mc145480vf Freescale Semiconductor, Inc, mc145480vf Datasheet

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mc145480vf

Manufacturer Part Number
mc145480vf
Description
Mc145480 5 V Pcm Codec-filter
Manufacturer
Freescale Semiconductor, Inc
Datasheet

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MOTOROLA
SEMICONDUCTOR TECHNICAL DATA
5 V PCM Codec-Filter
selectable Mu–Law or A–Law companding, and is offered in 20–pin DIP, SOG,
and SSOP packages. This device performs the voice digitization and
reconstruction as well as the band limiting and smoothing required for PCM
systems. This device is designed to operate in both synchronous and
asynchronous applications and contains an on–chip precision reference
voltage.
encoder section. The encoder section immediately low–pass filters the analog
signal with an active R–C filter to eliminate very high frequency noise from being
modulated down to the passband by the switched capacitor filter. From the
active R–C filter, the analog signal is converted to a differential signal. From this
point, all analog signal processing is done differentially. This allows processing
of an analog signal that is twice the amplitude allowed by a single–ended
design, which reduces the significance of noise to both the inverted and
non–inverted signal paths. Another advantage of this differential design is that
noise injected via the power supplies is a common–mode signal that is
cancelled when the inverted and non–inverted signals are recombined. This
dramatically improves the power supply rejection ratio.
passes the analog signal from 200 Hz to 3400 Hz before the signal is digitized
by the differential compressing A/D converter.
converter. The output of the D/A is low–pass filtered at 3400 Hz and sinX/X
compensated by a differential switched capacitor filter. The signal is then filtered
by an active R–C filter to eliminate the out–of–band energy of the switched
capacitor filter.
including Short Frame Sync, Long Frame Sync, IDL, and GCI timing
environments. This device also maintains compatibility with Motorola’s family of
Telecommunication products, including the MC14LC5472 U–Interface Trans-
ceiver, MC145474/75 S/T–Interface Transceiver, MC145532 ADPCM Trans-
coder, MC145422/26 UDLT–1, MC145421/25 UDLT–2, and MC3419/MC33120
SLIC.
low–power performance and proven capability for complex analog/digital VLSI
functions.
REV 2
9/95
MOTOROLA
The MC145480 is a general purpose per channel PCM Codec–Filter with pin
This device has an input operational amplifier whose output is the input to the
After the differential converter, a differential switched capacitor filter band–
The decoder accepts PCM data and expands it using a differential D/A
The MC145480 PCM Codec–Filter accepts a variety of clock formats,
The MC145480 PCM Codec–Filter utilizes CMOS due to its reliable
Motorola, Inc. 1995
Single 5 V Power Supply
Typical Power Dissipation of 23 mW, Power–Down of 0.01 mW
Fully–Differential Analog Circuit Design for Lowest Noise
Transmit Band–Pass and Receive Low–Pass Filters On–Chip
Active R–C Pre–Filtering and Post–Filtering
Mu–Law and A–Law Companding by Pin Selection
On–Chip Precision Reference Voltage (1.575 V)
Push–Pull 300
MC145536EVK is the Evaluation Kit that Also Includes the MC145532
ADPCM Transcoder
Power Drivers with External Gain Adjust
20
20
20
1
ORDERING INFORMATION
MC145480P
MC145480DW SOG Package
MC145480VF
MC145480
BCLKR
RO+
RO–
PO+
V DD
PO–
FSR
1
PDI
DR
PI
PIN ASSIGNMENT
1
1
2
3
4
5
6
7
8
9
10
SOG PACKAGE
Plastic DIP
SSOP
Order this document
PLASTIC DIP
DW SUFFIX
CASE 751D
CASE 940C
VF SUFFIX
CASE 738
P SUFFIX
20
19
18
17
16
15
14
13
12
11
SSOP
by MC145480/D
V AG
TI+
TI–
TG
Mu/A
V SS
FST
DT
BCLKT
MCLK
MC145480
1

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mc145480vf Summary of contents

Page 1

... MC145480 P SUFFIX PLASTIC DIP CASE 738 SUFFIX SOG PACKAGE 20 CASE 751D 1 VF SUFFIX SSOP CASE 940C 20 1 ORDERING INFORMATION MC145480P Plastic DIP MC145480DW SOG Package MC145480VF SSOP PIN ASSIGNMENT RO RO– TI TI– PO– PO+ ...

Page 2

– FREQ PI – PO – – – – Figure 1. MC145480 PCM Codec–Filter Block Diagram DEVICE DESCRIPTION A PCM Codec–Filter ...

Page 3

PIN DESCRIPTIONS POWER SUPPLY V DD Positive Power Supply (Pin 6) This is the most positive power supply and is typically con- nected This pin should be decoupled with a 0.1 F ceramic ...

Page 4

PO+ and PO–. Connecting will power down the power driver amplifiers and the PO+ and PO– outputs ...

Page 5

All of the analog circuitry involved in the data conversion (the voltage reference, RDAC, CDAC, and comparator) are implemented with a differential architecture. The receive section includes the DAC described above, a ...

Page 6

FST (FSR) BCLKT (BCLKR DON’T CARE 1 Figure NO TAGa. Long Frame Sync (Transmit and Receive Have Individual FST (FSR) BCLKT (BCLKR DON’T CARE 1 Figure NO TAGb. Short Frame Sync (Transmit and Receive ...

Page 7

Long Frame Sync Long Frame Sync is the industry name for one type of clocking format that controls the transfer of the PCM data words. (Refer to Figure NO TAGa.) The ‘‘Frame Sync’’ or ‘‘Enable’’ is used for two specific ...

Page 8

FSR pin controls whether the B1 channel or the B2 channel is used for both transmit and receive PCM data word trans- fers. When the FSR pin is low, the transmit and receive PCM words are transferred in the B1 ...

Page 9

PC BOARD MOUNTING It is recommended that the device be soldered to the PC board for optimum noise performance. If the device used in a socket, it should be placed in a low parasitic pin inductance (generally, ...

Page 10

MAXIMUM RATINGS (Voltages Referenced Pin) Rating DC Supply Voltage Voltage on Any Analog Input or Output Pin Voltage on Any Digital Input or Output Pin Operating Temperature Range Storage Temperature Range POWER SUPPLY ( – ...

Page 11

ANALOG ELECTRICAL CHARACTERISTICS Characteristics Input Current AC Input Impedance kHz) Input Capacitance Input Offset Voltage Amp Input Common Mode Voltage Range Input Common Mode Rejection Ratio Gain Bandwidth Product (10 kHz ...

Page 12

ANALOG TRANSMISSION PERFORMANCE ( 5 All Analog Signals Referenced dBm0 = 0.775 Vrms = + 0 dBm @ 600 , FST = FSR = 8 ...

Page 13

DIGITAL SWITCHING CHARACTERISTICS, LONG FRAME SYNC AND SHORT FRAME SYNC ( 5 All Digital Signals Referenced – ...

Page 14

MCLK 1 BCLKT 11 FST 16 MSB DT 1 BCLKR 11 12 FSR MSB DR MC145480 CH1 CH2 CH3 ST1 ...

Page 15

MCLK 12 1 BCLKT 20 11 FST 22 MSB DT 1 BCLKR FSR 13 MSB DR MOTOROLA CH1 CH2 CH3 ST1 ...

Page 16

DIGITAL SWITCHING CHARACTERISTICS FOR IDL MODE ( 5 – 150 pF, See Figure 5 and Note 1) Ref. No. 31 Time Between Successive IDL Syncs ...

Page 17

DIGITAL SWITCHING CHARACTERISTICS FOR GCI MODE ( 5 – 150 pF, See Figure 6 and Note 1) Ref. No. 42 Time Between Successive FSC Pulses ...

Page 18

AUDIO OUT – 0.1 F Figure 7. MC145480 Test Circuit with Differential Input and Output AUDIO OUT AUDIO OUT 150 ...

Page 19

0.1 F GND 1/2 MC74HC73 K GND 8 kHz 256 2.048 MHz Figure 9. Long Frame Sync Clock Circuit for 2.048 MHz SIDETONE REC + ...

Page 20

R0 = 600 TIP RING + 5 V 0.1 F Figure 11. MC145480 Transformer Interface to 600 R0 = 600 TIP N = 0.5 1 0.5 – ...

Page 21

Table 3. Mu–Law Encode–Decode Characteristics Normalized Encode Chord Number Step Decision Number of Steps Size Levels 8159 7903 8 16 256 4319 4063 7 16 128 2143 2015 1055 991 511 479 4 16 ...

Page 22

Table 4. A–Law Encode–Decode Characteristics Normalized Encode Chord Number Step Decision Number of Steps Size Levels 4096 3968 7 16 128 2176 2048 1088 1024 544 512 272 256 3 16 ...

Page 23

SEATING PLANE –A– –B– 20X 0.010 (0.25 18X K MOTOROLA PACKAGE DIMENSIONS P SUFFIX PLASTIC DIP CASE 738– ...

Page 24

K 20X 0.12 (0.005) 20 L/2 L PIN 1 1 IDENT A –V– 0.20 (0.008 0.076 (0.003) –T– SEATING PLANE D G Motorola reserves the right to make changes without further notice to any products ...

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