Transcription of AOZ1280 - Alpha & Omega Semiconductor
1 Rev. August 1 of 13 AOZ1280 EZBuck A Simple Buck Regulator General DescriptionThe AOZ1280 is a high efficiency, simple to use, A buck regulator which is flexible enough to be optimized for a variety of applications. The AOZ1280 operates from a 3 V to 26 V input voltage range, and provides up to A of continuous output current. The output voltage is adjustable down to V. The fixed MHz PWM switching frequency reduces inductor size. The AOZ1280 comes in a SOT23-6L package and is rated over a -40 C to +85 C operating ambient temperature 3 V to 26 V operating input voltage range 240 m internal NMOS High efficiency.
2 Up to 95 % Internal compensation A continuous output current Fixed MHz PWM operation Internal soft start Output voltage adjustable down to V Cycle-by-cycle current limit Short-circuit protection Thermal shutdown Small size SOT23-6L Applications Point of load DC/DC conversion Set top boxes DVD drives and HDD LCD Monitors & TVs Cable modems Telecom/Networking/Datacom equipmentTypical ApplicationFigure 1. A Buck RegulatorLXVINVINVOUTFBENGNDC210 FL1 HAOZ1280 AOZ1280 Rev. August 2 of 13 Ordering InformationAOS Green Products use reduced levels of Halogens, and are also RoHS visit for additional ConfigurationPin DescriptionPart NumberAmbient Temperature RangePackageEnvironmentalAOZ1280CI-40 C to +85 C SOT23-6 LGreen ProductRoHS CompliantPin NumberPin NamePin Function1 BSTB ootstrap voltage input.
3 High side driver supply. Connected to 10 nF capacitor between BST and input. It is regulated to V. The FB pin is used to determine the PWM output voltage via a resistor divider between the output and pin. The enable pin is active high. Connect EN pin to VIN through current limiting resistor. Do not leave the EN pin floating. 5 VINS upply voltage input. Input range from 3 V to 26 V. When VIN rises above the UVLO threshold the device starts output connection to (Top View)654 AOZ1280 Rev. August 3 of 13 Absolute Maximum RatingsExceeding the Absolute Maximum Ratings may damage the :1.
4 Devices are inherently ESD sensitive, handling precautions are required. Human body model rating: k in series with 100 Operating ConditionsThe device is not guaranteed to operate beyond the Recommended Operating CharacteristicsTA = 25 C, VVIN = VEN = 12 V. Specifications in BOLD indicate a temperature range of -40 C to +85 C. These specifications are guaranteed by Voltage (VIN)30 VLX to V to VVIN+ 2 VEN to V to 26 VFB to V to 6 VBST to AGNDVLX + 6 VJunction Temperature (TJ)+150 CStorage Temperature (TS)-65 C to +150 CESD Rating(1)2 kVParameterRatingSupply Voltage (VIN) V to 26 VOutput Voltage V to VVINA mbient Temperature (TA)-40 C to +85 CPackage Thermal Resistance ( JA) SOT23-6L220 Voltage326 VVUVLOI nput Under-Voltage Lockout Threshold VVIN RisingVVIN Hysteresis200mVIVINS upply Current (Quiescent)
5 IOUT = 0, VFB = 1 V, VEN > Supply CurrentVEN = 0 V8 AVFBF eedback VoltageTA = 25 C784800816mVVFB_LOADLoad Regulation 120 mA < Load < RegulationLoad = 600 / VIFBF eedback Voltage Input CurrentVFB = 800 mV500nAENABLEVEN_OFFVEN_ONEN Input ThresholdOff ThresholdOn Input Hysteresis200mVIENE nable Input Current3 Duty Cycle87%TON_MINM inimum On Time100nsILIMC urrent Shutdown LimitTJ RisingTJ Falling150110 C CTSSSoft Start Interval400 sPOWER STATE OUTPUTRDS(ON)NMOS On-ResistanceVIN = 12 V240m RDS(ON)NMOS On-ResistanceVIN = V380m ILEAKAGENMOS LeakageVEN = 0 V, VLX = 0 V10 A AOZ1280 Rev.
6 August 4 of 13 Block DiagramGNDVINENFBR egulatorEnableDetectSoftstartPWML ogicErrorAmplifier + +PWMC omparatorOSCCLK+RampGeneratorOCCurrentSe nseDriverBSTLDOLXBST AOZ1280 Rev. August 5 of 13 Typical Performance Characteristics Circuit of Figure 1. VIN = 12 V, VOUT = V, L = H, C1 = 10 F, C2 = 22 F, TA = 25 C, unless otherwise Transient Test(IOUT = to )Steady State Test(IOUT = )Short Circuit ProtectionShort Circuit RecoveryStart-up Through Enable No LoadStart-up Through Enable with IOUT = 1A Resistive Load200 s/div500ns/div2ms/div2ms/div1ms/div1ms/d iv Vo ripple50mV/divVo1V/divVlx10V/divVlx10V/d ivlL1A/divVen5V/divVo2V/divVlx10V/divVo1 V/divlL1A/divIL1A/divVen5V/divVo2/divVlx 10V/divIL1A/divIL1A/divIo1A/divVo ripple20V/divVlx10V/divIL500mA/div AOZ1280 Rev.
7 August 6 of 13 Typical Performance Characteristics (Continued) Circuit of Figure 1. VIN = 12 V, VOUT = V, L = H, C1 = 10 F, C2 = 22 F, TA = 25 C, unless otherwise Through Enable No LoadShut-down Through Enable with IOUT = 1A Resistive Load1ms/div1ms/divVen5V/divVo2/divVlx10V /divIL1A/divVen5V/divVo2/divVlx10V/divIL 1A/divEfficiency (VIN = 12V) vs. Load Current (A)Efficieny (%)Efficiency (VIN = 24V) vs. Load Current (A)Efficieny (%)Efficiency (VIN = 5V) vs. Load Current (A)Efficieny (%) AOZ1280 Rev.
8 August 7 of 13 Detailed DescriptionThe AOZ1280 is a current-mode step down regulator with integrated high side NMOS switch. It operates from a 3 V to 26 V input voltage range and supplies up to A of load current. Features include: enable control, under voltage lock-out, internal soft-start, output over-voltage protection, over-current protection, and thermal shut AOZ1280 is available in SOT23-6L package. Enable and Soft StartThe AOZ1280 has an internal soft start feature to limit in-rush current and ensure the output voltage ramps up smoothly to regulation voltage.
9 A soft start process begins when the input voltage rises to a voltage higher than UVLO and the voltage level on the EN pin is HIGH. In the soft start process, the output voltage is typically ramped to regulation voltage in 400 s. The 400 s soft start time is set EN pin of the AOZ1280 is active high. Connect the EN pin to VIN if the enable function is not used. Pulling EN to ground will disable the AOZ1280 . Do not leave EN open. The voltage on the EN pin must be above V to enable the AOZ1280 . When voltage on the EN pin falls below V, the AOZ1280 is disabled.
10 Steady-State OperationUnder steady-state conditions, the converter operates in fixed frequency and Continuous-Conduction Mode (CCM). The AOZ1280 integrates an internal NMOS as the high-side switch. Inductor current is sensed by amplifying the voltage drop across the drain to the source of the high-side power MOSFET. Output voltage is divided down by the external voltage divider at the FB pin. The difference of the FB pin voltage and reference voltage is amplified by the internal transconductance error amplifier.