Obsolete Product(s) - Obsolete Product(s)

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1 DIGITAL PROCESSOR BASH LICENCE REUIRED DESCRIPTION The STABP01 processor is used to control the BASH Digital Converter. When used in conjunction with BASH amplifiers a fully integrated high efficiency power amplifier is realized. By analyzing the audio input, the Processor determines the appropriate on/off events and generates a digital pulse for the Digital Converter. The converter turns this pulse into a power signal that feeds the power amplifier. The feedback system allows the processor to constantly adapt to the audio signal and regenerate the digital pulse thereby maintaining a constant voltage across the output devices. BLOCK DIAGRAM R t C t 10 CLOCK COMP FB CURRENT_SENSE FA IN REF ERROR AMP 250Hz COMP/3 2R BUFFER BUFFER IN 17R R BUFFER OUT R DISCHARGE (RESET) FAST ATTACK TRANSISTOR CONTROL INTERNAL CIRCUIT ON CURRENT SENSE COMPARATOR ULO: 7 = on 5 = off R S DIP20 ORDERING NUMBERS: STABP01 (DIP20) STABP01D (SO20) SO20 POWER SUPPLY1 S R GROUND1 SOFT SW RESET CLK D DEAD TIME PWM LATCH 10 ONE SHOT SIGNAL RESET CLK SOFT SWITCH S R 10 OUTPUT POWER_S2 OUTPUT GROUND2 10 ONE D OPEN DRAIN SHOT OUTPUT RESET DELAY REC_OUT 2200pF ONE SHOT DUTY ACCEL R pF 50K 20K C51 D00AU1219 December /7

2 ABSOLUTE MAXIMUM RATINGS Symbol Parameter alue Unit s Supply oltage 10.5 Io Output Current ±0.6 A Eo Output Energy(capacitive load) 5 µj i Analog Input oltage 0.3 to 8 Io Error Amplifier Output Sink Current 10 ma P tot Power Dissipation at Tamb 500 mw T stg Storage Ambient Temperature 65 to 150 C T L Lead Temperature (soldering 10s) 300 C T op Operating Temperature Range 25 to 85 C THERMAL DATA Symbol Parameter SO20 DIP20 Unit R th jamb Thermal Resistance junctionambient soldered on PCB C/W PIN CONNECTION BUFFER OUT TYPICAL APPLICATION CIRCUIT FB COMP CURRENT SENSE DEAD TIME POWER SUPPLY2 MAIN OUTPUT GROUND BUFFER IN FAST ATTACK RECTIFIER DUTY ACCEL ONE SHOT ONE SHOT DELAY POWER SUPPLY1 SOFT SW OUT 9 12 GROUND1 CLOCK(RT/CT) SOFT SW RESET D00AU1217B REFERENCE SIGNAL STABP01 PROCESSOR PROTECTION SIGNAL AC POWER SUPPLY BUCK CONERTER STA575 POWER AMP D00AU1218 AUDIO INPUT 2/7

3 ELECTRICAL CHARACTERISTCS (s = 10; Rt = 22kΩ; Ct = 2.2nF; t = 25 C unless otherwise specified) Symbol Parameter Test Conditions Min Typ Max Unit OSCILLATOR SECTION fs Initial Accuracy (*) Tj=25C, SW Out Off khz Ts Temperature Stability Tmin<Tamb<Tmax 5 % Amplitude pin10 Peak to Peak 0.5 ERROR AMP SECTION Ib Input Bias Current 1 µa A OL Open loop Gain db B Unity Gain Bandwidth MHz SR Supply oltage Rejection 6<s< db I CMR Input Common Mode Range 0 8 C MRR Common Mode Rejection Ratio 90 db O R Output oltage Range I = 1mA CURRENT SENSE SECTION Gv Gain 4/5, 5 <, Duty Cycle = 80% / 5 Maximum Input Signal 4 = Ib Input Bias Current 5 <0.9, 1 µa Odt Delay to Output (minimum output pulse) OUTPUT SECTION OL Output Low Level Isink=20mA Isink=200mA OH Output High Level Isource=20mA Isource=200mA ns tr Rise Time Tj=25 C CL=1nF ns tf Fall Time Tj=25 C CL=1nF ns UNDEROLTAGE LOCKOUT SECTION Ustart Start Threshold Ustop Min Operating oltage After Turnon TOTAL STANDBY CURRENT Ist Startup Current ma Is Operating Supply Current ma 3/7

4 ELECTRICAL CHARACTERISTCS (continued) Symbol Parameter Test Conditions Min Typ Max Unit BUFFER SECTION Ib Input Bias Current 1 µa B Unity Gain Bandwidth MHz SR Supply oltage Rejection 6<s< db I CMR Input Common Mode Range 0 9 O R Output Range I = 1mA SOFT SWITCH SECTION OL Output Low Level Isink=20mA Isink=200mA OH Output High Level Isource=20mA Isource=200mA tr Rise Time Tj=25 C CL=1nF ns tf Fall Time Tj=25 C CL=1nF ns reset Reset Level 1 FAST ATTACK CONTROL SECTION G diff Differential Gain / OS th Level for one shot OSD th Level for one shot delay I15 leak Leakage pin = µa I17 leak Leakage pin = 10, 16 = µa (*) Rt, Ct = 1% precision component /7

5 DIM. mm inch MIN. TYP. MAX. MIN. TYP. MAX. OUTLINE AND MECHANICAL DATA a B b b D E e e F I L Z DIP20 5/7

6 DIM. mm inch MIN. TYP. MAX. MIN. TYP. MAX. OUTLINE AND MECHANICAL DATA A A B C D E e H h L K B D 11 E 20 0 (min.)8 (max.) e A L K SO20 h x 45 H A1 C 1 10 SO20MEC 6/7

7 Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the consequences of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics. The ST logo is a registered trademark of STMicroelectronics 2000 STMicroelectronics All Rights Reserved STMicroelectronics GROUP OF COMPANIES Australia Brazil Canada China Finland France Germany Hong Kong India Israel Italy Japan Malaysia Malta Morocco Singapore Spain Sweden Switzerland United Kingdom United States 7/7

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