FFSP3065A

onsemi
512-FFSP3065A
FFSP3065A

Mfr.:

Description:
SiC Schottky Diodes 650V SiC SBD 30A

ECAD Model:
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In Stock: 132

Stock:
132 Can Dispatch Immediately
Factory Lead Time:
11 Weeks Estimated factory production time for quantities greater than shown.
Minimum: 1   Multiples: 1
Unit Price:
₹-.--
Ext. Price:
₹-.--
Est. Tariff:

Pricing (INR)

Qty. Unit Price
Ext. Price
₹813.05 ₹813.05
₹604.62 ₹6,046.20
₹503.10 ₹50,310.00
₹448.30 ₹2,24,150.00
₹419.55 ₹4,19,550.00

Product Attribute Attribute Value Select Attribute
onsemi
Product Category: SiC Schottky Diodes
RoHS:  
Through Hole
TO-220-2
Single
30 A
650 V
1.5 V
150 A
200 uA
- 55 C
+ 175 C
FFSP3065A
Tube
Brand: onsemi
Pd - Power Dissipation: 240 W
Product Type: SiC Schottky Diodes
Factory Pack Quantity: 50
Subcategory: Diodes & Rectifiers
Tradename: EliteSiC
Vr - Reverse Voltage: 650 V
Unit Weight: 2.160 g
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Attributes selected: 0

CNHTS:
8541100000
CAHTS:
8541100090
USHTS:
8541100080
JPHTS:
854110090
KRHTS:
8541109000
TARIC:
8541100000
MXHTS:
8541100101
ECCN:
EAR99

FFSP SiC Schottky Diodes

onsemi FFSP SiC (Silicon Carbide) Schottky Diodes are designed to leverage the advantages of Silicon Carbide over Silicon (Si) devices. FFSP SiC Schottky Diodes feature drastically higher forward surge capability, lower reverse leakage, and no reverse recovery current. These SiC Schottky Diodes also feature temperature-independent switching characteristics and excellent thermal performance. This results in improved system efficiency, faster-operating frequency, increased power density, reduced EMI, and reduced system size and cost.

Wide Bandgap EliteSiC (Silicon Carbide) Devices

onsemi Wide Bandgap EliteSiC (Silicon Carbide) Devices provide superior switching performance and higher reliability compared to silicon. The system benefits include high efficiency, fast operating frequency, increased power density, reduced EMI, and reduced system size and cost. The EliteSiC portfolio includes 650V, 1200V, and 1700V diodes, 650V and 1200V IGBT and SiC diode Power Integrated Modules (PIMs), 1200V MOSFETs and SiC MOSFET drivers, and AEC-Q100 qualified devices.

Silicon Carbide Schottky Diodes

onsemi Silicon Carbide (SiC) Schottky Diodes provide superior switching performance and higher reliability to silicon-based devices. SiC Schottky Diodes feature no reverse recovery current, temperature-independent switching, and excellent thermal performance. System benefits include high efficiency, fast operating frequency, high power density, low EMI, and reduced system size and cost.  onsemi offers 650V and 1200V devices in a range of current and package options, ideal for next-generation power system designs.

Solutions for Energy Infrastructure

onsemi Solutions for Energy Infrastructure address the landscape for energy generation, distribution, and storage that is rapidly evolving to fulfill targets set by government policy and increasing consumption. Heightened efficiency targets, reductions of CO2 emissions, and a focus on renewable and clean energy are key factors in this Energy Infrastructure Evolution. onsemi offers a comprehensive portfolio of energy efficient solutions to serve the demanding needs of high-power applications including Silicon Carbide (SiC) Diodes, Intelligent Power Modules, and Current Sense Amplifiers.

D1 EliteSiC Diodes

onsemi D1 EliteSiC Diodes is a high-performance and versatile solution designed for modern power electronics applications. The onsemi D1 features voltage ratings of 650V, 1200V, and 1700V. These diodes offer the flexibility to meet various design requirements. Featuring different packages, such as D2PAK2, D2PAK3, TO-220-2, TO-247-2, and TO-247-3, the D1 EliteSiC Diodes provide designers with options to optimize board space and thermal performance.

650V EliteSiC (Silicon Carbide) Schottky Diodes

onsemi 650V EliteSiC (Silicon Carbide) Schottky Diodes provide superior switching performance and higher reliability to silicon-based devices. These SiC Schottky diodes feature no reverse recovery current, temperature-independent switching, and excellent thermal performance. The system benefits include high efficiency, fast operating frequency, high power density, low EMI, and reduced system size and cost.