可订购部件
型号 | 可订购的器件编号 | 订购代码(12NC) | 封装 | 从经销商处购买 |
---|---|---|---|---|
NPS4053GV-Q100 | NPS4053GV-Q100H | 935691532125 | SOT457 | 订单产品 |
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Click here for more information5.5 V, 55 mOhm load switch with precision adjustable current limit
The NPS4053-Q100 is a 5.5 V, 55 mΩ load switch with precision adjustable current limit from 110 mA to 2.5 A.
The NPS4053-Q100 switch limits the output current to a constant current by using a constant-current mode when the output load exceeds the current limit threshold or shorted. An internal voltage comparator disables the load switch when the output voltage is higher than the input to protect devices on the input side of the switch. The FLG pin is an active low output to indicate overcurrent, over temperature and reverse voltage conditions.
This product has been qualified to the Automotive Electronics Council (AEC) standard Q100 (Grade 1) and is suitable for use in automotive applications.
Automotive product qualification in accordance with AEC-Q100 (Grade 1)
Specified from -40 °C to +125 °C
Input operating voltage range (VIN): 2.5 V to 5.5 V
Maximum continuous current (IMAX): 2 A
ON resistance (RDS(on)):
VIN = 5.5 V: 55 mΩ (typical)
VIN = 3.6 V: 65 mΩ (typical)
VIN = 2.5 V: 80 mΩ (typical)
Adjustable current limit: 110 mA to 2.5 A
±6 % current limit accuracy at 1.2 A
ILIM pin protection: can be shorted to ground or left floating
Constant current during current limit
No body diode when disabled (no current path from pin OUT to pin IN)
Active reverse voltage protection
Built in soft start
UL 62368 recognition
SOT457 (TSOP6) and SOT8044-1 (HWSON6) package option
ESD protection:
HBM: ANSI/ESDA/JEDEC JS-001 class 2 exceeds 2000 V
CDM: ANSI/ESDA/JEDEC JS-002 class C2a exceeds 500 V
IEC 61000-4-2 contact discharge 8000 V
IEC 61000-4-2 air-gap discharge 15000 V
USB ports/hubs
Power distribution in Electronic Control Unit
Current limiting circuits
Note: Connect at least 120 µF capacitor at output for USB port application, other applications except USB choose output capacitor according to actual transient requirements.
型号 | 可订购的器件编号,(订购码(12NC)) | 状态 | 标示 | 封装 | 外形图 | 回流焊/波峰焊 | 包装 |
---|---|---|---|---|---|---|---|
NPS4053GV-Q100 | NPS4053GV-Q100H (935691532125) |
Active | s3 |
TSOP6 (SOT457) |
SOT457 |
REFLOW_BG-BD-1
WAVE_BG-BD-1 |
SOT457_125 |
文件名称 | 标题 | 类型 | 日期 |
---|---|---|---|
NPS4053_Q100 | 5.5 V, 55 mOhm load switch with precision adjustable current limit | Data sheet | 2023-10-20 |
AN90045 | Nexperia load switch ICs | Application note | 2023-08-08 |
AN90054 | How to configure the fault and current limit pins of Nexperia NPS40XX load switch ICs | Application note | 2024-04-24 |
Nexperia_document_guide_MiniLogic_PicoGate_201901 | PicoGate leaded logic portfolio guide | Brochure | 2019-01-07 |
SOT457 | 3D model for products with SOT457 package | Design support | 2022-11-04 |
Nexperia_package_poster | Nexperia package poster | Leaflet | 2020-05-15 |
TSOP6_SOT457_mk | plastic, surface-mounted package (TSOP6); 6 leads; 0.95 mm pitch; 2.9 mm x 1.5 mm x 1 mm body | Marcom graphics | 2017-01-28 |
SOT457 | plastic, surface-mounted package (SC-74; TSOP6); 6 leads | Package information | 2023-03-03 |
SOT457_125 | TSOP6; Reel pack for SMD, 7"; Q3/T4 product orientation | Packing information | 2020-04-21 |
REFLOW_BG-BD-1 | Reflow soldering profile | Reflow soldering | 2021-04-06 |
MAR_SOT457 | MAR_SOT457 Topmark | Top marking | 2013-06-03 |
UM90023 | NEVB-NPS4053 load switch evalsuation board | User manual | 2023-08-07 |
WAVE_BG-BD-1 | Wave soldering profile | Wave soldering | 2021-09-08 |
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文件名称 | 标题 | 类型 | 日期 |
---|---|---|---|
SOT457 | 3D model for products with SOT457 package | Design support | 2022-11-04 |
型号 | Orderable part number | Ordering code (12NC) | 状态 | 包装 | Packing Quantity | 在线购买 |
---|---|---|---|---|---|---|
NPS4053GV-Q100 | NPS4053GV-Q100H | 935691532125 | Active | SOT457_125 | 3,000 | 订单产品 |
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The interactive datasheets are based on the Nexperia MOSFET precision electrothermal models. With our interactive datasheets you can simply specify your own conditions interactively. Start by changing the values of the conditions. You can do this by using the sliders in the condition fields. By dragging the sliders you will see how the MOSFET will perform at the new conditions set.