CXSD6275两相PWM控制芯片它为图形卡应用中的高级图形微处理器提供了一个精确的电压调节系统功率MOSFET驱动器
发表时间:2020-04-21
浏览次数:215

目录ZFy嘉泰姆

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

一,产品概述(General Description)    ZFy嘉泰姆


            The CXSD6275, two-phase PWM control IC, provides a precision voltage regulation system for advanced graphic microprocessors in graphics card applications. The integration of power MOSFET drivers into the controllerZFy嘉泰姆
IC and reduces the number of external parts for a cost and space saving power management solution.ZFy嘉泰姆
       The CXSD6275 uses a voltage-mode PWM architecture,operating with fixed-frequency, to provides excellent load transient response. The device uses the voltage across the DCRs of the inductors for current sensing. Load lineZFy嘉泰姆
voltage positioning (DROOP), channel-current balance,and over-current protection are accomplished through continuous inductor DCR current sensing.ZFy嘉泰姆
The MODE pin programs single- or two- phase operation.When IC operates in two-phase mode normally, it can transfer two-phase mode to single-phase mode at liberty.Nevertheless, once operates in single-phase mode, the operation mode is latched. It is required to toggle SS,REFIN/EN or 5VCC pin to reset the IC. Such feature of the MODE pin makes the CXSD6275 ideally suitable for dualZFy嘉泰姆
power input applications, such as PCIE interfaced graphic cards.This control IC‘s protection features include a set of sophisticated over-temperature, over-voltage, under-voltage, and over-current protections. Over-voltage re-sults in the converter turning the lower MOSFETs on to clamp the rising output voltage and protects theZFy嘉泰姆
microprocessor. The over-current protection level is set through external resistors. The device also provides a power-on-reset function and a programmable soft-startZFy嘉泰姆
to prevent wrong operation and limit the input surge current during power-on or start-up.ZFy嘉泰姆
       The CXSD6275 is available in a QFN4x4-24A packageZFy嘉泰姆
二.产品特点(Features)ZFy嘉泰姆


1.)Voltage-Mode Operation with Current SharingZFy嘉泰姆
       Adjustable Feedback CompensationZFy嘉泰姆
       Fast Load Transient ResponseZFy嘉泰姆
2.)Operate with 8V~13.2VCC Supply VoltageZFy嘉泰姆
3.)Selectable External or Internal 0.6V ReferenceZFy嘉泰姆
     ±1.5% Accuracy Over TemperatureZFy嘉泰姆
4.)Support Single- and Two-Phase OperationsZFy嘉泰姆
5.)5VCC and Buffered Reference OutputsZFy嘉泰姆
6.)8~12V Gate Drivers with Internal Bootstrap DiodeZFy嘉泰姆
7.)Lossless Inductor DCR Current SensingZFy嘉泰姆
8.)Selectable Operation FrequencyZFy嘉泰姆
      150k/300k/400kHz per PhaseZFy嘉泰姆
9.)Power-OK Indicator OutputZFy嘉泰姆
      Regulated 1.5V on REFOUT/POKZFy嘉泰姆
10.)Adjustable Over-Current Protection (OCP)ZFy嘉泰姆
11.)Accurate Load Line (DROOP) ProgrammingZFy嘉泰姆
12.)Adjustable Soft-StartZFy嘉泰姆
13.)Over-Voltage Protection (OVP)ZFy嘉泰姆
14.)Under-Voltage Protection (UVP)ZFy嘉泰姆
15.)Over-Temperature Protection (OTP)ZFy嘉泰姆
16.)QFN4x4 24-Lead Package (QFN4x4-24A)ZFy嘉泰姆
17.)Lead Free and Green Devices Available (RoHS Compliant)ZFy嘉泰姆
三,应用范围 (Applications)ZFy嘉泰姆


Graphics Card GPU Core Power SupplyZFy嘉泰姆

Motherboard Chipset or DDR SDRAM Core PowerSupplyZFy嘉泰姆
On-board High Power PWM Converter with Out-ZFy嘉泰姆

put Current up to 60AZFy嘉泰姆
四.下载产品资料PDF文档 ZFy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ZFy嘉泰姆

 QQ截图20160419174301.jpgZFy嘉泰姆

五,产品封装图 (Package)ZFy嘉泰姆
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FUNCTIONZFy嘉泰姆

PINZFy嘉泰姆

FUNCTIONZFy嘉泰姆

NO.ZFy嘉泰姆

NAMEZFy嘉泰姆

1ZFy嘉泰姆

UGATE1ZFy嘉泰姆

High-side Gate Driver Output for channel 1. Connect this pin to the gate of high-side MOSFET.ZFy嘉泰姆

This pin is monitored by the adaptive shoot-through protection circuitry to determine whenZFy嘉泰姆

 the high-side MOSFET has turned off.ZFy嘉泰姆

2ZFy嘉泰姆

BOOT1ZFy嘉泰姆

Bootstrap Supply for the floating high-side gate driver of channel 1. Connect the BootstrapZFy嘉泰姆

capacitor between the BOOT1 pin and the PHASE1 pin to form a bootstrap circuit. The ZFy嘉泰姆

bootstrap capacitor provides the charge to turn on the high-side MOSFET. Typical values for CBOOT ranged from 0.1μF to 1μF. Ensure that CBOOT is placed near the IC.ZFy嘉泰姆

3ZFy嘉泰姆

5VCCZFy嘉泰姆

Internal Regulator Output. This is the output pin of the linear regulator, which is converting power from VCC and provides output current up to 20mA minimums for internal bias and external usage.ZFy嘉泰姆

4ZFy嘉泰姆

AGNDZFy嘉泰姆

Signal Ground for the IC. All voltage levels are measured with respect to this pin. Tie this pin to the ground island/plane through the lowest impedance connection available.ZFy嘉泰姆

5ZFy嘉泰姆

MODEZFy嘉泰姆

Operation Phase Selection Input. Pulling this pin lower than 0.64V sets two-phase operation with both channels enabled. Pulling this pin higher than 0.8V sets single-phase operation with the channel 2 disabled. Once operating in single-phase mode, the operation mode is latched. It is required to toggle SS, REFIN/EN, or 5VCC pin to reset the IC.ZFy嘉泰姆

6ZFy嘉泰姆

CSP1ZFy嘉泰姆

Positive Input of current sensing Amplifier for channel 1. This pin combined with CSN1 senses the inductor current through an RC network.ZFy嘉泰姆

7ZFy嘉泰姆

CSN1ZFy嘉泰姆

Negative Input of current sensing amplifier for channel 1. This pin combined with CSP1 senses the inductor current through an RC network.ZFy嘉泰姆

8ZFy嘉泰姆

CSN2ZFy嘉泰姆

Negative Input of current sensing amplifier for channel 2. This pin combined with CSP2 senses the inductor current through an RC network.ZFy嘉泰姆

9ZFy嘉泰姆

CSP2ZFy嘉泰姆

Positive Input of current sensing Amplifier for Channel 2. This pin combined with CSN2 senses the inductor current through an RC network.ZFy嘉泰姆

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PINZFy嘉泰姆

FUNCTIONZFy嘉泰姆

NO.ZFy嘉泰姆

NAMEZFy嘉泰姆

10ZFy嘉泰姆

DROOPZFy嘉泰姆

Load Line (droop) Setting. Connect a resistor between this pin and AGND to set the droop. AZFy嘉泰姆
sourcing current, proportional to output current is present on the DROOP pin. The droop scaleZFy嘉泰姆
factor is set by the resistors (connected with CSP1, CSP2, and DROOP), resistance of the outputZFy嘉泰姆
inductors, and the internal voltage divider with the ratio of 5%.ZFy嘉泰姆

11ZFy嘉泰姆

RTZFy嘉泰姆

Operating Frequency Setting. The three-level input pin sets the operating frequency for eachZFy嘉泰姆
channel.ZFy嘉泰姆

RTZFy嘉泰姆

Operating Frequency (kHz)ZFy嘉泰姆

GNDZFy嘉泰姆

150ZFy嘉泰姆

FloatingZFy嘉泰姆

300ZFy嘉泰姆

5VCCZFy嘉泰姆

400ZFy嘉泰姆

12ZFy嘉泰姆

COMPZFy嘉泰姆

Error Amplifier Output. Connect the compensation network between COMP, FB, and VOUT for TypeZFy嘉泰姆
2 or Type 3 feedback compensation.ZFy嘉泰姆

13ZFy嘉泰姆

FBZFy嘉泰姆

Feedback Voltage. This pin is the inverting input to the error comparator. A resistor divider fromZFy嘉泰姆
the output to the AGND is used to set the regulation voltage.ZFy嘉泰姆

14ZFy嘉泰姆

SSZFy嘉泰姆

Soft-start Current Output. Connect a capacitor from this pin to the AGND to set the soft-startZFy嘉泰姆
interval. Pulling the voltage on this pin below 0.5V causes COMP to pull low and then shuts off theZFy嘉泰姆
output.ZFy嘉泰姆

15ZFy嘉泰姆

REFIN/ENZFy嘉泰姆

External Reference and Enable Input. The IC uses the voltage (VREFIN/EN) as reference voltage ofZFy嘉泰姆
the converter with soft-start control. If this pin is driven by an external voltage ranged from 0.4V toZFy嘉泰姆
2V. The IC is disabled if the voltage is below 0.4V (typical). If external reference is not available,ZFy嘉泰姆
then connect this pin to 5VCC for internal 0.6V reference.ZFy嘉泰姆

16ZFy嘉泰姆

REFOUT/POZFy嘉泰姆
KZFy嘉泰姆

Power-OK and 1.5V Reference Output. This pin is a reference output used to indicate the statusZFy嘉泰姆
of the voltages on SS pin and FB pin. REFOUT/POK provides 1.5V reference if VFB> 87.5% ofZFy嘉泰姆
reference (VR).ZFy嘉泰姆

17ZFy嘉泰姆

BOOT2ZFy嘉泰姆

Bootstrap Supply for the floating high-side gate driver of channel 2. Connect the BootstrapZFy嘉泰姆
capacitor between the BOOT2 pin and the PHASE2 pin to form a bootstrap circuit. The bootstrapZFy嘉泰姆
capacitor provides the charge to turn on the high-side MOSFET. Typical values for CBOOT rangeZFy嘉泰姆
from 0.1μF to 1μF. Ensure that CBOOT is placed near the IC.ZFy嘉泰姆

18ZFy嘉泰姆

UGATE2ZFy嘉泰姆

High-side Gate Driver Output for Channel 2. Connect this pin to the gate of high-side MOSFET.ZFy嘉泰姆
This pin is monitored by the adaptive shoot-through protection circuitry to determine when theZFy嘉泰姆
high-side MOSFET has turned off.ZFy嘉泰姆

19ZFy嘉泰姆

PHASE2ZFy嘉泰姆

Switch Node for Channel 2. Connect this pin to the source of high-side MOSFET and the drain ofZFy嘉泰姆
the low-side MOSFET. This pin is used as sink for UGATE2 driver. This pin is also monitored byZFy嘉泰姆
the adaptive shoot-through protection circuitry to determine when the high-side MOSFET hasZFy嘉泰姆
turned off. An Schottky diode between this pin and the ground is recommended to reduceZFy嘉泰姆
negative transient voltage that is common in a power supply system.ZFy嘉泰姆

20ZFy嘉泰姆

LGATE2ZFy嘉泰姆

Low-side Gate Driver Output for Channel 2. Connect this pin to the gate of low-side MOSFET.ZFy嘉泰姆
This pin is monitored by the adaptive shoot-through protection circuitry to determine when theZFy嘉泰姆
low-side MOSFET has turned off.ZFy嘉泰姆

21ZFy嘉泰姆

VCCDRVZFy嘉泰姆

Drive for External Linear Regulator. This pin is the drive output for the external linear regulator.ZFy嘉泰姆
Connect this pin to base/gate of NPN/NMOS transistor as the pass element.ZFy嘉泰姆

22ZFy嘉泰姆

VCCZFy嘉泰姆

Supply Voltage. This pin along with VCCDRV pin and external pass element provides 8.5VZFy嘉泰姆
regulated bias supply, low-side gate drivers, and the bootstrap circuit for high-side drivers. This pinZFy嘉泰姆
can receive a well-decoupled 8V~13.2V supply voltage alone if the VCCDRV is left open. EnsureZFy嘉泰姆
that this pin is bypassed by a ceramic capacitor next to the pin.ZFy嘉泰姆

23ZFy嘉泰姆

LGATE1ZFy嘉泰姆

Low-side Gate Driver Output for Channel 1. Connect this pin to the gate of low-side MOSFET.ZFy嘉泰姆
This pin is monitored by the adaptive shoot-through protection circuitry to determine when theZFy嘉泰姆
low-side MOSFET has turned off.ZFy嘉泰姆

PINZFy嘉泰姆

FUNCTIONZFy嘉泰姆

NO.ZFy嘉泰姆

NAMEZFy嘉泰姆

24ZFy嘉泰姆

PHASE1ZFy嘉泰姆

Switch Node for Channel 1. Connect this pin to the source of high-side MOSFET and the drain of the low-side MOSFET. This pin is used as sink for UGATT1 driver. This pin is also monitored by the adaptive shoot-through protection circuitry to determine when the high-side MOSFET has turned off. An Schottky diode between this pin and the ground is recommended to reduce negative transient voltage, which is common in a power supply system.ZFy嘉泰姆

25ZFy嘉泰姆

PGNDZFy嘉泰姆

Power Ground for the low-side gate drivers. Connect this pin to the source of low-side MOSFETs. This pin is used as sink for LGATE1 and LGATE2 drivers.ZFy嘉泰姆

六.电路原理图ZFy嘉泰姆


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1ZFy嘉泰姆

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3000ZFy嘉泰姆

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