Datasheet Linear Technology LT3080 — Ficha de datos
Fabricante | Linear Technology |
Serie | LT3080 |
Regulador ajustable de baja caída de resistencia simple 1.1A
Hojas de datos
Datasheet LT3080
PDF, 385 Kb, Idioma: en, Archivo subido: dic 1, 2016, Páginas: 28
Adjustable 1.1A Single Resistor Low Dropout Regulator
Adjustable 1.1A Single Resistor Low Dropout Regulator
Extracto del documento
Precios
Embalaje
Paramétricos
Parameters / Models | LT3080EDD#PBF | LT3080EDD#TRPBF | LT3080EMS8E#PBF | LT3080EMS8E#TRPBF | LT3080EQ#PBF | LT3080EQ#TRPBF | LT3080EST#PBF | LT3080EST#TRPBF | LT3080ET#31PBF | LT3080ET#PBF | LT3080IDD#PBF | LT3080IDD#TRPBF | LT3080IMS8E#PBF | LT3080IMS8E#TRPBF | LT3080IQ#PBF | LT3080IQ#TRPBF | LT3080IST#PBF | LT3080IST#TRPBF | LT3080IT#PBF | LT3080IT#TRPBF |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Demo Boards | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A | DC1294A,DC995A |
Design Tools | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File | LTspice File |
Discrete Pass Element, yes/no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no |
Dropout Voltage, V | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 | 0.35 |
Export Control, yes/no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no | no |
Features | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference | Current Source Reference |
Isupply, mA | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 | 0.3 |
Max Junction Temp, Deg | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 | 125 |
Number of Outputs | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 | 1 |
Operating Temperature Range, °C | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | 0 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 | -40 to 85 |
Output Current, A | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 | 1.1 |
Output Voltage | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj | Adj |
PSRR, dB | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 |
RMS Noise, ВµV | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 | 40 |
Theta JA | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) | 64В°C/W (DD), 60В°C/W (MS8E), 30В°C/W (Q), 50В°C/W (T) |
Type | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN | NPN |
Vin Max, V | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 | 36 |
Vin Min, V | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 | 1.2 |
Vout Max, V | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 |
Plan ecológico
LT3080EDD#PBF | LT3080EDD#TRPBF | LT3080EMS8E#PBF | LT3080EMS8E#TRPBF | LT3080EQ#PBF | LT3080EQ#TRPBF | LT3080EST#PBF | LT3080EST#TRPBF | LT3080ET#31PBF | LT3080ET#PBF | LT3080IDD#PBF | LT3080IDD#TRPBF | LT3080IMS8E#PBF | LT3080IMS8E#TRPBF | LT3080IQ#PBF | LT3080IQ#TRPBF | LT3080IST#PBF | LT3080IST#TRPBF | LT3080IT#PBF | LT3080IT#TRPBF | |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
RoHS | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente | Obediente |
Notas de aplicación
- 2-Wire Virtual Remote Sensing for Voltage Regulators - Clairvoyance Marries Remote Sensing &mdash AN126PDF, 1.4 Mb, Archivo publicado: oct 1, 2010
Wires and connectors have resistance. This simple, unavoidable truth dictates that a power source’s remote load voltage will be less than the source’s output voltage. Traditional methods for countering this include increasing the power source voltage and "4-wire" remote voltage sensing. Both have limitations. A new IC based approach achieves "virtual" remote sensing at the load without adding the usual two extra sense wires. Numerous circuit examples show the IC working with various voltage regulators and remote loads. Appendices detail IC internal operation and design guidelines for applying the part in any regulator circuit.Extracto del documento - Basic Concepts of Linear Regulator and Switching Mode Power Supplies &mdash AN140PDF, 715 Kb, Archivo publicado: oct 1, 2013Extracto del documento
Notas de Diseño
- 1.5A Rail-to-Rail Output Synchronous Step-Down Regulator Adjusts with a Single Resistor &mdash DN506PDF, 520 Kb, Archivo publicado: marzo 13, 2012Extracto del documento
- Control the Voltage of a Remote Load Over Any Length of Copper Wire &mdash DN529PDF, 190 Kb, Archivo publicado: jul 8, 2014Extracto del documento
Artículos
- New Linear Regulators Solve Old Problems &mdash LT JournalPDF, 807 Kb, Archivo publicado: enero 6, 2014Extracto del documento
- Low Dropout Regulator Can Be Directly Paralleled to Spread The Heat &mdash LT JournalPDF, 1.6 Mb, Archivo publicado: oct 16, 2007Extracto del documento
Linea modelo
Serie: LT3080 (20)
Clasificación del fabricante
- Power Management > LDO Linear Regulators > Positive Linear Regulators (LDO)
- Power Management > Current Sources