机械电子专业毕业设计英文翻译.doc
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1、Low-Power, Slew-Rate-Limited RS-485/RS-422 TransceiversGeneral DescriptionThe MAX481, MAX483, MAX485, MAX487MAX491, andMAX1487 are low-power transceivers for RS-485 and RS-422 communication. Each part contains one driver and one receiver . The MAX483, MAX487, MAX488, and MAX489 feature reduced slew-
2、rate drivers that minimize EMI and reduce reflections caused by improperly terminated cables ,thus allowing error-free data transmission up to 250kbps. The driver slew rates of the MAX481, MAX485, MAX490,MAX491, and MAX1487 are not limited, allowing them to transmit up to 2.5Mbps.These transceivers
3、draw between 120A and 500A of supply current when unloaded or fully loaded with disabled drivers . Additionally, the MAX481, MAX483, and MAX487have a low-current shutdown mode in which they consume only 0.1A. All parts operate from a single 5V supply .Drivers are short-circuit current limited and ar
4、e protected against excessive power dissipation by thermal shutdown circuitry that places the driver outputs into a high-impedance state. The receiver input has a fail-safe feature that guarantees a logic-high output if the input is open circuit .The MAX487 and MAX1487 feature quarter-unit-load rece
5、iver input impedance, allowing up to 128 MAX487/MAX1487 transceivers on the bus. Full-duplex communications are obtained using the MAX488MAX491, while the MAX481, MAX483, MAX485, MAX487, and are designed for half-duplex applications.ApplicationsLow-Power RS-485 TransceiversLow-Power RS-422 Transceiv
6、ersLevel TranslatorsTransceivers for EMI-Sensitive ApplicationsIndustrial-Control Local Area NetworksFeaturesIn MAX Package: Smallest 8-Pin SOSlew-Rate Limited for Error-Free DataTransmission (MAX483/487/488/489)0.1A Low-Current Shutdown Mode(MAX481/483/487)Low Quiescent Current:120A (MAX483/487/488
7、/489)、230A (MAX1487)、300A (MAX481/485/490/491)-7V to +12V Common-Mode Input Voltage RangeThree-State Outputs30ns Propagation Delays, 5ns Skew (MAX481/485/490/491/1487)Full-Duplex and Half-Duplex Versions AvailableOperate from a Single 5V SupplyAllows up to 128 Transceivers on the Bus(MAX487/MAX1487)
8、Current-Limiting and Thermal Shutdown forDriver Overload ProtectionThe MAX481/MAX483/MAX485/MAX487MAX491 and MAX1487 are low-power transceivers for RS-485 and RS-422 communications. The MAX481, MAX485, MAX490,MAX491, and MAX1487 can transmit and receive at data rates up to 2.5Mbps, while the MAX483,
9、 MAX487,MAX488, and MAX489 are specified for data rates up to 250kbps. The MAX488MAX491are full-duplex transceivers while the MAX481, MAX483,MAX485,MAX487,and MAX1487 are half-duplex. In addition, Driver Enable pins are included on the (DE) and Receiver Enable (RE) MAX481, MAX483, MAX485, MAX487, MA
10、X489,MAX491, and MAX1487. When disabled, the driver and receiver outputs are high impedance. 128 Transceivers on the Bus。The 48k, 1/4-unit-load receiver input impedance of the MAX487 and MAX1487 allows up to 128 transceivers on a bus, compared to the 1-unit load (12k input impedance) of standard RS-
11、485 drivers (32 transceivers maximum). Any combination of MAX487/MAX1487 and other RS-485 transceivers with a total of 32 unit loads or less can be put on the bus. TheMAX481/MAX483/MAX485 and MAX488MAX491 have standard 12k Receiver Input impedance.Test Circuits Driver DC Test Load Receiver Timing Te
12、st Load Driver/Receiver Timing Test Circuit Driver Timing Test LoadMAX483/MAX487/MAX488/MAX489:Reduced EMI and ReflectionsThe MAX483 and MAX487MAX489 are slew-rate limited, minimizing EMI and reducing reflections caused by improperly terminated cables. Figure 1 shows the driver output waveform and i
13、ts Fourier analysis of a 150kHz signal transmitted by a MAX481, MAX485,MAX490, MAX491, or MAX1487. High-frequency harmonics with large amplitudes are evident. Figure 13 shows the same information displayed for a MAX483,MAX487, MAX488, or MAX489 transmitting under the same conditions. Figure2s high-f
14、requency harmonics have much lower amplitudes, and the potential for EMI is significantly reduced. Figure 1 Driver Output Waveform and FFT Plot of MAX481/MAX485/MAX490/MAX491/MAX1487 Transmitting a 150kHzSignal Figure 2. Driver Output Waveform and FFT Plot of MAX483/MAX487MAX489 Transmitting a 150kH
15、z SignalLow-Power Shutdown Mode(MAX481/MAX483/MAX487)A low-power shutdown mode is initiated by bringing both RE high and DE low. The devices will not shut down unless both the driver and receiver are disabled .In shutdown, the devices typically draw only 0.1A of supply current . REand DE may be driv
16、en simultaneously; the parts are guaranteed not to enter shutdown if RE is high and DE is low for less than 50ns. If the inputs are in this state for at least 600ns, the parts are guaranteed to enter shutdown.For the MAX481, MAX483, and MAX487, the t ZH and t ZL enable times assume the part was not
17、in the low-power shutdown state (the MAX485/MAX488MAX491 and MAX1487 can not be shut down). The tZH(SHDN) and t enable times assume the parts were shut ZL(SHDN) .down (see Electrical Characteristics). It takes the drivers and receivers longer to become enabled from the low-power shutdown state (t ),
18、 t ) than from the operating mode (tzH,Tzl) .(The parts are in operating mode if the RE ,DE inputs equal a logical 0,1 or 1,1 or 0, 0.)Driver Output Protection Excessive output current and power dissipation caused by faults or by bus contention are prevented by two mechanisms. A fold back current li
19、mit on the output stage provides immediate protection against short circuits over the whole common-mode voltage range (see Typical Operating Characteristics). In addition, a thermal shutdown circuit forces the driver outputs into a high-impedance state if the die temperature rises excessively . Prop
20、agation Delay Many digital encoding schemes depend on the difference between the driver and receiver propagation delay times. Typical propagation delays are shown in Figures 1518 using Figure 14s test circuit.The difference in receiver delay times, | t PLH - t PHL|, is typically under 13ns for the M
21、AX490, MAX491, and MAX1487 and is typically less than 100ns for the MAX483 and MAX487MAX489.The driver skew times are typically 5ns (10ns max) for the MAX481, MAX485, MAX490, MAX491, and MAX1487, and are typically 100ns (800ns max) for the MAX483 and MAX487MAX489. Analog signal conditioningThe type
22、of signal conditioning required for a particular measurement depends on the electrical characteristics of the primary element and the component that will receive the signal .Typical conditioning includes galvanic isolation, common-mode isolation , impedance transformation , amplification , noise red
23、uction , signal conversion , linearization , compensation ,and calibration . In the trend toward distributed control , the signal conditioning circuitry has moved close to the sensor on the process floor . Signal conditioning is done in the individual measuring transmitters , and it is done in signa
24、l conditioning systems using plug-in modules for various functions . The plug-in modules are rack mounted in card cages that can accept 4 , 8 , or 16 plug-in modules . The following is a brief description of some typical plug-in modules .A millivolt / thermocouple module accepts low-level dc voltage
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