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LM138

ACTIVO

Regulador/LDO lineal de salida ajustable de 5 A en encapsulado hermético

Detalles del producto

Output options Adjustable Output Iout (max) (A) 5 Vin (max) (V) 40 Vin (min) (V) 4.2 Vout (max) (V) 32 Vout (min) (V) 1.24 Rating Military Noise (µVrms) 37 PSRR at 100 KHz (dB) 10 Iq (typ) (mA) 0.045 Thermal resistance θJA (°C/W) 35 Load capacitance (min) (µF) 0 Regulated outputs (#) 1 Accuracy (%) 4 Dropout voltage (Vdo) (typ) (mV) 3000 Operating temperature range (°C) -55 to 125
Output options Adjustable Output Iout (max) (A) 5 Vin (max) (V) 40 Vin (min) (V) 4.2 Vout (max) (V) 32 Vout (min) (V) 1.24 Rating Military Noise (µVrms) 37 PSRR at 100 KHz (dB) 10 Iq (typ) (mA) 0.045 Thermal resistance θJA (°C/W) 35 Load capacitance (min) (µF) 0 Regulated outputs (#) 1 Accuracy (%) 4 Dropout voltage (Vdo) (typ) (mV) 3000 Operating temperature range (°C) -55 to 125
TO-CAN (NDS) 2 969.2166 mm² 38.94 x 24.89
  • Specified 7-A Peak Output Current
  • Specified 5-A Output Current
  • Adjustable Output Down to 1.2 V
  • Specified Thermal Regulation
  • Current Limit Constant With Temperature
  • P + Product Enhancement Tested
  • Output is Short-Circuit Protected
  • Specified 7-A Peak Output Current
  • Specified 5-A Output Current
  • Adjustable Output Down to 1.2 V
  • Specified Thermal Regulation
  • Current Limit Constant With Temperature
  • P + Product Enhancement Tested
  • Output is Short-Circuit Protected

The LM138 series of adjustable 3-terminal positive voltage regulators is capable of supplying in excess of 5 A over a 1.2-V to 32-V output range. They are exceptionally easy to use and require only 2 resistors to set the output voltage. Careful circuit design has resulted in outstanding load and line regulation, comparable to many commercial power supplies. The LM138 family is supplied in a standard 3-lead transistor package.

A unique feature of the LM138 family is time-dependent current limiting. The current limit circuitry allows peak currents of up to 12 A to be drawn from the regulator for short periods of time. This allows the LM138 to be used with heavy transient loads and speeds start-up under full-load conditions. Under sustained loading conditions, the current limit decreases to a safe value protecting the regulator. Also included on the chip are thermal overload protection and safe area protection for the power transistor. Overload protection remains functional even if the adjustment (ADJ) pin is accidentally disconnected.

Normally, no capacitors are needed unless the device is situated more than 6 inches from the input filter capacitors in which case an input bypass is needed. An output capacitor can be added to improve transient response, while bypassing the adjustment pin increases the ripple rejection of the regulator.

Besides replacing fixed regulators or discrete designs, the LM138 is useful in a wide variety of other applications. Because the regulator is floating and receives only the input-to-output differential voltage, supplies of several hundred volts can be regulated as long as the maximum input to output differential is not exceeded; do not short-circuit output to ground. The part numbers in the LM138 series which have a suffix are packaged in a standard steel TO-CAN package, while those with a suffix are packaged in a TO-220 plastic package. The LM138 is rated for TJ = –55°C to 150°C, and the LM338 is rated for TJ = 0°C to 125°C.

The LM138 series of adjustable 3-terminal positive voltage regulators is capable of supplying in excess of 5 A over a 1.2-V to 32-V output range. They are exceptionally easy to use and require only 2 resistors to set the output voltage. Careful circuit design has resulted in outstanding load and line regulation, comparable to many commercial power supplies. The LM138 family is supplied in a standard 3-lead transistor package.

A unique feature of the LM138 family is time-dependent current limiting. The current limit circuitry allows peak currents of up to 12 A to be drawn from the regulator for short periods of time. This allows the LM138 to be used with heavy transient loads and speeds start-up under full-load conditions. Under sustained loading conditions, the current limit decreases to a safe value protecting the regulator. Also included on the chip are thermal overload protection and safe area protection for the power transistor. Overload protection remains functional even if the adjustment (ADJ) pin is accidentally disconnected.

Normally, no capacitors are needed unless the device is situated more than 6 inches from the input filter capacitors in which case an input bypass is needed. An output capacitor can be added to improve transient response, while bypassing the adjustment pin increases the ripple rejection of the regulator.

Besides replacing fixed regulators or discrete designs, the LM138 is useful in a wide variety of other applications. Because the regulator is floating and receives only the input-to-output differential voltage, supplies of several hundred volts can be regulated as long as the maximum input to output differential is not exceeded; do not short-circuit output to ground. The part numbers in the LM138 series which have a suffix are packaged in a standard steel TO-CAN package, while those with a suffix are packaged in a TO-220 plastic package. The LM138 is rated for TJ = –55°C to 150°C, and the LM338 is rated for TJ = 0°C to 125°C.

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Documentación técnica

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Tipo Título Fecha
* Data sheet LM138 and LM338 5-Amp Adjustable Regulators datasheet (Rev. C) PDF | HTML 19 dic 2016
Application note A Topical Index of TI LDO Application Notes (Rev. F) 27 jun 2019
Application note AN-103 LM340 Series Three Terminal Positive Regulators (Rev. A) 06 may 2013
Application note AN-1148 Linear Regulators: Theory of Operation and Compensation (Rev. B) 06 may 2013
Application note Method For Cal Output Voltage Tolerances in Adj Regs (Rev. A) 05 may 2013
Application note Packaging Limits Range of Linear Regulators 08 may 2010
Application note Digital Designer's Guide to Linear Voltage Regulators & Thermal Mgmt (LDO) (Rev. A) 04 jun 2008
Application note A New Production Technique for Trimming Voltage Regulators 03 oct 2002
Application note Understanding the Terms and Definitions of LDO Voltage Regulators 21 oct 1999

Diseño y desarrollo

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