PinoutDescriptionThe UDN5741M is designed as one kind of dual peripheral/power drivers with transient-protected outputs. This monolithic dual drivers surpass the interface requirements normally associated with standard logic buffers and are ideally suited for interface between low-level logic and ...
UDN5741M: PinoutDescriptionThe UDN5741M is designed as one kind of dual peripheral/power drivers with transient-protected outputs. This monolithic dual drivers surpass the interface requirements normally asso...
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The UDN5741M is designed as one kind of dual peripheral/power drivers with transient-protected outputs. This monolithic dual drivers surpass the interface requirements normally associated with standard logic buffers and are ideally suited for interface between low-level logic and high current inductive loads.
UDN5741M has four features. (1)DTL/TTL/PMOS/CMOS compatible. (2)Low input current. (3)Output current to 700mA. (4)70V output standoff voltage. Those are all the main features.
Some absolute maximum ratings of UDN5741M have been concluded into several points as follow. (1)Its output off-state voltage would be 70V. (2)Its output on-state sink current would be 700mA. (3)Its supply voltage would be 7.0V. (4)Its input voltage would be 30V. (5)Its suppression diode off-state voltage would be 70V. (6)Its suppression diode on-state current would be 700mA. (7)Its allowable package power dissipation would be 1.5W. (8)Its operating free-air temperature range would be from -20°C to 85°C. (9)Its storage temperature range would be from -55°C to 150°C. It should be noted that stresses above those listed in absolute maximum ratings may cause permanent damage to device.
Also some electrical characteristics of UDN5741M are concluded as follow. (1)Its output reverse current would be max 100uA. (2)Its output voltage would be typ 0.3V and max 0.6V with driven input 0.8V and output 300mA and would be typ 0.7V and max 1.0V with driven input 2.0V and output 600mA. (3)Its input voltage would be min 2.0V for high and would be max 0.8V for low. (4)Its input current would be typ 5.0uA and max 10uA. (5)Its input clamp current would be max -1.5V. (6)Its diode leakage current would be max 100uA. (7)Its diode forward voltage would be typ 1.5V and max 2.0V. (8)Its supply current would be typ 1.0mA and max 3.0mA at driven input 5V and would be typ 20mA and max 25mA at driven input 0V. And so on. If you have any question or suggestion or want to know more information please contact us for details. Thank you!