CXSD6292单相恒定时间和同步PWM控制器驱动N通道mosfet降低电池的高压低压芯片

发布时间:2020-04-22 16:04:56 浏览次数:295 作者:oumao18 来源:嘉泰姆
摘要:CXSD6292提供卓越的瞬态响应和准确的直流电脉冲频率调制模式下的电压输出(PFM)模式下,CXSD6292在轻载情况下提供非常高的效率加载调制开关频率。当电感电流是连续的,运行自动进入脉宽调制模式恒定开关频率。
CXSD6292单相恒定时间和同步PWM控制器驱动N通道mosfet降低电池的高压低压芯片

目录0ZQ嘉泰姆

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

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


       The CXSD6292 is a single-phase, constant-on-time, and synchronous0ZQ嘉泰姆
PWM controller which drives N-channel MOSFETs. The CXSD6292 steps0ZQ嘉泰姆
down high voltage of a battery to generate low-voltage chipset or RAM supplies0ZQ嘉泰姆
in notebook computers.0ZQ嘉泰姆
        The CXSD6292 provides excellent transient response and accurate DC0ZQ嘉泰姆
voltage output in either PFM or PWM Mode.In Pulse Frequency Modulation0ZQ嘉泰姆
(PFM) Mode, the CXSD6292 provides very high efficiency over light load0ZQ嘉泰姆
with loading-modulated switching frequencies. When the inductor current0ZQ嘉泰姆
is continuous, the operation automatically enters PWM mode with relatively0ZQ嘉泰姆
constant switching frequency.For QFN4x4-16A and TQFN3x3-16 packages,0ZQ嘉泰姆
the Forced-PWM Mode works nearly at constant frequency for low-noise0ZQ嘉泰姆
requirements.0ZQ嘉泰姆
         The CXSD6292 is equipped with accurate over-current,output under-0ZQ嘉泰姆
voltage, and over-voltage protections per-fect for NB application. A Power-0ZQ嘉泰姆
On-Reset function moni-tors the voltage on VCC pin to prevent errorneous0ZQ嘉泰姆
opera-tion during power-on. The CXSD6292 has a digital soft-start and soft-stop.0ZQ嘉泰姆
The internal integrated soft-start ramps up the output voltage with controlled slew0ZQ嘉泰姆
rate to reduce the start-up current. The digital soft-stop function actively discharges0ZQ嘉泰姆
the output capacitors with controlled reverse inductor current.0ZQ嘉泰姆
     The CXSD6292 is available in SSOP-16, QFN4x4-16A, and TQFN3x3-16 packages0ZQ嘉泰姆
二.产品特点(Features)0ZQ嘉泰姆


1.)Adjustable Output Voltage from +0.6V to +3.3V0ZQ嘉泰姆
    - 0.6V Reference Voltage0ZQ嘉泰姆
    - ±1% Accuracy Over Temperature0ZQ嘉泰姆
2.)Operates from an Input Battery Voltage Range of +3V to +25V0ZQ嘉泰姆
3.)Wide Output Load Range from 0A to 25A0ZQ嘉泰姆
4.)Power-On-Reset Monitoring on VCC Pin0ZQ嘉泰姆
5.)Excellent Line and Load Transient Response0ZQ嘉泰姆
6.)PFM Mode for Increased Light Load Efficiency0ZQ嘉泰姆
7.)Programmable PWM Frequency from 200kHz to 600kHz0ZQ嘉泰姆
8.)Integrated MOSFET Drivers and Bootstrap Diode0ZQ嘉泰姆
9.)Internal Integrated Soft-Start and Soft-Stop0ZQ嘉泰姆
10.)Selectable Forced PWM or Automatic PFM/PWM0ZQ嘉泰姆
11.)Mode (only for QFN4x4-16A and TQFN3x3-16 Packages)0ZQ嘉泰姆
      Power Good Monitoring0ZQ嘉泰姆
12.)Fault Identification by PGOOD Pull-Down Resistance0ZQ嘉泰姆
13.)70% Under-Voltage Protection (UVP)0ZQ嘉泰姆
14.)124% Over-Voltage Protection (OVP)0ZQ嘉泰姆
15.)Adjustable Over-Current Protection (OCP)0ZQ嘉泰姆
      - Sensing Low-Side MOSFET’s Current0ZQ嘉泰姆
16.)Over-Temperature Protection (OTP)0ZQ嘉泰姆
17.)SSOP-16, Compact 4mmx4mm QFN-16 (QFN4x4-0ZQ嘉泰姆
     16A), and TQFN3x3-16 Packages0ZQ嘉泰姆
18.)Lead Free and Green Devices Available0ZQ嘉泰姆
三,应用范围 (Applications)0ZQ嘉泰姆


PCI Express Graphical Processing Unit0ZQ嘉泰姆
Notebook Adapter0ZQ嘉泰姆
Auxiliary Power Rail0ZQ嘉泰姆
VRM0ZQ嘉泰姆
四.下载产品资料PDF文档 0ZQ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0ZQ嘉泰姆

 QQ截图20160419174301.jpg0ZQ嘉泰姆

五,产品封装图 (Package)0ZQ嘉泰姆


blob.png0ZQ嘉泰姆

六.电路原理图0ZQ嘉泰姆


blob.png0ZQ嘉泰姆
七,功能概述0ZQ嘉泰姆


Power Good Indicator0ZQ嘉泰姆
The CXSD6292 features an open-drain PGOOD output pin to indicate one of the IC’s working statuses 0ZQ嘉泰姆

including soft-start, under-voltage fault, over-current fault, and over-voltage faule. The unique fault-0ZQ嘉泰姆

identification capability can drastically reduce trouble-shooting time and effort.0ZQ嘉泰姆
The pull-down resistance of the PGOOD pin correspondsto the fault status of the controller. During 0ZQ嘉泰姆

soft-start or if an under voltage fault occurs, the PGOOD pull-down re-sistance is 95Ω, or 32Ω for 0ZQ嘉泰姆

an over current fault, or 63Ω for an over voltage fault. The pull-low resistance is unde-fined if VCC 0ZQ嘉泰姆

is below the rising/falling POR threshold.0ZQ嘉泰姆
Over-Temperature Protection (OTP)0ZQ嘉泰姆
When the junction temperature increases above the ris-ing threshold temperature TOTR, the IC 0ZQ嘉泰姆

will enter the over-temperature protection (OTP) state that suspends the PWM, which forces the 0ZQ嘉泰姆

LG and UG gate drivers to output low voltages. The status of the PGOOD pin does not change, nor0ZQ嘉泰姆

 does the converter latch-off. The thermal sensor allows the converters to start a start-up process 0ZQ嘉泰姆

and regulate the output voltage again after the junction temperature cools by 25oC. The OTP is 0ZQ嘉泰姆

designed with a 25oC hysteresis to lower the average TJ during continu-ous thermal overload 0ZQ嘉泰姆

conditions, which increases life- time of the CXSD6292.0ZQ嘉泰姆

Over-Current Protection (OCP) and Short-Circuit Pro-tection (SCP)0ZQ嘉泰姆
The over-current protection (OCP) is designed to resist the slow slew rate load current; on the other0ZQ嘉泰姆

 hand, the short-circuit protection (SCP) is used to take care of rapid shorted output. The setpoint for0ZQ嘉泰姆

 OCP and SCP is pro-grammed with resistor RSEN that is connected across the ISEN pin and drain of0ZQ嘉泰姆

 the low-side MOSFET. The SCP setpoint is internally set to twice the OCP setpoint.0ZQ嘉泰姆
The inductor current develops a negative voltage across the RDS(ON) of the low-side MOSFET that is0ZQ嘉泰姆

 sampled and held shortly before LG gate-driver output goes low. The OCP fault occurs if ISEN rises 0ZQ嘉泰姆

above the OCP threshold current IOC (typical :26μA) while attempting to null the nega-tive voltage 0ZQ嘉泰姆

across the PHASE and GND pins. When the ISEN exceeds IOC, the OCP counter starts to work.0ZQ嘉泰姆
Meanwhile, pulses on all the PWM (ISEN > IOC) remains for 20μs, the OCP will be triggered. When 0ZQ嘉泰姆

ISEN falls below IOC on a PWM pulses before 20μs has elapsed, the counter will be reset. The SCP0ZQ嘉泰姆

 fault will occur within 10μs when I SEN exceeds twice I OC. The relationship between the sampled 0ZQ嘉泰姆

current and MOSFET current is given by:0ZQ嘉泰姆
ISEN × RSEN = RDS ( ON ) × IL0ZQ嘉泰姆
Which means the current sensing pin will source current to make the voltage drop on the MOSFET 0ZQ嘉泰姆

and is equal to the voltage generated on the sensing resistor along the ISEN pin current flowing path.0ZQ嘉泰姆
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