Download MAX40026 Datasheet PDF
Maxim Integrated
MAX40026
MAX40026 is 280ps High-Speed Comparator manufactured by Maxim Integrated.
- Part of the MAX40025A comparator family.
Description The MAX40025 and MAX40026 are single-supply, highspeed parators with a typical propagation delay of 280ps. The overdrive dispersion is extremely low (typical 25ps), making these parators ideal for time-of-flight distance measurement applications. The input mon mode range of 1.5V to VDD + 0.1V is patible with the output swings of several widely used high-speed trans-impedance amplifiers, such as the MAX40658. The output stage is LVDS (Low-Voltage Differential Signaling), which helps to minimize power dissipation and interfaces directly with many FPGAs and CPUs. plementary outputs help in suppression of mon-mode noise on each output line. The MAX40025 is offered in a space-saving, tiny, 1.218mm x 0.818mm, 6-bump wafer-level package (WLP), while the MAX40026 is available in a 2mm x 2mm 8-pin TDFN side-wettable package and meets AEC-Q100 automotive qualification requirements. The MAX40025/ MAX40026 operate over -40°C to +125°C temperature range and run from a single supply voltage of 2.7V to 3.6V. Applications - Distance Sensing in LIDAR, RADAR, and SONAR - Time-of-Flight Sensors - High-Speed Differential Line Receivers - High-Speed Triggering in Oscilloscopes - munications - Oscillators - Threshold Detectors - High-Speed Level-Shifting - Test and Measurement - Automotive Applications Benefits and Features - Fast Propagation Delay: 280ps, Typ - Low Overdrive Dispersion: 25ps (VOD = 10m V to 1V) - Supply Voltage 2.7V to 3.6V - 39.4m W at 2.7V Supply - Power-Efficient LVDS Outputs - -40°C to +125°C Temperature Range - Automotive AEC-Q100 Qualified (TDFN-8 Version) - Internal 1.5m V Hysteresis: MAX40026 - Internal 2.5m V Hysteresis: MAX40025A Ordering Information appears at end of data sheet. Functional Diagram IN+ + MAX40025 IN- MAX40026 - GND OUT+ LVDS OUT- 19-100439; Rev 5; 9/19 MAX40025A/MAX40025C/ MAX40026 280ps High-Speed parator, Ultra-Low Dispersion with LVDS Outputs Absolute Maximum Ratings VCC to GND...