参数资料
型号: LTC1436AIGN-PLL#TR
厂商: Linear Technology
文件页数: 15/28页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 24-SSOP
标准包装: 2,500
PWM 型: 电流模式
输出数: 1
频率 - 最大: 138kHz
占空比: 99%
电源电压: 3.5 V ~ 30 V
降压:
升压:
回扫:
反相:
倍增器:
除法器:
Cuk:
隔离:
工作温度: -40°C ~ 85°C
封装/外壳: 24-SSOP(0.154",3.90mm 宽)
包装: 带卷 (TR)
其它名称: LTC1436AIGN-PLLTR
LTC1436A
LTC1436A-PLL/LTC1437A
APPLICATIO N S I N FOR M ATIO N
include Sanyo OS-CON, Nichicon PL series and Sprague
593D and 595D series. Consult the manufacturer for other
specific recommendations.
INTV CC Regulator
An internal P-channel low dropout regulator produces the
5V supply that powers the drivers and internal circuitry
within the LTC1436A/LTC1437A. The INTV CC pin can
supply up to 15mA and must be bypassed to ground with
a minimum of 2.2 μ F tantalum or low ESR electrolytic.
Good bypassing is necessary to supply the high transient
currents required by the MOSFET gate drivers.
High input voltage applications, in which large MOSFETs
are being driven at high frequencies, may cause the
maximum junction temperature rating for the LTC1436A/
LTC1437A to be exceeded. The IC supply current is
dominated by the gate charge supply current when not
using an output derived EXTV CC source. The gate charge
is dependent on operating frequency as discussed in the
Efficiency Considerations section. The junction tempera-
ture can be estimated by using the equations given in Note
1 of the Electrical Characteristics. For example, the
LTC1437A is limited to less than 19mA from a 30V supply:
T J = 70 ° C + ( 19mA )( 30 V ) ( 95 ° C / W ) = 124 ° C
To prevent maximum junction temperature from being
exceeded, the input supply current must be checked when
operating in continuous mode at maximum V IN .
EXTV CC Connection
The LTC1436A/LTC1437A contain an internal P-channel
factor of Duty Cycle / Efficiency. For 5V regulators this
supply means connecting the EXTV CC pin directly to V OUT .
However, for 3.3V and other lower voltage regulators,
additional circuitry is required to derive INTV CC power
from the output.
The following list summarizes the four possible connec-
tions for EXTV CC :
1. EXTV CC left open (or grounded). This will cause INTV CC
to be powered from the internal 5V regulator resulting
in an efficiency penalty of up to 10% at high input
voltages.
2. EXTV CC connected directly to V OUT . This is the normal
connection for a 5V regulator and provides the highest
efficiency.
3. EXTV CC connected to an output-derived boost network.
For 3.3V and other low voltage regulators, efficiency
gains can still be realized by connecting EXTV CC to an
output-derived voltage which has been boosted to
greater than 4.8V. This can be done with either the
inductive boost winding as shown in Figure 4a or the
capacitive charge pump shown in Figure 4b. The charge
pump has the advantage of simple magnetics.
4. EXTV CC connected to an external supply. If an external
supply is available in the 5V to 10V range (EXTV CC <
V IN ), it may be used to power EXTV CC , providing it is
compatible with the MOSFET gate drive requirements.
When driving standard threshold MOSFETs, the exter-
nal supply must always be present during operation to
prevent MOSFET failure due to insufficient gate drive.
MOSFET switch connected between the EXTV CC and
INTV CC pins. The switch closes and supplies the INTV CC
power whenever the EXTV CC pin is above 4.8V, and
remains closed until EXTV CC drops below 4.5V. This
allows the MOSFET driver and control power to be derived
OPTIONAL EXTV CC
CONNECTION
5V ≤ V SEC ≤ 9V
LTC1436A V IN
LTC1437A
TGL
C IN
+
V IN
N-CH
1N4148
T1
1:N
V SEC
+
1 μ F
from the output during normal operation (4.8V < V OUT <
9V) and from the internal regulator when the output is out
of regulation (start-up, short circuit). Do not apply greater
than 10V to the EXTV CC pin and ensure that EXTV CC < V IN .
R6
R5
EXTV CC
SFB
SGND
TGS
SW
BG
PGND
N-CH
N-CH
R SENSE
+
V OUT
C OUT
Significant efficiency gains can be realized by powering
INTV CC from the output, since the V IN current resulting
from the driver and control currents will be scaled by a
1436 F04a
Figure 4a. Secondary Output Loop and EXTV CC Connection
14367afb
15
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