CXSD61051 synchronous step down regulator CC control from a high voltage input supply 3.5A continuou
发表时间:2020-04-09
浏览次数:88

目录aV9嘉泰姆

1.产品概述                       2.产品特点aV9嘉泰姆
3.应用范围                       4.产品封装图aV9嘉泰姆
5.电路原理图                   6.产品PCB                   aV9嘉泰姆
7.产品BOM                      8.产品PDF文档 aV9嘉泰姆
9.功能概述                      10.
相关产品aV9嘉泰姆

 aV9嘉泰姆

一,产品概述(General Description)   aV9嘉泰姆

        The CXSD61051 is a synchronous step down regulator with CC control from a high voltage input supply. Operating with an input voltageaV9嘉泰姆
range of 8V ~ 30V, the CXSD61051 achieves 3.5A continuous output current with excellent load and line regulation. The switching  frequency is programmable from 100KHz to 500KHz and the synchronous architectureaV9嘉泰姆
provides for highly efficient designs. Current  mode operation provides fast transient response and eases loop stabilization.aV9嘉泰姆

         The CXSD61051 requires a minimum number of readily available standard external components. Other features include cable compensation programmable current limit and thermal shutdown.aV9嘉泰姆

        The CXSD61051 converters are available in the industry standard SOP8-PP packages       aV9嘉泰姆

二.产品特点(Features)aV9嘉泰姆

Wide Input Voltage Range: 8V ~ 30VaV9嘉泰姆

Up to 93% EfficiencyaV9嘉泰姆

Programmable Switching Frequency up to 500KHzaV9嘉泰姆

No Loop Compensation RequiredaV9嘉泰姆

CC/CV controlaV9嘉泰姆

Programmable CC CurrentaV9嘉泰姆

Thermal ShutdownaV9嘉泰姆

Available in SOP8-PP PackageaV9嘉泰姆

三,应用范围 (Applications) aV9嘉泰姆

Car Charger / AdaptoraV9嘉泰姆

LED DriveraV9嘉泰姆

Pre-Regulator for Linear RegulatorsaV9嘉泰姆

Distributed Power SystemsaV9嘉泰姆

Battery ChargerCar Charger / AdaptoraV9嘉泰姆

LED DriveraV9嘉泰姆

Pre-Regulator for Linear RegulatorsaV9嘉泰姆

Distributed Power SystemsaV9嘉泰姆

Battery ChargeraV9嘉泰姆

四,产品封装图 (Package)aV9嘉泰姆
aV9嘉泰姆

PINaV9嘉泰姆

NAMEaV9嘉泰姆

DESCRIPTIONaV9嘉泰姆

1aV9嘉泰姆

FBaV9嘉泰姆

FeedbackaV9嘉泰姆

2aV9嘉泰姆

ILIMaV9嘉泰姆

CC Current SettngaV9嘉泰姆

3aV9嘉泰姆

ENaV9嘉泰姆

EnableaV9嘉泰姆

4aV9嘉泰姆

PDRIaV9嘉泰姆

PMOS Gate DriveaV9嘉泰姆

5aV9嘉泰姆

NDRIaV9嘉泰姆

NMOS Gate DriveaV9嘉泰姆

6aV9嘉泰姆

VINaV9嘉泰姆

Input Supply VoltageaV9嘉泰姆

7aV9嘉泰姆

RTaV9嘉泰姆

Frequency settingaV9嘉泰姆

8aV9嘉泰姆

SWaV9嘉泰姆

Switch NodeaV9嘉泰姆

9aV9嘉泰姆

GNDaV9嘉泰姆

GroundaV9嘉泰姆

五,电路原理图aV9嘉泰姆


blob.pngaV9嘉泰姆

六, 产品PCBaV9嘉泰姆
(略)aV9嘉泰姆
七.产品BOM  aV9嘉泰姆
  (略)aV9嘉泰姆
八.产品PDF文档 aV9嘉泰姆


需要详细的PDF规格书请扫一扫微信联系我们,还可以获得免费样品以及技术支持aV9嘉泰姆

 QQ截图20160419174301.jpgaV9嘉泰姆

九,功能概述aV9嘉泰姆


Application Information aV9嘉泰姆
The CXSD61051 operates by a constant frequency, current mode architecture. The output voltage is setaV9嘉泰姆
by an external divider returned to the FB pin. An error amplifier compares the divided output voltage withaV9嘉泰姆
a reference voltage of 1.21V and adjusts the peak inductor current accordingly. aV9嘉泰姆
Thermal ProtectionaV9嘉泰姆
The total power dissipation in CXSD61051 is limited by a thermal protection circuit. When the deviceaV9嘉泰姆
temperature rises to approximately +160°C, this circuit turns off the output, allowing the IC to cool. TheaV9嘉泰姆
thermal protection circuit can protect the device from being damaged by overheating in the event of faultaV9嘉泰姆
conditions. Continuously running the CXSD61051 into thermal shutdown degrades device reliability. aV9嘉泰姆
Current LimitaV9嘉泰姆
Current limit detection occurs during the off-time by monitoring the current through the low-side switchaV9嘉泰姆
using an external resistor, RLIM. The current limit value is defined by RLIM. If during the off-time theaV9嘉泰姆
current in the low-side switch exceeds the user defined current limit value, the next on-time cycle isaV9嘉泰姆
immediately terminated. Current sensing is achieved by comparing the voltage across the low side FETaV9嘉泰姆
with the voltage across the current limit set resistor RLIM. For example, the current limit value is 4.5A byaV9嘉泰姆
the RLIM =100K. The current limit value rises when the set resistor RLIM rises. The maximum outputaV9嘉泰姆
current is set by RLIM: RLIM (kΩ) = 1500 · IMAX (A) / RDS_PMOS (mΩ). aV9嘉泰姆
Oscillator FrequencyaV9嘉泰姆
The CXSD61051 oscillator frequency is set by a single external resistor connected between the RT pin andaV9嘉泰姆
the GND pin. The resistor should be located very close to the device and connected directly to the pinsaV9嘉泰姆
of the IC (RT and GND). An internal amplifier holds the RT pin at a fixed voltage typically 0.6V. TheaV9嘉泰姆
oscillator frequency rises when the resistor RT falls. To determine the timing resistance for a givenaV9嘉泰姆
switching frequency, use the equation below:aV9嘉泰姆
RT(kΩ)= 22000 /fOSC(kHz) aV9嘉泰姆
Setting Output VoltageaV9嘉泰姆
The output voltage is set with a resistor divider from the output node to the FB pin. It is recommended toaV9嘉泰姆
use divider resistors with 1% tolerance or better. To improve efficiency at very light loads consider usingaV9嘉泰姆
larger value resistors. If the values are too high the regulator is more susceptible to noise and voltageaV9嘉泰姆
errors from the FB input current are noticeable. For most applications, a resistor in the 10kΩ to 1MΩaV9嘉泰姆
range is suggested for R3. R2 is then given by:aV9嘉泰姆
R2 = R3 · [(VOUT / VREF) – 1]aV9嘉泰姆
where VREF is 1.21V.aV9嘉泰姆
Output Cable Resistance CompensationaV9嘉泰姆
To compensate for resistive voltage drop across the charger's output cable, the CXSD61051 integrates aaV9嘉泰姆
simple, user-programmable cable voltage drop compensation using the impedance at the FB pin.aV9嘉泰姆
Choose the proper feedback resistance values for cable compensation refer to the curve in Figure 1.aV9嘉泰姆
The delta VOUT voltage rises when the feedback resistance R3 value rises, use the equation belowaV9嘉泰姆
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带线损补偿aV9嘉泰姆

3.2A/带可调限流保护aV9嘉泰姆

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