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器件描述:Applications Using the GTLP10B320
器件厂商:FAIRCHILD [Fairchild Semiconductor]
厂商主页:http://www.fairchildsemi.com/
文件大小:377.78KB
文件页数:3
PDF阅读:AN-5025.pdf (点击阅读器件资料)
摘要:
? 2001 Fairchild Semiconductor Corporation AN500540 www.fairchildsemi.com Fairchild Semiconductor Application Note February 2001 Revised February 2001 AN- 5025 Appli cati ons Using th e GTLP10B320 AN-5025 Applications Using the GTLP10B320 Abstract The GTLP10B320 is a GTLP (Gunning Transceiver Logic Plus) device that offers features specifically designed to address unique applications issues. This device is an important innovation in backplane drivers, allowing for split TTL inputs and outputs as well as an internal feedback path. These features can add to the performance and/or diagnostic capabilities of a system. Features Independent TTL inputs and outputs on the new GTLP10B320 add versatility to numerous GTLP applica- tions. Current GTLP devices have an A Port for TTL input and a B Port for GTLP output under A Port to B Port opera- tion, and a B Port GTLP input with an A Port TTL output under B Port to A Port operation. In some applications this single-set bi-directional TTL I/O may be an inconvenient feature. In these applications, it may be more convenient to have independent inputs and outputs. FIGURE 1. GTLP10B320 Logic Diagram In many cases, designers put two lines in parallel forming one node on each of the TTL input pins, allowing the TTL driver to send data on one line and receive data on another. Another configuration uses one GTLP device to send data and another GTLP device to receive data, add- ing size and cost to the project. In these configurations, the GTLP10B320 can replace two current GTLP devices where data throughput is not critical. Another important feature of the GTLP10B320’s split input is a feedback path to monitor the master inputs on the A Port. This allows another device to receive the TTL feed- back to ensure the correct data is being distributed to the bus. This internal feedback path is selected with SEL set to LOW. When SEL is LOW and no data is sent out onto the backplane, OEB is HIGH or 3-stated and data is simply fol- lowing the feedback path from the A Port to the C Port. After confirming that the correct TTL data is at the A Port, toggling OEB to LOW enables the GTLP B Port, and data is released onto the backplane.
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