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MCP2140-ISO 数据表(PDF) 17 Page - Microchip Technology |
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MCP2140-ISO 数据表(HTML) 17 Page - Microchip Technology |
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17 / 58 page ![]() 2003 Microchip Technology Inc. Preliminary DS21790A-page 17 MCP2140 2.13 Optical Interface The MCP2140 requires an infrared transceiver for the optical interface. This transceiver can be a single-chip solution (integrated) or be implemented with discrete devices. 2.13.1 DISCRETE TRANSCEIVER SOLUTION The MCP2140 was designed to use a discrete imple- mentation that allows the lowest system power consumption as well as a low cost implementation. Figure 2-12 shows a typical discrete optical transceiver circuit. FIGURE 2-11: CIRCUIT FOR A DISCRETE OPTICAL TRANSCEIVER Care must be taken in the design and layout of the photo-detect circuit, due to the small signals that are being detected and their sensitivity to noise. 2.13.2 INTEGRATED TRANSCEIVER The MCP2140 was designed to use a discrete imple- mentation that allows the lowest system power con- sumption and a low cost implementation (see Section 2.12.1, “Discrete Transceiver Solution”). It is possible to use an integrated optical transceiver solu- tion, with the addition of four components. Two com- ponents are required to condition the input signal to ensure that the RXIR pulse width is not greater than 1.5 µs (see Parameter IR131A). The other two com- ponents are required to set the RXIR signal trip point (typically VDD/2). Figure 2-12 shows an example MCP2140 optical transceiver circuit, using a Vishay®/ Temic TFDS4500. FIGURE 2-12: CIRCUIT FOR AN INTEGRATED OPTICAL TRANSCEIVER Table 2-6 shows a list of common manufacturers of integrated optical transceivers. This figure will be available in Revision B of the MCP2140 data sheet. Please conact the Microchip factory via email (tech.support@microchip.com) for additional information. +5 V +5 V R11 22 Ω TFDS4500 U6 8 7 6 5 47 Ω R13 1 2 3 4 C18 .1 µF RXPD (To MCP2140 Pin 2) TXIR (To MCP2140 Pin 18) +5 V C19 (1) Q1 (1) 68 pF MUN211T1 +5 V RXPDREF (To MCP2140 Pin 1) 10 k Ω R14 (2) 10 k Ω R15 (2) Note 1: These components are used to control the width of the TFDS4500 RXD output signal. Q1 is a digital transistor, which includes the bias resistors. 2: These components are used to set the reference voltage that the RXPD signal needs to cross to “detect” a bit. |
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