6261M, 6262, 62629-001 Selling Leads, Datasheet
MFG:NS Package Cooled:SOP8 D/C:O9+
MFG:NS Package Cooled:SOP8 D/C:O9+
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PDF/DataSheet Download
Datasheet: 626-05
File Size: 41994 KB
Manufacturer: ON SEMICONDUCTOR
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 626-05
File Size: 41994 KB
Manufacturer: ON SEMICONDUCTOR
Download : Click here to Download
PDF/DataSheet Download
Datasheet: 626-05
File Size: 41994 KB
Manufacturer: ON SEMICONDUCTOR
Download : Click here to Download
The LM723 is a voltage regulator designed primarily for series regulator applications. By itself, it will supply output currents up to 150 mA, but external transistors can be added to provide any desired load current. The circuit features extremely low standby current drain, and provision is made for either linear or foldback current limiting.
The LM723 is also useful in a wide range of other applications such as a shunt regulator,a current regulator or a temperature controller.
Pulse Voltage V+ to V (50ms)
50V
Continuous Voltage from V+ to V
40V
Input-Output Voltage Differential
40V
Differential Input Voltage
+5V
Voltage Between Non Inverting Input and V
+8V
Current from Vz
25mA
Current from Vref
15mA
Maximum Junction Temperature
175 C
Internal Power Dissipation
(Note 2)
Metal Can 350mW at TA = 125 C
Cavity DIP 400mW at TA = 125 C
Storage Temperature Range
Metal Can -65 C to +150 C
Cavity DIP -65 C to +150 C
Lead Temperature
(Soldering, 10 seconds) 300 C
ESD Tolerance
(Human body model, 1.5K Ohm in series with 100pF) 1200V
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is functional, but do not guarantee specific performance limits. For guaranteed specifications and test condtions, see the Electrical Characteristics. The guaranteed specifications apply only for the test conditions listed. Some performance characteristics may degrade when the device is not operated under the listed test conditions.
Note 2: The maximum power dissipation must be derated at elevated temperatures and is dictated by Tjmax (maximum junction temperature), ThetaJA (package junction to ambient thermal resistance), and TA (ambient temperature). The maximum allowable power dissipation at any temperature is Pdmax = (Tjmax - TA)/ThetaJA or the number given in the Absolute Maximum Ratings, whichever is lower.