MAX9012
MAX9012 is Precision TTL Comparators manufactured by Maxim Integrated.
- Part of the MAX9010 comparator family.
- Part of the MAX9010 comparator family.
19-1932; Rev 1; 1/02
MAX9010- MAX9013
SC70, 5ns, Low-Power, Single-Supply, Precision TTL parators
General Description
The MAX9010/MAX9011/MAX9013 single and MAX9012 dual, high-speed parators operate from a single 4.5V to 5.5V power supply and feature low-current consumption. They have precision differential inputs and TTL outputs. They feature short propagation delay (5ns, typ), low-supply current, and a wide mon-mode input range that includes ground. They are ideal for lowpower, high-speed, single-supply applications.
The parator outputs remain stable through the linear region when driven with slow-moving or low input-overdrive signals, eliminating the output instability mon to other high-speed parators. The input voltage range extends to 200m V below ground with no output phase reversal. The MAX9013 Features plementary outputs and both the MAX9011/MAX9013 have a latch enable input (LE). The MAX9013 is an improved plug-in replacement for the industry-standard MAX913 and LT1016/LT1116, offering lower power and higher speed when used in a single 5V supply application. For space-critical designs, the single MAX9010 is available in the tiny 6-pin SC70 package. The single MAX9011 is available in a space-saving 6-pin SOT23 package. The dual MAX9012 and the single MAX9013 are available in 8-pin µMAX and 8-pin SO packages. All products in the family are guaranteed over the extended temperature range of -40°C to +85°C.
Applications
High-Speed Signal Squaring
Zero-Crossing Detectors
High-Speed Line Receivers
High-Speed Sampling Circuits
High-Speed Triggers
Fast Pulse-Width/Height Discriminators
____________________________Features o Ultra-Fast, 5ns Propagation Delay o Low Quiescent Current:
900µA (MAX9010/MAX9011) 1.3m A (MAX9013) 2.4m A (MAX9012) o Single-Supply 4.5V to 5.5V Applications o Input Range Extends Below Ground o No Minimum Input Signal Slew-Rate Requirement o No Supply-Current Spikes During Switching o Stable when Driven with Slow-Moving...