--- 產(chǎn)品詳情 ---
Topology | Buck-Boost |
Vin (Min) (V) | 2 |
Vin (Max) (V) | 5.5 |
Vout (Max) (V) | 5.5 |
Vout (Min) (V) | 1.2 |
Duty cycle (Max) (%) | 100 |
Features | Enable, Frequency Synchronization, Light Load Efficiency, Load Disconnect, Synchronous Rectification, UVLO Fixed |
Switch current limit (Typ) (A) | 2.2 |
Switching frequency (Min) (kHz) | 2200 |
Switching frequency (Max) (kHz) | 2400 |
Iq (Typ) (mA) | 0.04 |
Iout (Max) (A) | 0.8 |
Rating | Catalog |
- Up to 96% Efficiency
- 1200-mA Output Current at 3.3 V in Step-Down
Mode (VIN = 3.6 V to 5.5 V) - Up to 800-mA Output Current at 3.3 V in Boost
Mode (VIN > 2.4 V) - Automatic Transition Between Step-Down and
Boost Mode - Device Quiescent Current less than 50 μA
- Input Voltage Range: 2 V to 5.5 V
- Fixed and Adjustable Output Voltage Options
from 1.2 V to 5.5 V - Power Save Mode for Improved Efficiency at
Low-Output Power - Forced Fixed Frequency Operation and
Synchronization Possible - Load Disconnect During Shutdown
- Output Overvoltage Protection
- Overtemperature Protection
- Available in Small 20-Pin, 2.126 mm ×
1.922 mm, DSBGA Package
The TPS6301x devices provide a power supply solution for products powered by either a two-cell or three-cell alkaline, NiCd or NiMH battery, or a one-cell Li-Ion or Li-polymer battery. Output currents can go as high as 1200 mA while using a single-cell Li-Ion or Li-Polymer Battery, and discharge it down to 2.5 V or lower. The buck-boost converter is based on a fixed-frequency, pulse-width-modulation (PWM) controller using synchronous rectification to obtain maximum efficiency. At low load currents, the converter enters power save mode to maintain high efficiency over a wide load current range. The power save mode can be disabled, forcing the converter to operate at a fixed switching frequency. The maximum average current in the switches is limited to a typical value of 2200 mA. The output voltage is programmable using an external resistor divider, or is fixed internally on the chip. The converter can be disabled to minimize battery drain. During shutdown, the load is disconnected from the battery. The device is packaged in a 20-pin DSBGA package measuring 2.126 mm × 1.922 mm (YFF).
為你推薦
-
TI數(shù)字多路復(fù)用器和編碼器SN54HC1512022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN54LS1532022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器CD54HC1472022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器CY74FCT2257T2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74LVC257A2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74LVC157A2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74ALS258A2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74ALS257A2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74ALS157A2022-12-23 15:12
-
TI數(shù)字多路復(fù)用器和編碼器SN74AHCT1582022-12-23 15:12
-
【PCB設(shè)計必備】31條布線技巧2023-08-03 08:09
相信大家在做PCB設(shè)計時,都會發(fā)現(xiàn)布線這個環(huán)節(jié)必不可少,而且布線的合理性,也決定了PCB的美觀度和其生產(chǎn)成本的高低,同時還能體現(xiàn)出電路性能和散熱性能的好壞,以及是否可以讓器件的性能達到最優(yōu)等。在上篇內(nèi)容中,小編主要分享了PCB線寬線距的一些設(shè)計規(guī)則,那么本篇內(nèi)容,將針對PCB的布線方式,做個全面的總結(jié)給到大家,希望能夠?qū)︷B(yǎng)成良好的設(shè)計習(xí)慣有所幫助。1走線長度1675瀏覽量 -
電動汽車直流快充方案設(shè)計【含參考設(shè)計】2023-08-03 08:08
大功率直流充電系統(tǒng)架構(gòu)大功率直流充電設(shè)計標(biāo)準國家大功率充電標(biāo)準“Chaoji”技術(shù)標(biāo)準設(shè)計目標(biāo)是未來可實現(xiàn)電動汽車充電5分鐘行駛400公里。“Chaoji”技術(shù)標(biāo)準主要設(shè)計參數(shù)如下:最大電壓:目前1000V(可擴展到1500V);最大電流:帶冷卻系統(tǒng)500A(可擴展到600A);不帶冷卻系統(tǒng)150-200A;最大功率:900KW。大功率直流充電系統(tǒng)架構(gòu)大功率 -
Buck電路的原理及器件選型指南2023-07-31 22:28
-
100W USB PD 3.0電源2023-07-31 22:27
-
千萬不要忽略PCB設(shè)計中線寬線距的重要性2023-07-31 22:27
想要做好PCB設(shè)計,除了整體的布線布局外,線寬線距的規(guī)則也非常重要,因為線寬線距決定著電路板的性能和穩(wěn)定性。所以本篇以RK3588為例,詳細為大家介紹一下PCB線寬線距的通用設(shè)計規(guī)則。要注意的是,布線之前須把軟件默認設(shè)置選項設(shè)置好,并打開DRC檢測開關(guān)。布線建議打開5mil格點,等長時可根據(jù)情況設(shè)置1mil格點。PCB布線線寬01布線首先應(yīng)滿足工廠加工能力,1765瀏覽量 -
基于STM32的300W無刷直流電機驅(qū)動方案2023-07-06 10:02
-
上新啦!開發(fā)板僅需9.9元!2023-06-21 17:43
-
參考設(shè)計 | 2KW AC/DC數(shù)字電源方案2023-06-21 17:43
-
千萬不能小瞧的PCB半孔板2023-06-21 17:34