SpecificationsV+, IN,.............................................................................................-0.3V to +6VNO, NC, COM (Note 1)..........................................................-0.3V to (V+ + 0.3V)Continuous Current NO, NC to COM.............................................
MAX4626EUK: SpecificationsV+, IN,.............................................................................................-0.3V to +6VNO, NC, COM (Note 1).......................................................
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V+, IN,.............................................................................................-0.3V to +6V
NO, NC, COM (Note 1)..........................................................-0.3V to (V+ + 0.3V)
Continuous Current NO, NC to COM.......................................................±400mA
Peak Current NO, NC to COM
(pulsed at 1ms, 10% duty cycle max).................................................±800mA
Continuous Power Dissipation (TA = 70)
Junction Temperature..............................................................................+150°C
Storage Temp..............................................................................-65 to +150
Lead Temp. (10 sec.).................................................................................+300
Power Dissipation
5 Lead SOT-23.................................................................................... 571mW
Derates above +70
5 Lead SOT-23................................................................................. 7.1mW/
The MAX4626EUK is a low-on-resistance, low-voltage, single-pole/single-throw (SPST) analog switch that operates from a +1.8V to +5.5V single supply. The MAX4626EUK is normally open (NO). This device also has a fast switching speed (tON = 50ns max, tOFF = 30ns max).
When powered from a +5V supply, the MAX4626EUK offers 0.5 ohms max on-resistance (RON) with 0.1 ohms max RONflatness, and its digital logic input is TTL compatible. This switch also features overcurrent protection to prevent device damage from short circuits and excessive loads.