TIMap-751  > SN74S1051PWRG4
description SN74S1051PWRG4
Technical/Catalog Information SN74S1051PWRG4
Vendor Texas Instruments
Category Integrated Circuits (ICs)
Lead Free Status Lead Free
RoHS Status RoHS Compliant
Other Names SN74S1051PWRG4 SN74S1051PWRG4

suppliers of SN74S1051PWRG4 and PDF data of SN74S1051PWRG4

Part Numbert Mfg Packt D/C Descriptiont Qty Company/Contact  
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SN74S1051PWRG4 Datasheet
2. Set pin RST to 'H' Set pin P3.2 to 'H' 3. Apply the appropriate combination of 'H' or 'L' logic levels to pins P3.3, P3.4, P3.5, P3.7 to select one of the programming operations shown in the PEROM Pro- gramming Modes table. To Program and Verify the Array:
SN74S1051PWRG4 Price
1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the
SN74S1051PWRG4 on stock
Notes: 1. For codes not listed in the figure above, please refer to the respective datasheet or contact your nearest Agilent representative for details. 2. Bin options refer to shippable bins for a part number. Color and Intensity Bins are typically restricted t0 1 bin per tube (exceptions may apply). Please refer to respective datasheet for specific bin limit information.
1 In the on-state, the switch detects whether the load current is less than the quoted open load threshold current. This is for status indication only. Typical hysteresis equals 140 mA. The thresholds are specified for supply voltage within the normal working range. 2 After cooling below the reset temperature the switch will resume normal operation. The reset temperature is lower than the trip temperature by typically 1 0 'c. 3 If the overtemperature protection has operated, status remains low to indicate the overtemperature condition even if the input is taken low, providing the device has not cooled below the reset temperature. 4 After short circuit protection has operated, the input voltage must be toggled low for the switch to resume normal operation. 5 Undervoltage sensor causes the device to switch off. Typical hysteresis equals 0.7 V. 6 0vervoltage sensor causes the device to switch off to protect the load. Typical hysteresis equals l.3 V. 7 In a fault condition with the pull-up resistor short circuited while the status transistor is conducting. 8 The pull-up resistor also protects the status pin during reverse battery conditions.