SMD
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60mA 600V 1.3V Two-way thyristor SMD Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 2607
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800V Two-way thyristor SMD Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 5034
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10MHz~650MHz 1.9dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 2183
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200MHz~2GHz 2.2dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 2477
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5MHz~500MHz 0.9dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 6285
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5MHz~1GHz 1.5dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 4342
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2MHz~200MHz 0.75dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 3904
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10MHz~1GHz 1.2dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 7313
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2MHz~250MHz 1.5dB SMD RF Power Splitters / Combiners ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 3028
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19.9A 30.6V 20.9V 18.8V SMD Electrostatic and Surge Protection (TVS/ESD) ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 3406
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140m -97dBm 5dBm CC2640R2f chip SMD Bluetooth Modules ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 7493
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Current Transformer 1:70 7A SMD Current Transformers ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 7340
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Current Transformer SMD Current Transformers ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 4508
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ZM32 chip UART 19dBm -99dBm SMD ZigBee Modules ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 5817
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20dBm IPEX interface 2.4GHz SMD WiFi Modules ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 2023
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60mA 600V 1.3V Two-way thyristor SMD Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 4432
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60mA 600V 1.18V Two-way thyristor SMD Optocouplers - Thyristor Signal Output ROHS
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1 + 10 + 25 + 50 + >=100 -
MOQ : 1 Наличность : 2094
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Q:What defines the physical structure of QFN-16?
A:Key features include:
- Leadless bottom-mounted pads: Ensures direct PCB connection for low inductance.
- Central thermal pad (4×4 mm coverage): Enhances heat dissipation to the PCB.
- 16-pin layout with perimeter array: Optimizes space efficiency in compact designs.
- 0.9 mm ultra-thin profile: Ideal for height-constrained applications. -
Q:Why choose QFN-16 over alternatives?
A:Critical advantages:
- Miniaturization: 40% smaller than equivalent SOIC packages.
- Thermal Performance: Direct PCB heat path reduces junction temperature by ~15°C.
- Electrical Benefits: Low-inductance design (<1 nH) for high-frequency signals.
- Reliability: Moisture-resistant substrate (MSL3 rating). -
Q:What are common technical specs?
A:Standard configurations (consult datasheets):
- Body Size: 5×5 mm
- Height: 0.9 mm
- Pin Pitch: 0.5 mm
- Material: Copper-alloy leads with Ni/Pd/Au plating
- Temp Range: -40°C to +125°C -
Q:Where is QFN-16 typically applied?
A:Dominant use cases:
- Power Converters: Buck/boost ICs (e.g., TI TPS62130).
- RF Modules: Bluetooth/Wi-Fi transceivers (e.g., Nordic nRF52840).
- Sensor Interfaces: MEMS accelerometers (e.g., ST LIS2DH12). -
Q:What are critical assembly guidelines?
A:Key recommendations:
- PCB Design: 4×4 thermal via array under pad (0.3 mm diameter).
- Solder Paste: Type 4 solder (particle size 20–38 μm).
- Reflow Profile: Peak temp ≤ 245°C (Pb-free process).
- Inspection: X-ray (AXI) mandatory for pad void detection.



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