LT1767EMS8E-3.3#PBF

LT1767EMS8E-3.3#PBF

  • 厂商:

    AD(亚德诺)

  • 封装:

    TSSOP8

  • 描述:

    单片式、1.5A、1.25MHZ 降压型开关稳压器

  • 详情介绍
  • 数据手册
  • 价格&库存
LT1767EMS8E-3.3#PBF 数据手册
LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 Monolithic 1.5A, 1.25MHz Step-Down Switching Regulators Features n n n n n n n n n n n n n Description 1.5A Switch in a Small MSOP Package Constant 1.25MHz Switching Frequency High Power Exposed Pad (MS8E) Package Wide Operating Voltage Range: 3V to 25V High Efficiency 0.22Ω Switch 1.2V Feedback Reference Voltage Fixed Output Voltages of 1.8V, 2.5V, 3.3V, 5V 2% Overall Output Tolerance Uses Low Profile Surface Mount Components Low Shutdown Current: 6µA Synchronizable to 2MHz Current Mode Loop Control Constant Maximum Switch Current Rating at All Duty Cycles* Applications n n n n n The LT®1767 is a 1.25MHz monolithic buck switching regulator. A high efficiency 1.5A, 0.22Ω switch is included on the die together with all the control circuitry required to complete a high frequency, current mode switching regulator. Current mode control provides fast transient response and excellent loop stability. New design techniques achieve high efficiency at high switching frequencies over a wide operating range. A low dropout internal regulator maintains consistent performance over a wide range of inputs from 24V systems to Li-Ion batteries. An operating supply current of 1mA improves efficiency, especially at lower output currents. Shutdown reduces quiescent current to 6µA. Maximum switch current remains constant at all duty cycles. Synchronization allows an external logic level signal to increase the internal oscillator from 1.5MHz to 2MHz. The LT1767 is available in an 8-pin MSOP fused lead-frame package and a low thermal resistance exposed pad package. Full cycle-by-cycle current limit and thermal shutdown are provided. High frequency operation allows the reduction of input and output filtering components and permits the use of chip inductors. DSL Modems Portable Computers Wall Adapters Battery-Powered Systems Distributed Power L, LT, LTC, LTM, Linear Technology, the Linear logo and Burst Mode are registered trademarks of Linear Technology Corporation. All other trademarks are the property of their respective owners. Protected by U.S. Patents, including 6611131, 6498466. Typical Application Efficiency vs Load Current 12V to 3.3V Step-Down Converter 95 D2 CMDSH-3 VIN 12V C3 2.2µF CERAMIC BOOST VIN OPEN OR HIGH = ON L1 5µH VSW LT1767-3.3 SHDN SYNC OUTPUT 3.3V 1.2A* FB GND VC CC 1.5nF RC 4.7k D1 UPS120 C1 10µF CERAMIC EFFICIENCY (%) C2 0.1µF 85 80 75 70 *MAXIMUM OUTPUT CURRENT IS SUBJECT TO THERMAL DERATING. VIN = 10V VOUT = 5V 90 1767 TA01 0 0.2 0.4 0.6 0.8 1 LOAD CURRENT (A) 1.2 1.4 1767 TA01a 1767fb For more information www.linear.com/LT1767 1 LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 Absolute Maximum Ratings (Note 1) Input Voltage ............................................................ 25V BOOST Pin Above SW .............................................. 20V Max BOOST Pin Voltage.............................................35V SHDN Pin.................................................................. 25V FB Pin Voltage ............................................................ 6V FB Pin Current.......................................................... 1mA SYNC Pin Current ................................................... 1mA Operating Junction Temperature Range (Note 2) LT1767E ............................................ – 40°C to 125°C Storage Temperature Range .................. –65°C to 150°C Lead Temperature (Soldering, 10 sec) ................. 300°C Pin Configuration TOP VIEW BOOST VIN SW GND 1 2 3 4 TOP VIEW 8 7 6 5 BOOST VIN SW GND SYNC VC FB SHDN MS8 PACKAGE 8-LEAD PLASTIC MSOP 1 2 3 4 8 7 6 5 SYNC VC FB SHDN MS8E PACKAGE 8-LEAD PLASTIC MSOP TJMAX = 125°C, θJA = 110°C/W GROUND PIN CONNECTED TO LARGE COPPER AREA TJMAX = 125°C, θJA = 40°C/W GROUND PIN CONNECTED TO LARGE COPPER AREA ON PCB Order Information LEAD FREE FINISH TAPE AND REEL PART MARKING PACKAGE DESCRIPTION TEMPERATURE RANGE LT1767EMS8#PBF LT1767EMS8-1.8#PBF LT1767EMS8#TRPBF LTLS 8-Lead Plastic MSOP –40°C to 125°C LT1767EMS8-1.8#TRPBF LTWG 8-Lead Plastic MSOP –40°C to 125°C LT1767EMS8-2.5#PBF LT1767EMS8-2.5#TRPBF LTWD 8-Lead Plastic MSOP –40°C to 125°C LT1767EMS8-3.3#PBF LT1767EMS8-3.3#TRPBF LTWE 8-Lead Plastic MSOP –40°C to 125°C LT1767EMS8-5#PBF LT1767EMS8-5#TRPBF LTWF 8-Lead Plastic MSOP –40°C to 125°C LT1767EMS8E#PBF LT1767EMS8E#TRPBF LTZG 8-Lead Plastic MSOP, Exposed Pad –40°C to 125°C LT1767EMS8E-1.8#PBF LT1767EMS8E-1.8#TRPBF LTZH 8-Lead Plastic MSOP, Exposed Pad –40°C to 125°C LT1767EMS8E-2.5#PBF LT1767EMS8E-2.5#TRPBF LTZJ 8-Lead Plastic MSOP, Exposed Pad –40°C to 125°C LT1767EMS8E-3.3#PBF LT1767EMS8E-3.3#TRPBF LTZK 8-Lead Plastic MSOP, Exposed Pad –40°C to 125°C LT1767EMS8E-5#PBF LT1767EMS8E-5#TRPBF LTZL 8-Lead Plastic MSOP, Exposed Pad –40°C to 125°C Consult LTC Marketing for parts specified with wider operating temperature ranges. Consult LTC Marketing for information on nonstandard lead based finish parts. For more information on lead free part marking, go to: http://www.linear.com/leadfree/ For more information on tape and reel specifications, go to: http://www.linear.com/tapeandreel/ 2 1767fb For more information www.linear.com/LT1767 LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 Electrical Characteristics The l denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. VIN = 15V, VC = 0.8V, Boost = VIN + 5V, SHDN, SYNC and switch open unless otherwise noted. PARAMETER CONDITIONS MIN TYP MAX Maximum Switch Current Limit TA = 0°C to 125°C TA = < 0°C 1.5 1.3 2 3 3 Oscillator Frequency 3.3V < VIN < 25V 1.1 1.1 1.25 1.4 1.5 MHz MHz 330 400 500 mV mV 2.6 2.73 V 1 1.3 mA 6 20 45 µA µA l Switch On Voltage Drop ISW = –1.5A, 0°C ≤ TA ≤ 125°C and –1.3A, TA < 0°C l VIN Undervoltage Lockout (Note 3) l VIN Supply Current VFB = VNOM + 17% l Shutdown Supply Current VSHDN = 0V, VIN = 25V, VSW = 0V 2.47 l Feedback Voltage 3V < VIN < 25V, 0.4V < VC < 0.9V LT1767 (Adj) (Note 3) 1.182 1.176 1.2 1.218 1.224 V V LT1767-1.8 l 1.764 1.8 1.836 V LT1767-2.5 l 2.45 2.5 2.55 V LT1767-3.3 l 3.234 3.3 3.366 V LT1767-5 l 4.9 5 5.1 V –0.25 –0.5 µA 10.5 14.7 19 29 15 21 27.5 42 21 30 39 60 kΩ kΩ kΩ kΩ 150 350 l 500 850 1300 µMho VFB = VNOM – 17% l 80 120 160 µA VFB = VNOM + 17% l 70 110 180 µA FB Input Current LT1767 (Adj) l LT1767-1.8 LT1767-2.5 LT1767-3.3 LT1767-5 l l l l Error Amp Voltage Gain 0.4V < VC < 0.9V Error Amp Transconductance ∆IVC = ±10µA VC Pin Source Current VC Pin Sink Current VC Pin to Switch Current Transconductance Duty Cycle = 0% VC Pin 1.5A ISW Threshold Maximum Switch Duty Cycle A A l FB Input Resistance VC Pin Minimum Switching Threshold UNITS VC = 1.2V, ISW = 400mA l 85 80 2.5 A/V 0.35 V 0.9 V 90 % % Minimum Boost Voltage Above Switch ISW = –1.5A, 0°C ≤ TA ≤ 125°C and –1.3A, TA < 0°C l 1.8 2.7 V Boost Current ISW = – 0.5A (Note 4) ISW = –1.5A, 0°C ≤ TA ≤ 125°C and –1.3A, TA < 0°C (Note 4) l l 10 30 15 45 mA mA 1.27 1.33 1.40 V SHDN Input Current (Shutting Down) SHDN = 60mV Above Threshold l –7 –10 –13 µA SHDN Threshold Current Hysteresis SHDN = 100mV Below Threshold l 4 7 10 µA 1.5 2.2 V SHDN Threshold Voltage l SYNC Threshold Voltage SYNC Input Frequency SYNC Pin Resistance 1.5 ISYNC = 1mA 2 20 MHz kΩ 1767fb For more information www.linear.com/LT1767 3 LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 Electrical Characteristics Note 3: Minimum input voltage is defined as the voltage where the internal regulator enters lockout. Actual minimum input voltage to maintain a regulated output will depend on output voltage and load current. See Applications Information. Note 4: Current flows into the BOOST pin only during the on period of the switch cycle. Note 1: Stresses beyond those listed under Absolute Maximum Ratings may cause permanent damage to the device. Exposure to any Absolute Maximum Rating condition for extended periods may affect device reliability and lifetime. Note 2: The LT1767E is guaranteed to meet performance specifications from 0°C to 125°C. Specifications over the – 40°C to 125°C operating junction temperature range are assured by design, characterization and correlation with statistical process controls. TYPICAL PERFORMANCE Characteristics FB vs Temperature (Adj) Switch On Voltage Drop 1.22 Oscillator Frequency 400 1.20 1.19 1.18 –50 –25 0 25 50 75 TEMPERATURE (°C) 100 25°C 300 1.40 250 –40°C 200 150 1.35 1.30 1.25 100 1.20 50 1.15 0 125 1.45 FREQUENCY (MHz) SWITCH VOLTAGE (mV) 1.21 1.50 125°C 350 FB VOLTAGE (V) TA = 25°C, unless otherwise noted. 1 0.5 SWITCH CURRENT (A) 0 1767 G01 1.10 –50 1.5 –25 1767 G02 0 25 50 75 TEMPERATURE (°C) 100 125 1767 G03 SHDN Threshold vs Temperature SHDN Supply Current vs VIN SHDN = 0V 1.34 1.32 –10 SHUTTING DOWN 5 SHDN INPUT (µA) VIN CURRENT (µA) SHDN THRESHOLD (V) 1.36 4 3 2 –25 0 25 50 75 TEMPERATURE (°C) 100 125 0 –8 –6 –4 STARTING UP –2 1 1767 G04 4 –12 6 1.38 1.30 –50 SHDN IP Current vs Temperature 7 1.40 0 5 10 15 VIN (V) 20 25 30 1767 G05 0 –50 –25 0 25 50 75 TEMPERATURE (°C) 100 125 1767 G06 1767fb For more information www.linear.com/LT1767 LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 TYPICAL PERFORMANCE Characteristics Minimum Minimum Input Input Voltage, Voltage, 3.3V 3.3V Out Out SHDN Supply Current VIN = 15V 5.5 VIN CURRENT (µA) INPUT VOLTAGE (V) 6.0 TO START 5.0 4.5 4.0 3.5 2.5 1 250 1000 200 800 150 100 10 100 LOAD CURRENT (mA) 0 1k MINIMUM INPUT VOLTAGE 600 400 200 50 TO RUN 3.0 1200 300 BOOST DIODE TIED TO VOUT BOOST DIODE TIED TO VIN 6.5 Input Supply Current VIN CURRENT (µA) 7.0 TA = 25°C, unless otherwise noted. 0.2 0 1767 G07 0.4 0.6 0.8 1 1.2 SHUTDOWN VOLTAGE (V) 0 1.4 0 5 10 15 20 INPUT VOLTAGE (V) 25 1767 G08 30 SWITCH CURRENT 1.0 20 0.5 10 FB CURRENT 0 0.2 0.4 0.6 0.8 FEEDBACK VOLTAGE (V) 1.5 1.3 L = 4.7µH OUTPUT CURRENT (A) 1.5 Maximum Load Current, VOUT = 2.5V 1.5 OUTPUT CURRENT (A) SWITCH PEAK CURRENT (A) 40 FB INPUT CURRENT (µA) 2.0 0 1767 G09 Maximum Load Current, VOUT = 5V Current Limit Foldback 30 1.1 0.9 L = 2.2µH 0.7 L = 4.7µH 1.3 L = 2.2µH 1.1 L = 1.5µH 0.9 L = 1.5µH 1 0 1.2 1767 G10 0.5 0 5 10 15 INPUT VOLTAGE (V) 20 25 1767 G11 0.7 0 5 10 15 INPUT VOLTAGE (V) 20 25 1767 G12 1767fb For more information www.linear.com/LT1767 5 LT1767/LT1767-1.8/ LT1767-2.5/LT1767-3.3/LT1767-5 PIN FUNCTIONS FB: The feedback pin is used to set output voltage using an external voltage divider that generates 1.2V at the pin with the desired output voltage. The fixed voltage 1.8V, 2.5V, 3.3V and 5V versions have the divider network included internally and the FB pin is connected directly to the output. If required, the current limit can be reduced during start up or short-circuit when the FB pin is below 0.5V (see the Current Limit Foldback graph in the Typical Performance Characteristics section). An impedance of less than 5kΩ (adjustable part only) at the FB pin is needed for this feature to operate. and the GND pin short. The GND pin of the MS8 package is directly attached to the internal tab. This pin should be attached to a large copper area to improve thermal resistance. The exposed pad of the MS8E package is also connected to GND. This should be soldered to a large copper area to improve its thermal resistance. BOOST: The BOOST pin is used to provide a drive voltage, higher than the input voltage, to the internal bipolar NPN power switch. Without this added voltage, the typical switch voltage loss would be about 1.5V. The additional boost voltage allows the switch to saturate and voltage loss approximates that of a 0.22Ω FET structure. SYNC: The sync pin is used to synchronize the internal oscillator to an external signal. It is directly logic compatible and can be driven with any signal between 20% and 80% duty cycle. The synchronizing range is equal to initial operating frequency, up to 2MHz. See Synchronization in Applications Information section for details. When not in use, this pin should be grounded. VIN: This is the collector of the on-chip power NPN switch. This pin powers the internal circuitry and internal regulator. At NPN switch on and off, high dI/dt edges occur on this pin. Keep the external bypass capacitor and catch diode close to this pin. All trace inductance in this path will create a voltage spike at switch off, adding to the VCE voltage across the internal NPN. GND: The GND pin acts as the reference for the regulated output, so load regulation will suffer if the “ground” end of the load is not at the same voltage as the GND pin of the IC. This condition will occur when load current or other currents flow through metal paths between the GND pin and the load ground point. Keep the ground path short between the GND pin and the load and use a ground plane when possible. Keep the path between the input bypass 6 VSW: The switch pin is the emitter of the on-chip power NPN switch. This pin is driven up to the input pin voltage during switch on time. Inductor current drives the switch pin negative during switch off time. Negative voltage must be clamped with an external catch diode with a VBR
LT1767EMS8E-3.3#PBF
物料型号: - LT1767/LT1767-1.8/LT1767-2.5/LT1767-3.3/LT1767-5

器件简介: - LT1767是一款单片1.25MHz降压开关稳压器,内置1.5A、0.22Ω高效率开关,提供恒定的1.25MHz开关频率,适用于3V至25V的宽电压范围,具有高效率和低关闭电流等特点。

引脚分配: - 引脚包括BOOST、VIN、SW、GND、SYNC、VC、FB和SHDN,具体分配详见PDF文档中的“Pin Configuration”部分。

参数特性: - 包括最大开关电流限制、振荡频率、开关导通电压降、欠压锁定电压、供电电流、关闭模式供电电流、反馈电压、FB输入电流、FB输入电阻等,具体参数详见PDF文档中的“Electrical Characteristics”部分。

功能详解: - LT1767具有电流模式控制、内部时钟和两个反馈回路,用于控制电源开关的占空比。通过使用BOOST引脚提供高于输入电压的电压,实现高效率开关。

应用信息: - 适用于DSL调制解调器、便携式电脑、电源适配器、电池供电系统和分布式电源等。

封装信息: - LT1767提供8引脚塑料MSOP封装和低热阻暴露垫封装,具体封装描述和温度范围详见PDF文档中的“Package Description”部分。
LT1767EMS8E-3.3#PBF 价格&库存

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LT1767EMS8E-3.3#PBF
  •  国内价格
  • 1+65.60351
  • 3+61.59088
  • 10+53.13441
  • 25+47.70837

库存:0

LT1767EMS8E-3.3#PBF
    •  国内价格
    • 1+53.13600

    库存:600