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Ultra Low-Noise Dropout Voltage Regulator with ON/OFF Control MC3
Top Searches for this datasheetMC33761 Ultra Low-Noise Dropout Voltage Regulator with ON/OFF Control MC33761 DropOut (LDO) regulator featuring excellent noise performances. Thanks innovative concept, circuit reaches incredible 40µVRMS noise level without external bypass capacitor. Housed small SOT-23 leads-like package, represents ideal designer's choice when space noise premium. absence external bandgap capacitor unleashes response time wake-up signal makes stay within 40µs repetitive mode), pushing MC33761 natural candidate portable applications. MC33761 also hosts novel architecture which prevents excessive undershoots when regulator seat fast transient bursts, bursting systems. Finally, with static line regulation better than -75dB, naturally shields downstream electronics against choppy lines. Features http://onsemi.com TSOP-5 SUFFIX CASE CONNECTIONS MARKING DIAGRAM ON/OFF LxxYW Vout Ultra low-noise: 150nV/Hz 100Hz, 40µVRMS 100Hz 100kHz typical, Iout 60mA, Co=1µF Fast response time from 40µs typical 200Hz repetition rate Ready platforms: with 900mVhigh level Nominal output current 80mA with 100mA peak capability Typical dropout 90mV 30mA, 160mV 80mA Ripple rejection: 70dB 1kHz 1.5% output precision 25°C Thermal shutdown Vout available from 2.5V 5.0V Version Date Code (Top View) Applications Noise sensitive circuits: VCOs stages etc. Bursting systems (TDMA phones) battery operated devices On/Off Band Reference Vout Thermal Shutdown *Current Limit *Antisaturation Protection *Load Transient Improvement Simplified Block Diagram This document contains information product under development. Semiconductor reserves right change discontinue this product without notice. Semiconductor Components Industries, LLC, 1999 ORDERING INFORMATION detailed ordering shipping information package dimensions section page this data sheet. November, 1999 Rev. Publication Order Number: MC33761/D MC33761 FUNCTION DESCRIPTIONS Name ON/OFF Vout Function Powers IC's ground Shuts wakes-up None Delivers output voltage 900mV level this sufficient start 150mV shuts down. makes connect known potential, like pin-to-pin replacement case. This requires output capacitor stable. Description positive voltage applied upon this pin. MAXIMUM RATINGS Value Rating Power Supply Voltage Capability, Model Capability, Machine Model Maximum Power Dissipation Suffix, Plastic Package Thermal Resistance Junction-to-Air Operating Ambient Temperature Maximum Junction Temperature Maximum Operating Junction Temperature Storage Temperature Range Internally Limited Shutdown. Specifications guaranteed below this value. Pins Pins RqJ-A TJmax Tstg Symbol Internally Limited +150 Unit °C/W ELECTRICAL CHARACTERISTICS (For Typical Values 25°C, Min/Max values -40°C +85°C, 125°C unless otherwise noted) Characteristics Symbol Unit Logic Control Specifications Input Voltage Range ON/OFF Input Resistance (all versions) ON/OFF Control Voltages Logic Zero, State, Logic One, State, VON/OFF RON/OFF VON/OFF Currents Parameters Current Consumption State (all versions) Mode Current: Vout VOFF Current Consumption State (all versions) Mode Current: Vout Current Consumption State (all versions), Mode Saturation Current: Vout Output Load Current Limit Voutnom Output brought Voutnom (all versions) IQOFF IQON IQSAT IMAX Voltage Slope should Greater than mV/ms http://onsemi.com MC33761 ELECTRICAL CHARACTERISTICS (For Typical Values 25°C, Min/Max values -40°C +85°C, 125°C unless otherwise noted) Characteristics Symbol Unit Output Voltages Vout 25°C, Iout Other Voltages Available 50mV Increments Steps Vout -40°C +85°C, Iout 80mA Other Voltages Available 50mV Increments Steps Vout Vout Vout Vout Vout Vout Vout Vout Vout Vout Vout Vout 2.462 2.758 2.955 3.250 3.546 -1.5 2.425 2.716 2.91 3.201 3.492 2.537 2.842 3.045 3.349 3.654 +1.5 2.575 2.884 3.090 3.399 3.708 Line Load Regulation, Dropout Voltages Line Regulation (all versions) Vout Iout Load Regulation (all versions) Vout Cout Iout Dropout Voltage (all versions) Iout Iout Iout Regline Regload Vin-Vout Vin-Vout Vin-Vout Dynamic Parameters Ripple Rejection (all versions) Vout mVpp Sinusoidal Signal Output Noise Density Output Noise Voltage (all versions) Cout Iout Output Rise Time (all versions) Cout Iout Rising Signal Nominal Vout Noise trise Ripple Thermal Shutdown Thermal Shutdown (all versions) Vout brought Vout http://onsemi.com MC33761 DEFINITIONS Load Regulation Line Regulation change output voltage change output current constant chip temperature. Dropout Voltage input/output differential which regulator output longer maintains regulation against further reductions input voltage. Measured when output drops 100mV below nominal value (which measured differential value). dropout level affected chip temperature, load current minimum input supply requirements. Output Noise Voltage change output voltage change input voltage. measurement made under conditions dissipation using pulse technique such that average chip temperature significantly affected. usually distinguishes static line regulation line regulation step input voltage generates corresponding step output voltage) from ripple rejection audio susceptibility where input combined with frequency generator sweep from hertz defined boundary while output amplitude monitored. Thermal Protection This integrated value output noise over specified frequency range. Input voltage output current kept constant during measurement. Results expressed µVRMS. Maximum Power Dissipation Internal thermal shutdown circuitry provided protect integrated circuit event that maximum junction temperature exceeded. When activated typically 125°C, regulator turns off. This feature provided prevent catastrophic failures from accidental overheating. Maximum Package Power Dissipation maximum total dissipation which regulator will operate within specs. Quiescent Current quiescent current current which flows through ground when operates without load output: internal operation, bias etc. When becomes loaded, this term called Ground current. actually difference between input current (measured through input pin) output current. maximum power package power dissipation power dissipation level which junction temperature reaches maximum operating value, i.e. 125°C. Depending ambient temperature, possible calculate maximum power dissipation thus maximum available output current. http://onsemi.com MC33761 Characterization Curves curves taken with Vout Vout Cout QUIESCENT CURRENT GROUND CURRENT (mA) OUTPUT CURRENT (mA) AMBIENT TEMPERATURE (°C) -40°C 25°C 85°C Figure Ground Current versus Output Current 85°C OUTPUT VOLTAGE DROPOUT (mV) 25°C -40°C 2.805 2.800 2.795 2.790 2.785 2.780 OUTPUT CURRENT (mA) 2.775 Figure Quiescent Current versus Temperature 85°C 40°C 25°C -20°C -40°C OUTPUT CURRENT (mA) Figure Dropout versus Output Current Figure Output Voltage versus Output Current DROPOUT VOLTAGE (mV) TEMPERATURE (°C) Figure Dropout versus Temperature http://onsemi.com MC33761 APPLICATION HINTS Input Decoupling with regulator, necessary reduce dynamic impedance supply rail that feeds component. capacitor either ceramic tantalum recommended should connected close MC33761 package. Higher values will correspondingly improve overall line transient response. Output Decoupling component. output current internally limited maximum value typical while temperature shutdown occurs heats beyond 125°C. These values assess maximum differential voltage device sustain given output current before protections come into play. maximum dissipation package handle given Thanks novel concept, MC33761 stable component does require specific Equivalent Series Resistance (ESR) neither minimum output current. Capacitors exhibiting ESRs ranging from thus safely used. minimum decoupling value augmented fulfill stringent load transient requirements. regulator accepts ceramic chip capacitors well tantalum devices. Noise Decoupling TJmax TJmax limited 125°C, then MC33761 dissipate 470mW 25°C. power dissipated MC33761 calculated from following formula: Ptot Vout Unlike other LDOs, MC33761 true low-noise regulator. Without need external bypass capacitor, typically reaches incredible level 40µVRMS overall noise between kHz. give maximum insight noise specifications, Semiconductor includes spectral density graphics. classical bypass capacitor impacts start-up phase standard LDOs. However, thanks low-noise architecture, MC33761 operates without bypass element thus offers typical 40µs start-up phase. Protections PtotI) 80mA output current needed, ground current extracted from data-sheet curves: 80mA. MC33761SNT1-28 (2.8 delivering 80mA operating 25°C, maximum input voltage will then 8.3V. Typical Applications following picture portrays typical application MC33761. MC33761 hosts several protections, giving natural ruggedness reliability products implementing Figure http://onsemi.com MC33761 Dropout Charge Input Permanently Enables When Closed On/Off MC33761 Output Figure Typical Application Schematic noise designs, particular care taken when tackling Printed Circuit Board (PCB) layout. figure below gives example layout where stray inductances/capacitances minimized. This layout basis MC33761 performance evaluation board. connectors give user easy quick evaluation mean. http://onsemi.com MC33761 Understanding Load Transient Improvement MC33761 features novel architecture which allows user easily implement regulator burst systems where time between current shots kept very small. quality transient response time related many parameters, among which closed-loop bandwidth with corresponding phase margin plays important role. However, other characteristics also come into play like series pass transistor saturation. When current perturbation suddenly appears output, e.g. load increase, error amplifier reacts actively biases transistor. During this reaction time, open-loop output impedance rather high. result, voltage brutally drops until error amplifier effectively closes loop corrects output error. When load disappears, opposite phenomenon takes place with positive overshoot. problem appears when this overshoot decays down steady-state value. During this decreasing phase, stops bias consider asleep (figure misfortune current shot appears, reaction time incredibly lengthened strong undershoot takes place. This reaction clearly acceptable line sensitive devices, such VCOs other Radio-Frequency parts. This problem dramatically exacerbated when output current drops zero rather than this later case, internal feedback network only discharge path, accordingly lengthening output voltage decay period (figure MC33761 cures this problem implementing clever design where detects presence overshoot forces system back steady-state soon possible, ready next shot. Figure show positively improves response time decreases negative peak voltage. Figure standard behavior when load current disappears Figure standard behavior when load current appears decay zone Figure Without load transient improvement Figure MC33761 with load transient improvement http://onsemi.com MC33761 MC33761 fast start-up phase Thanks lack bypass capacitor MC33761 able supply downstream circuitry soon signal appears. standard LDO, charging time external bypass capacitor hampers response time. simple solution consists suppressing this bypass element but, unfortunately, noise rises unacceptable level. MC33761 offers best both worlds since longer includes bypass capacitor starts less than 40µs typically (Repetitive 200Hz). also ensures low-noise level 40µVRMS 100Hz-100kHz. following picture details typical 33761 startup phase. Figure Repetitive start-up waveforms http://onsemi.com MC33761 TYPICAL TRANSIENT RESPONSES Figure Output pulsed from 80mA Figure Discharge effects from 40mA Figure Load transient improvement effect Figure Load transient improvement effect http://onsemi.com MC33761 TYPICAL TRANSIENT RESPONSES Vout 25°C Cout Noise, kHz: MHz: 1,000 10,000 100,000 FREQUENCY (Hz) 1,000,000 Noise, kHz: MHz: nV/sqrt Figure MC33761 Typical Noise Density Performance (OHMS) (dB) -100 1,000 10,000 100,000 FREQUENCY (Hz) 1,000,000 25°C Cout 1,000 100,000 10,000 FREQUENCY (Hz) 1,000,000 Figure MC33761 Typical Ripple Rejection Performance Figure Typical Output Impedance plot Cout 1µF, Vout ORDERING INFORMATION Device MC33761SNT1-25 MC33761SNT1-28 MC33761SNT1-30 Voltage Output 2.5V 2.8V 3.0V Package TSOP-5 TSOP-5 TSOP-5 Shipping 3000 Units Tape Reel 3000 Units Tape Reel 3000 Units Tape Reel http://onsemi.com MC33761 PACKAGE DIMENSIONS TSOP-5 SUFFIX PLASTIC PACKAGE CASE 483-01 ISSUE NOTES: DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. CONTROLLING DIMENSION: MILLIMETER. MAXIMUM LEAD THICKNESS INCLUDES LEAD FINISH THICKNESS. MINIMUM LEAD THICKNESS MINIMUM THICKNESS BASE MATERIAL. MILLIMETERS 2.90 3.10 1.30 1.70 0.90 1.10 0.25 0.50 0.85 1.00 0.013 0.100 0.10 0.26 0.20 0.60 1.25 1.55 2.50 3.00 INCHES 0.1142 0.1220 0.0512 0.0669 0.0354 0.0433 0.0098 0.0197 0.0335 0.0413 0.0005 0.0040 0.0040 0.0102 0.0079 0.0236 0.0493 0.0610 0.0985 0.1181 0.05 (0.002) Semiconductor trademarks Semiconductor Components Industries, (SCILLC). SCILLC reserves right make changes without further notice products herein. SCILLC makes warranty, representation guarantee regarding suitability products particular purpose, does SCILLC assume liability arising application product circuit, specifically disclaims liability, including without limitation special, consequential incidental damages. "Typical" parameters which provided SCILLC data sheets and/or specifications vary different applications actual performance vary over time. operating parameters, including "Typicals" must validated each customer application customer's technical experts. SCILLC does convey license under patent rights rights others. SCILLC products designed, intended, authorized components systems intended surgical implant into body, other applications intended support sustain life, other application which failure SCILLC product could create situation where personal injury death occur. Should Buyer purchase SCILLC products such unintended unauthorized application, Buyer shall indemnify hold SCILLC officers, employees, subsidiaries, affiliates, distributors harmless against claims, costs, damages, expenses, reasonable attorney fees arising directly indirectly, claim personal injury death associated with such unintended unauthorized use, even such claim alleges that SCILLC negligent regarding design manufacture part. SCILLC Equal Opportunity/Affirmative Action Employer. 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