CXSD62121 VTT的输出电压只需要20μF的陶瓷输出电容就可以稳定和快速的瞬态响应

发布时间:2020-04-24 19:36:40 浏览次数:274 作者:oumao18 来源:嘉泰姆
摘要:CXSD62121在轻载期间,允许下垂功能调整输出电压。LDO设计用于为DDR-SDRAM终端提供双向输出电流的稳压。该装置集成了两个功率晶体管,源或汇电流高达1.5A。它还集成了电流限制和热关机保护。
CXSD62121 VTT的输出电压只需要20μF的陶瓷输出电容就可以稳定和快速的瞬态响应

目录rqa嘉泰姆

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

一,产品概述(General Description)  rqa嘉泰姆

    The CXSD62121A CXSD62121B CXSD62121 integrates a synchronous buck PWM con-troller to generate VDDQ, a sourcing and sinking LDO linear regulator to generate VTT. It offers the lowest total solution cost in system where space is at a premium.  The CXSD62121A CXSD62121B CXSD62121 provides excellent transient response and accurate DC voltage output in either PFM or PWM Mode.In Pulse Frequency Mode (PFM), the CXSD62121A CXSD62121B CXSD62121 provides very high efficiency over light to heavy loads with loading-modulated switching frequencies. On TQFN-20 Package,the Forced PWM Mode works nearly at constant frequency for low-noise requirements.  The CXSD62121A CXSD62121B CXSD62121 is equipped with accurate current-limit,output under-voltage, and output over-voltage protections.A Power-On- Reset function monitors the voltage on VCC prevents wrong operation during power on. Droop func-tion is allowed to adjust output voltage during light load period.The LDO is designed to provide a regulated voltage with bi-directional output current for DDR-SDRAM termination.The device integrates two power transistors to source or sink current up to 1.5A. It also incorporates current-limit and thermal shutdown protection.The output voltage of LDO tracks the voltage at VREF pin.An internal resistor divider is used to provide a half volt-age of VREF for VTTREF and VTT Voltage. The VTT output voltage is only requiring 20μF of ceramic output capaci tance for stability and fast transient response. The S3 and S5 pins provide the sleep state for VTT (S3 state)and suspend state (S4/S5 state) for device, when S5 and S3 are both pulled low the device provides the soft-off for VTT and VTTREF                                                         rqa嘉泰姆

产品特点(Features)rqa嘉泰姆

High Input Voltages Range from 3V to 28V Input Powerrqa嘉泰姆
Provide Adjustable Output Voltage from 0.75V torqa嘉泰姆
5.5V +1% Accuracy over Temperaturerqa嘉泰姆
Integrated MOSFET Drivers and Bootstrap Forward P-CH MOSFETrqa嘉泰姆
Low Quiescent Current (200μA)rqa嘉泰姆
Excellent Line and Load Transient Responsesrqa嘉泰姆
PFM Mode for Increased Light Load Efficiencyrqa嘉泰姆
Constant On-Time Controller Schemerqa嘉泰姆
- Switching Frequency Compensation for PWM Moderqa嘉泰姆
- Adjustable Switching Frequency from 100kHz torqa嘉泰姆
550kHz in PWM Mode with DC Output Currentrqa嘉泰姆
S3 and S5 Pins Control The Device in S0, S3 or S4/S5 Staterqa嘉泰姆
Power Good Monitoringrqa嘉泰姆
Extra Droop Voltage Control Function withrqa嘉泰姆
Adjustable Current Settingrqa嘉泰姆
70% Under-Voltage Protection (UVP)rqa嘉泰姆
125% Over-Voltage Protection (OVP)rqa嘉泰姆
Adjustable Current-Limit Protectionrqa嘉泰姆
- Using Sense Low-Side MOSFET’s RDS(ON)rqa嘉泰姆
TQFN-20 3mmx3mm Thin packagerqa嘉泰姆
Lead Free Available (RoHS Compliant)rqa嘉泰姆
+1.5A LDO Section (VTT)rqa嘉泰姆
Sourcing or Sinking Current up to 1.5Arqa嘉泰姆
Fast Transient Response for Output Voltagerqa嘉泰姆
Output Ceramic Capacitors Support at least 10μMLCCrqa嘉泰姆
VTT and VTTREF Track at Half the VDDQSNS by internal dividerrqa嘉泰姆
+20mV Accuracy for VTT and VTTREFrqa嘉泰姆
Independent Over-Current Limit (OCL)rqa嘉泰姆
Thermal Shutdown Protectionrqa嘉泰姆
三,应用范围 (Applications)rqa嘉泰姆


DDR2, and DDR3 Memory Power Suppliesrqa嘉泰姆
SSTL-2 SSTL-18 and HSTL Terminationrqa嘉泰姆
四.下载产品资料PDF文档 rqa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rqa嘉泰姆

 QQ截图20160419174301.jpgrqa嘉泰姆

五,产品封装图 (Package)rqa嘉泰姆


blob.pngrqa嘉泰姆
六.电路原理图rqa嘉泰姆


blob.pngrqa嘉泰姆

七,功能概述rqa嘉泰姆


Soft- Start (cont.)rqa嘉泰姆

During soft-start stage before the PGOOD pin is ready,rqa嘉泰姆
the under voltage protection is prohibited. The over volt-rqa嘉泰姆
age and current limit protection functions are enabled. Ifrqa嘉泰姆
the output capacitor has residue voltage before startup,rqa嘉泰姆
both low-side and high-side MOSFETs are in off-staterqa嘉泰姆
until the internal digital soft start voltage equal the inter-rqa嘉泰姆
nal feedback voltage. This will ensure the output voltagerqa嘉泰姆
starts from its existing voltage level.rqa嘉泰姆
The VTT LDO part monitors the output current, both sourc-rqa嘉泰姆
ing and sinking current, and limits the maximum outputrqa嘉泰姆
current to prevent damages during current overload orrqa嘉泰姆
short circuit (shorted from VTT to GND or VLDOIN)rqa嘉泰姆
conditions.rqa嘉泰姆
The VTT LDO provides a soft-start function, using therqa嘉泰姆
constant current to charge the output capacitor that givesrqa嘉泰姆
a rapid and linear output voltage rise. If the load current isrqa嘉泰姆
above the current limit start-up, the VTT cannot startrqa嘉泰姆
successfully.CXSD62121A CXSD62121B CXSD62121 has an independent counter for each output,rqa嘉泰姆
but the PGOOD signal indicates only the status of VDDQrqa嘉泰姆
and does not indicate VTT power good externally.rqa嘉泰姆
Power-Good Output (PGOOD)rqa嘉泰姆
PGOOD is an open-drain output and the PGOOD com-rqa嘉泰姆
parator continuously monitors the output voltage. PGOODrqa嘉泰姆
is actively held low in shutdown, and standby. When PWMrqa嘉泰姆
converter’s output voltage is greater than 95% of its tar-rqa嘉泰姆
get value, the internal open-drain device will be pulledrqa嘉泰姆
low. After 63μs debounce time, the PGOOD goes high.rqa嘉泰姆
The PGOOD goes low if VVDDQ output is 10% below orrqa嘉泰姆
above its nominal regulation point.rqa嘉泰姆
Under Voltage Protectionrqa嘉泰姆
In the process of operation, if a short-circuit occurs, therqa嘉泰姆
output voltage will drop quickly. When load current is big-rqa嘉泰姆
ger than current limit threshold value, the output voltagerqa嘉泰姆
will fall out of the required regulation range. The under-rqa嘉泰姆
voltage continually monitors the setting output voltagerqa嘉泰姆
after 2ms of PWM operations to ensure startup. If a loadrqa嘉泰姆
step is strong enough to pull the output voltage lowerrqa嘉泰姆
than the under voltage threshold (70% of normal outputrqa嘉泰姆
voltage), CXSD62121A CXSD62121B CXSD62121 shuts down the output gradually andrqa嘉泰姆
latches off both high and low side MOSFETs.rqa嘉泰姆
Over Voltage Protection (OVP)rqa嘉泰姆
The feedback voltage should increase over 125% of therqa嘉泰姆
reference voltage due to the high-side MOSFET failure orrqa嘉泰姆
for other reasons, and the over voltage protection com-rqa嘉泰姆
parator designed with a 1.5μs noise filter will force therqa嘉泰姆
low-side MOSFET gate driver to be high. This action ac-rqa嘉泰姆
tively pulls down the output voltage and eventually at-rqa嘉泰姆
tempts to blow the battery fuse.rqa嘉泰姆
When the OVP occurs, the PGOOD pin will pull down andrqa嘉泰姆
latch-off the converter. This OVP scheme only clamps therqa嘉泰姆
voltage overshoot, and does not invert the output voltagerqa嘉泰姆
when otherwise activated with a continuously high outputrqa嘉泰姆
from low-side MOSFET driver. It’s a common problem forrqa嘉泰姆
OVP schemes with a latch. Once an over-voltage faultrqa嘉泰姆
condition is set, toggling VCC power-on-reset signal canrqa嘉泰姆
only reset it.rqa嘉泰姆
PWM Converter Current Limitrqa嘉泰姆
The current-limit circuit employs a unique “valley” currentrqa嘉泰姆
sensing algorithm (Figure 2). CS pin should be con-rqa嘉泰姆
nected to VCC through the trip voltage-setting resistor,rqa嘉泰姆
RCS. CS terminal sinks 5mA current, ICS, and the currentrqa嘉泰姆
limit threshold is set to the voltage across the RCS. Therqa嘉泰姆
voltage between or CS_GND pin and PHASE pin moni-rqa嘉泰姆
tors the inductor current so that PHASE pin should berqa嘉泰姆
connected to the drain terminal of the low side MOSFET.rqa嘉泰姆
PGND is used as the positive current sensing node sorqa嘉泰姆
that PGND should be connected to the proper currentrqa嘉泰姆
sensing device, i.e. the sense resistor or the source ter-rqa嘉泰姆
minal of the low side MOSFET.rqa嘉泰姆
If the magnitude of the current-sense signal is above therqa嘉泰姆
current-limit threshold, the PWM is not allowed to initiaterqa嘉泰姆
a new cycle. The actual peak current is greater than therqa嘉泰姆
current-limit threshold by an amount equal to the induc-rqa嘉泰姆
tor ripple current. Therefore, the exact current- limit char-rqa嘉泰姆
acteristic and maximum load capability are a function ofrqa嘉泰姆
the sense resistance, inductor value, and input voltage.rqa嘉泰姆
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