CA3085, CA3085A CA3085B Positive Voltage Regulators from 1.7V to 46V at Currents Up to 100mA

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1 April 99 Features SEMICONDUCTOR Up to ma Output Current Input and Output ShortCircuit Protection Load and Line Regulation % Pin Compatible with LM Series Adjustable Output Voltage Applications Shunt Voltage Regulator Current Regulator Switching Voltage Regulator HighCurrent Voltage Regulator Combination Positive and Negative Voltage Regulator Dual Tracking Regulator TYPE V IN RANGE (V) RANGE (V) MAX I OUT (ma) MAX LOAD REGULATION (% ) CA. to. to. (Note ) CAA. to. to. CAB. to. to. NOTE:. This value may be extended to ma; however, regulation is not specified beyond ma. CA, CAA CAB Positive Voltage Regulators from.v to V at Currents Up to ma Description The CA, CAA, and CAB are silicon monolithic integrated circuits designed specifically for service as voltage regulators at output voltages ranging from.v to V at currents up to milliamperes. A block diagram of the CA Series is shown. The diagram shows the connecting terminals that provide access to the regulator circuit components. The voltage regulators provide important features such as: frequency compensation, shortcircuit protection, temperaturecompensated reference voltage, current limiting, and booster input. These devices are useful in a wide range of applications for regulating highcurrent, switching, shunt, and positive and negative voltages. They are also applicable for current and dualtracking regulation. The CAA and CAB have output current capabilities up to ma and the CA up to ma without the use of external pass transistors. However, all the devices can provide voltage regulation at load currents greater than ma with the use of suitable external pass transistors. The CA Series has an unregulated input voltage ranging from.v to V (CA),.V to V (CAA), and.v to V (CAB) and a minimum regulated output voltage of V (CA), V (CAA), and V (CAB). Ordering Information PART NUMBER TEMPERATURE RANGE PACKAGE CA, o C to o C Pin Metal Can CAE, AE, BE o C to o C Lead Plastic DIP Pinouts CA,, E, AE, BE (PDIP) TOP VIEW OUT BOOSTER V IN LIMIT COMP/INHIBIT IN Functional Block Diagram UNREGULATED INPUT (V IN ) SOURCE BOOSTER COMPENSATION AND EXTERNAL INHIBIT V V REF CAS, AS, BS (CAN) TOP VIEW OUT LIMIT COMP/INHIBIT STARTING CIRCUIT VOLT. REF. AMPL. SOURCE FREQ. COMP. ERROR AMPL. SERIES PASS AMPL. LIMITING REGULATED OUTPUT BOOSTER IN V IN V V REF SUBSTRATE V V INV REF INPUT LIMITING CAUTION: These devices are sensitive to electrostatic discharge. Users should follow proper I.C. Handling Procedures. Copyright Harris Corporation 99 File Number 9.

2 Absolute Maximum Ratings Supply Voltage V Unregulated Input Voltage CA V CAA V CAB V Storage Temperature Range o C to o C Junction Temperature o C Plastic DIP Package o C Lead Temperature (Soldering s) o C Specifications CA, CAA, CAB Thermal Information Thermal Resistance θ JA θ JC Metal Can (Without Heat Sink) o C/W o C/W Plastic DIP Package o C/W Maximum Package Power Dissipation Plastic DIP (Without Heat Sink) Up to T A = o C mw Above T A = o C Derate Linearly at.mw/ o C Metal Can (With Heat Sink) Up to T C = o C W Above T C = o C Derate Linearly at.mw/ o C CAUTION: Stresses above those listed in Absolute Maximum Ratings may cause permanent damage to the device. This is a stress only rating and operation of the device at these or any other conditions above those indicated in the operational sections of this specification is not implied. Operating Conditions Operating Voltage Range V to V Operating Temperature Range o C to o C Maximum Voltage Ratings The following chart gives the range of voltages which can be applied to the terminal listed vertically with respect to the terminals listed horizontally. For example, the voltage range between vertical Terminal Number and horizontal Terminal Number is to V. TERMINAL NUMBER Note Note Note Note Note Note Note Note Note Note Note Note Note (Note ) Note Note Note (Note ) (Note ) (Note ) (Note ) (Note ) Substrate and Case NOTES:. Voltages are not normally applied between these terminals; however, voltages appearing between these terminals are safe, if the specified voltage limits between all other terminals are not exceeded.. V (CA); V (CAA); V (CAB) Maximum Current Ratings TERMINAL NUMBER I IN (ma) I OUT (ma)......

3 Specifications CA, CAA, CAB DC Electrical Specifications T A = o C, Unless Otherwise Specified PARAMETERS SYMBOL TEST CONDITIONS CA CAA CAB MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS DC CHARACTERISTICS Reference Voltage Quiescent Regulator Current V REF V IN = V (Figure ) V I quiescent V IN = V (Figure ).. ma V IN = V (Figure ). ma V IN = V (Figure ). ma Input Voltage Range V IN(range)... V Maximum Output Voltage V O(MAX) V IN =,, V (Note ); R L = Ω; Term. No. to GND (Figure ) V Maximum Output Voltage Input Output Voltage Differential V O(MIN) V IN = V (Figure ) V V IN. V Limiting Current I LIM V IN = V, V OUT = V, RSCP = Ω (Note ) (Figure ) ma Load Regulation (Note ) I L = to ma, R SCP = I L = to ma, R SCP =, T A = o C to o C I L = to ma, R SCP =.... %.... %.. % Line Regulation (Note ) I L = ma, R SCP = %/V I L = ma, R SCP =, T A = o C to o C %/V Equivalent Noise Output Voltage V NOISE V IN = V (Figure ) C REF =... mvpp C REF =.µf... mvpp Ripple Rejection V IN = V, f = khz (Figure ) C REF = db C REF = µf db Output Resistance r O V IN = V, f = khz (Figure ) Ω Temperature Coefficient of Reference and Output Voltages V REF, V O (Note ) I L =, V REF =.V... %/ o C

4 Specifications CA, CAA, CAB DC Electrical Specifications T A = o C, Unless Otherwise Specified (Continued) PARAMETERS SYMBOL TEST CONDITIONS CA CAA CAB MIN TYP MAX MIN TYP MAX MIN TYP MAX UNITS LOAD TRANSIENT RECOVERY TIME Turn On t ON V IN = V, ma Step (Figure ) Turn Off t OFF V IN = V, ma Step (Figure ) µs µs LOAD TRANSIENT RECOVERY TIME Turn On t ON V IN = V, f = khz,... µs V Step Turn Off t OFF... µs NOTES:. V (CA), V (CAA), V (CAB). R SCP : Short Circuit Protection Resistance. Load Regulation = [ (initial)] x %. Line Regulation = [ (initial)( V IN )] x % V IN UNREG. INPUT R k D D D D Q Q R k R.k D Q D Q Q Q Q Q 9 D Q Q R.k R COMPENSATION AND EXTERNAL INHIBIT Q BOOSTER REGULATED OUTPUT V Hz TI STANCOR TP CA, BLACK WHITE BLACK RED GREEN () N9 µf V.Ω. KΩ KΩ KΩ µf V V REF V All Resistance Values are in Ohms SUBSTRATE INV. INPUT LIMITING =.V to V ( to 9mA) Regulation =.% (Line and Load) Ripple <.mv at Full Load FIGURE. SCHEMATIC DIAGRAM OF CA SERIES FIGURE. APPLICATION OF THE CA SERIES IN A TYPICAL POWER SUPPLY

5 CA, CAA, CAB Test Circuits and Typical Performance Curves V IN S I QUIESCENT CA, pf V REF TEST R L V IN NO. S CONNECT TERM V REF. Open Open I QUIESCENT Open Open R L QUIESCENT REGULATOR (ma) AMBIENT TEMPERATURE (T A ) = o C (MAX) Ω Ground Closed (MIN) k Terminal No. Open FIGURE. TEST CIRCUIT FOR V REF, I QUIESCENT, (MAX), (MIN) INPUT VOLTS (V IN ) FIGURE. I QUIESCENT vs V IN NORMALIZED QUIESCENT REGULATOR..9 NORMALIZED CURVE GENERATED FROM I QUIESCENT vs V IN CURVE WITH T A = o C = I V IN = V CA, R (NOTE ) I LIM R (NOTE ) Ω (NOTE ) RSCP = V. FIGURE. NORMALIZED I QUIESCENT vs T A NOTES:. =. x (R R R ). The limits current is inversely proportional to R SCP FIGURE. TEST CIRCUIT FOR LIMITING LIMITING (ma) INPUT VOLTS (V IN ) = OUTPUT VOLTS (V OUT ) = FIGURE. I LIM vs T A R SCP = Ω Ω Ω LOAD REGULATION % INPUT VOLTS (V IN ) = OUTPUT VOLTS (V OUT ) = AMBIENT TEMPERATURE (T A ) = o C R SCP = Ω. Ω.. Ω Ω Ω 9Ω Ω Ω. LOAD (ma) FIGURE. LOAD REGULATION CHARACTERISTICS

6 CA, CAA, CAB Test Circuits and Typical Performance Curves (Continued) INPUT VOLTS (V IN ) = OUTPUT VOLTS (V OUT ) =. LINE REGULATION (%/V).... V IN = V CA, C REF.Ω Ω V NOISE pf Ω FIGURE 9. LINE REGULATION TEMPERATURE CHARACTERISTICS V IN E S E S T E T, T = STANCOR TP CA, pf FIGURE. TEST CIRCUIT FOR RIPPLE REJECTION AND OUTPUT RESISTANCE C REF BLACK BLACK AND YELLOW.Ω Ω Ω T R L Ω GREEN VTVM HEWLETT PACKARD HPD OR EQUIV. E = V RMS RED FIGURE. TEST CIRCUIT FOR NOISE VOLTAGE TEST PROCEDURES FOR TEST CIRCUIT FOR RIPPLE REJECTION AND OUTPUT RESISTANCE Output Resistance Conditions. V IN = V, C REF =, Short E. Set E S at khz so that E = V RMS. Read on a VTVM, such as a HewlettPackard, HPD or Equivalent. Calculate R OUT from R OUT = (RL /E ) Ripple Rejection I Conditions. V IN = V, C REF =, Short E. Set E S at khz so that E = V RMS. Read on a VTVM, such as a HewlettPackard, HPD or Equivalent. Calculate Ripple Rejection from log (E / ) Ripple Rejection II Conditions. Repeat Ripple Rejection I with C REF = µf OUTPUT RESISTANCE (Ω) INPUT VOLTS (V IN ) = V AMBIENT TEMPERATURE (T A ) = o C. FREQUENCY (khz) NORMALIZED OUTPUT RESISTANCE (R O ) INPUT VOLTS (V IN ) = V FREQUENCY (f) = khz OUTPUT RESISTANCE (R O ) =.Ω (AT T A = o C) FIGURE. r O vs f FIGURE. NORMALIZED r O vs T A

7 CA, CAA, CAB Test Circuits and Typical Performance Curves (Continued) CHANGE IN REFERENCE VOLTAGE % V REF CHANGE IN OUTPUT VOLTAGE % REFERENCE VOLTS (V REF ) =.V (AT T A = o C) LOAD (I L ) = INPUT VOLTS MINUS OUTPUT VOLTS (V IN ) V V V V OPERATION WITHOUT HEAT SINK OPERATION WITH HEAT SINK INPUT VOLTS (V IN ) = V V V INPUT VOLTS (V IN ) = V OUTPUT (ma) FIGURE. TEMPERATURE COEFFICIENT OF V REF AND FIGURE. DISSIPATION LIMITATION (V IN vs I OUT ) µf V IN = V CA,.9Ω Ω.kΩ I L V OUT = V TYPE N pf kω Ω Ω PULSE GEN. QUIESCENT OUTPUT.mA t r (on) t r (off) mv/cm V PULSE GEN ma STEP (I L ) t (µs/cm) FIGURE. TURNON AND TURNOFF RECOVERY TIME TEST CIRCUIT WITH ASSOCIATED WAVEFORMS See Application Note AN for further information

8 CA, CAA, CAB Typical Regulator Circuits V IN (UNREGULATED SUPPLY) pf CA, NOTE:. R and R Selected for Desired Output R R V = REF R.Ω (NOTE ) V REF R R (NOTE ) TYPE N9 R L (REGULATED OUTPUT) V IN NOTE. I L =. R, µa I L A CA,.µF Q : Any NPN Silicon Transistor that can handle a A Load Current such as N or Equivalent R LIMIT LOAD Q I R I L (NOTE ) FIGURE. TYPICAL HIGH VOLTAGE REGULATOR CIRCUIT FIGURE. TYPICAL REGULATOR CIRCUIT V IN µf (V) CA, R SCP (NOTE ) R V OUT.µF R V IN Q All Resistance Values are in Ohms D : N or Equivalent Q : N or Equivalent M CA,.µF.mH R (NOTE ) µf K K R L D OUTPUT Q V IN.K Q µf (V) Q V R SCP (NOTE ) CA, R (NOTE ).µf R (NOTE ) V OUT µf (V) All Resistance Values are in Ohms Q : N or Equivalent Q : Any PNP Silicon Transistor (N or Equivalent) Q : Any NPN Silicon Transistor that can handle the desired Load Current (N or Equivalent) NOTE: NOTE:. R =. I L (Max). = (R R ) R. R SCP : Short Circuit Protection Resistance FIGURE 9. TYPICAL SWITCHING REGULATOR CIRCUIT FIGURE. COMBINATION POSITIVE AND NEGATIVE VOLTAGE REGULATOR CIRCUIT

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