Customized PCBs & Electronic Components — All in One Place
| Datasheet | Image | Part Number | Manufacturers | Stock | Pricing(USD) | Quantity | Description |
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NJM2741F-TE1 | Nisshinbo Micro Devices Inc. | 5000 | 0.38 |
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IC OPAMP GP 1 CIRCUIT SOT23-5 |
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MAX40056FAUA/V+ | Analog Devices Inc./Maxim Integrated | 5000 | 3.12 |
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IC CURRENT SENSE 1 CIRCUIT 8UMAX |
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LM224KAN | Rochester Electronics, LLC | 5000 | 0.31 |
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IC OPAMP GP 4 CIRCUIT 14DIP |
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TL072IDG4 | Rochester Electronics, LLC | 5000 | 0.31 |
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IC OPAMP JFET 2 CIRCUIT 8SOIC |
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OPA336NJ/3KG4 | Texas Instruments | 5000 | 0.68 |
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IC OPAMP GP 1 CIRCUIT SOT23-5 |
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CA5420AE | Rochester Electronics, LLC | 5000 | 1.53 |
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IC OPAMP GP 1 CIRCUIT 16DIP |
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INA191A1IYFDR | Texas Instruments | 5000 | 1.82 |
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IC CURR SENSE 1 CIRCUIT 6DSBGA |
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LMR824FVJ-E2 | Rohm Semiconductor | 5000 | 0.66 |
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IC OPAMP GP 4 CIRCUIT 14TSSOP |
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BU7262SNUX-TR | Rohm Semiconductor | 5000 | 0.38 |
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IC CMOS 2 CIRCUIT VSON008X2030 |
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TLV2472AIP | Rochester Electronics, LLC | 5000 | 2.24 |
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IC CMOS 2 CIRCUIT 8DIP |
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LM224KN | Rochester Electronics, LLC | 5000 | 0.23 |
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IC OPAMP GP 4 CIRCUIT 14DIP |
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NCS20032DTBR2G | onsemi | 5000 | 0.35 |
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IC OPAMP GP 2 CIRCUIT 8TSSOP |
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OPA379AIDBVRG4 | Texas Instruments | 5000 | 0.68 |
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IC OPAMP GP 1 CIRCUIT SOT23-5 |
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HFA1106IB | Rochester Electronics, LLC | 5000 | 1.53 |
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IC OPAMP CFA 1 CIRCUIT 8SOIC |
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INA191A5IYFDR | Texas Instruments | 5000 | 1.82 |
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IC CURR SENSE 1 CIRCUIT 6DSBGA |
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TSV6391ILT | STMicroelectronics | 5000 | 0.53 |
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IC OPAMP GP 1 CIRCUIT SOT23-5 |
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BU7242SNUX-TR | Rohm Semiconductor | 5000 | 0.53 |
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IC CMOS 2 CIRCUIT VSON008X2030 |
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TC75S60FU(TE85L,F) | Toshiba Semiconductor and Storage | 5000 | 0.31 |
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IC OPAMP GP 1 CIRCUIT 5SSOP |
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NCV20032DMR2G | onsemi | 5000 | 0.35 |
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IC OPAMP GP 2 CIRCUIT 8MSOP |
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OPA379AIDRG4 | Texas Instruments | 5000 | 0.68 |
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IC OPAMP GP 1 CIRCUIT 8SOIC |
The LEMO GMA.0B.040.DR is a specific model of push-pull self-latching connector. It is commonly used in medical, industrial control, test and measurement, and audio/video applications due to its reliable and robust design, compact size, and high durability.
An evaluation board, or EVM, is a printed circuit board designed to help engineers and developers test and evaluate the functionality of a specific semiconductor chip or integrated circuit (IC) before integrating it into a final product. It speeds up the development process and simplifies prototyping.
An evaluation module (EVM) typically refers to a single board for a specific component. An evaluation kit (EVK) usually includes the evaluation module plus additional accessories, software, cables, or documentation to provide a more complete development environment.
Choosing the right IC depends on several factors, including the specific function you need (e.g., amplification, data conversion), technical specifications (e.g., voltage, power consumption), package type, and cost. It's best to consult the datasheet and consider your project's constraints and requirements.
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