电子设计工程
電子設計工程
전자설계공정
ELECTRONIC DESIGN ENGINEERING
2012年
5期
97-99,102
,共4页
LED%DC/DC%恒流电源%LM2596-ADJ%高效率
LED%DC/DC%恆流電源%LM2596-ADJ%高效率
LED%DC/DC%항류전원%LM2596-ADJ%고효솔
LED%DC/DC%constant-current source%LM2596-ADJ%high efficiency
针对当前市面上DC/DCLED(发光二极管)专用恒流控制芯片价格高、不易购买的情况,阐述了基于市面常用DC/DC稳压器的高效率恒流稳压电源的通用设计方法,并给出了基于LM2596-ADJ开关稳压器的设计实例。与传统的恒压电源相比.电路增加了阻值很小的采样电阻以及由通用运算放大器组成的电压反馈回路和电流采样、放大反馈回路.同时增加了电压、电流反馈回路自动切换电路,使电路能根据负载大小在恒压和恒流模式之间自动切换。实验数据表明.基于该方法设计的LED恒流稳压电源恒流精度高,误差小于1%,效率超过87%,且电路工作稳定,元件取材广泛.价格低廉。
針對噹前市麵上DC/DCLED(髮光二極管)專用恆流控製芯片價格高、不易購買的情況,闡述瞭基于市麵常用DC/DC穩壓器的高效率恆流穩壓電源的通用設計方法,併給齣瞭基于LM2596-ADJ開關穩壓器的設計實例。與傳統的恆壓電源相比.電路增加瞭阻值很小的採樣電阻以及由通用運算放大器組成的電壓反饋迴路和電流採樣、放大反饋迴路.同時增加瞭電壓、電流反饋迴路自動切換電路,使電路能根據負載大小在恆壓和恆流模式之間自動切換。實驗數據錶明.基于該方法設計的LED恆流穩壓電源恆流精度高,誤差小于1%,效率超過87%,且電路工作穩定,元件取材廣汎.價格低廉。
침대당전시면상DC/DCLED(발광이겁관)전용항류공제심편개격고、불역구매적정황,천술료기우시면상용DC/DC은압기적고효솔항류은압전원적통용설계방법,병급출료기우LM2596-ADJ개관은압기적설계실례。여전통적항압전원상비.전로증가료조치흔소적채양전조이급유통용운산방대기조성적전압반궤회로화전류채양、방대반궤회로.동시증가료전압、전류반궤회로자동절환전로,사전로능근거부재대소재항압화항류모식지간자동절환。실험수거표명.기우해방법설계적LED항류은압전원항류정도고,오차소우1%,효솔초과87%,차전로공작은정,원건취재엄범.개격저렴。
To the question that the special current controller for LED driver is expensive and hard to get from the market now, a general method on designing a high efficiency constant-current source for LED driver with the general DC/DC regulators is presented, which are cheap and can be easily got. A design example based on the adjustable output version of LM2596 is presented. Compared with the conventional DCJDC regulators, a current feedback made up of a small sense resistor and an operational amplifier are utilized to control the output current by monitoring and amplifying the voltage drop across the sense resistor. In order to clamp the output voltage does not exceed the maximum for a no load condition at the output, a voltage feedback consisting of a resistor divider and an operational amplifier is used. The example circuit can operate at the constant- current mode and constant-voltage mode automatically according to load. The experimental results show that the circuit works stably, and it presents over 87% efficiency and less than 1% current error.