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Product Detailed Parameters
- Description:AC/DC CONVERTER 6V 3W
- Series:VTX-214
- Mfr:Vigortronix
- Package:Bulk
- Type:Enclosed
- Number of Outputs:1
- Voltage - Input:90 ~ 305 VAC, 100 ~ 430 VDC
- Voltage - Output 1:6V
- Voltage - Output 2:-
- Voltage - Output 3:-
- Voltage - Output 4:-
- Current - Output (Max):500mA
- Applications:Household Appliances, ITE (Commercial)
- Features:-
- Operating Temperature:-25°C ~ 85°C (With Derating)
- Efficiency:72%
- Mounting Type:Through Hole
- Package / Case:5-DIP Module, 4 Leads
- Size / Dimension:1.46" L x 0.94" W x 0.59" H (37.0mm x 24.0mm x 15.0mm)
- Approval Agency:EN, UL
- Standard Number:62368-1; 61558-2
- Power (Watts):3 W
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Buying Guide
Vigortronix VTX-214-003-306 is selected in AC DC Converters category when protection behavior and transient response must be validated under realistic load steps. Key specs include Description (AC/DC CONVERTER 6V 3W), Temperature (-25°C ~ 85°C (With Derating)), Package/case (5-DIP Module, 4 Leads), Mounting (Through Hole), and Packaging (Bulk).
- For VTX-214-003-306, confirm the operating temperature range (-25°C ~ 85°C (With Derating)) meets your deployment conditions.
- Confirm Voltage - Output 1 (6V) is suitable for your use case and operating conditions.
- Confirm the mounting type (Through Hole) matches your assembly process and reliability requirements.
- For VTX-214-003-306, the closest parts usually align on input range 90 ~ 305 VAC, 100 ~ 430 VDC and suit the same layout intent.
- For VTX-214-003-306 in AC DC Converters, the best alternate usually preserves board fit and the system-facing behavior your design already depends on (key constraints: package 5-DIP Module, 4 Leads).
- For substitutions, the lowest-risk options normally preserve package/case 5-DIP Module, 4 Leads, mounting Through Hole, packaging Bulk.
- Treat a near-match as promising only after the operating conditions and functional mode behavior line up with the original intent.
Any tips for derating and validation for VTX-214-003-306?
Validate at worst-case temperature and load, confirm thermal headroom, and check protection and startup behavior with margin.
Can you confirm the Power (Watts) for VTX-214-003-306?
3 W
Can you confirm the Standard Number for VTX-214-003-306?
62368-1; 61558-2
What Approval Agency is listed for VTX-214-003-306?
EN, UL
Application Scenarios
For Vigortronix VTX-214-003-306 used in AC DC Converters designs, engineers usually narrow the choice by checking the failure modes, measurement access, and constraints that still matter after layout. Power-stage choices tend to pay back in validation time by making EMI, thermal headroom, and protection behavior easier to prove. In many systems, stable rails are what keep converters, RF blocks, and processors inside their performance envelope under real loads. In edge servers and communications modules, multi-rail sequencing and telemetry protect compute and memory during rapid load steps. In outdoor IoT enclosures, derating and surge resilience matter because supply quality and temperature drift are less controlled. In production, the stronger choice is usually the one whose thermal, timing, or fault behavior stays measurable after layout and sourcing changes.
Compatibility Advice
- For Vigortronix VTX-214-003-306, confirm compensation and stability with the chosen capacitor ESR so the loop stays stable across substitutions. Record the exact load, wiring, and limits so the same evidence can be regenerated during ECO or second-source review.
- For field stability, confirm the converter matches input transients and sequencing needs, including startup, brownout, and fault behavior. Keep the same stress method and limits attached to the approval record so later reruns do not drift away from the released design.
Project Fit
- Vigortronix VTX-214-003-306 is a practical fit for AC DC Converters when the team can validate ripple and transient response at the point of load.
- Vigortronix VTX-214-003-306 is harder to defend in AC DC Converters when fault behavior and sequencing are not verified, increasing nuisance reset risk because the remaining risk is system-level and cannot be bounded by datasheet checks alone.
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