDSO8
封裝: 0.150 INCH, PLASTIC, SO-8
文件頁(yè)數(shù): 10/16頁(yè)
文件大?。?/td> 219K
代理商: LTC1622CS8
10
LTC1622
the maximum current sense voltage that sets the maxi-
mum output current.
Setting Output Voltage
The LTC1622 develops a 0.8V reference voltage between
the feedback (Pin 3) terminal and ground (see Figure 4). By
selecting resistor R1, a constant current is caused to flow
through R1 and R2 to set the output voltage. The regulated
output voltage is determined by:
V
R
R
OUT
=
+
0 8 1
2
1
For most applications, a 30k resistor is suggested for R1.
To prevent stray pickup, an optional 100pF capacitor is
suggested across R1 located close to LTC1622.
APPLICATIO
S I
N
FOR
ATIO
U
W
U
is limiting the efficiency and which change would produce
the most improvement. Efficiency can be expressed as:
Efficiency = 100% – (
η
1 +
η
2 +
η
3 + ...)
where
η
1,
η
2, etc. are the individual losses as a percent-
age of input power.
Although all dissipative elements in the circuit produce
losses, four main sources usually account for most of the
losses in LTC1622 circuits: 1) LTC1622 DC bias current,
2) MOSFET gate charge current, 3) I
2
R losses, 4) voltage
drop of the output diode and 5) transition losses.
1. The V
IN
current is the DC supply current, given in the
electrical characteristics, that excludes MOSFET driver
and control currents. V
IN
current results in a small loss
which increases with V
IN
.
2. MOSFET gate charge current results from switching
the gate capacitance of the power MOSFET. Each time
a MOSFET gate is switched from low to high to low
again, a packet of charge dQ moves from V
IN
to ground.
The resulting dQ/dt is a current out of V
IN
which is
typically much larger than the DC supply current. In
continuous mode, I
GATECHG
= f(Qp).
3. I
2
R losses are predicted from the DC resistances of the
MOSFET, inductor and current shunt. In continuous
mode the average output current flows through L but
is “chopped” between the P-channel MOSFET in series
with R
SENSE
and the output diode. The MOSFET R
DS(ON)
plus R
SENSE
multiplied by duty cycle can be summed
with the resistance of the inductor to obtain I
2
R losses.
4. The output diode is a major source of power loss at
high currents and gets worse at high input voltages.
The diode loss is calculated by multiplying the forward
voltage drop times the diode duty cycle multiplied by
the load current. For example, assuming a duty cycle of
50% with a Schottky diode forward voltage drop of
0.4V, the loss increases from 0.5% to 8% as the load
current increases from 0.5A to 2A.
5. Transition losses apply to the external MOSFET and
increase with higher operating frequencies and input
voltages. Transition losses can be estimated from:
3
V
FB
V
OUT
LTC1622
100pF
R1
1622 F04
R2
Figure 4. Setting Output Voltage
INPUT VOLTAGE (V)
2.0
N
101
100
99
98
97
96
95
2.2
2.4
2.6
2.8
1622 F03
3.0
V
REF
V
ITH
Figure 3. Line Regulation of V
REF
and V
ITH
Efficiency Considerations
The efficiency of a switching regulator is equal to the
output power divided by the input power times 100%. It is
often useful to analyze individual losses to determine what
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