GA05JT01-46 GeneSiC Semiconductor

GA05JT01-46 electronic component of GeneSiC Semiconductor
GA05JT01-46 GeneSiC Semiconductor
GA05JT01-46 JFETs
GA05JT01-46  Semiconductors
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X-On Electronics has gained recognition as a prominent supplier of GA05JT01-46 JFETs across the USA, India, Europe, Australia, and various other global locations. GA05JT01-46 JFETs are a product manufactured by GeneSiC Semiconductor. We provide cost-effective solutions for JFETs, ensuring timely deliveries around the world.

Part No.GA05JT01-46
Manufacturer:GeneSiC Semiconductor
Category:JFETs
Description:GeneSiC Semiconductor JFET SiC High Temperature JT
Datasheet:GA05JT01-46 Datasheet (PDF)
Shipping Charges:Click here for details
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Price (USD)
  
1: USD 65.618 ea
Line Total: USD 65.62 
Availability : 0
  
QtyUnit Price
1$ 65.618
5$ 65.618
10$ 64.288
25$ 61.95
50$ 59.878
100$ 59.094
250$ 59.024
500$ 54.488
  

Availability0
Ship by Fri. 19 Jun to Tue. 23 Jun
MOQ : 1
Multiples : 1
QtyUnit Price
1$ 65.618
5$ 65.618
10$ 64.288
25$ 61.95
50$ 59.878
100$ 59.094
250$ 59.024
500$ 54.488

   
Manufacturer
Product Category
RoHS - XON
Icon ROHS
Transistor Polarity
Vds - Drain-Source Breakdown Voltage
Vgs - Gate-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
Brand
Drain-Source Current At Vgs 0
Gate-Source Cutoff Voltage
Maximum Drain Gate Voltage
Type
Cnhts
Hts Code
Mxhts
Factory Pack Quantity :
Taric
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We are delighted to provide the GA05JT01-46 from our JFETs 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 GA05JT01-46 and other electronic components in the JFETs category and beyond.

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GA05JT01-46 Normally OFF Silicon Carbide V = 100 V DS Junction Transistor R = 240 m DS(ON) I = 9 A D (Tc = 25C) h = 110 FE (Tc = 25C) Features Package 210C maximum operating temperature RoHS Compliant Gate Oxide Free SiC Switch D Exceptional Safe Operating Area Excellent Gain Linearity G Compatible with 5 V TTL Gate Drive Temperature Independent Switching Performance D Low Output Capacitance G S S Positive Temperature Coefficient of R DS,ON Suitable for Connecting an Anti-parallel Diode TO-46 Advantages Applications Compatible with Si MOSFET/IGBT Gate Drive ICs Down Hole Oil Drilling > 20 s Short-Circuit Withstand Capability Geothermal Instrumentation Lowest-in-class Conduction Losses Solenoid Actuators High Circuit Efficiency General Purpose High-Temperature Switching Minimal Input Signal Distortion Amplifiers High Amplifier Bandwidth Solar Inverters Switched-Mode Power Supply (SMPS) Power Factor Correction (PFC) 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 GA05JT01-46...............................................................................................................7 Section VI: Package Dimensions ................................................................................................................. 10 Section VII: SPICE Model Parameters ......................................................................................................... 11 Section I: Absolute Maximum Ratings Parameter Symbol Conditions Value Unit Notes V = 0 V Drain Source Voltage V GS 100 V DS Continuous Drain Current I T = 210C, T = 25C 5.8 A D J C Continuous Gate Current I 0.5 A GM T = 210C, I = 0.5 A, I = 9 VJ G D,max Turn-Off Safe Operating Area RBSOA A Fig. 18 Clamped Inductive Load V V DS DSmax T = 210C, I = 0.5 A, V = 70 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 Power Dissipation P T = 210C, T = 25C 20 W Fig. 16 tot J C Operating and Storage Temperature T -55 to 210 C stg Latest version of this datasheet at: GA05JT01-46 Section II: Static Electrical Characteristics Value Parameter Symbol Conditions Unit Notes Min. Typical Max. A: On State 240 I = 5 A, T = 25 C D j I = 5 A, T = 125 C 368 D j Drain Source On Resistance R m Fig. 5 DS(ON) I = 5 A, T = 175 C D j 455 I = 5 A, T = 210 C D j 580 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 ID = 5 A, ID/IG = 30, Tj = 175 C 3.22 113 VDS = 5 V, ID = 5 A, Tj = 25 C 79 V = 5 V, I = 5 A, T = 125 C DS D j DC Current Gain h Fig. 5 FE V = 5 V, I = 5 A, T = 175 C 72 DS D j V = 5 V, I = 5 A, T = 210 C DS D j 70 B: Off State 10 100 V = 100 V, V = 0 V, T = 25 C R GS j Drain Leakage Current I V = 100 V, V = 0 V, T = 125 C 50 500 A Fig. 6 DSS R GS j V = 100 V, V = 0 V, T = 210 C R GS j 100 1000 Gate Leakage Current I V = 20 V, T = 25 C 20 nA SG SG j C: Thermal Assumes thermal conduction through Thermal resistance, junction - case RthJC 9.86 C/W Fig. 19 baseplate only actual value may be lower 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 = 100 V, f = 1 MHz 547 pF Fig. 7 iss GS D Reverse Transfer/Output Capacitance C /C V = 100 V, f = 1 MHz 45 pF Fig. 7 rss oss D Output Capacitance Stored Energy E VGS = 0 V, VD = 100 V, f = 1 MHz 0.2 J Fig. 8 OSS Effective Output Capacitance, C I = constant, V = 0 V, V = 070 V 83 pF oss,tr D GS DS time related Effective Output Capacitance, C V = 0 V, V = 070 V 67 pF oss,er GS DS energy related V = -53 V Gate-Source Charge QGS GS 3.7 nC Gate-Drain Charge Q V = 0 V, V = 070 V 5.8 nC GD GS DS Gate Charge - Total Q 9.5 nC G 1 B: Switching f = 1 MHz, V = 50 mV, V = V = 0 V , AC DS GS Internal Gate Resistance zero bias R 14.5 G(INT-ZERO) T = 210 C j V > 2.5 V, V = 0 V, T = 210 C Internal Gate Resistance ON RG(INT-ON) GS DS j 0.37 Turn On Delay Time t 8.0 ns d(on) T = 25 C, V = 70 V, j DS Fall Time, V t 7.4 ns Fig. 11, 13 DS f I = 5 A, Resistive Load D Refer to Section V: for additional driving Turn Off Delay Time t 14.0 ns d(off) information Rise Time, V t 4.2 ns Fig. 12, 14 DS r Turn On Delay Time t 8.0 ns d(on) T = 210 C, V = 70 V, j DS Fall Time, V t I = 5 A, Resistive Load 7.8 ns Fig. 11 DS f D Refer to Section V: for additional driving 28.0 Turn Off Delay Time td(off) ns information Rise Time, V t 2.3 ns Fig. 12 DS r Turn-On Energy Per Pulse E 3.6 J Fig. 11, 13 on T = 25 C, V = 70 V, j DS Turn-Off Energy Per Pulse E 0.4 J Fig. 12, 14 off I = 5 A, Inductive Load D Total Switching Energy E 4.0 J tot Turn-On Energy Per Pulse E 3.6 J Fig. 11 on T = 210 C, V = 70 V, j DS 0.5 Turn-Off Energy Per Pulse E J Fig. 12 off I = 5 A, Inductive Load D Total Switching Energy E 4.1 J tot 1 All times are relative to the Drain-Source Voltage V DS Latest version of this datasheet at:

Tariff Desc

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

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