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CDCM1802 Datasheet(PDF) 6 Page - Texas Instruments |
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CDCM1802 Datasheet(HTML) 6 Page - Texas Instruments |
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6 / 30 page ![]() 6 CDCM1802 SCAS759C – APRIL 2004 – REVISED JULY 2017 www.ti.com Product Folder Links: CDCM1802 Submit Documentation Feedback Copyright © 2004–2017, Texas Instruments Incorporated (1) For a 800-MHz signal, the 50-ps error would result into a duty cycle distortion of ±4% when driven by an ideal clock input signal. (2) For a 200-MHz signal, the 150-ps error would result in a duty cycle distortion of ±3% when driven by an ideal clock input signal. 6.6 Switching Characteristics over operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT LVPECL OUTPUT DRIVER Y0, Y0 tDuty Output duty cycle distortion(1) Crossing point-to-crossing point distortion −50 50 ps tsk(pp) Part-to-part skew Any Y0 (see Note A in Figure 7) 50 ps tr/tf Rise and fall time 20% to 80% of VOUTPP (see Figure 8) 200 350 ps LVPECL INPUT-TO-LVPECL OUTPUT PARAMETER tpd(lh) Propagation delay rising edge VOX to VOX 320 600 ps tpd(hl) Propagation delay falling edge VOX to VOX 320 600 ps tsk(p) LVPECL pulse skew (see Note B in Figure 7) VOX to VOX 100 ps LVCMOS OUTPUT PARAMETER, Y1 tskLVCMOS(o) Output skew between the LVCMOS output Y1 and LVPECL output Y0 VOX to VDD / 2 (see Figure 7) 1.6 ns tDuty Output duty cycle distortion(2) Measured at VDD / 2 −150 150 ps tsk(pp) Part-to-part skew Y1 (see Note A in Figure 7) 300 ps tpd(lh) Propagation delay rising edge from IN to Y1 VOX to VDD / 2 load (see Figure 9) 1.6 2.6 ns tpd(hl) Propagation delay falling edge from IN to Y1 VOX to VDD / 2 load (see Figure 9) 1.6 2.6 ns tr Output rise slew rate 20% to 80% of swing (see Figure 9) 1.4 2.3 V/ns tf Output fall slew rate 80% to 20% of swing (see Figure 9) 1.4 2.3 V/ns 6.7 Jitter Characteristics over operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT tjitterLVPECL Additive phase jitter from input to LVPECL output Y0 (see Figure 1) 12 kHz to 20 MHz, fout = 250 MHz to 800 MHz, divide by 1 mode 0.15 ps rms 50 kHz to 40 MHz, fout = 250 MHz to 800 MHz, divide by 1 mode 0.25 ps rms tjitterLVCMOS Additive phase jitter from input to LVCMOS output Y1 (see Figure 2) 12 kHz to 20 MHz, fout = 250 MHz, divide by 1 mode 0.25 ps rms 50 kHz to 40 MHz, fout = 250 MHz, divide by 1 mode 0.4 ps rms 6.8 Supply Current Electrical Characteristics over recommended operating free-air temperature range (unless otherwise noted) PARAMETER TEST CONDITIONS MIN TYP MAX UNIT IDD Supply current Full load All outputs enabled and terminated with 50 Ω to VDD − 2 V on LVPECL outputs and 10 pF on LVCMOS output, f = 800 MHz for LVPECL outputs and 200 MHz for LVCMOS, VDD = 3.3 V 100 mA No load Outputs enabled, no output load, f = 800 MHz for LVPECL outputs and 200 MHz for LVCMOS, VDD = 3.6 V 85 mA IDDZ Supply current, 3-state All outputs 3-state by control logic, f = 0 Hz, VDD = 3.6 V 0.5 mA |
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