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Product Detailed Parameters
- Description:TVS DIODE 5VWM 15VC SOD923
- Series:-
- Mfr:MCC (Micro Commercial Components)
- Package:Tape & Reel (TR),Cut Tape (CT)
- Type:Zener
- Bidirectional Channels:-
- Voltage - Reverse Standoff (Typ):5V (Max)
- Voltage - Breakdown (Min):5.4V
- Voltage - Clamping (Max) @ Ipp:15V
- Current - Peak Pulse (10/1000µs):5A (8/20µs)
- Power - Peak Pulse:75W
- Power Line Protection:No
- Applications:General Purpose
- Capacitance @ Frequency:0.8pF @ 1MHz
- Operating Temperature:-55°C ~ 125°C (TJ)
- Mounting Type:Surface Mount
- Package / Case:SOD-923
- Supplier Device Package:SOD-923
- Unidirectional Channels:1
- Grade:-
- Qualification:-
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Buying Guide
MCC (Micro Commercial Components) ESDLC5V0D9L-TP is sourced in TVS Diodes category when teams want clear constraints and a repeatable validation path. Key specs include Description (TVS DIODE 5VWM 15VC SOD923), Type (Zener), Packaging (Tape & Reel (TR), Cut Tape (CT)), Temperature (-55°C ~ 125°C (TJ)), and Package/case (SOD-923).
- For ESDLC5V0D9L-TP, ensure the operating frequency (0.8pF @ 1MHz) meets your performance target with margin.
- Validate the operating temperature range (-55°C ~ 125°C (TJ)) for your environment and margin.
- Check Current - Peak Pulse (10/1000µs) (5A (8/20µs)) against the datasheet conditions and your system-level constraints.
- Ensure the package/case (SOD-923) and land pattern match your PCB layout before procurement.
- For ESDLC5V0D9L-TP, the closest options usually keep package SOD-923 aligned with the same fault scenario.
- For ESDLC5V0D9L-TP in TVS Diodes, close headline specs only matter when the replacement still fits the same board, interface, and use case (key constraints: package SOD-923, frequency 0.8pF @ 1MHz).
- A practical alternate review starts by asking which product assumptions stay fixed and which trade-offs the design can absorb.
- Keeping package/case SOD-923, supplier package SOD-923, mounting Surface Mount consistent usually matters more than a small paper advantage elsewhere.
What details help you quote ESDLC5V0D9L-TP quickly?
Send the part number (ESDLC5V0D9L-TP), quantity, target delivery date, and any required packaging or documentation.
What is the Voltage - Clamping (Max) @ Ipp of ESDLC5V0D9L-TP?
15V
Which Voltage - Breakdown (Min) is listed for ESDLC5V0D9L-TP?
5.4V
Which Power Line Protection is listed for ESDLC5V0D9L-TP?
No
Application Scenarios
In production TVS Diodes builds, parts like MCC (Micro Commercial Components) ESDLC5V0D9L-TP are shortlisted for measurable system behavior, practical validation effort, and stable sourcing. A coordinated protection strategy improves safety and reduces costly field failures. They protect circuits and users from overloads, surges, ESD, and overheating events that cause downtime and safety risk. TVS selection considers clamping voltage at the relevant surge waveform, dynamic resistance, capacitance, and placement at the entry point. A quick corner-case pass under temperature and supply variation often reveals whether the behavior is stable. In field equipment, well-chosen protection prevents input damage while preserving accuracy and low leakage. In telecom and networking, protection reduces downtime from cable faults and hot-plug events in always-on racks. This is often what separates a prototype that works from a product that stays reliable in the field.
Compatibility Advice
- With MCC (Micro Commercial Components) ESDLC5V0D9L-TP, at the interface level, confirm the relevant surge and repetitive pulse conditions, because diode stress is waveform-driven rather than only DC current-driven. Record the exact load, wiring, and limits so the same evidence can be regenerated during ECO or second-source review.
Project Fit
- MCC (Micro Commercial Components) ESDLC5V0D9L-TP is worth shortlisting for TVS Diodes when the team can bound wiring inductance and thermal paths so worst-case margins remain stable in the enclosure.
- MCC (Micro Commercial Components) ESDLC5V0D9L-TP becomes harder to justify for TVS Diodes when harness and grounding paths vary widely and protection behavior cannot be made repeatable because the key behaviors cannot be confirmed on the assembled system.
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