Datasheet Texas Instruments LMS1587CT-3.3
Manufacturer | Texas Instruments |
Series | LMS1587 |
Part Number | LMS1587CT-3.3 |
3A Fixed / Adjustable Output Linear Regulator 3-TO-220 0 to 125
Datasheets
LMS1585A/LMS1587 5A and 3A Low Dropout Fast Response Regulators datasheet
PDF, 1.7 Mb, Revision: G, File published: Jul 18, 2013
Extract from the document
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Status
Lifecycle Status | NRND (Not recommended for new designs) |
Manufacture's Sample Availability | No |
Packaging
Pin | 3 | 3 |
Package Type | NDE | NDE |
Industry STD Term | TO-220 | TO-220 |
JEDEC Code | R-MSFM-P | R-MSFM-P |
Package QTY | 45 | 45 |
Carrier | TUBE | TUBE |
Device Marking | CT-3.3 | LMS1587 |
Width (mm) | 10.16 | 10.16 |
Length (mm) | 14.986 | 14.986 |
Thickness (mm) | 4.572 | 4.572 |
Pitch (mm) | 2.54 | 2.54 |
Max Height (mm) | 4.7 | 4.7 |
Mechanical Data | Download | Download |
Replacements
Replacement | LMS1587CT-3.3/NOPB |
Replacement Code | S |
Parametrics
Accuracy | 2.5 % |
Fixed Output Options | 1.5,3.3 V |
Iout(Max) | 3 A |
Iq(Typ) | 7 mA |
Noise | 38 uVrms |
Operating Temperature Range | -40 to 125,0 to 125 C |
Output Capacitor Type | Non-Ceramic |
Output Options | Adjustable Output,Fixed Output |
Package Group | TO-220 |
Package Size: mm2:W x L | See datasheet (TO-220) PKG |
Rating | Catalog |
Regulated Outputs | 1 |
Special Features | N/A |
Vdo(Typ) | 1150 mV |
Vin(Max) | 13 V |
Vin(Min) | 2.5 V |
Vout(Max) | 5.75 V |
Vout(Min) | 1.25 V |
Eco Plan
RoHS | See ti.com |
Application Notes
- A Topical Index of TI LDO Application Notes (Rev. F)PDF, 82 Kb, Revision: F, File published: Jun 27, 2019
- Digital Designer's Guide to Linear Voltage Regulators & Thermal Mgmt (LDO) (Rev. A)PDF, 509 Kb, Revision: A, File published: Jun 4, 2008
- Method For Cal Output Voltage Tolerances in Adj Regs (Rev. A)PDF, 284 Kb, Revision: A, File published: May 5, 2013
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Designing a robust power management system for industrial automated equipment requires thorough understanding of the surroundings and conditions that affect the functionality. During the past few decades industrial and factory automation systems have become more robust intelligent and connected which has drastically increased the footprint for semiconductor components. This change has created a - AN-1148 Linear Regulators: Theory of Operation and Compensation (Rev. B)PDF, 300 Kb, Revision: B, File published: May 6, 2013
This application note discusses the operation and compensation of linear regulators. - AN-103 LM340 Series Three Terminal Positive Regulators (Rev. A)PDF, 814 Kb, Revision: A, File published: May 6, 2013
The LM340-XX are three terminal 1.0A positive voltage regulators with preset output voltages of 5.0V or15V. The LM340 regulators are complete 3-terminal regulators requiring no external components fornormal operation. However by adding a few parts one may improve the transient response provide for avariable output voltage or increase the output current. Included on the chip are all of t - Understanding the Terms and Definitions of LDO Voltage RegulatorsPDF, 197 Kb, File published: Oct 21, 1999
This report provides an understanding of the terms and definitions of low dropout (LDO) voltage regulators and describes fundamental concepts including dropout voltage quiescent current standby current efficiency transient response line/load regulation power supply rejection output noise voltage accuracy and power dissipation. Each section includes an example to increase the understandab - AN-1482 LDO Regulator Stability Using Ceramic Output Capacitors (Rev. A)PDF, 169 Kb, Revision: A, File published: Apr 25, 2013
Ultra-low ESR capacitors such as ceramics are highly desirable because they can support fast-changingload transients and also bypass very high frequency noise coming from switching converter powersources which a linear regulator can not reject. However using ultra-low ESR capacitors on the output ofan LDO regulator requires that specific design changes be implemented to ensure loop stabili - LDO PSRR Measurement Simplified (Rev. A)PDF, 131 Kb, Revision: A, File published: Aug 9, 2017
This applicationreportexplainsdifferentmethodsof measuringthe PowerSupplyRejectionRatio(PSRR)of a Low-Dropout(LDO)regulatorand includesthe prosand consof thesemeasuringmethods - Packaging Limits Range of Linear RegulatorsPDF, 75 Kb, File published: May 8, 2010
The power limitations of the physical packaging for a linear regulator device can limit the total output current or the input-to-output voltage differential. This inherent limitation is not always apparent from the product data sheet and must be evaluated during the design phase. This application note shows how the package can limit the operating envelope of a linear regulator.
Model Line
Series: LMS1587 (26)
- LMS1587CS-1.5 LMS1587CS-1.5/NOPB LMS1587CS-3.3 LMS1587CS-3.3/NOPB LMS1587CS-ADJ LMS1587CS-ADJ/NOPB LMS1587CSX-1.5 LMS1587CSX-1.5/NOPB LMS1587CSX-3.3 LMS1587CSX-3.3/NOPB LMS1587CSX-ADJ LMS1587CSX-ADJ/NOPB LMS1587CT-3.3 LMS1587CT-3.3/NOPB LMS1587CT-ADJ LMS1587CT-ADJ/NOPB LMS1587IS-1.5 LMS1587IS-1.5/NOPB LMS1587IS-3.3 LMS1587IS-3.3/NOPB LMS1587IS-ADJ LMS1587IS-ADJ/NOPB LMS1587ISX-3.3/NOPB LMS1587ISX-ADJ LMS1587ISX-ADJ/NOPB LMS1587IT-1.5/NOPB
Manufacturer's Classification
- Semiconductors > Power Management > Linear Regulator (LDO) > Single Channel LDO
Other Names:
LMS1587CT3.3, LMS1587CT 3.3