Details, datasheet, quote on part number: QJ6016RH4TP
PartQJ6016RH4TP
CategorySemiconductors => Discrete Semiconductors => Thyristors => 8844286
TitleTriacs 60V 16A 35mA HI TEMP TO-220AB Non-Isolate
DescriptionLittelfuse High-Temperature Thyristor TRIACs enable easier thermal management and higher surge handling capability in AC power control applications. These thyristors are available in 16A and 25A variants based on their RMS on-state current, gate trigger current, and other features. Typical applications include heater control, motor speed control, lighting control, and switching relays. The High-temperature thyristors are available in TO-220AB, TO-220 isolated, and TO-263 packages. TO-220 and TO-218 internally isolated packages offer better heat sinking with higher isolation voltage. These Alternistor TRIACs operate in I, II, and III quadrants and also offer high performance in applications with high commutation requirement. 
CompanyLittelfuse
DatasheetDownload QJ6016RH4TP datasheet
Specifications 
SeriesQJxx16xHx
On-State RMS Current - It RMS16 A
Non Repetitive On-State Current200 A
Rated Repetitive Off-State Voltage VDRM40 V
Holding Current Ih Max50 mA
Gate Trigger Voltage - Vgt1.3 V
Gate Trigger Current - Igt35 mA
Minimum Operating Temperature- 40 C
Maximum Operating Temperature+ 150 C
Mounting StyleThrough Hole
Package/CaseTO-220AB-3
PackagingTube
QJ6016RH4TP photo

Others parts numbering
QJ6016LH6TP: Triacs 60V 16A 80mA HI TEMP TO-220AB Isolated
QJ6016LH4TP: Triacs 60V 16A 35mA HI TEMP TO-220AB Isolated
QJ6016NH4RP: Triacs 60V 16A 35mA HI TEMP TO-263 (D2 -Pak)
QJ6016NH6RP: Triacs 60V 16A 80mA HI TEMP TO-263 (D2 -Pak)
QJ6025LH6TP: Triacs 60V 25A 80mA HI TEMP TO-220AB Isolated
QJ6016RH6TP: Triacs 60V 16A 80mA HI TEMP TO-220AB Non-Isolate
QJ6025RH5TP: Triacs 60V 25A 50mA HI TEMP TO-220AB Non-Isolate
QJ6025RH6TP: Triacs 60V 25A 80mA HI TEMP TO-220AB Non-Isolate
QJ6025LH5TP: Triacs 60V 25A 50mA HI TEMP TO-220AB Isolated
QJ6025NH6RP: Triacs 60V 25A 80mA HI TEMP TO-263 (D2 -Pak)
QJ6025NH5RP: Triacs 60V 25A 50mA HI TEMP TO-263 (D2 -Pak)
QJ6025KH6TP: Triacs 60V 25A 80mA HI TEMP TO-218AC Isolated
QJ4016RH4TPrevqussdrawv: Triacs 40V 16A 35mA HI TEMP TO-220AB Non-Isolate
QJ4016RH3TP: Triacs 40V 16A 20mA HI TEMP TO-220AB Non-Isolate
QJ4016LH6TP: Triacs 40V 16A 80mA HI TEMP TO-220AB Isolated
QJ4025JH6TP: Triacs 40V 25A 80mA HI TEMP TO-218X Isolated
QJ4025RH5TP: Triacs 40V 25A 50mA HI TEMP TO-220AB Non-Isolate
QJ4025KH6TP: Triacs 40V 25A 80mA HI TEMP TO-218AC Isolated
QJ4025RH6TP: Triacs 40V 25A 80mA HI TEMP TO-220AB Non-Isolate
QJ6025JH6TP: Triacs 60V 25A 80mA HI TEMP TO-218X Isolated
QJ6016LH2TP: Triacs 60V 16A 10mA HI TEMP TO-220AB Isolated
QJ4016RH6TP: Triacs 40V 16A 80mA HI TEMP TO-220AB Non-Isolate
QJ6016LH3TP: Triacs 60V 16A 20mA HI TEMP TO-220AB Isolated
QJ4025LH5TP: Triacs 40V 25A 50mA HI TEMP TO-220AB Isolated

 

Features, Applications

Description

This 16A high temperature Alternistor TRIAC, offered TO-220AB, TO-220 isolated and TO-263 package, has 150C maximum junction temperature and 200A ITSM(60Hz). This series enables easier thermal management and higher surge handling capability in AC power control applications such as heater control, motor speed control, lighting controls, and static switching relays. Alternistor TRIAC operates in quadrants I, II, & III and offers high performance in applications requiring high commutation capability. Features & Benefits High of 150C Main Features

Symbol IT(RMS) VDRM /VRRM IGT (Q1) Value to 80 Unit V mA

Voltage capability to 600V Surge capability at 60Hz half cycle Mechanically and thermally robust TO-220 and TO-218 clip-attach assembly

Internally-isolated TO-220 and TO-218 packages Halogen free and RoHS compliant

Applications TRIAC is an excellent AC switch in applications such as heating, lighting, and motor speed controls.

Typical applications are - H eater control such as coffee brewer, tankless water heater and infrared heater

- AC solid-state relays - L ight dimmers including incandescent and LED lighting - M otor speed control in kitchen appliances, power tools, home/brow/white goods and light industrial applications as compressor motor control Alternistor TRIAC is used with high inductive loads requiring the high commutation capability. Internally isolated packages offer better heat sinking with higher isolation voltage.

2017 Littelfuse, Inc Specifications are subject to change without notice. Revised: 07/26/17
Absolute Maximum Ratings Alternistor Triac (3 Quadrants)

Symbol IT(RMS) Parameter QJxx16LHy RMS on-state current (full sine wave) Non repetitive surge peak on-state current (Single half cycle, TJ initial 25C) I2t Value for fusing Critical rate of rise of on-state current Peak gate trigger current Average gate power dissipation Storage temperature range Operating junction temperature range Peak non-repetitive blocking voltage tp 10s; IGT IGTM 125 C Value 150 VDRM/VRRM+100 Unit A

ITSM I 2t di/dt IGTM PG(AV) Tstg TJ VDSM/VRSM
Electrical Characteristics (TJ = 25C, unless otherwise specified) Alternistor Triac (3 Quadrants)

Symbol IGT VGT VGD IH dv/dt (dv/dt)c tgt Test Conditions VD = VDRM VD = VDRM Gate Open = 2/3 VDRM Gate Open = 150C (di/dt)c = 8.6 A/ms 2 x IGT = 22.6 A(pk) 600V Quadrant II III II III II III MAX. MIN. MAX. MIN. TYP. QJx16xH6 80 Unit V mA V/s s

Symbol VTM IDRM / IRRM Test Conditions 380s @ VDRM / VRRM = 150C MAX Value 5 4 Unit A mA
Symbol R(J-C) Parameter Junction to case (AC) QJxx16NHy QJxx16LHy Value Unit C/W
2017 Littelfuse, Inc Specifications are subject to change without notice. Revised: 07/13/17
Figure 2: Normalized DC Gate Trigger Current for All Quadrants vs. Junction Temperature
ALL POLARITIES ARE REFERENCED MT1 MT2 POSITIVE (Positive Half Cycle)

Figure 3: Normalized DC Holding Current vs. Junction Temperature
Figure 4: Normalized DC Gate Trigger Voltage for All Quadrants vs. Junction Temperature
Figure 5: Power Dissipation (Typical) vs. RMS On-State Current
Figure 6: On-State Current vs. On-State Voltage (Typical)
Average On-State Power Dissipation [PD(AV)] - Watts
Positive or Negative Instantaneous On-State Current(IT) - AMPS
Positive or Negative Instantaneous On-State Voltage (VT) - Volts

 

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