2.6V至6.5V输入电源VGON和VGOFF的线性调节器控制器CXSU63137电流模式升压调节器大电流运算放大器
发表时间:2020-06-08
浏览次数:88

目录haO嘉泰姆

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

一,产品概述(General Description)         haO嘉泰姆


           The CXSU63137 integrates with a high-performance step-up converter, two linear-regulator controllers, a high voltage switch and one (CXSU63137), three (CXSU63137) or five (CXSU63137) high current operational amplifiers for TFT-LCD applications.The main step-up regulator is a current-mode, fixed-fre-quency PWM switching regulator. The 1.2MHz switching frequency allows the usage of low-profile inductors and ceramic capacitors to minimize the thickness of LCD panel designs.haO嘉泰姆
      The linear-regulator controllers used external transistors provide regulated the gate-driver of TFT-LCD VGON and VGOFF supplies.haO嘉泰姆
The amplifiers are ideal for VCOM and VGAMMA applications, withhaO嘉泰姆
150m A peak output current drive, 10MHz bandwidth, and 13V/μs slewhaO嘉泰姆
rate. All inputs and outputs are rail-to-rail.haO嘉泰姆
     The CXSU63137/1/2 is available in a tiny 5mm x 5mm 32-pin QFN package (TQFN5x5-32).haO嘉泰姆
二.产品特点(Features)haO嘉泰姆


· 2.6V to 6.5V Input Supply Range haO嘉泰姆

· Current-Mode Step-Up Regulator haO嘉泰姆

 - Fast Transient Response haO嘉泰姆

 - 1.2MHz Fixed Operating Frequency haO嘉泰姆

· ±1.5% High-Accuracy Output Voltage haO嘉泰姆

· 3A, 20V, 0.25W Internal N-Channel MOSFET haO嘉泰姆

· High Efficiency haO嘉泰姆

· Low Quiescent Current (0.6mA Typical) haO嘉泰姆

· Linear-Regulator Controllers for VGON and VGOFF haO嘉泰姆

· High-performance Operational Amplifiers haO嘉泰姆

 - ±150mA Output Short-Circuit CurrenthaO嘉泰姆

 - 13V/ms Slew Rate - 10MHz, -3dB Bandwidth haO嘉泰姆

 - Rail-to-Rail Inputs/Outputs haO嘉泰姆

· Fault-Delay Timer and Fault Latch for All Regulator Outputs haO嘉泰姆

· Over-Temperature Protection haO嘉泰姆

· Available in Compact 32-pin 5mmx5mm Thin QFN Package (TQFN5x5-32) haO嘉泰姆

· Lead Free Available (RoHS Compliant)haO嘉泰姆

三,应用范围 (Applications)haO嘉泰姆


    TFT LCD Displays for MonitorshaO嘉泰姆
   TFT LCD Displays for Notebook ComputershaO嘉泰姆
   Automotive DisplayshaO嘉泰姆
四.下载产品资料PDF文档 haO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haO嘉泰姆

 QQ截图20160419174301.jpghaO嘉泰姆

五,产品封装图 (Package)haO嘉泰姆


blob.pnghaO嘉泰姆
blob.pngPin Function DescriptionhaO嘉泰姆

PinhaO嘉泰姆

NamehaO嘉泰姆

Function DescriptionhaO嘉泰姆

CXSU63137haO嘉泰姆

CXSU63137-1haO嘉泰姆

CXSU63137-2haO嘉泰姆

1haO嘉泰姆

SRChaO嘉泰姆

SRChaO嘉泰姆

SRChaO嘉泰姆

Switch Input. Source of the internal high-voltage P-channel MOSFET. BypasshaO嘉泰姆
SRC to PGND with a minimum of 0.1μF capacitor closed to the pins.haO嘉泰姆

2haO嘉泰姆

REFhaO嘉泰姆

REFhaO嘉泰姆

REFhaO嘉泰姆

Reference voltage output. Bypass REF to AGND with a minimum ofhaO嘉泰姆
0.22μFcapacitor closed to the pins.haO嘉泰姆

3haO嘉泰姆

AGNDhaO嘉泰姆

AGNDhaO嘉泰姆

AGNDhaO嘉泰姆

Analog Ground for Step-Up Regulator and Linear Regulators. Connect tohaO嘉泰姆
power ground (PGND) underneath the IC.haO嘉泰姆

4haO嘉泰姆

PGNDhaO嘉泰姆

PGNDhaO嘉泰姆

PGNDhaO嘉泰姆

Power Ground for Step-Up Regulator. PGND is the source of the main step-uphaO嘉泰姆
n-channel power MOSFET. Connect PGND to the ground terminals of outputhaO嘉泰姆
capacitors through a short, wide PC board trace. Connect to analog groundhaO嘉泰姆
(AGND) underneath the IC.haO嘉泰姆

5haO嘉泰姆

OUT1haO嘉泰姆

OUT1haO嘉泰姆

OUT1haO嘉泰姆

Output of Operational-Amplifier 1haO嘉泰姆

6haO嘉泰姆

NEG1haO嘉泰姆

NEG1haO嘉泰姆

NEG1haO嘉泰姆

Inverting Input of Operational-Amplifier 1haO嘉泰姆

7haO嘉泰姆

POS1haO嘉泰姆

POS1haO嘉泰姆

POS1haO嘉泰姆

Non-inverting Input of Operational-Amplifier 1haO嘉泰姆

8haO嘉泰姆

NChaO嘉泰姆

OUT2haO嘉泰姆

OUT2haO嘉泰姆

Output of Operational-Amplifier 2 of CXSU63137/CXSU63137. No internalhaO嘉泰姆
connected of CXSU63137.haO嘉泰姆

9haO嘉泰姆

NChaO嘉泰姆

NEG2haO嘉泰姆

NEG2haO嘉泰姆

Inverting Input of Operational-Amplifier 2 of CXSU63137/CXSU63137. No internalhaO嘉泰姆
connected of CXSU63137.haO嘉泰姆

10haO嘉泰姆

IChaO嘉泰姆

POS2haO嘉泰姆

POS2haO嘉泰姆

Non-inverting Input of Operational-Amplifier 2 of CXSU63137/CXSU63137. InternalhaO嘉泰姆
connected to GND of CXSU63137haO嘉泰姆

11haO嘉泰姆

BGNDhaO嘉泰姆

BGNDhaO嘉泰姆

BGNDhaO嘉泰姆

Analog Ground for Operational Amplifiers. Connect to power ground (PGND)haO嘉泰姆
underneath the IC.haO嘉泰姆

12haO嘉泰姆

NChaO嘉泰姆

NChaO嘉泰姆

POS3haO嘉泰姆

Non-inverting Input of Operational-Amplifier 3 of CXSU63137. No internalhaO嘉泰姆
connected of CXSU63137/CXSU63137.haO嘉泰姆

13haO嘉泰姆

NChaO嘉泰姆

NChaO嘉泰姆

OUT3haO嘉泰姆

Output of Operational-Amplifier 3 of CXSU63137. No internal connected ofCXSU63137/CXSU63137.haO嘉泰姆

14haO嘉泰姆

SUPhaO嘉泰姆

SUPhaO嘉泰姆

SUPhaO嘉泰姆

Power Input of Operational Amplifiers. Typically connected to VMAIN. BypasshaO嘉泰姆
SUP to BGND with a 0.1μF capacitor.haO嘉泰姆

15haO嘉泰姆

NChaO嘉泰姆

POS3haO嘉泰姆

POS4haO嘉泰姆

Non-inverting Input of Operational-Amplifier 4 of CXSU63137. Non-invertinghaO嘉泰姆
Input of Operational-Amplifier 3 of CXSU63137. No internal connected ofCXSU63137.haO嘉泰姆

16haO嘉泰姆

NChaO嘉泰姆

NEG3haO嘉泰姆

NEG4haO嘉泰姆

Inverting Input of Operational-Amplifier 4 of CXSU63137. Inverting Input ofhaO嘉泰姆
Operational-Amplifier 3 of CXSU63137. No internal connected of CXSU63137.haO嘉泰姆

17haO嘉泰姆

NChaO嘉泰姆

OUT3haO嘉泰姆

OUT4haO嘉泰姆

Output of Operational-Amplifier 4 of CXSU63137. Output ofhaO嘉泰姆
Operational-Amplifier 3 of CXSU63137. No internal connected of CXSU63137.haO嘉泰姆

18haO嘉泰姆

IChaO嘉泰姆

IChaO嘉泰姆

POS5haO嘉泰姆

Non-inverting Input of Operational-Amplifier 5 of CXSU63137. Internal connectedhaO嘉泰姆
to GND of CXSU63137/CXSU63137.haO嘉泰姆

19haO嘉泰姆

NChaO嘉泰姆

NChaO嘉泰姆

NEG5haO嘉泰姆

Inverting Input of Operational-Amplifier 5 of CXSU63137. No internal connectedhaO嘉泰姆
of CXSU63137/CXSU63137.haO嘉泰姆

20haO嘉泰姆

NChaO嘉泰姆

NChaO嘉泰姆

OUT5haO嘉泰姆

Output of Operational-Amplifier 5 of CXSU63137. No internal connected ofCXSU63137/CXSU63137.haO嘉泰姆

21haO嘉泰姆

LXhaO嘉泰姆

LXhaO嘉泰姆

LXhaO嘉泰姆

N-Channel Power MOSFET Drain and Switching Node. Connect the inductorhaO嘉泰姆
and Schottky diode to LX and minimize the trace area for lowest EMI.haO嘉泰姆

22haO嘉泰姆

INhaO嘉泰姆

INhaO嘉泰姆

INhaO嘉泰姆

Supply Voltage Input. Bypass IN to AGND with a 0.1μF capacitor. IN can rangehaO嘉泰姆
from 2.6V to 6.5V.haO嘉泰姆

23haO嘉泰姆

FBhaO嘉泰姆

FBhaO嘉泰姆

FBhaO嘉泰姆

Step-Up Regulator Feedback Input. Connect a resistive voltage-divider fromhaO嘉泰姆
the output (VMAIN) to FB to analog ground (AGND). Place the divider withinhaO嘉泰姆
5mm of FB.haO嘉泰姆

24haO嘉泰姆

COMPhaO嘉泰姆

COMPhaO嘉泰姆

COMPhaO嘉泰姆

Step-Up Regulator Error-Amplifier Compensation Point. Connect a series RChaO嘉泰姆
from COMP to AGND.haO嘉泰姆

PinFunction DescriptionhaO嘉泰姆

PinhaO嘉泰姆

NamehaO嘉泰姆

Function DescriptionhaO嘉泰姆

CXSU63137haO嘉泰姆

CXSU63137-1haO嘉泰姆

CXSU63137-2haO嘉泰姆

24haO嘉泰姆

COMPhaO嘉泰姆

COMPhaO嘉泰姆

COMPhaO嘉泰姆

Step-Up Regulator Error-Amplifier Compensation Point. Connect a series RChaO嘉泰姆
from COMP to AGND.haO嘉泰姆

25haO嘉泰姆

FBPhaO嘉泰姆

FBPhaO嘉泰姆

FBPhaO嘉泰姆

Gate-On Linear-Regulator Feedback Input. Connect FBP to the center of ahaO嘉泰姆
resistive voltage-divider between the regulator output and AGND to set thehaO嘉泰姆
gate-on linear regulator output voltage. Place the resistive voltage-dividerhaO嘉泰姆
close to the pin.haO嘉泰姆

26haO嘉泰姆

DRVPhaO嘉泰姆

DRVPhaO嘉泰姆

DRVPhaO嘉泰姆

Gate-On Linear-Regulator Base Drive. Open drain of an internal n-channelhaO嘉泰姆
MOSFET. Connect DRVP to the base of an external PNP pass transistor.haO嘉泰姆

27haO嘉泰姆

FBNhaO嘉泰姆

FBNhaO嘉泰姆

FBNhaO嘉泰姆

Gate-Off Linear-Regulator Feedback Input. Connect FBN to the center of ahaO嘉泰姆
resistive voltage-divider between the regulator output and REF to set thehaO嘉泰姆
gate-off linear regulator output voltage. Place the resistive voltage-dividerhaO嘉泰姆
close to the pin.haO嘉泰姆

28haO嘉泰姆

DRVNhaO嘉泰姆

DRVNhaO嘉泰姆

DRVNhaO嘉泰姆

Gate-Off Linear-Regulator Base Drive. Open drain of an internal p-channelhaO嘉泰姆
MOSFET. Connect DRVN to the base of an external NPN pass transistor.haO嘉泰姆

29haO嘉泰姆

DELhaO嘉泰姆

DELhaO嘉泰姆

DELhaO嘉泰姆

High-Voltage Switch Delay Input. Connect a capacitor from DEL to AGND tohaO嘉泰姆
set the high-voltage switch startup delay.haO嘉泰姆

30haO嘉泰姆

CTLhaO嘉泰姆

CTLhaO嘉泰姆

CTLhaO嘉泰姆

High-Voltage Switch Control Input. When CTL is high, the high-voltage switchhaO嘉泰姆
between COM and SRC is on and the high-voltage switch between COM andhaO嘉泰姆
DRN is off. When CTL is low, the high-voltage switch between COM and SRChaO嘉泰姆
is off and the high-voltage switch between COM and DRN is on. CTL ishaO嘉泰姆
inhibited by the undervoltage lockout and when the voltage on DEL is less thanhaO嘉泰姆
1.25V.haO嘉泰姆

31haO嘉泰姆

DRNhaO嘉泰姆

DRNhaO嘉泰姆

DRNhaO嘉泰姆

Switch Input. Drain of the internal high-voltage back-to-back P-channelhaO嘉泰姆
MOSFETs connected to COM. Do not allows the voltage on DRN to exceedhaO嘉泰姆
VSRC.haO嘉泰姆

32haO嘉泰姆

COMhaO嘉泰姆

COMhaO嘉泰姆

COMhaO嘉泰姆

Internal High-Voltage MOSFET Switch Common Terminal. Do not allow thehaO嘉泰姆
voltage on COM to exceed VSRC.haO嘉泰姆

六.电路原理图haO嘉泰姆
七,功能概述haO嘉泰姆
For all switching power supplies, the layout is an impor-tant step in the design; especially at high peak currents and switching frequencies. There are some general guidelines for layout:haO嘉泰姆
1.Place the external power components (the input capacitors, output capacitors, boost inductor and output diodes, etc.) in close proximity to the device.Traces to these components should be kept as short and wide as possible to minimize parasitic inductance and resistance.haO嘉泰姆
2.Place the REF and IN bypass capacitors close to the pins. The ground connection of the IN bypass capacitor should be connected directly to the AGND pin with a wide trace.haO嘉泰姆
3.Create a power ground (PGND) and a signal ground island and connect at only one point. The power ground consisting of the input and output capacitor grounds, PGND pin, and any charge-pump components. Connect all of these together with short, wide traces or a small ground plane. Maxi-mizing the width of the power ground traces im-proves efficiency and reduces output voltage ripple and noise spikes. The analog ground plane (AGND) consisting of the AGND pin, all the feed-back-divider ground connections, the operational-amplifier divider ground connections, the COMP and DEL capacitor ground connections, and the device’s exposed backside pad. Connect the AGND and PGND islands by connecting the PGND pin directly to the exposed backside pad. Make no other connections between these separate ground planes.haO嘉泰姆
4.The feedback network should sense the output volt-age directly from the point of load, and be as far away from LX node as possible.haO嘉泰姆
5.The exposed die plate, underneath the package,should be soldered to an equivalent area of metal on the PCB. This contact area should have mul-tiple via connections to the back of the PCB as well as connections to intermediate PCB layers, if available, to maximize thermal dissipation away from the IC.haO嘉泰姆
6.To minimize the thermal resistance of the package when soldered to a multi-layer PCB, the amount of copper track and ground plane area connected to the exposed die plate should be maximized and spread out as far as possible from the IC. The bot-tom and top PCB areas especially should be maxi-mized to allow thermal dissipation to the surround-ing air.haO嘉泰姆
7.Minimize feedback input track lengths to avoid switching noise pick-uphaO嘉泰姆
八,相关产品haO嘉泰姆

Switching Regulator > Boost ConverterhaO嘉泰姆

 Part_No haO嘉泰姆

PackagehaO嘉泰姆

Archi-tecture haO嘉泰姆

Input haO嘉泰姆

Voltage    haO嘉泰姆

Max Adj.haO嘉泰姆

Output haO嘉泰姆

Voltage haO嘉泰姆

Switch Current Limit (max) haO嘉泰姆

Fixed haO嘉泰姆

Output haO嘉泰姆

Voltage  haO嘉泰姆

Switching haO嘉泰姆

Frequency haO嘉泰姆

Internal Power   Switch haO嘉泰姆

Sync. Rectifier haO嘉泰姆

 

minhaO嘉泰姆

maxhaO嘉泰姆

minhaO嘉泰姆

maxhaO嘉泰姆

(A)haO嘉泰姆

(V)haO嘉泰姆

(kHz)haO嘉泰姆

 

CXSU63133haO嘉泰姆

SOT89haO嘉泰姆

VM haO嘉泰姆

0.9haO嘉泰姆

5.5haO嘉泰姆

2.5haO嘉泰姆

5.5haO嘉泰姆

0.5haO嘉泰姆

1.8|2.6|2.8|3haO嘉泰姆

|3.3|3.8|4.5|5haO嘉泰姆

-haO嘉泰姆

NohaO嘉泰姆

YeshaO嘉泰姆

CXSU63134haO嘉泰姆

MSOP8|TSSOP8haO嘉泰姆

|SOP8haO嘉泰姆

VMhaO嘉泰姆

2.5haO嘉泰姆

5.5haO嘉泰姆

2.5haO嘉泰姆

-haO嘉泰姆

-haO嘉泰姆

-haO嘉泰姆

200 ~ 1000haO嘉泰姆

NohaO嘉泰姆

NohaO嘉泰姆

CXSU63135haO嘉泰姆

TSSOP8|SOP-8PhaO嘉泰姆

VMhaO嘉泰姆

1haO嘉泰姆

5.5haO嘉泰姆

2.5haO嘉泰姆

5haO嘉泰姆

1haO嘉泰姆

2.5|3.3haO嘉泰姆

300haO嘉泰姆

YeshaO嘉泰姆

YeshaO嘉泰姆

CXSU63136haO嘉泰姆

SOP8haO嘉泰姆

CMhaO嘉泰姆

3haO嘉泰姆

40haO嘉泰姆

1.25haO嘉泰姆

40haO嘉泰姆

1.5haO嘉泰姆

-haO嘉泰姆

33 ~ 100haO嘉泰姆

YeshaO嘉泰姆

NohaO嘉泰姆

CXSU63137haO嘉泰姆

TQFN5x5-32haO嘉泰姆

CMhaO嘉泰姆

2.5haO嘉泰姆

6.5haO嘉泰姆

2.5haO嘉泰姆

18haO嘉泰姆

3haO嘉泰姆

NohaO嘉泰姆

1200haO嘉泰姆

YeshaO嘉泰姆

NohaO嘉泰姆

CXSU63138haO嘉泰姆

TSOT23-5haO嘉泰姆

TDFN2x2-6haO嘉泰姆

CMhaO嘉泰姆

2.5haO嘉泰姆

6haO嘉泰姆

2.5haO嘉泰姆

20haO嘉泰姆

2haO嘉泰姆

-haO嘉泰姆

1500haO嘉泰姆

YeshaO嘉泰姆

NohaO嘉泰姆

CXSU63139haO嘉泰姆

TQFN4x4-6haO嘉泰姆

TDFN3x3-12haO嘉泰姆

CMhaO嘉泰姆

1.8haO嘉泰姆

5.5haO嘉泰姆

2.7haO嘉泰姆

5.5haO嘉泰姆

5haO嘉泰姆

-haO嘉泰姆

1.2haO嘉泰姆

YeshaO嘉泰姆

YeshaO嘉泰姆

CXSU63140haO嘉泰姆

SOT23-5haO嘉泰姆

CMhaO嘉泰姆

2.5haO嘉泰姆

6haO嘉泰姆

2.5haO嘉泰姆

32haO嘉泰姆

1haO嘉泰姆

-haO嘉泰姆

1000haO嘉泰姆

YeshaO嘉泰姆

NohaO嘉泰姆

CXSU63141haO嘉泰姆

TSOT-23-6 haO嘉泰姆

TDFN2x2-8haO嘉泰姆

CMhaO嘉泰姆

1.2haO嘉泰姆

5.5haO嘉泰姆

1.8haO嘉泰姆

5.5haO嘉泰姆

1.2haO嘉泰姆

-haO嘉泰姆

1.2haO嘉泰姆

YeshaO嘉泰姆

YeshaO嘉泰姆

 haO嘉泰姆