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          EEPW首頁 > 模擬技術(shù) > 設(shè)計(jì)應(yīng)用 > 模擬集成電路的低電壓系統(tǒng)-Analog ICs for Lo

          模擬集成電路的低電壓系統(tǒng)-Analog ICs for Lo

          作者: 時(shí)間:2012-01-30 來源:網(wǎng)絡(luò) 收藏
          32 receivers, which have input thresholds of ±3V. The noise margin, however, is only 0.7V. By comparison, the 232 drivers' ±5V minimum swings guarantee a noise margin of 2V.

          Table 4. Comparison of 232E and 562 Interface Standards
          ParameterEIA-232EEIA-562
          Mode of operationSingle endedSingle ended
          Allowed number of transmitters and receivers per data line1 Tx, 1 Rx1 Tx, 1 Rx
          Maximum cable lengthC 2500pFC 2500pF for data rates 20kb/s,C 1000pF for data rates > 20kb/s
          Maximum data rate (kb/s)2064
          Driver output voltage, loaded (V)minimum
          ±5±3.7
          maximum
          ±15±13.2
          Maximum driver short-circuit current (mA)50060
          Transmitter load impedance (kΩ)3 to 73 to 7
          Instantaneous slew rate (V/μs)3030
          Receiver input threshold (sensitivity) (V)±3±3
          Receiver input resistance (kΩ)3 to 73 to 7
          Receiver input range (V)±25±25

          Most modern Maxim RS-232 devices with low-voltage supplies employ voltage-increasing charge-pump converters, sometimes requiring external capacitors. Many Maxim RS-232 devices feature automatic shutdown, and draw only 1μA of current until "awakened" by the RS-232 communication signal. The MAX3381E (Figure 13) operates from as low as 2.35V with a guaranteed data rate of 250kbps, and features ±15kV of built-in ESD protection. Its two receivers remain active during the 1μA shutdown mode, enabling the chip to monitor external devices while consuming small amounts of power. The MAX218 (not shown) operates down to +1.8V and uses a switch-mode power converter, which requires an external inductor, a diode, and a few capacitors.

          模擬集成電路的低電壓系統(tǒng)-Analog ICs for Lo
          Figure 13. This low-voltage interface IC includes a charge pump converter that generates the voltages required for RS-232 communications.

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