CXSD6295

CXSD6295允许宽输入电压,可以是单个5~12V或两个电源电压,适用于各种应用。上电复位(POR)电路监测VCC电源电压,以防止错误的逻辑控制。内置的软启动电路可防止输出电压过冲,并限制输入电流。为了满足低输出电压应用的要求,设计了一种高精度的0.8V温度补偿参考电压源。

CXSD6295电压模式固定300kHz开关频率同步降压变换器许宽输入电压对于vario为单个5~12V或两个电源电压

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产品订购

产品简介

目录7mi嘉泰姆

1.产品概述                       2.产品特点7mi嘉泰姆
3.应用范围                       4.下载产品资料PDF文档 7mi嘉泰姆
5.产品封装图                     6.电路原理图                   7mi嘉泰姆
7.功能概述                        8.相关产品7mi嘉泰姆

一,产品概述(General Description)   7mi嘉泰姆


 The CXSD6295 is a voltage mode, fixed 300kHz switching frequency, synchronous buck converter. The CXSD6295 allows wide input voltage that is either a single 5~12V or two supply voltage(s) for various applications. A power-on-reset (POR) circuit monitors the VCC supply voltage to prevent wrong logic controls. A built-in soft-start circuit prevents the output voltages from overshoot as well as limits the input current. An internal 0.8V tempera ture-compensated reference voltage with high accuracy is designed to meet the requirement of low output voltage applications. The CXSD6295 provides excellent out put voltage regulations against load current variation.The controller’s over-current protection monitors the out-put current by using the voltage drop across the RDS(ON) of low-side MOSFET, eliminating the need for a current sensing resistor that features high efficiency and low cost. In addition, the CXSD6295 also integrates excellent protection functions: The over-voltage protection (OVP) , under voltage protection (UVP). OVP circuit which monitors the FB voltage to prevent the PWM output from over-voltage,and UVP circuit which monitors the FB voltage to prevent the PWM output from under-voltage or short-circuit.7mi嘉泰姆
  The CXSD6295 is available in SOP-8P and TDFN3x3-10 packages.7mi嘉泰姆
二.产品特点(Features)7mi嘉泰姆


1.)Wide 5V to 12V Supply Voltage7mi嘉泰姆
2.)Power-On-Reset Monitoring on VCC7mi嘉泰姆
3.)Excellent Output Voltage Regulations7mi嘉泰姆
     0.8V Internal Reference7mi嘉泰姆
     ±1% Over-Temperature Range7mi嘉泰姆
4.)Integrated Soft-Start7mi嘉泰姆
5.)Voltage Mode PWM Operation with External Compensation7mi嘉泰姆
6.)Up to 90% Duty Ratio for Fast Transient Response7mi嘉泰姆
7.)Constant Switching Frequency  300kHz ±10%7mi嘉泰姆
8.)9V Driver Voltage for BOOT Supply with Internal Bootstrap Diode7mi嘉泰姆
9.)Drive Dual Low Cost N-MOSFETs with Adaptive Dead-Time Control7mi嘉泰姆
10.)50% Under-Voltage Protection7mi嘉泰姆
11.)125% Over-Voltage Protection7mi嘉泰姆
12.)Adjustable Over-Current Protection Threshold7mi嘉泰姆
     Using the RDS(ON) of Low-Side MOSFET7mi嘉泰姆
13.)Shutdown Control by COMP7mi嘉泰姆
14.)Power Good Monitoring (TDFN-10 3mmx3mm Package Only)7mi嘉泰姆
    SOP-8P and TDFN3x3-10 Packages7mi嘉泰姆
15.)Lead Free and Green Devices Available (RoHS Compliant)7mi嘉泰姆
三,应用范围 (Applications)7mi嘉泰姆


Graphic Cards7mi嘉泰姆
DSL, Switch HUB7mi嘉泰姆
Wireless Lan7mi嘉泰姆
Notebook Computer7mi嘉泰姆
Mother Board7mi嘉泰姆
LCD Monitor/TV7mi嘉泰姆
四.下载产品资料PDF文档 7mi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7mi嘉泰姆

 QQ截图20160419174301.jpg7mi嘉泰姆

五,产品封装图 (Package)7mi嘉泰姆


blob.png7mi嘉泰姆

六.电路原理图7mi嘉泰姆


blob.pngblob.png7mi嘉泰姆

七,功能概述7mi嘉泰姆


Output Capacitor Selection7mi嘉泰姆
The selection of COUT is determined by the required effec-tive series resistance (ESR) and voltage7mi嘉泰姆
rating rather than the actual capacitance requirement. Therefore, selecting high performance low ESR7mi嘉泰姆
capacitors is intended for switching regulator applications. In some applications,multiple capacitors have7mi嘉泰姆
to be paralleled to achieve the desired ESR value. If tantalum capacitors are used, make sure they are7mi嘉泰姆
surge tested by the manufactures. If in doubt,consult the capacitors manufacturer. 7mi嘉泰姆
Input Capacitor Selection7mi嘉泰姆
The input capacitor is chosen based on the voltage rat-ing and the RMS current rating. For reliable operation,7mi嘉泰姆
select the capacitor voltage rating to be at least 1.3 times higher than the maximum input voltage. The maximum7mi嘉泰姆
RMS current rating requirement is approximately IOUT/2 where IOUT is the load current. During power up, the7mi嘉泰姆
input capacitors have to handle large amount of surge current.If tantalum capacitors are used, make sure they7mi嘉泰姆
are surge tested by the manufactures. If in doubt, consult the ca-pacitors manufacturer.For high frequency7mi嘉泰姆
decoupling, a ceramic capacitor be-tween 0.1μF to 1μF can connect between VCC and ground pin.7mi嘉泰姆
Inductor Selection7mi嘉泰姆
The inductance of the inductor is determined by the out-put voltage requirement. The larger the inductance, 7mi嘉泰姆

the lower the inductor’s current ripple. This will translate into lower output ripple voltage. The ripple current 7mi嘉泰姆

and ripple voltage can be approximated by:7mi嘉泰姆
×   OUT7mi嘉泰姆
FSW × L    VIN7mi嘉泰姆
where Fs is the switching frequency of the regulator.7mi嘉泰姆
∆VOUT = IRIPPLE x ESR7mi嘉泰姆
A tradeoff exists between the inductor’s ripple current and the regulator load transient response time. A smaller7mi嘉泰姆

 in-ductor will give the regulator a faster load transient re-sponse at the expense of higher ripple current and vice7mi嘉泰姆
versa. The maximum ripple current occurs at the maxi-mum input voltage. A good starting point is to choose the7mi嘉泰姆
ripple current to be approximately 30% of the maximum output current.Once the inductance value has been chosen, selecting an inductor is capable of carrying the required peak cur-rent without going into saturation. In some types of inductors, especially core that is make of ferrite, the ripple current will increase abruptly when it saturates. This will result in a larger output ripple voltage. 7mi嘉泰姆
Compensation7mi嘉泰姆
The output LC filter of a step down converter introduces a double pole, which contributes with -40dB/decade gain7mi嘉泰姆
slope and 180 degrees phase shift in the control loop. A compensation network between COMP pin and ground7mi嘉泰姆
should be added. The simplest loop compensation net-work is shown in Figure 5.7mi嘉泰姆
The output LC filter consists of the output inductor and output capacitors. The transfer function of the LC filter is7mi嘉泰姆
given by:7mi嘉泰姆
The FLC is the double poles of the LC filter, and FESR is the zero introduced by the ESR of the output capacitor.7mi嘉泰姆

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5507mi嘉泰姆

CXSD621057mi嘉泰姆

TQFN4x4-247mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

157mi嘉泰姆

67mi嘉泰姆

257mi嘉泰姆

27mi嘉泰姆

N7mi嘉泰姆

5507mi嘉泰姆

CXSD62106|A7mi嘉泰姆

TQFN4x4-47mi嘉泰姆

TQFN3x3-207mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

207mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

8007mi嘉泰姆

CXSD621077mi嘉泰姆

TQFN3x3-167mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

17mi嘉泰姆

207mi嘉泰姆

1.87mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

4007mi嘉泰姆

CXSD621087mi嘉泰姆

QFN3.5x3.5-147mi嘉泰姆

TQFN3x3-167mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

17mi嘉泰姆

207mi嘉泰姆

1.87mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

4007mi嘉泰姆

CXSD621097mi嘉泰姆

TQFN3x3-167mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

207mi嘉泰姆

1.87mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

4007mi嘉泰姆

CXSD621107mi嘉泰姆

QFN3x3-207mi嘉泰姆

TQFN3x3-167mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

207mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

1.8|1.5|0.57mi嘉泰姆

57mi嘉泰姆

7407mi嘉泰姆

CXSD621117mi嘉泰姆

TQFN4x4-247mi嘉泰姆

|QFN3x3-207mi嘉泰姆

CM7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

157mi嘉泰姆

57mi嘉泰姆

287mi嘉泰姆

0.57mi嘉泰姆

N7mi嘉泰姆

30007mi嘉泰姆

CXSD621127mi嘉泰姆

TDFN3x3-107mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

17mi嘉泰姆

207mi嘉泰姆

1.87mi嘉泰姆

287mi嘉泰姆

0.57mi嘉泰姆

57mi嘉泰姆

2507mi嘉泰姆

CXSD62113|C7mi嘉泰姆

TQFN3x3-207mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

157mi嘉泰姆

67mi嘉泰姆

257mi嘉泰姆

27mi嘉泰姆

N7mi嘉泰姆

5507mi嘉泰姆

CXSD62113E7mi嘉泰姆

TQFN 3x3 207mi嘉泰姆

COT7mi嘉泰姆

27mi嘉泰姆

27mi嘉泰姆

117mi嘉泰姆

67mi嘉泰姆

257mi嘉泰姆

27mi嘉泰姆

N7mi嘉泰姆

5507mi嘉泰姆

CXSD621147mi嘉泰姆

TQFN3x3-207mi嘉泰姆

COT7mi嘉泰姆

27mi嘉泰姆

27mi嘉泰姆

117mi嘉泰姆

5.57mi嘉泰姆

257mi嘉泰姆

27mi嘉泰姆

N7mi嘉泰姆

2807mi嘉泰姆

CXSD621157mi嘉泰姆

QFN4x4-247mi嘉泰姆

VM7mi嘉泰姆

27mi嘉泰姆

17mi嘉泰姆

607mi嘉泰姆

3.17mi嘉泰姆

13.27mi嘉泰姆

0.857mi嘉泰姆

127mi嘉泰姆

50007mi嘉泰姆

CXSD62116A|B|C7mi嘉泰姆

SOP-8P7mi嘉泰姆

VM7mi嘉泰姆

17mi嘉泰姆

17mi嘉泰姆

207mi嘉泰姆

2.97mi嘉泰姆

13.27mi嘉泰姆

0.87mi嘉泰姆

127mi嘉泰姆

160007mi嘉泰姆

CXSD621177mi嘉泰姆

SOP-207mi嘉泰姆

VM7mi嘉泰姆

27mi嘉泰姆

27mi嘉泰姆

307mi嘉泰姆

107mi嘉泰姆

13.27mi嘉泰姆

17mi嘉泰姆

127mi嘉泰姆

50007mi嘉泰姆

CXSD621187mi嘉泰姆

TDFN3x3-107mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

17mi嘉泰姆

257mi嘉泰姆

1.87mi嘉泰姆

287mi嘉泰姆

0.77mi嘉泰姆

57mi嘉泰姆

2507mi嘉泰姆

CXSD621197mi嘉泰姆

TQFN3x3-207mi嘉泰姆

COT7mi嘉泰姆

27mi嘉泰姆

17mi嘉泰姆

407mi嘉泰姆

1.87mi嘉泰姆

257mi嘉泰姆

REFIN Setting7mi嘉泰姆

57mi嘉泰姆

7007mi嘉泰姆

CXSD621207mi嘉泰姆

QFN 3x3 207mi嘉泰姆

TQFN 3x3 167mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

207mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

1.8|1.5 1.35|1.2 0.57mi嘉泰姆

57mi嘉泰姆

8007mi嘉泰姆

CXSD62121A7mi嘉泰姆

TQFN3x3 207mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

157mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

2207mi嘉泰姆

CXSD62121B7mi嘉泰姆

TQFN3x3 207mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

157mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

2207mi嘉泰姆

CXSD621217mi嘉泰姆

TQFN3x3-207mi嘉泰姆

COT7mi嘉泰姆

17mi嘉泰姆

27mi嘉泰姆

207mi嘉泰姆

37mi嘉泰姆

287mi嘉泰姆

0.757mi嘉泰姆

57mi嘉泰姆

1807mi嘉泰姆

 7mi嘉泰姆

 7mi嘉泰姆

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