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VSC880 データシート(PDF) 22 Page - Vitesse Semiconductor Corporation |
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VSC880 データシート(HTML) 22 Page - Vitesse Semiconductor Corporation |
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22 / 28 page ![]() VITESSE SEMICONDUCTOR CORPORATION Data Sheet VSC880 High Performance 16x16 Serial Crosspoint Switch Page 22 G52191-0, Rev 4.2 01/05/01 © VITESSE SEMICONDUCTOR CORPORATION • 741 Calle Plano • Camarillo, CA 93012 Tel: (800) VITESSE • FAX: (805) 987-5896 • Email: prodinfo@vitesse.com Internet: www.vitesse.com DC Characteristics Table 5: LVDS and TTL Inputs and Outputs Hot Swap The LVDS input and output buffers are subject to hot swap events while being connected and disconnected from the passive backplane. If the input is powered down but still receiving a signal from an output, the input must tolerate extra input current and power. If the input is powered up but has no input connection, it must go to a valid logic state. The Table 6 below lists the LVDS I/O parameters that relate to hot swap condition. Table 6: Hot Swap LVDS I/O Parameters Power Dissipation Table 7: Power Supply Currents Parameters Description Min Typ Max Units Conditions VOH Output HIGH voltage (TTL) 2.4 —— VIOH = -6.0 mA VOL Output LOW voltage (TTL) —— 0.4 V IOL = +6.0 mA VOCM O/P Common Mode Range (LVDS) 1.2 — 2.1 V At Min ∆V OUT ∆V OUT Differential Output Voltage (LVDS) 400 — 1000 mV 100 Ω across input VICM I/P Common Mode Range (LVDS) 0.8 — 2.5 V At Min ∆V IN ∆V IN Differential Input Voltage (LVDS) 200 — 1600 mV — VIH Input HIGH voltage (TTL) 2.0 — VDD+1.0 V — VIL Input LOW voltage (TTL) 0 — 0.8 V — IIH Input HIGH current (TTL) —— 500 µAV IN =2.4V IIL Input LOW current (TTL) - 50 —— µAV IN = 0.4V IOZB Bi-directional (TTL) HIGH current 3-State Output OFF 500 µAV OUT=2.4V Parameters Description Value Units Conditions ICO LVDS maximum current delivered per output pin 10 mA Normal Operation ICI LVDS maximum current allowed per input pin 40 mA VDD = 0V PCI LVDS maximum added power per output pin 60 mW VDD = 0V on VSC870 VCDL LVDS input default logic state LOW — Input Open Parameter Description (Max) Units IDD Power supply current from VDD, VDDA (VDD, VDDA = 3.3V + 5%) 1000 mA IDDA Power supply current from VDDA (VDDA = 3.3V + 5%) 200 mA IDDX Power supply current from each serial data quadrant VDDX (VDDX = 3.3V + 5%) 750 mA IMM Power supply current from VMM (VMM = 2.5V + 5%) 6800 mA PDS Power dissipation (VDD = 3.3V+5%, VMM = 2.5V+5%, all quadrants powered) 30.7 W PDD Power dissipation (VDD = 3.3V+5%, VMM = 2.0V+5%, all quadrants powered) 28.1 W |
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