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DIX4192IPFB Datasheet(PDF) 56 Page - Texas Instruments |
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DIX4192IPFB Datasheet(HTML) 56 Page - Texas Instruments |
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56 / 71 page ![]() R1andR2areselectedtoachievethedesiredoutputvoltagelevelwhilemaintainingtherequired75 transmitteroutputimpedance. W TheTX+outputimpedanceisnegligible. (a)Transformer-CoupledUnbalancedOutput 1:1 R2 0.1 F m TX+ DigitalOutput 75 Unbalan W ced (RCAorBNCconnector) R1 (b)UnbalancedOutputWithoutTransformer R2 0.1mF TX+ DigitalOutput 75 Unbalan W ced (RCAorBNCconnector) R1 1:1 0.1 F m TX+ TX- 3 2 1 XLR DigitalOutput 110 B W alanced 110W 56 DIX4192 SBFS031F – FEBRUARY 2006 – REVISED SEPTEMBER 2016 www.ti.com Product Folder Links: DIX4192 Submit Documentation Feedback Copyright © 2006–2016, Texas Instruments Incorporated Application Information (continued) Figure 77. Transformer-Coupled Balanced Output Interface Unbalanced 75- Ω coaxial cable interfaces are commonly employed in consumer and broadcast audio applications. Designs with and without transformer line coupling may be used. Figure 78(a) shows the recommended 75- Ω transformer-coupled line driver interface, which shares many similarities to the balanced design shown in Figure 77. Figure 78(b) shows the transformer-free line driver interface, which is commonly used for S/PDIF consumer connections. Figure 78. Unbalanced Line Output Interfaces Optical interfaces using all-plastic fiber are commonly employed for consumer audio equipment where interconnections are less than 10 m in length. Most optical transmitter modules used for a digital audio interface operate from a single 3.3-V or 5-V supply and have a TTL-compatible logic input. The CMOS-buffered transmitter output of the DIX4192, AESOUT (pin 34), is capable of driving the optical transmitter with VIO supply voltages down to 3 V. If the VIO supply voltage is less than 3 V, then level translation logic is required to drive the optical transmitter input. A good choice for this application is the Texas Instruments SN74AVC1T45 single bus transceiver. This device features two power-supply rails, one for the input side and one for the output side. For this application, the input side supply is powered from the VIO supply, while the output side is powered from a 3.3-V supply. This configuration will boost the logic high level to a voltage suitable for driving the TTL-compatible input configuration. Figure 79 shows the recommended optical transmitter interface circuits. |
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