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MAX9152 Datasheet(PDF) 2 Page - Maxim Integrated Products |
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MAX9152 Datasheet(HTML) 2 Page - Maxim Integrated Products |
2 / 12 page 800Mbps LVDS/LVPECL-to-LVDS 2 x 2 Crosspoint Switch 2 _______________________________________________________________________________________ ABSOLUTE MAXIMUM RATINGS DC ELECTRICAL CHARACTERISTICS (VCC = +3.0V to +3.6V, NC/RSEL = open for RL = 75 Ω ±1%, NC/RSEL = high for RL = 100Ω ±1%, differential input voltage |VID| = 0.1V to VCC, input voltage (VIN+, VIN-) = 0 to VCC, EN_ = high, SEL0 = low, SEL1 = high, and TA = -40°C to +85°C. Typical values at VCC = +3.3V, |VID| = 0.2V, input common-mode voltage VCM = 1.2V, TA = +25 °C, unless otherwise noted.) (Note 1) Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. VCC to GND ...........................................................-0.3V to +4.0V IN_+, IN_-, OUT_+, OUT_- to GND .......................-0.3V to +4.0V EN_, SEL_, NC/RSEL to GND.....................-0.3V to (VCC + 0.3V) Short-Circuit Duration (OUT_+, OUT_-) .....................Continuous Continuous Power Dissipation (TA = +70°C) 16-Pin SO (derate 8.7mW/°C above +70°C)................696mW 16-Pin TSSOP (derate 9.4mW/°C above +70°C) .........755mW Storage Temperature Range .............................-65°C to +150°C Junction Temperature ......................................................+150°C Operating Temperature Range ...........................-40°C to +85°C Lead Temperature (soldering, 10s) .................................+300°C ESD Protection Human Body Model, IN_+, IN_-, OUT_+, OUT_-........... ±7kV PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS LVCMOS/LVTTL INPUTS (EN_, SEL_) Input High Voltage VIH 2.0 VCC V Input Low Voltage VIL GND 0.8 V Input High Current IIH VIN = VCC or 2.0V 0 20 µA Input Low Current IIL VIN = 0 or 0.8V -10 10 µA NC/RSEL INPUT Input High Voltage VIH 2.0 VCC V Input Low Voltage VIL GND 0.8 V Input High Current IIH VIN = VCC or 2.0V 0 20 µA Input Low Current IIL VIN = 0 or 0.8V -10 10 µA DIFFERENTIAL INPUTS (IN_+, IN_-) Differential Input High Threshold VTH 100 mV Differential Input Low Threshold VTL -100 mV VIN+ = VCC or 0, VIN- = VCC or 0 -1 1 Input Current IIN+, IIN- VIN+ = 3.6V or 0, VIN- = 3.6V or 0, VCC = 0 -1 1 µA LVDS OUTPUTS (OUT_+, OUT_-) NC/RSEL = low or open 60 90 118 Differential Output Impedance (Note 2) RDIFF NC/RSEL = high 85 122 155 Ω RL = 75 Ω, NC/RSEL = open, Figure 1 Differential Output Voltage VOD RL = 100 Ω, NC/RSEL = high, Figure 1 280 382 470 mV RL = 75 Ω, NC/RSEL = open, Figure 1 Change in Magnitude of VOD Between Complementary Output States ∆VOD RL = 100 Ω, NC/RSEL = high, Figure 1 25 mV RL = 75 Ω, NC/RSEL = open, Figure 1 Offset Common-Mode Voltage VOS RL = 100 Ω, NC/RSEL = high, Figure 1 1.150 1.430 V RL = 75 Ω, NC/RSEL = open, Figure 1 Change in Magnitude of VOS Between Complementary Output States ∆VOS RL = 100 Ω, NC/RSEL = high, Figure 1 25 mV |
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