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HMC677LP5E Datasheet(PDF) 2 Page - Hittite Microwave Corporation |
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HMC677LP5E Datasheet(HTML) 2 Page - Hittite Microwave Corporation |
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2 / 8 page ![]() 8 8 - 3 For price, delivery, and to place orders, please contact Hittite Microwave Corporation: 20 Alpha Road, Chelmsford, MA 01824 Phone: 978-250-3343 Fax: 978-250-3373 Order On-line at www.hittite.com HMC677LP5 / 677LP5E v02.0309 6-Bit SERIAL/PARALLEL SWITCH DRIVER/CONTROLLER Function Parameter Min. Typ. Max Units Vdd Positive DC Supply Voltage 4.5 5.0 5.5 V Vee Negative DC Supply Voltage -5.5 -5.0 -4.5 V Voph [1] DC Output Supply 0 - 2.2 V Voph - Vee Negative Supply Voltage Range 4.5 - 7.7 V Vdd - Vee Positive to Negative Supply Range 9 10 11 V Ta Operating Ambient Temperature -40 25 85 C loh [2] DC Output Current - High 1 - - mA lol [2] DC Output Current - Low 2 - - mA [1] Voph can be used from 0V to 2.2V. Higher voltages can be used to increase low frequency performance of GaAs switches. [2] Ioh and Iol are measured at 0.1V variation from Voph and Vee. Operating Ranges Function Parameter Conditions Min. Typ. Max Units Vih Input High Voltage High Input Voltage 2.0 - - V Vil Input Low Voltage Low Input Voltage - - 0.8 V Voh Output High Voltage Ioh = 1 mA Vee = -4.5V Voph - 0.1 - - V Vol Output Low Voltage Iol = 2 mA Vee = -4.5V - - Vee +0.1 V lin Input Leakage Current Vin = Vdd or GND Vdd = Max - - 1 μA Idd Quiescent Supply Current Vdd = Max Vin = Vdd or GND - - 1.5 mA ^ Idd Additional Supply Current Per TTL Input Pin Vdd = Max Vin = 2V - - 50 μA DC Characteristics Function Parameter -40 °C +25 °C +85 °C Units Tplh Rising Propagation Delay 80 80 80 ns Tphl Falling Propagation Delay 808080 ns Ttlh Output Rising Transition Time 100 100 100 ns Tthl Output Falling Transition Time 50 50 50 ns Tskew Delay Skew 50 50 50 nS Cpdd[1] Power Dissipation Capacitance of Vdd 100 100 100 pF Cpde[1] Power Dissipation Capacitance of Vee 400 400 400 pF Worst Case AC Characteristics at Voph = 0V (Vdd = 4.5V, Vee = -4.5V) Function Parameter -40 °C +25 °C +85 °C Units Tplh Rising Propagation Delay 30 30 30 ns Tphl Falling Propagation Delay 303030 ns Ttlh Output Rising Transition Time 30 40 40 ns Tthl Output Falling Transition Time 15 20 20 ns Tskew Delay Skew 50 50 50 nS Cpdd[1] Power Dissipation Capacitance of Vdd 100 100 100 pF Cpde[1] Power Dissipation Capacitance of Vee 400 400 400 pF Worst Case AC Characteristics at Voph = 2.2V (Vdd = 4.5V, Vee = -4.5V) 1] Total Power Dissipation is calculated by the following formula: PD = Vdd2 f Cpdd + (Voph - Vee)2 f Cpde, where f = frequency in Hz |
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