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96 kHz digital audio interface transmitter
https://www.st.com/resource/en/datasheet/sta020.pdf
The STA020 is a monolithic CMOS circuit that encodes and transmits audio and digital data according to the AES/EBU, IEC 958, S/PDIF, and EIAJ CP-340 interface standards. The chip accepts audio and control data separately; multiplex and biphase-mark encode the data internally and drive it, directly or through a transformer, to a transmission line.
STA020 - 96 kHz digital audio interface transmitter ...
https://www.st.com/en/audio-ics/sta020.html
The STA020 is a monolithic CMOS device which encodes and transmits audio data according to the AES/EBU, IEC 958, S/PDIF, & EIAJ CP-340 interface standards. It supports 96 kHz sample rate operation. The STA020 accepts audio and digital data which is then multiplexed, encoded and driven onto a cable. The audio serial port is double-buffered and capable of supporting a wide …
CS8405A 96 kHz Digital Audio Interface Transmitter
https://media.digikey.com/pdf/Data%20Sheets/Cirrus%20Logic%20PDFs/CS8405A.pdf
96 kHz Digital Audio Interface Transmitter Features Complete EIAJ CP1201, IEC-60958, AES3, S/PDIF-compatible Transmitter +5.0 V Digital Supply (VD+) +3.3 V or 5.0 V Digital Interface (VL+) On-chip channel status and user bit buffer memories allow block-sized updates. through an SPI or Flexible 3-wire Serial Digital Audio Input Port Up to 96 kHz Frame Rate
DIX4192-Q1 Integrated Digital Audio Interface …
https://www.ti.com/lit/ds/symlink/dix4192-q1.pdf
broadcast digital audio systems. The DIX4192-Q1 combines a digital audio interface receiver (DIR) and transmitter (DIT), two audio serial ports, and flexible distribution logic for interconnection of the function block data and clocks. The DIR and DIT are compatible with the AES3, S/PDIF, IEC 60958, and EIAJ CP-1201 interface standards.
Integrated Digital Audio Interface Receiver and ...
https://www.mouser.com/datasheet/2/405/sbfs031c-93862.pdf
The DIX4192 is an integrated digital audio interface receiver and transmitter (DIR and DIT). Two audio serial ports, Port A and Port B, support input and output interfacing to external data converters, signal processors, and logic devices. On-chiprouting logic provides for flexible interconnection between the four functional blocks.
192 kHz Digital Audio Transmitter - EEWeb
https://www.eeweb.com/192-khz-digital-audio-transmitter/
The CS8406 is a digital audio interface transmitter with featuring complete EIAJ CP1201, IEC-60958, AES3 S/PDIF-compatible transmitter. It has on-chip channel status and flexible 3-wire serial digital audio input port. With frame rates up to 192 kHz and an on-chip differential line driver.
DIX4192-Q1 data sheet, product information and ... - TI.com
https://www.ti.com/product/DIX4192-Q1
Digital Audio Interface Transmitter (DIT) PCM/Encoded data to S/PDIF Conversion; Supports Sampling Rates Up to 216 kHz; Includes Differential Line Driver and CMOS-Buffered Outputs; Digital Audio Interface Receiver (DIR) S/PDIF to Stereo PCM Conversion / Encoded data; PLL Lock Range Includes Sampling Rates from 20 kHz to 216 kHz
Wi Digital USB AudioLink Stereo Digital Wireless Audio ...
https://www.amazon.com/Digital-AudioLink-Stereo-Wireless-Interface/dp/B005DIPLR6
Designed to provide wireless audio connectivity directly from one of your computers USB ports, the JM-UST01 powers itself directly from your device without the need for a bulky battery pack and, like other AudioLink devices, has the ability to route to up to eight AudioLink receivers, so a single transmitter can sequentially feed stage, front-of-house, in-ear, and any other audio …
96kHz DIGITAL AUDIO TRANSMITTER
http://eceweb1.rutgers.edu/~ece427/Datasheets/DIT4096.pdf
The DIT4096 is a complete digital audio transmitter, suitable for both professional and consumer audio applications. Sam-pling rates up to 96kHz are supported. The DIT4096 com-plies with the requirements for the AES-3, IEC-60958, and EIAJ CP1201 interface standards. Figures 1 and 2 show the block diagrams for the DIT4096
Digital Transmitter - an overview | ScienceDirect Topics
https://www.sciencedirect.com/topics/computer-science/digital-transmitter
Digital transmitters use F-P lasers for short distances and DFB lasers for longer distances. Because of their simpler circuitry and because the laser does not have to operate linearly, digital laser transmitters are significantly lower in cost than are analog transmitters. Contrast this to the analog transmitter of Figure 19.3 (b).
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