TDA1543A Philips Semiconductors, TDA1543A Datasheet

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TDA1543A

Manufacturer Part Number
TDA1543A
Description
Manufacturer
Philips Semiconductors
Datasheet

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Product specification
File under Integrated Circuits, IC01
DATA SHEET
TDA1543
Dual 16-bit DAC (economy version)
(I
2
S input format)
INTEGRATED CIRCUITS
February 1991

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TDA1543A Summary of contents

Page 1

DATA SHEET TDA1543 Dual 16-bit DAC (economy version input format) Product specification File under Integrated Circuits, IC01 INTEGRATED CIRCUITS February 1991 ...

Page 2

... Philips Semiconductors Dual 16-bit DAC (economy version input format) FEATURES Low distortion 16-bit dynamic range 4 oversampling possible Single 5 V power supply No external components required No requirement for external deglitcher circuitry due to fast settling output current Adjustable bias current Internal timing and control circuits ...

Page 3

... Philips Semiconductors Dual 16-bit DAC (economy version input format) February 1991 3 Product specification TDA1543 pagewidth full handbook, ...

Page 4

... Philips Semiconductors Dual 16-bit DAC (economy version input format) PINNING SYMBOL PIN DESCRIPTION BCK 1 bit clock input WS 2 word select input DATA 3 data input GND 4 ground supply voltage DD AOL 6 left channel voltage output V 7 reference voltage output ref AOR 8 right channel output ...

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... Philips Semiconductors Dual 16-bit DAC (economy version input format) BCK WS DATA V DD February 1991 V DD TDA1543 ref TDA1543 bias AOL AOR I DAC TDA1543 MEA109 Fig.4 Circuits at the input and output pins. 5 Product specification TDA1543 (a) input pins BCK, WS and DATA. (b) output pin V ...

Page 6

... Philips Semiconductors Dual 16-bit DAC (economy version input format) FUNCTIONAL DESCRIPTION The TDA1543 accepts input serial data formats in two's complement with any bit length. Left and right data words are time multiplexed. The most significant bit (bit 1) must always be first. The format of data input is shown in Fig.5 and Fig.6. ...

Page 7

... Philips Semiconductors Dual 16-bit DAC (economy version input format) CHARACTERISTICS mA; measured in the circuit of Fig.1; unless otherwise specified DD amb ref SYMBOL PARAMETER Supply V supply voltage range DD I supply current DD RR ripple rejection Digital inputs input current pins (1, 2 and 3) I digital inputs LOW ...

Page 8

... Philips Semiconductors Dual 16-bit DAC (economy version input format) SYMBOL PARAMETER Timing (Fig.5) t rise time r t fall time f t bit clock cycle time CY t bit clock HIGH time HB t bit clock LOW time LB t data set-up time SU;DAT t data hold time to bit clock HD ...

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... Philips Semiconductors Dual 16-bit DAC (economy version input format) DATA LSB MSB BCK WS handbook, full pagewidth – 20 THD (dB) – 30 – 40 – 50 – 60 – 70 – 80 – (1) Measured including all distortion plus noise over a 20 kHz bandwidth at a level of 60 dB. (2) Measured including all distortion plus noise over a 20 kHz bandwidth at a level of 24 dB. ...

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... Philips Semiconductors Dual 16-bit DAC (economy version input format) Notes to Fig.7 The sample frequency 4FS: 176.4 kHz. The supply voltage at the measurement = + 5 V (DC). Ref the output level of a full scale digital sine wave stimulus. The graphs are constructed from average values of a small amount of engineering samples therefore no guarantee for typical values is implied ...

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... Philips Semiconductors Dual 16-bit DAC (economy version input format) PACKAGE OUTLINES DIP8: plastic dual in-line package; 8 leads (300 mil pin 1 index 1 DIMENSIONS (inch dimensions are derived from the original mm dimensions UNIT max. min. max. 1.73 mm 4.2 0.51 3.2 1.14 0.068 inches ...

Page 12

... Philips Semiconductors Dual 16-bit DAC (economy version input format) SO16: plastic small outline package; 16 leads; body width 7 pin 1 index 1 e DIMENSIONS (inch dimensions are derived from the original mm dimensions) A UNIT max. 0.30 2.45 mm 2.65 0.25 0.10 2.25 0.012 0.096 inches 0.10 ...

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... Philips Semiconductors Dual 16-bit DAC (economy version input format) SOLDERING Introduction There is no soldering method that is ideal for all IC packages. Wave soldering is often preferred when through-hole and surface mounted components are mixed on one printed-circuit board. However, wave soldering is not always suitable for surface mounted ICs, or for printed-circuits with high population densities ...

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