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CDK8307 Datasheet(PDF) 13 Page - Cadeka Microcircuits LLC. |
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CDK8307 Datasheet(HTML) 13 Page - Cadeka Microcircuits LLC. |
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13 / 29 page ![]() ©2009 CADEKA Microcircuits LLC www.cadeka.com 13 PRELIMINARY Data Sheet Digital and Timing Electrical Characteristics (AVDD = 1.8V, DVDD = 1.8V, OVDD = 1.8V, unless otherwise noted) Symbol Parameter Conditions Min Typ Max Units Clock Inputs Duty Cycle 20 80 %high Compliance CMOS, LVDS, LVPECL Input range Differential input swing 200 200 mVpp Input range Differential input swing, sine wave clock input 800 800 mVpp Input common mode voltage Keep voltages within gnd and voltage of AVDD 0.3 VAVDD -0.3 V Input capacitance Differential 2 pF Logic Inputs (CMOS) VIH High Level Input Voltage VOVDD ≥ 3.0V 2 V VOVDD = 1.7V – 3.0V 0.8 • VOVDD V VIL Low Level Input Voltage VOVDD ≥ 3.0V 0 0.8 V VOVDD = 1.7V – 3.0V 0 0.2 • VOVDD V IIH High Level Input Leakage Current -10 10 μA IIL Low Level Input Leakage Current -10 10 μA CI Input Capacitance 3 pF Data Outputs (LVDS) Compliance LVDS VOUT Digital Output Voltage 247 454 mV VCM Output Common Mode Voltage 1.125 1.375 V Output Coding Default/Optional Offset Binary/2‘s Complement Timing Characteristics TAP Aperture Delay 0.8 ns εRMS Aperture Jitter <0.5 ps TPD Power Down Start up time from Power Down to Active Mode. References have reached 99% of final value. (See section Clock Frequency) 350 900 clock cycles TSLP Sleep Mode Start up time from Sleep Mode to Active Mode 0.5 μs TOVR Out Of Range Recovery Time 1 clk cycles TLAT Pipeline Delay 14 clk cycles LVDS Output Timing Characterisctics tdata LCLK to Data Delay Time Excluding programmable phase shift 50 ps TPROP Clock Propagation Delay TBD ns LVDS Bit-Clock Duty-Cycle 45 55 % LCLK cycle Frame clock cycle-to-cycle jitter 2.5 % LCLK cycle TEDGE Data Rise- and Fall Time Calculated from -100mV to +100mV, and vice-versa TBD ns TCLKEDGE Clock Rise- and Fall Time Calculated from -100mV to +100mV, and vice-versa TBD ns Note: (1) The outputs will be functional with higher loads. However, it is recommended to keep the load on output data bits as low as possible to keep dynamic currents and resulting switching noise at a minimum. |
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