參數(shù)資料
        型號(hào): MAX3969ETP+T
        廠商: Maxim Integrated Products
        文件頁(yè)數(shù): 8/11頁(yè)
        文件大?。?/td> 0K
        描述: IC AMP LIMIT 200MBPS 20-TQFN
        產(chǎn)品培訓(xùn)模塊: Lead (SnPb) Finish for COTS
        Obsolescence Mitigation Program
        標(biāo)準(zhǔn)包裝: 2,500
        類(lèi)型: 限幅放大器
        應(yīng)用: 光纖學(xué)網(wǎng)絡(luò)
        安裝類(lèi)型: 表面貼裝
        封裝/外殼: 20-WFQFN 裸露焊盤(pán)
        供應(yīng)商設(shè)備封裝: 20-TQFN-EP(4x4)
        包裝: 帶卷 (TR)
        MAX3969
        Power Detector
        Each amplifier stage contains a logarithmic FWD, which
        indicates the RMS input signal power. The FWD outputs
        are summed together at the FILTER pin where the sig-
        nal is filtered by an external capacitor (CFILTER) con-
        nected between FILTER and VCC. The FILTER signal
        generates the RSSI output voltage (VRSSI), which is
        proportional to the input power in decibels. When LOS
        is low, VRSSI is approximated by the following equation:
        VRSSI (V) = 1.2V + 0.5log (VIN)
        where, VIN is the data input voltage measured in mVP-P.
        This relation translates to a 25mV increase in VRSSI for
        every 1dB increase in VIN. The RSSI output is reduced
        approximately 120mV when LOS is high.
        Typically the RSSI output is connected to an A/D con-
        verter for diagnostic monitoring. This output can be left
        open if not required in the application. The RSSI output
        is designed to drive a minimum load resistance of 10k
        Ω
        to ground, and a maximum capacitance of 10pF. A
        10k
        Ω series resistor is required to buffer loads greater
        than 10pF.
        Signal-Strength Comparator
        A comparator is used to indicate the input signal
        strength relative to a user-programmable threshold.
        One of the comparator inputs is connected to the RSSI
        output signal, and the other is connected to the thresh-
        old voltage (VTH), which is set externally and provides
        a trip point for signal-strength indication. When the sig-
        nal strength is above the threshold, the SD output
        asserts high and the LOS output deasserts low.
        Likewise, when the signal strength falls below the
        threshold, SD deasserts low and LOS asserts high. To
        ensure chatter-free operation, the comparator is
        designed with approximately 5dB of hysteresis.
        Squelch
        The squelch function disables the data outputs by forc-
        ing OUT- low and OUT+ high when the input signal is
        below the programmed threshold. This function
        ensures that when there is a loss of signal, the limiting
        amplifier and all downstream devices do not respond to
        input noise. Connect SQUELCH to GND or leave it
        unconnected to disable squelch. Connect SQUELCH to
        VCC to enable squelch.
        PECL Outputs
        The data outputs (OUT+, OUT-) and signal-detect out-
        put (SD) are supply-referenced PECL outputs. See
        Figure 2 for the equivalent output circuit.
        Both data outputs must be terminated for proper opera-
        tion, but the SD output can be left open if not required
        in the application. The proper termination for a PECL
        output is 50
        Ω to (VCC - 2V), but other standard termina-
        tion techniques can be used. For more information on
        PECL terminations and how to interface with other logic
        families, refer to Maxim Application Note HFAN-01.0:
        Introduction to LVDS, PECL, and CML.
        TTL Outputs
        The LOS outputs (LOS, LOS) are implemented with
        open-collector, Schottky-clamped, ESD-protected, TTL-
        compatible outputs. See Figure 3 for the equivalent out-
        put circuit. The LOS outputs require external pullup
        resistors for proper operation. Resistor values between
        4.7k
        Ω and 10kΩ are recommended.
        If the LOS outputs are not required for the application,
        they can be left open.
        Design Procedure
        Program the Power-Detect Threshold
        The suggested procedure for setting the power-detect
        threshold is given below and is illustrated in Figure 4.
        1) Determine the maximum receiver sensitivity
        (RX_MAX) in dBm and the PIN-TIA responsivity (G)
        in V/W.
        2) Calculate the differential voltage swing (VIN_SEN) at
        the MAX3969 inputs while operating at sensitivity.
        VIN_SEN = 10(RX_MAX / 10) x 2 x G
        3) Calculate the threshold voltage (VIN_TH) at which
        LOS must be low (SD must be high) by allowing
        3.6dB (1.8dB optical) margin for power-detector
        accuracy.
        VIN_TH = VIN_SEN x 0.66
        4) Use VIN_TH and the line labeled (SD HIGH / LOS
        LOW) in the Power-Detect Threshold vs. R2 graph
        in the Typical Operating Characteristics to deter-
        mine the value of R2. Select R1=100k
        Ω.
        200Mbps SFP Limiting Amplifier
        6
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