X-On Electronics has gained recognition as a prominent supplier of GA04JT17-247 JFET across the USA, India, Europe, Australia, and various other global locations. GA04JT17-247 JFET are a product manufactured by GeneSiC Semiconductor. We provide cost-effective solutions for JFET, ensuring timely deliveries around the world.

GA04JT17-247 GeneSiC Semiconductor

GA04JT17-247 electronic component of GeneSiC Semiconductor
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Part No.GA04JT17-247
Manufacturer: GeneSiC Semiconductor
Category: JFET
Description: JFET SiC Supr Jnctn Trans 1700V-Rds 500mO-4A
Datasheet: GA04JT17-247 Datasheet (PDF)
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)
630: USD 26.5356 ea
Line Total: USD 16717.43 
Availability - 0
MOQ: 630  Multiples: 1
Pack Size: 1
Availability Price Quantity
0
Ship by Fri. 29 Nov to Thu. 05 Dec
MOQ : 630
Multiples : 1
630 : USD 26.5356

0
Ship by Fri. 29 Nov to Thu. 05 Dec
MOQ : 1
Multiples : 1
1 : USD 35.755
5 : USD 33.7182
10 : USD 33.4234
25 : USD 31.2874

0
Ship by Wed. 27 Nov to Fri. 29 Nov
MOQ : 630
Multiples : 630
630 : USD 28.4634
1020 : USD 26.9388

0
Ship by Fri. 29 Nov to Thu. 05 Dec
MOQ : 3
Multiples : 1
3 : USD 29.2309

   
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Transistor Polarity
Vds - Drain-Source Breakdown Voltage
Id - Continuous Drain Current
Rds On - Drain-Source Resistance
Configuration
Pd - Power Dissipation
Mounting Style
Package / Case
Packaging
Technology
Minimum Operating Temperature
Maximum Operating Temperature
Series
Brand
Fall Time
Rise Time
Factory Pack Quantity :
Typical Turn-Off Delay Time
Typical Turn-On Delay Time
Transistor Type
Number Of Channels
Cnhts
Hts Code
Mxhts
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We are delighted to provide the GA04JT17-247 from our JFET category, at competitive rates not only in the United States, Australia, and India, but also across Europe and beyond. A long established and extensive electronic component distribution network has enhanced our global reach and dependability, ensuring cost savings through prompt deliveries worldwide. Client satisfaction is at the heart of our business, where every component counts and every customer matters. Our technical service team is ready to assist you. From product selection to after-sales support, we strive to deliver a seamless and satisfying experience. Are you ready to experience the best in electronic component distribution? Contact X-ON Electronics today and discover why X-On are a preferred choice for the GA04JT17-247 and other electronic components in the JFET category and beyond.

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GA04JT17-247 Normally OFF Silicon Carbide V = 1700 V DS Junction Transistor R = 180 m DS(ON) I = 15 A D (Tc = 25C) I = 5 A D (Tc > 125C) h = 100 FE (Tc = 25C) Features Package 175 C Maximum Operating Temperature Gate Oxide Free SiC Switch D Exceptional Safe Operating Area Excellent Gain Linearity Temperature Independent Switching Performance Low Output Capacitance S Positive Temperature Coefficient of R DS,ON D G Suitable for Connecting an Anti-parallel Diode TO-247 Advantages Applications Compatible with Si MOSFET/IGBT Gate Drive ICs Down Hole Oil Drilling, Geothermal Instrumentation > 20 s Short-Circuit Withstand Capability Hybrid Electric Vehicles (HEV) Lowest-in-class Conduction Losses Solar Inverters High Circuit Efficiency Switched-Mode Power Supply (SMPS) Minimal Input Signal Distortion Power Factor Correction (PFC) High Amplifier Bandwidth Induction Heating Uninterruptible Power Supply (UPS) Motor Drives Table of Contents Section I: Absolute Maximum Ratings ...........................................................................................................1 Section II: Static Electrical Characteristics ....................................................................................................2 Section III: Dynamic Electrical Characteristics .............................................................................................2 Section IV: Figures ...........................................................................................................................................3 Section V: Driving the GA04JT17-247.............................................................................................................7 Section VI: Package Dimensions ................................................................................................................. 11 Section VII: SPICE Model Parameters ......................................................................................................... 12 Section I: Absolute Maximum Ratings Parameter Symbol Conditions Value Unit Notes Drain Source Voltage V V = 0 V 1700 V DS GS Continuous Drain Current I T = 25C 15 A Fig. 17 D C Continuous Drain Current I T = 160C 4 A Fig. 17 D C Continuous Gate Current I 0.25 A G o T = 175 C, I = 4 VJ D,max Turn-Off Safe Operating Area RBSOA A Fig. 19 Clamped Inductive Load V V DS DSmax o T = 175 C, I = 0.2 A, V = 1200 V, VJ G DS Short Circuit Safe Operating Area SCSOA >20 s Non Repetitive Reverse Gate Source Voltage V 30 V SG Reverse Drain Source Voltage V 25 V SD T = 25 C / 160 C, t > 100 ms Power Dissipation P C p 106 / 10 W Fig. 16 tot Storage Temperature T -55 to 175 C stg Jan 2015 Latest version of this datasheet at: GA04JT17-247 Section II: Static Electrical Characteristics Value Parameter Symbol Conditions Unit Notes Min. Typical Max. A: On State 180 I = 5 A, T = 25 C D j Drain Source On Resistance R I = 5 A, T = 150 C 300 m Fig. 4 DS(ON) D j I = 5 A, T = 175 C D j 342 I = 5 A, I /I = 40, T = 25 C 3.45 D D G j Gate Source Saturation Voltage V V Fig. 7 GS,SAT I = 5 A, I /I = 30, T = 175 C D D G j 3.22 100 V = 8 V, I = 5 A, T = 25 C DS D j DC Current Gain h V = 8 V, I = 5 A, T = 125 C 68 Fig. 5 FE DS D j V = 8 V, I = 5 A, T = 175 C DS D j 60 B: Off State 0.1 V = 1700 V, V = 0 V, T = 25 C DS GS j Drain Leakage Current I V = 1700 V, V = 0 V, T = 150 C 0.1 A Fig. 8 DSS DS GS j V = 1700 V, V = 0 V, T = 175 C DS GS j 0.5 Gate Leakage Current I V = 20 V, T = 25 C 20 nA SG SG j C: Thermal Thermal resistance, junction - case R 1.41 C/W Fig. 20 thJC Section III: Dynamic Electrical Characteristics Value Parameter Symbol Conditions Unit Notes Min. Typical Max. A: Capacitance and Gate Charge Input Capacitance C V = 0 V, V = 1200 V, f = 1 MHz 665 pF Fig. 9 iss GS DS Reverse Transfer/Output Capacitance C /C V = 1200 V, f = 1 MHz 16 pF Fig. 9 rss oss DS Output Capacitance Stored Energy E V = 0 V, V = 1200 V, f = 1 MHz 15 J Fig. 10 OSS GS DS Effective Output Capacitance, C I = constant, V = 0 V, V = 01200 V 29 pF oss,tr D GS DS time related Effective Output Capacitance, C V = 0 V, V = 01200 V 21 pF oss,er GS DS energy related V = -53 V Gate-Source Charge Q GS 5 nC GS Gate-Drain Charge Q V = 0 V, V = 01200 V 35 nC GD GS DS Gate Charge - Total Q 40 nC G 1 B: Switching f = 1 MHz, V = 50 mV, V = 0 V, AC DS Internal Gate Resistance zero bias R 5.9 G(INT-ZERO) V = 0 V, T = 175 C GS j V > 2.5 V, V = 0 V, T = 175 C Internal Gate Resistance ON R GS DS j 0.32 G(INT-ON) Turn On Delay Time t 10 ns d(on) T = 25 C, V = 1200 V, j DS Fall Time, V t 10 ns Fig. 11, 13 DS f I = 4 A, Resistive Load D Refer to Section V for additional Turn Off Delay Time t 19 ns d(off) driving information. Rise Time, V t 15 ns Fig. 12, 14 DS r Turn On Delay Time t 10 ns d(on) Fall Time, V t T = 175 C, V = 1200 V, 8 ns Fig. 11 DS f j DS I = 4 A, Resistive Load D 29 Turn Off Delay Time t ns d(off) Rise Time, V t 16 ns Fig. 12 DS r Turn-On Energy Per Pulse E 116 J Fig. 11, 13 on T = 25 C, V = 1200 V, j DS Turn-Off Energy Per Pulse E I = 4 A, Inductive Load 14 J Fig. 12, 14 off D Refer to Section V. Total Switching Energy E 130 J tot Turn-On Energy Per Pulse E 113 J Fig. 11 on T = 175 C, V = 1200 V, j DS Turn-Off Energy Per Pulse E 16 J Fig. 12 off I = 4 A, Inductive Load D Total Switching Energy E 129 J tot 1 All times are relative to the Drain-Source Voltage V DS Jan 2015 Latest version of this datasheet at:

Tariff Desc

8541.21.00 16 No - - With a dissipation rate of less than 1 W Free

DIODES, TRANSISTORS AND SIMILAR SEMICONDUCTOR DEVICES; PHOTOSENSITIVE SEMICONDUCTOR DEVICES,
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