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SP6260GEK-L/TR

SP6260GEK-L/TR

  • 厂商:

    SIPEX(迈凌)

  • 封装:

    SOT23-5

  • 描述:

    IC REG LINEAR 3.3V 200MA SOT23-5

  • 数据手册
  • 价格&库存
SP6260GEK-L/TR 数据手册
SP6260 200mA RF Low Noise LDO Regulator January 2020 Rev. 2.1.1 GENERAL DESCRIPTION APPLICATIONS • Hand Held Equipments The SP6260 family is a series of CMOS positive low noise voltage regulators capable of delivering up to 200mA of continuous current. • Wireless Communication Devices • Battery Powered Equipments Each of these devices consists of a voltage reference, an error amplifier, a resistor network for setting the output voltage, a current limit circuit for current protection and a chip enable circuit. • Industrial and Medical Equipments FEATURES • 200mA Continuous Output Current The SP6260 series feature high ripple rejection, low dropout voltage, low noise, high output voltage accuracy and low current consumption which make them ideal for use in various battery-powered and hand-held devices. − 150mV Dropout Voltage @ IOUT=100mA (Except 1.2V and 1.5V Version) − 1.2V to 3.3V Fixed Output Voltages − ±2% Output Voltage Accuracy • 2V Minimum Input Voltage The SP6260 series is offered in the following fixed output voltage options: 1.2V, 1.5V, 1.8V, 2.5V, 2.8V, 3.0V, 3.2V and 3.3V. • 30µVrms Output Noise (10Hz-100KHz) • 70dB Power Supply Rejection Ratio The SP6260 family is available in standard lead free, RoHS compliant 5-pin SOT-23 package. • 4mV Line Regulation (typ) • 12mV Load Regulation (typ) • Low Standby Current: 0.1µA Typical • Low Quiescent Current: 25µA Typical • Lead Free, RoHS Compliant 5-pin SOT-23 Package 3.3V version available, others obsolete TYPICAL APPLICATION DIAGRAM Fig. 1: SP6260 Application Diagram 1/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator ABSOLUTE MAXIMUM RATINGS OPERATING RATINGS These are stress ratings only and functional operation of the device at these ratings or any other above those indicated in the operation sections of the specifications below is not implied. Exposure to absolute maximum rating conditions for extended periods of time may affect reliability. Input Voltage Range VIN .................................2.0 to 6.0V Junction Temperature Range TJ.................. -40°C to 85°C Thermal Resistance θJA .....................................250°C/W Thermal Resistance θJC ...................................... 74°C/W Input Voltage VIN ................................................... 6.5V Enable Pin Input Voltage ........................-0.3 to VIN+0.3V Output Current................................................... 300mA Junction Temperature .......................................... 150°C Storage Temperature Range .................... -65°C to 150°C Lead Soldering (Sold. 10sec) ................................ 260°C ESD Rating (HBM - Human Body Model) .................... 2kV ESD Rating (MM - Machine Model) ...........................200V ELECTRICAL SPECIFICATIONS Specifications with standard type are for an Operating Junction Temperature of TJ = 25°C only; limits applying over the full Operating Junction Temperature range of -40°C to 85°C are denoted by a “•”. Minimum and Maximum limits are guaranteed through test, design, or statistical correlation. Typical values represent the most likely parametric norm at TJ = 25°C, and are provided for reference purposes only. SP6260HEK (1.2V) 1.2V version is obsolete Unless otherwise indicated, VIN = 2.2V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 1.176 1.2 1.224 V Input Voltage VIN Output Current IOUT 6 200 Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP Quiescent Current IQ Conditions VIN=2.2V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=2.2V 1mA≤IOUT≤80mA 4 16 mV 2.2V≤VIN=≤6V IOUT=30mA 700 900 700 900 700 900 700 900 25 50 IOUT=100mA mV IOUT=150mA IOUT=200mA µA VIN=2.2V,IOUT=0mA µA VIN=2.2V VCE in OFF mode Ripple 0.5Vp-p, f=10kHz VIN=2.5V Standby Current ISTD 0.1 Power Supply Rejection Ratio PSRR 70 dB Output Voltage Temperature Coefficient ±120 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 1 IOUT=10mA 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ 2/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator SP6260AEK (1.5V) 1.5V version is obsolete Unless otherwise indicated, VIN = 2.5V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 1.47 1.5 1.53 V Input Voltage VIN Output Current IOUT 6 200 Conditions VIN=2.5V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=2.5V 1mA≤IOUT≤80mA 4 16 mV 2.3V≤VIN=≤6V IOUT=30mA 400 600 400 600 400 600 400 600 Quiescent Current IQ 25 50 µA VIN=2.5V,IOUT=0mA Standby Current ISTD 0.1 1 µA VIN=2.5V VCE in OFF mode Power Supply Rejection Ratio PSRR 70 dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA Output Voltage Temperature Coefficient ±150 µV/°C • ±100 ppm/°C • Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 ΔVOUT/ΔT (ΔVOUT/VOUT)/ΔT VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260BEK (1.8V) 1.8V version is obsolete Unless otherwise indicated, VIN = 2.8V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 1.764 1.8 1.836 V Input Voltage VIN Output Current IOUT Load Regulation VRLOAD Line Regulation VRLINE 6 200 Conditions VIN=2.8V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=2.8V 1mA≤IOUT≤80mA 4 16 mV 2.3V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 Quiescent Current IQ 25 50 µA VIN=2.8V,IOUT=0mA Standby Current ISTD 0.1 1 µA VIN=2.8V VCE in OFF mode Power Supply Rejection Ratio PSRR 70 dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Dropout Voltage VDROP Output Voltage Temperature Coefficient IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA ±180 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT 3/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260CEK (2.5V) 2.5V version is obsolete Unless otherwise indicated, VIN = 3.5V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 2.45 2.5 2.55 V Input Voltage VIN Output Current IOUT 6 200 Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP Quiescent Current IQ Conditions VIN=3.5V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=3.5V 1mA≤IOUT≤80mA 4 16 mV 3.0V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 25 50 Standby Current ISTD 0.1 Power Supply Rejection Ratio PSRR 70 1 IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA µA VIN=3.5V,IOUT=0mA µA VIN=3.5V VCE in OFF mode dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Output Voltage Temperature Coefficient ±250 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260DEK (2.8V) 2.8V version is obsolete Unless otherwise indicated, VIN = 3.8V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 2.744 2.8 2.856 V Input Voltage VIN Output Current IOUT Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP 6 200 Conditions VIN=3.8V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=3.8V 1mA≤IOUT≤80mA 4 16 mV 3.3V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 4/13 IOUT=10mA mV IOUT=100mA IOUT=150mA IOUT=200mA Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Quiescent Current IQ 25 50 µA VIN=3.8V,IOUT=0mA Standby Current ISTD 0.1 1 µA VIN=3.8V VCE in OFF mode Power Supply Rejection Ratio PSRR 70 dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Output Voltage Temperature Coefficient ±280 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260EEK (3.0V) 3.0V version is obsolete Unless otherwise indicated, VIN = 4.0V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 2.940 3.0 3.060 V Input Voltage VIN Output Current IOUT 6 200 Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP Quiescent Current IQ Conditions VIN=4.0V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=4.0V 1mA≤IOUT≤80mA 4 16 mV 3.5V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 25 50 Standby Current ISTD 0.1 Power Supply Rejection Ratio PSRR 70 1 IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA µA VIN=4.0V,IOUT=0mA µA VIN=4.0V VCE in OFF mode dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Output Voltage Temperature Coefficient ±300 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260FEK (3.2V) 3.2V version is obsolete Unless otherwise indicated, VIN = 4.2V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 3.136 3.2 3.264 V 6 V Input Voltage VIN Output Current IOUT 200 mA 5/13 Conditions VIN=4.2V 1mA≤IOUT≤30mA VIN—VOUT=1V Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Load Regulation VRLOAD Line Regulation VRLINE Dropout Voltage VDROP Quiescent Current IQ 12 40 mV VIN=4.2V 1mA≤IOUT≤80mA 4 16 mV 3.7V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 25 50 Standby Current ISTD 0.1 Power Supply Rejection Ratio PSRR 70 1 IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA µA VIN=4.2V,IOUT=0mA µA VIN=4.2V VCE in OFF mode dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Output Voltage Temperature Coefficient ±320 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ SP6260GEK (3.3V) Available Unless otherwise indicated, VIN = 4.3V, CIN = 1µF, COUT = 1µF. Parameter Output Voltage VOUT Min. Typ. Max. Units 3.234 3.3 3.366 V Input Voltage VIN Output Current IOUT 6 200 Load Regulation VRLOAD Line Regulation VRLINE Conditions VIN=4.3V 1mA≤IOUT≤30mA V mA VIN—VOUT=1V 12 40 mV VIN=4.3V 1mA≤IOUT≤80mA 4 16 mV 3.8V≤VIN=≤6V IOUT=30mA 20 40 150 300 200 400 250 500 Quiescent Current IQ 25 50 µA VIN=4.3V,IOUT=0mA Standby Current ISTD 0.1 1 µA VIN=4.3V VCE in OFF mode Power Supply Rejection Ratio PSRR 70 dB Ripple 0.5Vp-p, f=10kHz VIN=2.5V Dropout Voltage VDROP IOUT=10mA IOUT=100mA mV IOUT=150mA IOUT=200mA Output Voltage Temperature Coefficient ±330 µV/°C • ΔVOUT/ΔT ±100 ppm/°C • (ΔVOUT/VOUT)/ΔT Short Current Limit ILIMIT 50 mA RMS Output Noise VNOISE 30 µVrms CE “High” Voltage 1.5 CE “Low” Voltage CE Pull-down Resistance RPD 2.5 5 VOUT=0V TA=25°C 10Hz≤f≤100kHz V CE input voltage “High” 0.25 V CE input voltage “Low” 10 MΩ 6/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator BLOCK DIAGRAM Fig. 2: SP6260 Block Diagram PIN ASSIGNEMENT Fig. 3: SP6260 Pin Assignment PIN DESCRIPTION Name Pin Number Description VIN 1 Input voltage GND 2 Ground CE 3 Enable input pin. high=enable low=shutdown NC 4 No connection VOUT 5 Regulated output voltage ORDERING INFORMATION(1) Part Number SP6260GEK-L/TR Junction Temperature Range Package Packing Method Lead free(2) -40°C to +85°C SOT-23-5 Tape & Reel Yes Note 1 3.3V version Notes: 1. Refer to www.maxlinear.com/SP6260 for most up-to-date Ordering Information. 2. Visit www.maxlinear.com for additional information on Environmental Rating. 7/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator TYPICAL PERFORMANCE CHARACTERISTICS All data taken at VIN = 2.7V to 5.5V, TJ = TA = 25°C, unless otherwise specified - Schematic and BOM from Application Information section of this datasheet. Fig. 4: Output Voltage vs. Output Current SP6260HEK (1.2V) Fig. 5: Output Voltage vs. Output Current SP6260AEK (1.5V) Fig. 6: Output Voltage vs. Output Current SP6260BEK (1.8V) Fig. 7: Output Voltage vs. Output Current SP6260CEK (2.5V) Fig. 8: Output Voltage vs. Output Current SP6260EEK (3.0V) 8/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Fig. 9: Output Voltage vs. Input Voltage SP6260HEK (1.2V) Fig. 10: Output Voltage vs. Input Voltage SP6260EEK (3.0V) Fig. 11: Dropout Voltage vs. Output Current SP6260HEK-L (1.2V) Fig. 12: Dropout Voltage vs. Output Current SP6260EEK-L (3.0V) Fig. 13: Output Voltage vs. Junction Temparature SP6260HEK-L (1.2V) Fig. 14: Output Voltage vs. Junction Temperature SP6260EEK-L (3.0V) 9/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Fig. 15: Supply Current vs. Input Voltage SP6260HEK (1.2V) Fig. 16: Supply Current vs. Input Voltage SP6260EEK (3.0V) Fig. 17: Supply Current vs. Junction Temperature SP6260HEK (1.2V) Fig. 18: Supply Current vs. Junction Temperature SP6260EEK (3.0) Fig. 19: Line Transient SP6260HEK (1.2V) (Conditions: IOUT=30mA, CIN=1µF, COUT=1µF) (Conditions: IOUT=30mA, CIN=1µF, COUT=1µF) Fig. 20: Line Transient SP6260EEK (3.0V) 10/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator Fig. 21: Line Transient SP6260HEK (1.2V) Fig. 22: Line Transient SP6260EEK (3.0V) (Conditions: VIN=2.5V, CIN=1µF, COUT=1µF) (Conditions: VIN=4V, CIN=1µF, COUT=1µF) Fig. 23: PSRR vs. Frequency SP6260HEK (1.2V) Fig. 21: PSRR vs. Frequency SP6260EEK (3.0V) 11/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator PACKAGE SPECIFICATION 5-PIN SOT-23 Unit: mm (inch) 12/13 Rev. 2.1.1 SP6260 200mA RF Low Noise LDO Regulator REVISION HISTORY Revision Date 0.1 Description Initial Data Sheet 2.0.0 10/27/2010 Reformat of datasheet Increased output current capabilities to 200mA Removal of 1.5V version curves Addition of the 1.2V version data and curves 2.1.0 01/26/2011 Corrected Electrical tables VOUT range for SP6260E, SP6260F and SP6260G Addition of “Output Current vs Output Voltage” curves figures 5, 6 and 7. 2.1.1 01/24/20 Updated to MaxLinear logo. Updated Ordering Information. CORPORATE HEADQUARTERS: 5966 La Place Court Suite 100 Carlsbad, CA 92008 Tel.: +1 (760) 692-0711 Fax: +1 (760) 444-8598 www.maxlinear.com The content of this document is furnished for informational use only, is subject to change without notice, and should not be construed as a commitment by Maxlinear, Inc. Maxlinear, Inc. Assumes no responsibility or liability for any errors or inaccuracies that may appear in the informational content contained in this guide. Complying with all applicable copyright laws is the responsibility of the user. Without limiting the rights under copyright, no part of this document may be reproduced into, stored in, or introduced into a retrieval system, or transmitted in any form or by any means (electronic, mechanical, photocopying, recording, or otherwise), or for any purpose, without the express written permission of Maxlinear, Inc. Maxlinear, Inc. Does not recommend the use of any of its products in life support applications where the failure or malfunction of the product can reasonably be expected to cause failure of the life support system or to significantly affect its safety or effectiveness. Products are not authorized for use in such applications unless Maxlinear, Inc. Receives, in writing, assurances to its satisfaction that: (a) the risk of injury or damage has been minimized; (b) the user assumes all such risks; (c) potential liability of Maxlinear, Inc. Is adequately protected under the circumstances. Maxlinear, Inc. May have patents, patent applications, trademarks, copyrights, or other intellectual property rights covering subject matter in this document. Except as expressly provided in any written license agreement from Maxlinear, Inc., the furnishing of this document does not give you any license to these patents, trademarks, copyrights, or other intellectual property. Maxlinear, the Maxlinear logo, and any Maxlinear trademarks, MxL, Full-Spectrum Capture, FSC, G.now, AirPHY and the Maxlinear logo are all on the products sold, are all trademarks of Maxlinear, Inc. or one of Maxlinear’s subsidiaries in the U.S.A. and other countries. All rights reserved. Other company trademarks and product names appearing herein are the property of their respective owners. © 2010 - 2020 Maxlinear, Inc. All rights reserved. 13/13 Rev. 2.1.1
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