TC9462F_01 TOSHIBA [Toshiba Semiconductor], TC9462F_01 Datasheet

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TC9462F_01

Manufacturer Part Number
TC9462F_01
Description
Digital Servo Single Chip Processor
Manufacturer
TOSHIBA [Toshiba Semiconductor]
Datasheet
Digital Servo Single Chip Processor
following function: synchronous separation protection and
interpolation, EFM demodulation, Error correction,
microcontroller interface, digital equalizer for use in servo LSI
and servo control circuit.
combination with the head amplifier TA2109F, TA2153FN for
digital servo, the TC9462F allow simplified, adjustment-free
structuring of CD player system.
Features
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The TC9462F is a single chip processor which incorporates the
In addition, the TC9462F incorporates a 1 bit DA converter. In
Capable of decode the text data.
Sync pattern detection, sync signal protection and synchronization can be made correctly.
Built in EFM demodulation circuit, subcode demodulation circuit.
Capable of correcting dual C1 correction and quadruple C2 correction using the CIRC correction theoretical
format.
The TC9462F respond to variable playback system.
Jitter absorbing capacity of ±6 frames.
Built in 16 KB RAM.
Built in digital out circuit.
Built in L/R independent digital attenuator.
Audio output responds to bilingual function.
Reed timing free subcode Q data and capable of synchronous output with audio data.
Built in data slicer and analog PLL (free-adjustment VCO).
Capable of automatic adjustment function of focus servo and tracking servo, for loop gain, offset and balance.
Built in RF gain automatic adjustment circuit.
Built in digital equalizer for phase compensation.
Built in RAM for digital equalizer for coefficient, and capable of variable pickup.
Built in focus, tracking servo control circuit.
Search control corresponds to every mode and can realize high speed and stable search.
Lens-kick are using speed controlled form.
Built in AFC circuit and APC circuit for CLV servo of disc motor.
Built in anti-defect and anti-shock circuit.
Built in 8 times oversampling digital filter and 1 bit DA converter.
Built in analog filter for 1 bit DA converter.
Built in zero data detect output circuit.
The TC9462F capable of 4 times speed operation.
Built in microcontroller interface circuit.
CMOS silicon structure and high speed, low power consumption.
100 pin flat package.
TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic
TC9462F
1
Weight: 1.6 g (typ.)
2001-11-05
TC9462F

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TC9462F_01 Summary of contents

Page 1

TOSHIBA CMOS Digital Integrated Circuit Silicon Monolithic Digital Servo Single Chip Processor The TC9462F is a single chip processor which incorporates the following function: synchronous separation protection and interpolation, EFM demodulation, Error correction, microcontroller interface, digital equalizer for use in ...

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Block Diagram (top view RFGC 51 TEBC 52 FMO 53 FVO 54 DMO REF SEL 57 FLGA 58 FLGB 59 FLGC 60 FLGD IO0 64 IO1 ...

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Pin Function Pin No. Symbol I/O 1 TEST0 I 2 HSO O 3 UHSO O 4 EMPH O 5 LRCK O ¾ BCK O 8 AOUT O 9 DOUT O 10 MBOV O 11 IPF O ...

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Pin No. Symbol I/O TMAX detection result output terminal. Selected by 29 TMAXS O command bit (TMPS). TMAX detection result output terminal. Selected by command bit (TMPS). 30 TMAX O 31 LPFN I LPF amplifier inverting input terminal for PLL. ...

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Pin No. Symbol I/O External flag output terminal for internal signal. 58 FLGA O Can select signal from TEZC, FOON , FOK and RFZC by command. External flag output terminal for internal signal. 59 FLGB O Can select signal from ...

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Pin No. Symbol I/O ― BUCK I 97 CCE I 98 TEST4 I 99 TSMOD I 100 RST I ( 25°C) Maximum Ratings Characteristics Power supply voltage Input voltage Power dissipation Operating ...

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Electrical Characteristics (unless otherwise specified 2 25°C) V REF REF DC Characteristics Characteristics Assured supply voltage Assured supply current “H” Level Input voltage “L” ...

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AC Characteristics 1. Microcomputer Interface Timing Characteristics CCE “H” clock pulse width CCE status data access time Status data disable time CCE , BUCK delay pulse width BUCK “L” clock pulse width BUCK “H” clock pulse width (1) BUCK “H” ...

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Write command mode CCE BUCK BUSi CM (input SZ2 BUSi ST (output) Idol mode (3) BXXXXX, FXXXXX command at CCE BUCK BUSi CM (input) ...

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AOUT Terminal Output Data Timing Characteristics “H” Level Transfer time (1) “L” Level BCK AOUT 3. SPDA Output Timing Characteristics “H” Level Transfer time “L” Level SPCK SPDA tpHL tpLH Test Symbol Test Condition Circuit ¾ t pLH BCK ...

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DATA, CLCK Input/Output Timing (1) CLCK input mode Characteristics “H” Level Clock pulse width “L” Level Input set-up time Transfer time (1) “L” Level “H” Level Transfer time (2) “L” Level t pHL1 SFSY/COFS CLCK DATA (2) CLCK output ...

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SBSY, SBOK Input/Output Control Characteristics “H” Level Transfer time (1) “L” Level “H” Level Transfer time (2) “L” Level SFSY/COFS SBSY SBOK 6. Output Terminal Timing Characteristics Output rising time (1) Output falling time (1) Output rising time (2) ...

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Analog Circuit Characteristics 1. A/D Converter Characteristics Resolution FE TE Sampling frequency SBAD RFRP Conversion input range 2. D/A Converter (focus, tracking equalizer output) Characteristics Bit number Sampling frequency Output signal range 3. PLL Filter Amp. Characteristics Input/output signal range ...

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RFZI Signal Comparator Characteristics Input range Input amplitude Hysteresis voltage 7. Data Slicer Circuit Characteristics (comparator) Input amplitude Response time (R-2R DAC) Output conversion range Output impedance 8. PWM Converter Output Characteristics PWM accuracy Sampling frequency Output signal range ...

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DAC Characteristics Characteristics Total harmonic distortion + noise S/N ratio Dynamic range Cross talk Analog output amplitude Test Circuit 1: Application Circuit is Used. TC9462F Application circuit LPF: SHIBASOKU Distortion meter: SHIBASOKU 725C (corresponding) Application Circuit 16.9344 MHz Test Symbol ...

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Package Dimensions Weight: 1.6 g (typ.) 16 TC9462F 2001-11-05 ...

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RESTRICTIONS ON PRODUCT USE · TOSHIBA is continually working to improve the quality and reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress ...

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