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RDS DEMODULATOR IC

S1A0905

1

Preliminary

GENERAL DESCRIPTION

THE OUTLINE OF RDS(RADIO DATA SYSTEM)

Since 1988 most European national broadcaststations transmit RDS-
code beside their audio signals. RDS means Radio Data System and 
was originally intended to give people in their cars additional informa-
tion about the weather or traffic(jams). But RDS has grown out to one 
big channel of information. Radiostations send their name, the time 
(with DCF-77 accuracy), their type of music (format) and even more. 
The digital data of RDS are multiplexed into an FM radio wave using a 
sub-carrier of 57kHz. The transmission rate of RDS data is 
1.1875kbit/sec.
The transmission rate of RDS data is 1.1875kbit/sec, and RDS data 
are encoded by differential encoding method. Then the encoded RDS data are modulated by BPSK using a clock 
of 1.1875kHz. The modulated RDS data is are modulated by carrier suppressed amplitude modulation using a sub-
carrier of 57kHz. And that signal are multiplexed into an FM radio wave.
•RDS data are obtained by demodulating the received RDS modulation signal in RDS demodulator. First, the RDS 
modulation signal is extracted from an FM radio wave using a band pass filter. The BPSK signal is obtained from 
extracted RDS modulation signal by a 57kHz carrier recovery circuit. Then the bit rate clock of RDS data is 
extracted from the BPSK signal, and the BPSK signal is demodulated using the extracted clock signal. Then the 
RDS data are decoded by a differential decoding method using the demodulated BPSK signal.

FEATURES

Low Current

Two Stage Anti-aliasing Filter

8'th 57kHz Switched Capacitor Bandpass Filter

DSB Demodulation (Carrier Recovery)

Clock Recovery Circuit

Biphase Decoder & Differential Decoder

Quality Indication Output for Demodulated Data

ORDERING INFORMATION

DEVICE

PACKAGE

OPERATING TEMP.

S1A0905-S0B0

16-SOP-225

-40 

 +85

16

SOP

225

Summary of Contents for S1A0905-S0B0

Page 1: ...Hz The modulated RDS data is are modulated by carrier suppressed amplitude modulation using a sub carrier of 57kHz And that signal are multiplexed into an FM radio wave RDS data are obtained by demodulating the received RDS modulation signal in RDS demodulator First the RDS modulation signal is extracted from an FM radio wave using a band pass filter The BPSK signal is obtained from extracted RDS ...

Page 2: ...s filter a comparator a 57kHz carrier recovery circuit a bit rate clock recovery circuit BPSK decoder differential decoding circuit and RDS signal quality output BLOCK DIAGRAM Smoothing filter Comparator BPSK BPSK Recovered clock RDS DEMODULATOR MUX VREF VDDA VSSA COMP QUAL High or Low DATAO CLKO XOSCO XOSCI 4 332MHz 20pF 20pF 2 nd Antialiasing Filter Switched capacitor filter VSS 5 0V VDD RSTB TE...

Page 3: ...6 VSSA P 7 SGND P System ground 8 COMP O Bandpass filter output 9 TEST I Test enable selecton pin High Test mode Low Normal mode 10 TIN I Input signal for Test mode Normally ground or open 11 VSS P Digital power 5 0V 12 VDD P 13 XOSCI I Xtal oscillator input 14 XOSCO O Xtal oscillator output 15 RSTB I Input for system reset High active mode Low reset mode 16 CLKO O RDS clock output 1187 5Hz QUAL D...

Page 4: ...A 0 3 V CLKO DATAO QUAL Output low level Vol 0 2 1 0 V CLKO DATAO QUAL Filter block Center frequency Fc 56 5 57 57 5 kHz Gain GA 23 26 29 dB Fc 57kHz MUXFILO Attenuation1 ATT1 18 22 dB 57 0kHz4kHz Attenuation2 ATT2 65 80 dB 38kHz Attenuation3 ATT3 35 50 dB 67kHz S N ratio SN 30 40 dB 57kHz Vin 3mVrms Input level Vin 1 500 mVrms Demodulator block RDS detecter sensitivity SRDS 0 5 1 0 mVrms RDS inpu...

Page 5: ...SW2 O6 5V QUAL DATAO VREF MUX VDDA VSSA SGND COMP TEST TIN VSS VDD XOSCI XOSCO RSTB CLKO 20pF 20pF I3 O7 A B SW3 A B SW4 SW5 16 15 14 13 12 11 10 9 1 2 3 4 5 6 7 8 A B A B O2 O3 O4 0 01uF 10uF I1 10nF SW1 O5 5V 14pF 0 1uF 10uF 0 1uF 10uF A B A B 1 Digital power supply and Analog power supply are separated in the IC 2 It must have VDD Digital power supply of a sufficiently low impedence ...

Page 6: ...S1A0905 RDS DEMODULATOR IC 6 Preliminary NOTES ...

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