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HFBR-772BWZ Datasheet(PDF) 5 Page - AVAGO TECHNOLOGIES LIMITED |
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HFBR-772BWZ Datasheet(HTML) 5 Page - AVAGO TECHNOLOGIES LIMITED |
5 / 25 page 5 Absolute Maximum Ratings [1,2] Parameter Symbol Min. Max. Unit Reference Storage Temperature (non-operating) TS –40 100 °C 1 Case Temperature (operating) TC 90 °C 1, 2, 4 Supply Voltage VCC –0.5 4.6 V 1, 2 Data/Control Signal Input Voltage VI –0.5 VCC + 0.5 V 1 Transmitter Differential Data Input Voltage |VD| 2 V 1, 3 Output Current (dc) ID 25 mA 1 Relative Humidity (non-condensing) RH 5 95 % 1 Notes: 1. Absolute Maximum Ratings are those values beyond which damage to the device may occur. See Reliability Data Sheet for specific reliability performance. 2. Between Absolute Maximum Ratings and the Recommended Operating Conditions functional performance is not intended, device reliability is not implied, and damage to the device may occur over an extended period of time. 3. This is the maximum voltage that can be applied across the Transmitter Differential Data Inputs without damaging the input circuit. 4. Case Temperature is measured as indicated in Figure 3. Recommended Operating Conditions [1] Parameter Symbol Min. Typ. Max. Unit Reference Case Temperature TC 0 40 80 °C 2, Figs. 3 Supply Voltage VCC 3.135 3.3 3.465 V Figs. 5, 6, 12 Signaling Rate per Channel 1 2.7 Gbd 3 Data Input Differential Peak-to-Peak Voltage Swing DVDINP-P 175 1400 mVP-P 4, Figs. 7, 8 Control Input Voltage High VIH 2.0 VCC V Control Input Voltage Low VIL VEE 0.8 V Power Supply Noise for Transmitter and Receiver NP 200 mVP-P 5, Figs. 5, 6 Transmitter/Receiver Data I/O Coupling Capacitors CAC 0.1 mF Fig. 7 Receiver Differential Data Output Load RDL 100 W Fig. 7 Notes: 1. Recommended Operating Conditions are those values outside of which functional performance is not intended, device reliability is not im- plied, and damage to the device may occur over an extended period of time. See Reliability Data Sheet for specific reliability performance. 2. Case Temperature is measured as indicated in Figure 3. 3. The receiver has a lower cut off frequency near 100 kHz. 4. Data inputs are CML compatible. Coupling capacitors are required to block DC. ∆VDINP-P = ∆VDINH – ∆VDINL, where ∆VDINH = High State Dif- ferential Data Input Voltage and ∆VDINL = Low State Differential Data Input Voltage. 5. Power Supply Noise is defined for the supply, VCC, over the frequency range from 500 Hz to 2500 MHz, with the recommended power supply filter in place, at the supply side of the recommended filter. See Figures 5 and 6 for recommended power supply filters. |
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