参数资料
型号: LTC3851EGN#PBF
厂商: Linear Technology
文件页数: 17/28页
文件大小: 0K
描述: IC REG CTRLR BUCK PWM CM 16-SSOP
产品培训模块: LTC3851 Single Output DC/DC Switching Regulator Controller
特色产品: Wide Input Voltage Range Synchronous Step-Down DC/DC Controller
标准包装: 100
PWM 型: 电流模式
输出数: 1
频率 - 最大: 790kHz
占空比: 99%
电源电压: 4 V ~ 38 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: 16-SSOP(0.154",3.90mm 宽)
包装: 管件
产品目录页面: 1336 (CN2011-ZH PDF)
LTC3851
APPLICATIONS INFORMATION
and the BOOST pin follows. With the topside MOSFET on,
the boost voltage is above the input supply:
V BOOST = V IN + V INTVCC
The value of the boost capacitor C B needs to be 100 times
that of the total input capacitance of the topside MOSFET.
The reverse breakdown of the external Schottky diode
any question.
C OUT Selection
The selection of C OUT is primarily determined by the
effective series resistance, ESR, to minimize voltage
ripple. The output ripple, ΔV OUT , in continuous mode is
determined by:
must be greater than V IN(MAX) .
Undervoltage Lockout
The LTC3851 has two functions that help protect the
?
Δ V OUT ≈ Δ I L ? ESR +
?
1 ?
?
8fC OUT ?
controller in case of undervoltage conditions. A precision
UVLO comparator constantly monitors the INTV CC voltage
to ensure that an adequate gate-drive voltage is present.
It locks out the switching action when INTV CC is below
3.2V. To prevent oscillation when there is a disturbance
on the INTV CC , the UVLO comparator has 400mV of preci-
sion hysteresis.
Another way to detect an undervoltage condition is to
monitor the V IN supply. Because the RUN pin has a precision
turn-on reference of 1.25V, one can use a resistor divider
where f = operating frequency, C OUT = output capaci-
tance and ΔI L = ripple current in the inductor. The output
ripple is highest at maximum input voltage since ΔI L
increases with input voltage. Typically, once the ESR
requirement for C OUT has been met, the RMS current rating
generally far exceeds the I RIPPLE(P-P) requirement. With
ΔI L = 0.3I OUT(MAX) and allowing 2/3 of the ripple to be
due to ESR, the output ripple will be less than 50mV at
maximum V IN if the I LIM pin is con?gured to ?oat and:
C OUT Required ESR < 2.2R SENSE
to V IN to turn on the IC when V IN is high enough.
C IN Selection
C OUT >
1
8fR SENSE
In continuous mode, the source current of the top N-channel
MOSFET is a square wave of duty cycle V OUT /V IN . To
prevent large voltage transients, a low ESR input capacitor
sized for the maximum RMS current must be used. The
maximum RMS capacitor current is given by:
The ?rst condition relates to the ripple current into the ESR
of the output capacitance while the second term guarantees
that the output capacitance does not signi?cantly discharge
during the operating frequency period due to ripple current.
The choice of using smaller output capacitance increases
I RMS ? I O(MAX) OUT ?
– 1 ?
V ? V IN
V IN ? V OUT
?
?
1/ 2
the ripple voltage due to the discharging term but can be
compensated for by using capacitors of very low ESR to
maintain the ripple voltage at or below 50mV. The I TH pin
OPTI-LOOP compensation components can be optimized
This formula has a maximum at V IN = 2V OUT , where
I RMS = I O(MAX) /2. This simple worst-case condition is
commonly used for design because even signi?cant
deviations do not offer much relief. Note that capacitor
manufacturers’ 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
also be paralleled to meet size or height requirements in
to provide stable, high performance transient response
regardless of the output capacitors selected.
The selection of output capacitors for applications with
large load current transients is primarily determined by the
voltage tolerance speci?cations of the load. The resistive
component of the capacitor, ESR, multiplied by the load
current change, plus any output voltage ripple must be
within the voltage tolerance of the load.
the design. Always consult the manufacturer if there is
3851fb
17
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相关代理商/技术参数
参数描述
LTC3851EMSE#PBF 功能描述:IC REG CTRLR BUCK PWM CM 16-MSOP RoHS:是 类别:集成电路 (IC) >> PMIC - 稳压器 - DC DC 切换控制器 系列:- 特色产品:LM3753/54 Scalable 2-Phase Synchronous Buck Controllers 标准包装:1 系列:PowerWise® PWM 型:电压模式 输出数:1 频率 - 最大:1MHz 占空比:81% 电源电压:4.5 V ~ 18 V 降压:是 升压:无 回扫:无 反相:无 倍增器:无 除法器:无 Cuk:无 隔离:无 工作温度:-5°C ~ 125°C 封装/外壳:32-WFQFN 裸露焊盘 包装:Digi-Reel® 产品目录页面:1303 (CN2011-ZH PDF) 其它名称:LM3754SQDKR
LTC3851EMSE#PBF 制造商:Linear Technology 功能描述:Switch Regulator IC 制造商:Linear Technology 功能描述:IC SYNC STEP-DOWN REGULATOR CTRL MSOP-16
LTC3851EMSE#TRPBF 功能描述:IC REG CTRLR BUCK PWM CM 16-MSOP RoHS:是 类别:集成电路 (IC) >> PMIC - 稳压器 - DC DC 切换控制器 系列:- 标准包装:2,500 系列:- PWM 型:电流模式 输出数:1 频率 - 最大:500kHz 占空比:96% 电源电压:4 V ~ 36 V 降压:无 升压:是 回扫:无 反相:无 倍增器:无 除法器:无 Cuk:无 隔离:无 工作温度:-40°C ~ 125°C 封装/外壳:24-WQFN 裸露焊盘 包装:带卷 (TR)
LTC3851EMSE-1#PBF 功能描述:IC REG CTRLR BUCK PWM CM 16-MSOP RoHS:是 类别:集成电路 (IC) >> PMIC - 稳压器 - DC DC 切换控制器 系列:- 特色产品:LM3753/54 Scalable 2-Phase Synchronous Buck Controllers 标准包装:1 系列:PowerWise® PWM 型:电压模式 输出数:1 频率 - 最大:1MHz 占空比:81% 电源电压:4.5 V ~ 18 V 降压:是 升压:无 回扫:无 反相:无 倍增器:无 除法器:无 Cuk:无 隔离:无 工作温度:-5°C ~ 125°C 封装/外壳:32-WFQFN 裸露焊盘 包装:Digi-Reel® 产品目录页面:1303 (CN2011-ZH PDF) 其它名称:LM3754SQDKR
LTC3851EMSE-1#TRPBF 功能描述:IC REG CTRLR BUCK PWM CM 16-MSOP RoHS:是 类别:集成电路 (IC) >> PMIC - 稳压器 - DC DC 切换控制器 系列:- 标准包装:2,500 系列:- PWM 型:电流模式 输出数:1 频率 - 最大:500kHz 占空比:96% 电源电压:4 V ~ 36 V 降压:无 升压:是 回扫:无 反相:无 倍增器:无 除法器:无 Cuk:无 隔离:无 工作温度:-40°C ~ 125°C 封装/外壳:24-WQFN 裸露焊盘 包装:带卷 (TR)