Taiwan Semiconductor S1Y/S2Y 1600V Surface Mount Rectifiers
Taiwan Semiconductor S1Y (1A) and S2Y (2A) 1600V Surface Mount Rectifiers are standard rectifiers designed for high-performance applications. The S1Y and S2Y components feature a glass passivated chip junction that enhances reliability and durability. These rectifiers offer a low forward voltage drop and impressive surge current capability, making them ideal for demanding power management tasks. These rectifiers maintain a maximum reverse current of 5µA, ensuring efficient performance and minimal power loss. The DO-214AA (SMB) and DO-214AC (SMA) package options support automated placement, streamlining production processes. With a wide junction temperature range of -40°C to +175°C, the Taiwan Semiconductor S1Y (1A) and S2Y (2A) 1600V Rectifiers can operate effectively in diverse environments.Features
- AEC-Q101 qualified (-H designation)
- Glass passivated chip junction
- Ideal for automated placement
- Low forward voltage drop
- High surge current capability
- Single die configuration
- Moisture Sensitivity Level (MSL) 1, per J-STD-020
- Lead-free, Halogen-free, and RoHS-compliant
Applications
- General purpose
- Switching mode converters and inverters
- Lighting applications
Specifications
- 1600V maximum repetitive peak reverse voltage
- 1A and 2A forward current options
- 1120V reverse voltage, total RMS value
- Typical forward voltage ranges
- 0.89V to 0.98V for 1A variants
- 0.83V to 1.02V for 2A variants
- 5µA maximum reverse current
- Surge peak forward current, single half sine-wave superimposed on rated load
- 30A to 100A for 1A variants
- 50A to 130A for 2A variants
- Typical junction capacitance
- 6pF for 1A variants
- 8.6pF for 2A variants
- -40°C to +175°C junction temperature range
- DO-214AA (SMB) and DO-214AC (SMA) package options
- Molding compound meets UL 94V-0 flammability rating
- Matte tin plated leads, solderable per J-STD-002
- Meets JESD 201 class 2 whisker test
- Polarity indicated by cathode band
Published: 2024-11-12
| Updated: 2024-11-28
