Product information query
Products News
首页 > Products > Power Management > DC/DC Step-Down Converter > Buck Step-Down Converter >CXSD6279B is a voltage mode and synchronous PWM controller which drives dual N-Channel MOSFETs. It inte-grates the control, monitoring, and protection functions into a single package, provides on
CXSD6279B is a voltage mode and synchronous PWM controller which drives dual N-Channel MOSFETs. It inte-grates the control, monitoring, and protection functions into a single package, provides on

The CXSD6279B is a voltage mode and synchronous PWM controller
which drives dual N-Channel MOSFETs. It inte-grates the control, monitoring,
and protection functions into a single package, provides one controlled power
outputs with under-voltage and over-current protection.CXSD6279B provides
excellent regulation for output load variation. An internal 0.8V temperature-
compensated reference voltage is designed to meet the requirement of
low output voltage applications. It includes a 200kHz free-running
triangle-wave oscillator that is adjustable from 70kHz to 800kHz.
The power-on-reset (POR) circuit monitors the VCC, EN,and OCSET
input voltage to start-up or shutdown the IC.The over-current protection (OCP)
monitors the output current by using the voltage drop across the upper
MOSFET’s RDS(ON), eliminating the need for a current sens-ing resistor.
The under-voltage protection (UVP) moni-tors the voltage of the FB pin for
short-circuit protection.The over-current protection trip cycle the soft-start
func-tion until the fault events be removed. Under-voltage pro-tection will
shutdown the IC directly.

CXSD6279B is a voltage mode and synchronous PWM controller which drives dual N-Channel MOSFETs. It inte-grates the control, monitoring, and protection functions into a single package, provides on
Manual
  • "

Ordering

Ordering

Product introduction

目录0BZ嘉泰姆

1.产品概述                       2.产品特点0BZ嘉泰姆
3.应用范围                       4.下载产品资料PDF文档 0BZ嘉泰姆
5.产品封装图                     6.电路原理图                   0BZ嘉泰姆
7.功能概述                        8.相关产品0BZ嘉泰姆

一,产品概述(General Description)      0BZ嘉泰姆


                The CXSD6279B is a voltage mode and synchronous PWM controller0BZ嘉泰姆
which drives dual N-Channel MOSFETs. It inte-grates the control, monitoring,0BZ嘉泰姆
and protection functions into a single package, provides one controlled power0BZ嘉泰姆
outputs with under-voltage and over-current protection.CXSD6279B provides0BZ嘉泰姆
excellent regulation for output load variation. An internal 0.8V temperature-0BZ嘉泰姆
compensated reference voltage is designed to meet the requirement of0BZ嘉泰姆
low output voltage applications. It includes a 200kHz free-running0BZ嘉泰姆
triangle-wave oscillator that is adjustable from 70kHz to 800kHz.0BZ嘉泰姆
        The power-on-reset (POR) circuit monitors the VCC, EN,and OCSET0BZ嘉泰姆
input voltage to start-up or shutdown the IC.The over-current protection (OCP)0BZ嘉泰姆
monitors the output current by using the voltage drop across the upper0BZ嘉泰姆
MOSFET’s RDS(ON), eliminating the need for a current sens-ing resistor.0BZ嘉泰姆
The under-voltage protection (UVP) moni-tors the voltage of the FB pin for0BZ嘉泰姆
short-circuit protection.The over-current protection trip cycle the soft-start0BZ嘉泰姆
func-tion until the fault events be removed. Under-voltage pro-tection will0BZ嘉泰姆
shutdown the IC directly.0BZ嘉泰姆
二.产品特点(Features)0BZ嘉泰姆


1.)Simple Single-Loop Control Design0BZ嘉泰姆
   Voltage-Mode PWM Control0BZ嘉泰姆
2.)Fast Transient Response0BZ嘉泰姆
    Full 0–100% Duty Ratio0BZ嘉泰姆
3.)Excellent Output Voltage Regulation0BZ嘉泰姆
   0.8V Internal Reference0BZ嘉泰姆
    ± 1% Over Line Voltage and Temperature0BZ嘉泰姆
4.)Over Current Fault Monitor0BZ嘉泰姆
   Uses Upper MOSFETs RDS (ON)0BZ嘉泰姆
5.)Converter Can Source and Sink Current0BZ嘉泰姆
6.)Small Converter Size0BZ嘉泰姆
    200kHz Free-Running Oscillator0BZ嘉泰姆
   Programmable from 70kHz to 800kHz0BZ嘉泰姆
7.)14-Lead SOIC Package0BZ嘉泰姆
8.)Lead Free and Green Devices Available (RoHS Compliant)0BZ嘉泰姆
三,应用范围 (Applications)0BZ嘉泰姆


Graphic Cards0BZ嘉泰姆
DDR Memory Power Supply0BZ嘉泰姆
DDR Memory Termination Voltage0BZ嘉泰姆
Low-Voltage Distributed Power Supplies0BZ嘉泰姆
四.下载产品资料PDF文档 0BZ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0BZ嘉泰姆

 QQ截图20160419174301.jpg0BZ嘉泰姆

五,产品封装图 (Package)0BZ嘉泰姆


0BZ嘉泰姆
RT (Pin1)0BZ嘉泰姆
This pin can adjust the switching frequency. Connect a resistor from the RT to the GND for increasing the switch-0BZ嘉泰姆
OCSET (Pin2)0BZ嘉泰姆
This pin serves two functions: a shutdown control and the setting of over current-limit threshold. Pulling this pin0BZ嘉泰姆
below 1.27V will shutdown the controller, forcing the UGATE and LGATE signals to be at 0V.0BZ嘉泰姆
A resistor (Rocset) connected between this pin and the drain of the high side MOSFET will determine the over 0BZ嘉泰姆

current limit. An internal 200μA current source will flow through this resistor, creating a voltage drop, which 0BZ嘉泰姆

will be com-pared with the voltage across the high side MOSFET.0BZ嘉泰姆
SS (Pin3)0BZ嘉泰姆
Connect a capacitor from the pin to the GND to set the soft-start interval of the converter. An internal 10μA 0BZ嘉泰姆

current source charges this capacitor to 5.8V. The SS voltage clamps the error amplifier output, and Figure10BZ嘉泰姆

 shows the soft-start interval. At t1, the SS voltage reaches the valley of the oscillator’s triangle wave. The0BZ嘉泰姆

PWM comparator starts to generate a PWM signal to control logic, and the0BZ嘉泰姆
COMP (Pin4)0BZ嘉泰姆
This pin is the output of the error amplifier. Add an exter-nal resistor and capacitor network to provide the0BZ嘉泰姆

 loop com- pensation for the PW M converter (see Application Information).0BZ嘉泰姆
FB (Pin5)0BZ嘉泰姆
FB pin is the inverter input of the error amplifier and it receives the feedback voltage from an external 0BZ嘉泰姆

resis-tive divider across the output (V OUT). The output voltage is determined by:0BZ嘉泰姆
EN (Pin6)0BZ嘉泰姆
Pull the pin higher than 2V to enable the device, and pull the pin lower than 0.8V to shutdown the 0BZ嘉泰姆

device. In shutdown, the SS is discharged and the UGATE and LGATE pins are held low. The EN pin 0BZ嘉泰姆

is the open-collector, and it will not be floating. 0BZ嘉泰姆
GND (Pin7)0BZ嘉泰姆
Signal ground for the IC. 0BZ嘉泰姆
PHASE (Pin8)0BZ嘉泰姆
This pin is connected to the source of the high-side MOSFET and is used to monitor the voltage drop0BZ嘉泰姆

 across the high-side MOSFET for over-current protection. 0BZ嘉泰姆
UGATE (Pin9)0BZ嘉泰姆
Connect the pin to external MOSFET, and provides the gate drive for the upper MOSFET.0BZ嘉泰姆

BOOT (Pin 10)0BZ嘉泰姆
This pin provides the supply voltage to the high side MOSFET driver. For driving logic level N-channel 0BZ嘉泰姆

MOSEFT,a bootstrap circuit can be used to create a suitable driver’s supply. 0BZ嘉泰姆
PGND (Pin11)0BZ嘉泰姆
Power ground for the gate diver. Connect the lower MOSFET source to this pin. 0BZ嘉泰姆
LGATE (Pin 12)0BZ嘉泰姆

Connect the pin to the external MOSFET, and provides the gate drive signal for the lower MOSFET.0BZ嘉泰姆
PVCC (Pin13)0BZ嘉泰姆
This pin provides a supply voltage for the lower gate drive, connect it to the VCC pin in common use. 0BZ嘉泰姆
VCC (Pin14)0BZ嘉泰姆
This pin provides a supply voltage for the device. When the VCC is above the rising threshold 10.4V, 0BZ嘉泰姆

the device is turned on; conversely, when the VCC is below the falling threshold, the device is turned off.0BZ嘉泰姆
六.电路原理图0BZ嘉泰姆


blob.png0BZ嘉泰姆
七,功能概述0BZ嘉泰姆


Output Capacitor Selection0BZ嘉泰姆
The selection of COUT is determined by the required effec-tive series resistance (ESR) and voltage rating0BZ嘉泰姆

 rather than the actual capacitance requirement. Therefore, select highperformance low ESR capacitors 0BZ嘉泰姆

that are intended for switching regulator applications. In some applications,multiple capacitors have to0BZ嘉泰姆

 be paralled to achieve the desired ESR value. If tantalum capacitors are used, makesure they are surge0BZ嘉泰姆

 tested by the manufactures. If in doubt,consult the capacitors manufacturer.0BZ嘉泰姆
 Input Capacitor Selection0BZ嘉泰姆
The input capacitor is chosen based on the voltage rating and the RMS current rating. For reliable 0BZ嘉泰姆

operation, select the capacitor voltage rating to be at least 1.3 times higher than the maximum input0BZ嘉泰姆

 voltage. The maximum RMS current rating requirement is approximately IOUT/2 , where IOUT is the 0BZ嘉泰姆

load current. During power up, the input capaci-tors have to handle large amount of surge current.0BZ嘉泰姆

 If tanta-lum capacitors are used, make sure they are surge tested by the manufactures. If in doubt, 0BZ嘉泰姆

consult the capacitors manufacturer.For high frequency decoupling, a ceramic capacitor be-tween0BZ嘉泰姆

 0.1μF to 1μF can be connected between the VCC and the ground pin.0BZ嘉泰姆
Inductor Selection0BZ嘉泰姆
The inductance of the inductor is determined by the out-put voltage requirement. The larger the 0BZ嘉泰姆

inductance, the lower the inductor’s current ripple. This will translate into lower output ripple voltage.0BZ嘉泰姆

 The ripple current and ripple voltage can be approximated by:0BZ嘉泰姆
where Fs is the switching frequency of the regulator.There is a tradeoff exists between the inductor’s0BZ嘉泰姆

 ripple current and the regulator load transient response time. A smaller inductor will give the regulator 0BZ嘉泰姆

a faster load tran-sient response at the expense of higher ripple current and vice versa. The maximum0BZ嘉泰姆

 ripple current occurs at the maximum input voltage. A good starting point is to choose the ripple 0BZ嘉泰姆

current to be approximately 30% of the maxi-mum output current.Once the inductance value has 0BZ嘉泰姆

been chosen, select an inductor that is capable of carrying the required peak cur-rent without going 0BZ嘉泰姆

into saturation. In some types of inductors, especially core that is make of ferrite, the ripple0BZ嘉泰姆
current will increase abruptly when it saturates. This will result in a larger output ripple voltage.0BZ嘉泰姆
Compensation0BZ嘉泰姆
The output LC filter introduces a double pole, which con-tributes with –40dB/decade gain slope and 0BZ嘉泰姆

180 degrees phase shift in the control loop. A compensation network between the COMP pin and the 0BZ嘉泰姆

ground should be added. The simplest loop compensation network is shown in0BZ嘉泰姆
Figure 5.0BZ嘉泰姆
The output LC filter consists of the output inductor and output capacitors. The transfer function of0BZ嘉泰姆

 the LC filter is given by:0BZ嘉泰姆
八,相关产品                     更多同类产品...... 0BZ嘉泰姆


Switching Regulator >   Buck Controller0BZ嘉泰姆

Part_No 0BZ嘉泰姆

Package 0BZ嘉泰姆

Archi0BZ嘉泰姆

tectu0BZ嘉泰姆

Phase0BZ嘉泰姆

No.of0BZ嘉泰姆

PWM0BZ嘉泰姆

Output0BZ嘉泰姆

Output 0BZ嘉泰姆

Current0BZ嘉泰姆

(A) 0BZ嘉泰姆

Input0BZ嘉泰姆

Voltage (V) 0BZ嘉泰姆

Reference0BZ嘉泰姆

Voltage0BZ嘉泰姆

(V) 0BZ嘉泰姆

Bias 0BZ嘉泰姆

Voltage0BZ嘉泰姆

(V) 0BZ嘉泰姆

Quiescent0BZ嘉泰姆

Current0BZ嘉泰姆

(uA) 0BZ嘉泰姆

min0BZ嘉泰姆

max0BZ嘉泰姆

CXSD62730BZ嘉泰姆

SOP-140BZ嘉泰姆

QSOP-160BZ嘉泰姆

QFN4x4-160BZ嘉泰姆

VM    0BZ嘉泰姆

1   0BZ嘉泰姆

1     0BZ嘉泰姆

300BZ嘉泰姆

2.9    0BZ嘉泰姆

13.20BZ嘉泰姆

0.90BZ嘉泰姆

12     0BZ嘉泰姆

80000BZ嘉泰姆

CXSD62740BZ嘉泰姆

SOP-80BZ嘉泰姆

VM   0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

200BZ嘉泰姆

2.9  0BZ嘉泰姆

13.2 0BZ嘉泰姆

0.80BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD6274C0BZ嘉泰姆

SOP-80BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

200BZ嘉泰姆

2.90BZ嘉泰姆

13.20BZ嘉泰姆

0.80BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD62750BZ嘉泰姆

QFN4x4-240BZ嘉泰姆

VM0BZ嘉泰姆

20BZ嘉泰姆

10BZ嘉泰姆

600BZ嘉泰姆

3.10BZ嘉泰姆

13.20BZ嘉泰姆

0.60BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD62760BZ嘉泰姆

SOP-80BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

200BZ嘉泰姆

2.20BZ嘉泰姆

13.20BZ嘉泰姆

0.80BZ嘉泰姆

5~120BZ嘉泰姆

21000BZ嘉泰姆

CXSD6276A0BZ嘉泰姆

SOP-80BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

200BZ嘉泰姆

2.20BZ嘉泰姆

13.20BZ嘉泰姆

0.80BZ嘉泰姆

5~120BZ嘉泰姆

21000BZ嘉泰姆

CXSD6277/A/B0BZ嘉泰姆

SOP8|TSSOP80BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

50BZ嘉泰姆

50BZ嘉泰姆

13.20BZ嘉泰姆

1.25|0.80BZ嘉泰姆

5~120BZ嘉泰姆

30000BZ嘉泰姆

CXSD62780BZ嘉泰姆

SOP-80BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

100BZ嘉泰姆

3.30BZ嘉泰姆

5.50BZ嘉泰姆

0.80BZ嘉泰姆

50BZ嘉泰姆

21000BZ嘉泰姆

CXSD6279B0BZ嘉泰姆

SOP-140BZ嘉泰姆

VM   0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

100BZ嘉泰姆

50BZ嘉泰姆

13.20BZ嘉泰姆

0.80BZ嘉泰姆

120BZ嘉泰姆

20000BZ嘉泰姆

CXSD62800BZ嘉泰姆

TSSOP-240BZ嘉泰姆

|QFN5x5-320BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

20BZ嘉泰姆

200BZ嘉泰姆

50BZ嘉泰姆

13.20BZ嘉泰姆

0.60BZ嘉泰姆

5~120BZ嘉泰姆

40000BZ嘉泰姆

CXSD6281N0BZ嘉泰姆

SOP140BZ嘉泰姆

QSOP160BZ嘉泰姆

QFN-160BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

300BZ嘉泰姆

2.90BZ嘉泰姆

13.20BZ嘉泰姆

0.90BZ嘉泰姆

120BZ嘉泰姆

40000BZ嘉泰姆

CXSD62820BZ嘉泰姆

SOP-140BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

300BZ嘉泰姆

2.20BZ嘉泰姆

13.20BZ嘉泰姆

0.60BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD6282A0BZ嘉泰姆

SOP-140BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

300BZ嘉泰姆

2.20BZ嘉泰姆

13.20BZ嘉泰姆

0.60BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD62830BZ嘉泰姆

SOP-140BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

10BZ嘉泰姆

250BZ嘉泰姆

2.20BZ嘉泰姆

13.20BZ嘉泰姆

0.80BZ嘉泰姆

120BZ嘉泰姆

50000BZ嘉泰姆

CXSD6284/A0BZ嘉泰姆

LQFP7x7 480BZ嘉泰姆

TQFN7x7-480BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

60BZ嘉泰姆

0.0150BZ嘉泰姆

1.40BZ嘉泰姆

6.50BZ嘉泰姆

-0BZ嘉泰姆

50BZ嘉泰姆

18000BZ嘉泰姆

CXSD62850BZ嘉泰姆

TSSOP-24P0BZ嘉泰姆

VM0BZ嘉泰姆

10BZ嘉泰姆

20BZ嘉泰姆

200BZ嘉泰姆

2.970BZ嘉泰姆

5.50BZ嘉泰姆

0.80BZ嘉泰姆

5~120BZ嘉泰姆

50000BZ嘉泰姆

CXSD62860BZ嘉泰姆

SOP-140BZ嘉泰姆

VM0BZ嘉泰姆