MAX3963中英文翻译资料 .doc
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1、MAX3963155Mbps Preamplifier for FDDI and ATM LAN Fiber Optic ReceiversGeneral Description:The MAX3963 is a low-noise transimpedence preamplifier for FDDI and 155Mbps ATM optical receivers. The MAX3963s dynamic range is optimized for use in multimode LED-based applications.The preamplifier converts a
2、 small photodiode current to a differential voltage, with typical transimpedance of 2K.Input-referred noise of only 21nA allows detection of signal as small as 267nA, while pulse-width distortion is only 85ps with a 60uA input signal. In a 1300nm multimode receiver, with responsivity of 0.7A/W, the
3、MAX3963s dynamic range spread from -36dB to -13.7dBm.The circuit operates from a single +5V supply, and typically consumed only 60mW power.The MAX3963 die includes a filter connection, which provides positive bias for the photodiode through a 1K resistor to VCC. The feature, combined with the small
4、die size, allows the MAX3963 to fit easily into a TO-style package with a photodiode.The differential outputs are back terminated with 60 per side, allowing the easy use of filters to improve sensitivity.The MAX3963 is designed to be used with the MAX3964 limiting amplifier IC. It is available in an
5、 8-pin SO package and as dice.Applications: FDDI、155Mbps ATMFeatures:21nA Total RMS Noise、22K Differential Transimpedance、180MHz Bandwidth、60mW Typical Power Consumption、60uA Peak Input Current、Low,85ps Pulse-Width DistortionOrdering Information:PARTTEMP.RANGEPIN-PACKAGEMAX3963CS/A0 to +708 SOMAX396
6、3C/D0 to +70DicePin ConfigurationTypical Application Circuit:Absolute Maximum Ratings:VCC .-0.5V to +7.0VContinuous Current:IN.5mA OUT+, OUT- .25mABYP .5mAContinuous Power Dissipation (TA = +70C)SO (derate 5.88mW/C above +70C) .471mWStorage Temperature Range .-65C to +150CLead Temperature (soldering
7、, 10sec) .+300C Operating Junction Temperature (die) .-55C to +150C Processing Temperature (die) .+400CDC Electrical Characteristic:(VCC = +4.5V to +5.5V, CBYP = 100pF, 1kW load between OUT+ and OUT-, TA = 0C to +70C. Typical values are at VCC = 5.0V, TA = +25C, unless otherwise noted.) (Note 1)AC E
8、lectrical Characteristic:(VCC = +4.5V to +5.5V, CBYP = 100pF, CIN = 1.15pF, TA = +25C, unlessotherwise noted.) (Notes 2, 3)Note 1: Dice are tested at TA = +25C only.Note 2: AC characteristics are guaranteed by design.Note 3: COUT is the differential output capacitive load.Note 4: PWD = (width of wid
9、er pulse) - (width of narrower pulse) / 2. Input is a 155Mbps 1-0 pattern, with rise time approximately 2ns.Note 5: Measured with a 117MHz, 3-pole Bessel filter.Note 6: Measured with COUT = 5pF, TA = +25C.Pin Description:PINNAMEFUNCTION1, 3N.C.No Connect. No internal connection to the die. 2INSignal
10、 Input4BYPConnection for optional noise-reducing capacitor5GNDSignal Ground6OUT+Noninverting Voltage Output. Current flowing into IN causes VOUT+ to increase.7OUT-Inverting Voltage Output. Current flowing into IN causes VOUT- to decrease.8VCCSupply VoltageFILTER*Connection for 1k filter resistor. Th
11、is pad is accessible on the die only.Detailed Description:The MAX3963 transimpedance amplifier is designed for 155Mbps fiber optic applications. Figure 1 is a function- al diagram of the MAX3963, which comprises a transimpedance amplifier and a paraphrase amplifier with emitter-follower outputs. Tra
12、nsimpedance Amplifier:The signal current at the input flows into the summing node of a high-gain amplifier. Shunt feedback through RF converts this current to a voltage with a 10k gain.Paraphrase Amplifier :The paraphrase amplifier converts single-ended signals to differential signals and introduces
13、 a 2x voltage gain. This signal drives a pair of internally biased emitter followers, Q1 and Q2, which form the output stage. Resistors R1 and R2 provide back termination at the output, providing a 120 differential output impedance. The output emitter followers are designed to drive a 1kW differenti
14、al load between OUT+ and OUT-. Higher out- put impedances can also be driven, resulting in slightly increased gain and output voltage swing. The MAX3963 will not drive a 50 grounded load. The MAX3963 outputs may be AC coupled to a limiting amplifier.Applications Information Optical-Power Relations:M
15、any of the MAX3963 specifications relate to the input signal amplitude. When working with fiber optic receivers, the input is usually expressed in terms of average optical power and extinction ratio. The relations shown in Table 1 are helpful for converting optical power to input signal when designi
16、ng with the MAX3963. These relations are true if the average data duty cycle is 50%.Calculating Sensitivity and Overload:The MAX3963s input-referred RMS noise current (in) generally dominates receiver sensitivity. In a system where the bit error rate is 1E-10, the signal-to-noise ratio must always e
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