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AFBR-709HDZ Datasheet(PDF) 10 Page - AVAGO TECHNOLOGIES LIMITED |
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AFBR-709HDZ Datasheet(HTML) 10 Page - AVAGO TECHNOLOGIES LIMITED |
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10 / 18 page ![]() 10 Table 5. Low Speed Signal Electrical Characteristics The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Typical values are for Tc = 40°C. VccT and VccR = 3.3 V. Parameter Symbol Minimum Typical Maximum Unit Notes Module Supply Current ICC 180 289 mA Note 1 Power Dissipation PDISS 600 1000 mW TX_FAULT, RX_LOS IOH - 50 + 37.5 mA Note 2 VOL - 0.3 0.4 V TX_DISABLE VIH 2.0 VccT + 0.3 V Note 3 VIL -0.3 0.8 V Notes: 1. Supply current includes both VccT and VccR connections. 2. Measured with a 4.7 k Ω load to VccHost. 3. TX_DISABLE has an internal 4.7 kΩ to 10 kΩ pull-up to VccT Table 6. High Speed Signal Electrical Characteristics The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Typical values are for Tc = 40°C. VccT and VccR = 3.3 V. Parameter Symbol Minimum Typical Maximum Unit Notes Tx Input Differential Voltage (TD +/-) VI 180 700 mV Note 1 Tx Input AC Common Mode Voltage Tolerance 15 mV(RMS) Tx Input Differential S-parameter (100 Ω Ref.) SDD11 -10 dB 0.01-1.0 GHz Note 3 dB 1.0-11.1 GHz Tx Input Differential to Common Mode Conversion (25 Ω Ref.) SCD11 -10 dB 0.01-11.1 GHz Rx Output Differential Voltage (RD +/-) Vo 300 850 mV Note 2 Rx Output Termination Mismatch @ 1MHz DZm 5 % Rx Output AC Common Mode Voltage 7.5 mV(RMS) Note 5 Rx Output Output Rise and Fall Time (20% to 80%) tr, tf 28 ps Rx Output Total Jitter TJ 0.70 Ulp-p Rx Output 99% Jitter J2 0.42 Ulp-p Rx Output Differential S-parameter SDD22 -12 dB 0.01-1.0 GHz (100 Ω Ref.) Note 4 dB 1.0-11.1 GHz Rx Output Common Mode Reflection SCC22 -6 dB 0.01-2.5 GHz Coefficient (25 Ω Ref.) -3 dB 2.5-11.1 GHz Receiver Output Eye Mask See Figure 5 Notes: 1. Internally AC coupled and terminated (100 Ohm differential). 2. Internally AC coupled but requires an external load termination (100 Ohm differential). 3. Maximum reflection coefficient is expressed as SDD11=Max(-12+2*sqrt(f) , -6.3+13*log10(f/5.5)), for f in GHz. 4. Maximum reflection coefficient is expressed as SDD22=Max(-12+2*sqrt(f) , -6.3+13*log10(f/5.5)), for f in GHz. 5. The RMS value is measured by calculating the standard deviation of the histogram for one UI of the common mode signal. |
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