

ROHM BAW56T116
Manufacturer No:
BAW56T116
Manufacturer:
Package:
TO-236-3, SC-59, SOT-23-3
Description:
Standard Rectifier Diode 1 Pair Common Anode Fast Recovery =< 500ns, > 200mA (Io) 150°C Max 215mA 70V-DC 2-Element TO-236-3, SC-59, SOT-23-3 Surface Mount
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BAW56T116 information
ROHM BAW56T116 technical specifications, attributes, parameters and parts with similar specifications to ROHM BAW56T116.
- Type
- Parameter
- Factory Lead Time
- 10 Weeks
- Contact Plating
- Copper, Tin
- Mount
- Surface Mount
- Mounting Type
- Surface Mount
- Package / Case
- TO-236-3, SC-59, SOT-23-3
- Number of Pins
- 3
- Diode Element Material
- SILICON
- Packaging
- Tape & Reel (TR)
- Published
- 2001
- JESD-609 Code
- e1
- Pbfree Code
- yes
- Part Status
- Last Time Buy
- Moisture Sensitivity Level (MSL)
- 1 (Unlimited)
- Number of Terminations
- 3
- Termination
- SMD/SMT
- ECCN Code
- EAR99
- Terminal Finish
- Tin/Silver/Copper (Sn/Ag/Cu)
- Max Operating Temperature
- 150°C
- Min Operating Temperature
- -55°C
- Additional Feature
- HIGH RELIABILITY
- HTS Code
- 8541.10.00.70
- Capacitance
- 2pF
- Subcategory
- Rectifier Diodes
- Voltage - Rated DC
- 85V
- Terminal Position
- DUAL
- Terminal Form
- GULL WING
- Peak Reflow Temperature (Cel)
- 260
- Current Rating
- 215mA
- Time@Peak Reflow Temperature-Max (s)
- 10
- Base Part Number
- BAW56T
- Pin Count
- 3
- Number of Elements
- 2
- Element Configuration
- Common Anode
- Speed
- Fast Recovery =< 500ns, > 200mA (Io)
- Diode Type
- Standard
- Current - Reverse Leakage @ Vr
- 1?A @ 75V
- Power Dissipation
- 225mW
- Voltage - Forward (Vf) (Max) @ If
- 1.25V @ 150mA
- Forward Current
- 215mA
- Max Reverse Leakage Current
- 1?A
- Operating Temperature - Junction
- 150°C Max
- Max Surge Current
- 4A
- Output Current-Max
- 0.1A
- Forward Voltage
- 1.25V
- Max Reverse Voltage (DC)
- 70V
- Average Rectified Current
- 215mA
- Reverse Recovery Time
- 4 ns
Download datasheets and manufacturer documentation for ROHM BAW56T116.
BAW56T116 Overview
The device operates when the forward voltage is set to 1.25V.A maximum output voltage of 0.1A is supported by array.Array should be a rule to monArrayor the surge current and not allow Array to exceed 4A.The device operates when the forward voltage is set to 215mA.There can be a current drawn from this part of 215mA.The device is capacitance-limited to approximately 2pF farads.The maximum reverse leakage current from this semiconductor is 1?A, which corresponds to the reverse leakage current from that device when reverse biased.By virtue of its primary function, this electronic or electrical device generates 225mW kcal of heat (energy loss).In electronic or electrical devices, this is the device that produces the most 225mW heat (energy loss or waste).
BAW56T116 Features
1.25V forward voltage
a maximum output voltage of 0.1A
2pF farads
BAW56T116 Applications
There are a lot of ROHM Semiconductor
BAW56T116 applications of rectifier diode array.
- Rectifier for drives applications
- Crowbar applications
- Rectifiers for UBS
- Battery chargers
- Rectifiers in switch mode power supplies (SMPS)
- Free wheeling diode in low voltage converters
- General Rectification
User Guide
Please verify all part numbers, quantities, and packaging preferences before placing your order. If substitutions are acceptable, please indicate this clearly. For time-sensitive projects, confirm estimated delivery dates and stock availability in advance. Once submitted, changes or cancellations may not be possible, especially for items marked as non-cancellable/non-returnable (NCNR). For international shipments, please ensure all import documentation is complete and accurate to avoid delays.
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RFQ (REQUEST FOR QUOTATIONS)Please ensure the part numbers and quantities are accurate and complete when submitting your RFQ.
Provide target prices and acceptable alternatives, if any, to speed up the quotation process.
Quotations are subject to stock availability and may vary with market conditions. Prices and lead times are not guaranteed until a purchase order is confirmed. Ensure your contact details are correct to avoid delays in response.

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