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LT1082CQ 参数 Datasheet PDF下载

LT1082CQ图片预览
型号: LT1082CQ
PDF下载: 下载PDF文件 查看货源
内容描述: 1A高电压,效率开关稳压器 [1A High Voltage, Efficiency Switching Voltage Regulator]
分类和应用: 稳压器开关
文件页数/大小: 12 页 / 180 K
品牌: Linear Systems [ Linear Systems ]
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LT1082  
U
OPERATIO  
only 120µA supply current for shutdown circuitry biasing.  
disconnect the main error amplifier output and connects  
theoutputoftheflybackamplifiertothecomparatorinput.  
TheLT1082willthenregulatethevalueoftheflybackpulse  
with respect to the supply voltage. This flyback pulse is  
directly proportional to output voltage in the traditional  
transformer coupled flyback topology regulator. By  
regulating the amplitude of the flyback pulse, the output  
voltagecanberegulatedwithnodirectconnectionbetween  
input and output. The output is fully floating up to the  
breakdown voltage of the transformer windings. Multiple  
floating outputs are easily obtained with additional  
windings. A special delay network inside the LT1082  
ignorestheleakageinductancespikeattheleadingedgeof  
the flyback pulse to improve output regulation.  
See AN19 for full application details.  
Extra Pins on the MiniDIP Packages  
The miniDIP LT1082 has the emitters of the power  
transistor brought out separately from the ground pin.  
Thiseliminateserrorsduetogroundpinvoltagedropsand  
allows the user to reduce switch current limit by a factor  
of 2:1 by leaving the second emitter (E2) disconnected.  
The first emitter (E1) should always be connected to the  
ground pin. Note that switch “on” resistance doubles  
when E2 is left open, so efficiency will suffer somewhat  
when switch currents exceed 100mA. Also, note that chip  
dissipation will actually increase with E2 open during  
normal load operation, even though dissipation in current  
limit mode will decrease. See “Thermal Considerations.”  
When IFB drawn out of the FB pin reaches 350µA, the  
LT1082 shifts the switching frequency down to 12kHz.  
This unique feature provides high voltage short-circuit  
protection in systems like the telecom 5V supplies with  
input voltages down to 70V; lower frequency is needed  
undershort-circuitconditionswithcurrentmodeswitchers  
because minimum “on” time cannot be forced below the  
internally set blanking time. Referring to the telecom 5V  
supply circuit on the front page, with output shorted to  
ground, the VFB stays at 0.6V when sourcing IFB up to  
1mA. If the FB pin is forced to source more than 1mA, the  
frequency shifting function may be defeated. Therefore,  
the minimum suggested value for RFB is 1k and the  
maximum suggested value is 1.2k. Also, no capacitance  
more than 1nF should be used on the FB pin, because it  
may cause unstable switching frequency in this low  
frequency mode.  
Thermal Considerations When Using the  
MiniDIP Packages  
The low supply current and high switch efficiency of the  
LT1082 allow it to be used without a heat sink in most  
applications when the TO-220 package is selected.  
This package is rated at 50°C/W. The miniDIPs, however,  
are rated at 100°C/W in ceramic (J) and 90°/W in plastic  
(N).  
Care should be taken for miniDIP applications to ensure  
thattheworstcaseinputvoltageandloadcurrentconditions  
do not cause excessive die temperatures. The following  
formulascanbeusedasaroughguidetocalculateLT1082  
power dissipation. For more details, the reader is referred  
to Application Note 19 (AN19), “Efficiency Calculations”  
section.  
The error signal developed at the comparator input is  
brought out externally. This pin (VC) has four different  
functions. It is used for frequency compensation, current  
limitadjustment,softstarting,andtotalregulatorshutdown.  
Duringnormalregulatoroperationthispinsitsatavoltage  
between 0.9V (low output current) and 2V (high output  
current). The error amplifiers are current output (gm)  
types, so this voltage can be externally clamped for  
adjusting current limit. Likewise, a capacitor-coupled  
external clamp will provide soft start. Switch duty cycle  
goes to zero if the VC pin is pulled to ground through a  
diode, placing the LT1082 in an idle mode. Pulling the VC  
pin below 0.15V causes total regulator shutdown, with  
Average supply current (including driver current) is:  
IIN 4.5mA + ISW (0.004 + DC/28)  
ISW = switch current  
DC = switch duty cycle  
Switch power dissipation is given by:  
PSW = (ISW)2 • RSW • DC  
RSW = LT1082 switch “on” resistance (1.2maximum)  
sn1082 1082fas  
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