MAX9220EUM-T Maxim Integrated, MAX9220EUM-T Datasheet
MAX9220EUM-T
Specifications of MAX9220EUM-T
Related parts for MAX9220EUM-T
MAX9220EUM-T Summary of contents
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... LVDS Inputs Conform to ANSI TIA/EIA-644 LVDS Standard ♦ Low-Profile 48-Lead TSSOP Package ♦ +3.3V Main Power Supply ♦ -40°C to +85°C Operating Temperature Range Applications PART MAX9210EUM MAX9214EUM MAX9220EUM MAX9222EUM Features Ordering Information TEMP RANGE PIN-PACKAGE -40°C to +85°C 48 TSSOP -40°C to +85°C 48 TSSOP -40° ...
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Programmable DC-Balance 21-Bit Deserializers ABSOLUTE MAXIMUM RATINGS V to GND ...........................................................-0.5V to +4. GND.........................................................-0.5V to +6.0V CCO RxIN_, RxCLK IN_ to GND ....................................-0.5V to +4.0V PWRDWN to GND .................................................-0.5V to +6.0V DCB/NC to GND.........................................-0. RxOUT_, ...
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DC ELECTRICAL CHARACTERISTICS (continued) = +3.0V to +5.5V, PWRDWN = high, DCB/NC = high or low, differential input voltage | +3.0V to +3.6V CCO 1.2V, input common-mode voltage +3.3V, V ...
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Programmable DC-Balance 21-Bit Deserializers AC ELECTRICAL CHARACTERISTICS ( +3.0V to +3.6V, 100mV CC CCO P-P input voltage | 0.1V to 1.2V, Input Common Mode Voltage V ID noted. Typical values are ...
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PWRDWN = high, differential input voltage ⏐ +3.3V CCO +25°C, unless otherwise noted.) A WORST-CASE PATTERN AND PRBS SUPPLY CURRENT vs. FREQUENCY 100 MAX9220 DC-BALANCED MODE 90 80 WORST-CASE ...
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Programmable DC-Balance 21-Bit Deserializers PIN NAME TSSOP RxOUT14– 45, 46, 47 RxOUT20 3, 25, 32, 38, 44 GND 6 DCB/NC 7, 13, 18 LVDS GND 8 RxIN0- 9 RxIN0+ 10 RxIN1- 11 RxIN1+ 12 LVDS V ...
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Table 1. DC-Balance Programming DEVICE DCB/NC High or open MAX9210 Low High or open MAX9214 Low High or open MAX9220 Low High or open MAX9222 Low Detailed Description The MAX9210/MAX9220 operate at a parallel clock fre- quency of 8MHz to ...
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Programmable DC-Balance 21-Bit Deserializers RxOUT_ OR RxCLK OUT 8pF Figure 3. Output Load and Transition Times IDEAL SERIAL BIT TIME RSKM RSKM IDEAL MIN MAX INTERNAL STROBE Figure 4. LVDS Receiver Input Skew Margin RCIP RxCLK OUT 2.0V 2.0V 0.8V ...
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PWRDWN 0.8V RxCLK IN RPDD RxOUT_ RxCLK OUT Figure 8. Power-Down Delay + - RxCLK IN CYCLE TxIN15 TxIN14 TxIN20 TxIN19 TxIN18 RxIN2 TxIN8 TxIN7 TxIN13 TxIN12 TxIN11 RxIN1 TxIN1 TxIN6 TxIN5 TxIN4 TxIN0 RxIN0 TxIN_ IS ...
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Programmable DC-Balance 21-Bit Deserializers the voltage rating of the capacitor. The typical LVDS dri- ver output is 350mV centered on an offset voltage of 1.25V, making single-ended output voltages of 1.425V and 1.075V. An LVDS receiver accepts signals from 0 ...
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MAX9209 MAX9213 2):1 7 TxIN (7 + 2): 2):1 PWRDWN PLL TxCLK IN 21:3 SERIALIZER Figure 12. Two Capacitors per Link, AC-Coupled, DC-Balanced Mode series capacitors ...
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Programmable DC-Balance 21-Bit Deserializers MAX9209 MAX9213 2):1 7 TxIN (7 + 2): 2):1 PWRDWN PLL TxCLK IN 21:3 SERIALIZER Figure 13. Four Capacitors per Link, AC-Coupled, DC-Balanced Mode The transition time in a real ...
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Driving PWRDWN low puts the outputs in high imped- ance, stops the PLL, and reduces supply current to 50µA or less. Driving PWRDWN high drives the outputs low until the PLL locks. The outputs of two deserializers can be bused ...
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Programmable DC-Balance 21-Bit Deserializers Skew Margin (RSKM) Skew margin (RSKM) is the time allowed for degrada- tion of the serial data sampling setup and hold times by sources other than the deserializer. The deserializer sampling uncertainty is accounted for and ...
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Functional Diagram LVDS DATA RECEIVER 0 RxIN0+ STROBE RxIN0- LVDS DATA RECEIVER 1 RxIN1+ STROBE RxIN1- LVDS DATA RECEIVER 2 RxIN2+ STROBE RxIN2- LVDS CLOCK RECEIVER RxCLK IN+ 7x/9x PLL RxCLK IN- DCB/NC PWRDWN Chip Information MAX9210 TRANSISTOR COUNT: 10,248 ...
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Programmable DC-Balance 21-Bit Deserializers (The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information www.maxim-ic.com/packages.) N MARKING AAA TOP VIEW ...
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... Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are implied. Maxim reserves the right to change the circuitry and specifications without notice at any time. Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600 ____________________ 17 © 2007 Maxim Integrated Products ...