CHARGE PUMPS Search Results
CHARGE PUMPS Result Highlights (5)
| Part | ECAD Model | Manufacturer | Description | Download | Buy | 
|---|---|---|---|---|---|
| MYC0409-NA-EVM | Murata Manufacturing Co Ltd | 72W, Charge Pump Module, non-isolated DC/DC Converter, Evaluation board | |||
| CS-USB2AMBMMC-001 |   | Amphenol CS-USB2AMBMMC-001 Amphenol USB 2.0 High Speed Certified [480 Mbps] USB Type A to Micro B Cable - USB 2.0 Type A Male to Micro B Male [Android Sync + 28 AWG Fast Charge Ready] 1m (3.3') | |||
| CS-USB2AMBMMC-002 |   | Amphenol CS-USB2AMBMMC-002 Amphenol USB 2.0 High Speed Certified [480 Mbps] USB Type A to Micro B Cable - USB 2.0 Type A Male to Micro B Male [Android Sync + 28 AWG Fast Charge Ready] 2m (6.6') | |||
| CS-USB3IN1WHT-000 |   | Amphenol CS-USB3IN1WHT-000 3-in-1 USB 2.0 Universal Apple/Android Charge & Sync Cable Adapter - USB Type A Male In - Apple Lightning (8-Pin) / Apple 30-Pin / USB Micro-B (Android) Male Out - White | |||
| REG71050DRVT |   | 60-mA, 5.0-V, Buck/Boost Charge Pump in ThinSOT-23 6-WSON -40 to 85 |   |   | 
CHARGE PUMPS Datasheets Context Search
| Catalog Datasheet | Type | Document Tags | |
|---|---|---|---|
| inverter 6 pin
Abstract: ICL7660 AN725 maxim BAV70 MAX660 MAX682 ICL7660 equivalent MAX1680 APP 
 | Original | MAX683: MAX684: MAX828: MAX829: MAX860: MAX861: MAX868: MAX870: MAX871: AN725, inverter 6 pin ICL7660 AN725 maxim BAV70 MAX660 MAX682 ICL7660 equivalent MAX1680 APP | |
| TC1121Contextual Info: Semiconductor, Inc. TC7660EV CHARGE PUMP EVALUATION KIT GENERAL DESCRIPTION The charge pump evaluation kit provides a means for evaluating TelCom’s entire family of charge pump DC-to-DC converters on a single board. The evaluation kit allows the user to evaluate TelCom’s standard charge pumps, the | OCR Scan | TC7660EV TC660, TCM828, TCM829, TC962, TC1044S, TC1121, TC7660, TC7660H, TC7660S, TC1121 | |
| working principle of an inverter
Abstract: AN718 APP718 CC0603 CC0805 MAX1681 MAX1682 MAX1697 MAX1697U MAX603 
 | Original | com/an718 MAX1681: MAX1682: MAX1697: AN718, APP718, Appnote718, working principle of an inverter AN718 APP718 CC0603 CC0805 MAX1681 MAX1682 MAX1697 MAX1697U MAX603 | |
| 20-lead lfcsp
Abstract: ADM8828 ICL7660 ADM660 ADM8660 ADM8829 ADM8830 ADM8839 ADM8840 ADP3605 
 | Original | ADM8839 ADM8840 MAX828 MAX829 OT-23 ADM8828) G03616-7 20-lead lfcsp ADM8828 ICL7660 ADM660 ADM8660 ADM8829 ADM8830 ADM8839 ADM8840 ADP3605 | |
| working principle of an inverter
Abstract: simple inverter schematic circuit AN718 APP718 CC0603 CC0805 MAX1681 MAX1682 MAX1697 MAX1697U 
 | Original | MAX1681: MAX1682: MAX1697: com/an718 AN718, APP718, Appnote718, working principle of an inverter simple inverter schematic circuit AN718 APP718 CC0603 CC0805 MAX1681 MAX1682 MAX1697 MAX1697U | |
| AN4500
Abstract: Inverting Charge Pump Voltage Doublers Switched-Capacitor Voltage Doublers Charge Pumps MAX1673 negative voltage inverter MAX1682 APP4500 dc-dc inverter 
 | Original | MAX1673 125mA MAX1682 com/an4500 AN4500, APP4500, Appnote4500, AN4500 Inverting Charge Pump Voltage Doublers Switched-Capacitor Voltage Doublers Charge Pumps negative voltage inverter APP4500 dc-dc inverter | |
| APP3330
Abstract: MAX4685 MAX985 an3330 
 | Original | com/an3330 MAX4685: MAX985: AN3330, APP3330, Appnote3330, APP3330 MAX4685 MAX985 an3330 | |
| 4.8v rechargeable NiMh
Abstract: MAX1044 MAX619 MAX660 MAX828 MAX829 MAX850 MAX860 MAX861 MAX864 
 | Original | MAX864 33kHz, 100kHz, 185kHz com/an669 AN669, APP669, Appnote669, 4.8v rechargeable NiMh MAX1044 MAX619 MAX660 MAX828 MAX829 MAX850 MAX860 MAX861 MAX864 | |
| APP782
Abstract: MAX1681 app78 
 | Original | 100mA com/an782 MAX1681: AN782, APP782, Appnote782, APP782 MAX1681 app78 | |
| OLED waveforms
Abstract: supercap charge ltc3459 efficiency design ideas CDRH2D11 LTC1844 LTC3403 LTC3408 LTC3459 LQH32CN 
 | Original | LTC3403 LTC3408 600mA CDRH2D11 C1608X5ROJ475M OLED waveforms supercap charge ltc3459 efficiency design ideas LTC1844 LTC3408 LTC3459 LQH32CN | |
| APP3441
Abstract: MAX1576 3441 an3441 
 | Original | MAX1576) MAX1576 com/an3441 MAX1576: AN3441, APP3441, Appnote3441, APP3441 3441 an3441 | |
| Contextual Info: THL6531_Rev.1.01_E THV6531 Boost converter / 2 channel charge pump Description Features THV6531 is a controller IC power supply system with boost converter and 2 channel charge pump circuit. The positive and negative charge pumps provide regulated TFT LCD gate-on and gate-off supplies. The | Original | THL6531 THV6531 THV6531 24-pin | |
| Contextual Info: THV6530_Rev.1.00_E THV6530 Boost converter / 2 channel charge pump Description Features THV6530 is a controller IC power supply system with boost converter and 2 channel charge pump circuit. The positive and negative charge pumps provide regulated TFT LCD gate-on and gate-off supplies. The | Original | THV6530 THV6530 16-pin | |
| max660
Abstract: Charge Pumps MAX1680 MAX1681 MAX1682 MAX1683 MAX1730 MAX868 
 | Original | MAX1683 MAX660 DI256a, com/an1876 MAX1680: MAX1681: MAX1682: MAX1683: MAX1730: MAX660: max660 Charge Pumps MAX1680 MAX1681 MAX1682 MAX1683 MAX1730 MAX868 | |
|  | |||
| APP4187
Abstract: MAX8648 
 | Original | com/an4187 MAX8648: AN4187, APP4187, Appnote4187, APP4187 MAX8648 | |
| PWM dimming
Abstract: 4c2p 
 | Original | MAX8847Y/MAX8847Z MAX8847Y/ PWM dimming 4c2p | |
| Contextual Info: EVALUATION KIT AVAILABLE MAX8847Y/MAX8847Z High-Performance Negative Charge Pump for 6 White LEDs in 3mm x 3mm Thin QFN General Description The MAX8847Y/MAX8847Z negative charge pumps drive up to 6 white LEDs with regulated constant current for display backlight applications. By utilizing an inverting charge pump and extremely low-dropout adaptive | Original | MAX8847Y/MAX8847Z MAX8847Y/MAX8847Z | |
| MAX660
Abstract: DC TO DC convertor Charge Pumps APP1876 MAX1680 MAX1681 MAX1682 MAX1683 MAX1730 MAX868 
 | Original | MAX1680: MAX1681: MAX1682: MAX1683: MAX1730: MAX660: MAX868: AN1876, APP1876, Appnote1876, MAX660 DC TO DC convertor Charge Pumps APP1876 MAX1680 MAX1681 MAX1682 MAX1683 MAX1730 MAX868 | |
| ic 814Contextual Info: EVALUATION KIT AVAILABLE MAX8848Y/MAX8848Z High-Performance Negative Charge Pump for 7 White LEDs in 3mm x 3mm Thin QFN General Description The MAX8848Y/MAX8848Z negative charge pumps drive up to 7 white LEDs with regulated constant current for display backlight applications. By utilizing an inverting charge pump and extremely low-dropout adaptive | Original | MAX8848Y/MAX8848Z MAX8848Y/ ic 814 | |
| Contextual Info: EVALUATION KIT AVAILABLE MAX8848Y/MAX8848Z High-Performance Negative Charge Pump for 7 White LEDs in 3mm x 3mm Thin QFN General Description The MAX8848Y/MAX8848Z negative charge pumps drive up to 7 white LEDs with regulated constant current for display backlight applications. By utilizing an inverting charge pump and extremely low-dropout adaptive | Original | MAX8848Y/MAX8848Z MAX8848Y/MAX8848Z Th/10 | |
| MAX622A
Abstract: inverter circuit dc to ac 2V to 100V MAX1682 MAX665 inverter circuit dc to dc 2V to 100V MAX1683 MAX660 MAX860 MAX861 MAX8860 
 | Original | 150mA) com/an2027 MAX665: MAX8860: AN2027, APP2027, Appnote2027, MAX622A inverter circuit dc to ac 2V to 100V MAX1682 MAX665 inverter circuit dc to dc 2V to 100V MAX1683 MAX660 MAX860 MAX861 MAX8860 | |
| T1433-2
Abstract: ETD20 MAX8630 MAX8630Y MAX8630YETD15 
 | Original | 125mA MAX8630Y/MAX8630Z 125mA T1433-1 T1433-2 T1433-2 ETD20 MAX8630 MAX8630Y MAX8630YETD15 | |
| TDFN-14
Abstract: MAX8630WETD15 MAX8630W T1433-2 ETD20 MAX8630 C1005X5R0J T1433 
 | Original | 125mA MAX8630W/MAX8630X 125mA MO229 T1433-1 T1433-2 TDFN-14 MAX8630WETD15 MAX8630W T1433-2 ETD20 MAX8630 C1005X5R0J T1433 | |
| tdfn14Contextual Info: 19-0825; Rev 0; 5/07 KIT ATION EVALU E L B A AVAIL 125mA 1x/1.5x Charge Pumps for 5 White LEDs in 3mm x 3mm TDFN Features The MAX8630W/MAX8630X charge pumps drive up to 5 white LEDs with regulated constant current up to 125mA total. By utilizing adaptive 1x/1.5x charge-pump modes | Original | 125mA MAX8630W/MAX8630X 125mA MO229 T1433-1 T1433-2 tdfn14 | |