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TLV320AIC1106PWRG4 ,PCM Codec With Microphone Amps & Speaker Driver 20-TSSOP -40 to 85maximum ratings over operating free-air temperature range (unless otherwise noted)Supply voltage ra ..
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TLV320AIC1110PBS ,Programmable PCM Codec With Microphone Amps & Speaker DriverFEATURESSpeaker 2.7-V to 3.3-V Operation Programmable Power Down Modes Designed for Analog and D ..
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TLV320AIC1106PW-TLV320AIC1106PWG4-TLV320AIC1106PWR-TLV320AIC1106PWRG4
PCM Codec With Microphone Amps & Speaker Driver
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SLAS357 − DECEMBER 2001
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FEATURES Designed for Analog and Digital Wireless
Handsets, Voice-Enabled Terminals, and
Telecommunications Applications 2.7-V to 3.3-V Operation Selectable 13-Bit Linear or 8-Bit µ-Law
Companded Conversion Differential Microphone Input With External
Gain Setting Differential Earphone Output Capable of
Driving a 32-Ω to 8-Ω Load Programmable Volume Control in Linear Mode Microphone (MIC) and Earphone (EAR) Mute
Functions Typical Power Dissipation of 0.03 mW in
Power-Down Mode 2.048-MHz Master Clock Rate 300-Hz to 3.4-kHz Passband Low Profile 20-Terminal TSSOP Packaging
APPLICATIONS Digital Handset Digital Headset Cordless Phones Digital PABX Digital Voice Recording DESCRIPTIONThe TLV320AIC1106 PCM codec is designed to
perform transmit encoding analog-to-digital (A/D)
conversion, receive decoding digital-to-analog (D/A)
conversion, and transmit and receive filtering for
voice-band communications systems. The
TLV320AIC1106 device operates in either the 13-bit
linear or 8-bit companded (µ-law) mode. The PCM
codec generates its own internal clocks from a
2.048-MHz master clock input.
This device contains circuits to protect its inputs and outputs against damage due to high static voltages or electrostatic fields. These
circuits have been qualified to protect this device against electrostatic discharges (ESD) of up to 2 kV according to MIL-STD-883C,
Method 3015; however, it is advised that precautions be taken to avoid application of any voltage higher than maximum-rated
voltages to these high-impedance circuits. During storage or handling, the device leads should be shorted together or the device
should be placed in conductive foam. In a circuit, unused inputs should always be connected to an appropriated logic voltage level,
preferably either VCC or ground. Specific guidelines for handling devices of this type are contained in the publication Guidelines for
Handling Electrostatic-Discharge-Sensitive (ESDS) Devices and Assemblies available from Texas Instruments.
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.