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LM1937SF5

LM1937SF5

  • 厂商:

    HTC(泰进)

  • 封装:

  • 描述:

    LM1937SF5 - WHITE LED STEP-UP CONVERTER - HTC Korea TAEJIN Technology Co.

  • 详情介绍
  • 数据手册
  • 价格&库存
LM1937SF5 数据手册
WHITE LED STEP-UP CONVERTER LM1937 FEATURES • Inherently Matched LED Current • High Efficiency: 84% Typical • Drives Up to Four LEDs from a 3.2V Supply • Drives Up to Six LEDs from a 5V Supply • 36V Rugged Bipolar Switch • Fast 1.2MHz Switching Frequency • Uses Tiny 1mm Tall Inductors • Requires Only 0.22µF Output Capacitor • Moisture Sensitivity Level 3 SOT-23 5L (SOT-25) APPLICATIONS • Cellular Phones • PDAs, Handheld Computers • Digital Cameras • MP3 Players • GPS Receivers 1.SW 2.GND 3.FB 4.SHDN 5.VIN ORDERING INFORMATION Device LM1937SF5 Marking 1937 Package SOT-23 5L DESCRIPTION The LM1937 is a step-up DC/DC converter specifically designed to drive white LEDs with a constant current. The device can drive two, three or four LEDs in series from a Li-Ion cell. Series connection of the LEDs provides identical LED currents resulting in uniform brightness and eliminating the need for ballast resistors. The output capacitor can be as small as 0.22µF, saving space versus alternative solutions. A low 95mV feedback voltage minimizes power loss for better efficiency. TYPICAL APPLICATION CIRCUIT Figure 1. Li-Ion Powered Driver for Three White LEDs Jul. 2010 - Rev. 1.1.1 HTC -1- WHITE LED STEP-UP CONVERTER PIN DESCRIPTION LM1937 BLOCK DIAGRAM ABSOLUTE MAXIMUM RATING (Note 1) Input Voltage (Vin) SW Voltage FB Voltage SHDN Voltage Operating Temperature (Topr) Maximum Junction Temperature Storage Temperature (Tstg) Lead Temperature (soldering, 5 sec) 10 V 36 V 10 V 10 V -40 ~ +85 °C 125 °C -65 ~+125 °C 260 °C HTC -2- WHITE LED STEP-UP CONVERTER LM1937 SHDN SHDN SHDN SHDN SHDN OPERATION The LM1937 uses a constant frequency, current mode control scheme to provide excellent line and load regulation. Operation can be best understood by referring to the block diagram in Figure 2. At the start of each oscillator cycle, the SR latch is set, which turns on the power switch Q1. A voltage proportional to the switch current is added to a stabilizing ramp and the resulting sum is fed into the positive terminal of the PWM comparator A2. When this voltage exceeds the level at the negative input of A2, the SR latch is reset turning off the power switch. The level at the negative input of A2 is set by the error amplifier A1, and is simply an amplified version of the difference between the feedback voltage and the reference voltage of 95mV. In this manner, the error amplifier sets the correct peak current level to keep the output in regulation. If the error amplifier’s output increases, more current is delivered to the output; if it decreases, less current is delivered. Minimum Output Current The LM1937 can regulate three series LEDs connected at low output currents, down to approximately 4mA from a 4.2V supply, without pulse skipping, using the same external components as specified for 15mA operation. As current is further reduced, the device will begin skipping pulses. This will result in some low frequency ripple, although the LED current remains regulated on an average basis down to zero. HTC -3- WHITE LED STEP-UP CONVERTER APPLICATIONS INFORMATION Capacitor Selection LM1937 Inductor Selection A 22mH inductor is recommended for most LM1937 applications. Although small size and high efficiency are major concerns, the inductor should have low core losses at 1.2MHz and low DCR (copper wire resistance). Some inductors in this category with small size are listed in Table 1. The efficiency comparison of different inductors is shown in Figure 3. Table 1. Recommended Inductors The small size of ceramic capacitors makes them ideal for LM1937 applications. X5R and X7R types are recommended because they retain their capacitance over wider voltage and temperature ranges than other types such as Y5V or Z5U. A 1µF input capacitor and a 0.22µF output capacitor are sufficient for most LM1937 applications. Table 2. Recommended Ceramic Capacitor Manufacturers Diode Selection Schottky diodes, with their low forward voltage drop and fast reverse recovery, are the ideal choices for LM1937 applications. The forward voltage drop of a Schottky diode represents the conduction losses in the diode, while the diode capacitance (CT or CD) represents the switching losses. For diode selection, both forward voltage drop and diode capacitance need to be considered. Schottky diodes with higher current ratings usually have lower forward voltage drop and larger diode capacitance, which can cause significant switching losses at the 1.2MHz switching frequency of the LM1937. A Schottky diode rated at 100mA to 200mA is sufficient for most LM1937 applications. Some recommended Schottky diodes are listed in Table 3. Table 3. Recommended Schottky Diodes Figure 3. Efficiency Comparison of Different Inductors HTC -4- WHITE LED STEP-UP CONVERTER LED Current Control The LED current is controlled by the feedback resistor (R1 in Figure 1). The feedback reference is 95mV. The LED current is 95mV/R1. In order to have accurate LED current, precision resistors are preferred (1% is recommended). The formula and table for R1 selection are shown below. R1 = 95mV/ILED Table 4. R1 Resistor Value Selection LM1937 Dimming Control There are four different types of dimming control circuits: 1. Using a PWM Signal to SHDN Pin With the PWM signal applied to theSHDN pin, the LM1937 is turned on or off by the PWM signal. The LEDs operate at either zero or full current. The average LED current increases proportionally with the duty cycle of the PWM signal. A 0% duty cycle will turn off the LM1937 and corresponds to zero LED current. A 100% duty cycle corresponds to full current. The typical frequency range of the PWM signal is 1kHz to 10kHz. The magnitude of the PWM signal should be higher than the minimum SHDN voltage high. Open-Circuit Protection In the cases of output open circuit, when the LEDs are disconnected from the circuit or the LEDs fail, the feedback voltage will be zero. The LM1937 will then switch at a high duty cycle resulting in a high output voltage, which may cause the SW pin voltage to exceed its maximum 36V rating. A zener diode can be used at the output to limit the voltage on the SW pin (Figure 5). The zener voltage should be larger than the maximum forward voltage of the LED string. The current rating of the zener should be larger than 0.1mA. Figure 4. LED Driver with Open-Circuit Protection 2. Using a DC Voltage For some applications, the preferred method of brightness control is a variable DC voltage to adjust the LED current. The dimming control using a DC voltage is shown in Figure 5. As the DC voltage increases, the voltage drop on R2 increases and the voltage drop on R1 decreases. Thus, the LED current decreases. The selection of R2 and R3 will make the current from the variable DC source much smaller than the LED current and much larger than the FB pin bias current. For VDC range from 0V to 2V, the selection of resistors in Figure 7 gives dimming control of LED current from 0mA to 15mA. 3. Using a Filtered PWM Signal The filtered PWM signal can be considered as an adjustable DC voltage. It can be used to replace the variable DC voltage source in dimming control. The circuit is shown in Figure 6. Figure 5. Dimming Control Using a DC Voltage HTC -5- WHITE LED STEP-UP CONVERTER Figure 6. Dimming Control Using a Filtered PWM Signal LM1937 HTC -6-
LM1937SF5
物料型号: - 型号为LM1937SF5,标记为1937,封装为SOT-23 5L。

器件简介: - LM1937是一种升压型DC/DC转换器,专门设计用于以恒定电流驱动白光LED。该器件可以从锂离子电池驱动2、3或4个串联的LED。LED串联可以提供相同的LED电流,实现均匀亮度,并消除了对阻尼电阻的需求。输出电容可以小至0.22µF,相较于其他解决方案节省空间。低至95mV的反馈电压最小化了功率损失,提高了效率。

引脚分配: - 1. SW(开关引脚):连接电感/二极管,最小化该引脚的走线区域以减少EMI。 - 2. GND(地引脚):直接连接到本地接地平面。 - 3. FB(反馈引脚):参考电压为95mV,连接最低LED的阴极和电阻。 - 4. SHDN(关断引脚):连接到1.5V或更高以启用设备;0.4V或更低以禁用设备。 - 5. VIN(输入供电引脚):必须局部旁路。

参数特性: - 最小工作电压:2.5V - 最大工作电压:10V - 反馈电压:86~104mV - FB引脚偏置电流:10~100nA - 供电电流:1.9~2.5mA - 开关频率:0.8~1.6MHz - 最大占空比:85%~90% - 开关电流限制:320mA - 开关VcesAT:350mV - 开关漏电流:0.01~5µA - SHDN电压高:1.5V - SHDN电压低:0.4V - SHDN引脚偏置电流:65µA

功能详解: - LM1937采用恒定频率、电流模式控制方案,提供出色的线路和负载调节。通过参考方块图理解操作。每个振荡周期开始时,SR锁存器设置,打开电源开关。与开关电流成比例的电压加到稳定斜坡上,结果输入到PWM比较器的正端。当该电压超过负输入端的电平时,SR锁存器复位,关闭电源开关。负输入端的电平由误差放大器设定,是反馈电压和95mV参考电压差值的放大版本。通过这种方式,误差放大器设定正确的峰值电流水平以保持输出调节。

应用信息: - 推荐使用22mH电感器,具有1.2MHz的低核心损耗和低直流电阻(DCR)。推荐使用X5R和X7R类型的陶瓷电容器,因为它们比其他类型(如Y5V或Z5U)在更宽的电压和温度范围内保持电容。推荐使用肖特基二极管,因为它们的正向电压降小且反向恢复快。

封装信息: - 封装为SOT-23 5L(SOT-25)。
LM1937SF5 价格&库存

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