ADV. ADV Scan the QR code to view the latest product information ADS12C60F/80F. 3 Quadrants Triacs. General Description. Features
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- Reginald Parsons
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1 3 Quadrants Triacs General Description High current density due to mesa technology.the DS12C triac series is suitable for general purpose C switching. They can be used as an ON/OFF function in applications such as static relays, heating regulation, High power motor controls e.g. washing machines and vacuum cleaners,rectifier-fed DC inductive loads e.g.dc motors and solenoids, motor speed controllers. 2.T2 1.T1 3.Gate Features Repetitive Peak Off-State Voltage: 6Vand8V R.M.S On-State Current ( I T(RMS) =12 ) High Commutation dv/dt These Devices are Pb-Free and are RoHS Compliant Isolation Voltage(VISO=15V C) TO-22F bsolute Maximum Ratings Symbol Items Conditions Ratings Unit V DRM DS12C6F 6 V Repetitive Peak Off-State Voltage Tj = 25 C V RRM DS12C8F 8 V I T(RMS) R.M.S On-State Current T C = 9 C 12 I TSM Surge On-State Current tp=2ms(5hz)/tp=16.7ms(6hz) 12/126 I 2 t I 2 t for fusing tp=1ms 78 2 s di/dt Critical rate of rise of on-state current F = 12 Hz Tj = 125 C I G = 2 x I GT, tr 1 ns 5 /μs I GM Peak Gate Current tp = 2 μs Tj = 125 C 4 P G(V) verage Gate Power Dissipation(Tj=125 C) 1 W P GM Peak Gate Power Dissipation(tp=2us,Tj=125 C) 1 W T j Operating Junction Temperature - 4 ~ 125 C T STG Storage Temperature - 4 ~ 15 C DV Scan the QR code to view the latest product information 1 / 6 Feb,213 -Rev.3.2
2 Electrical Characteristics ( Tj = 25 C unless otherwise specified ) Symbol Items Conditions Unit T S Blank B I DRM I RRM Peak Forward Reverse Blocking V DRM = V RRM, Tj = 25 C 5 u Max. Current V DRM = V RRM, Tj = 125 C 1 m V TM Peak On-State Voltage I TM = 17, tp = 38 μs Max V V GD Q1-Q2-Q3 Non Trigger Gate V D = V DRM R L = 3.3 kω Voltage Tj = 125 C Min..2 V V GT Q1-Q2-Q3 Gate Trigger Voltage V D = 12V,R L = 33Ω Max. 1.3 V I GT Q1-Q2-Q3 Gate Trigger Current Max m I H Q1-Q2-Q3 Holding Current I T =.1 Max m I L Q1-Q Latching Current I G = 1.2 I GT Max. m Q dv/dt Critical Rate of Rise of Off-State Voltage V D = 2/3V DRM gate open Tj = 125 C Min V/μs (dv/dt)c Rate of Change of Commutating (di/dt)c=-5.3/ms Current, Tj = 125 C Min V/μs R th(j-c) Junction to case (C) Max. 2.3 C/W R th(j-a) Junction to ambient Max. 6 C/W FIG.1:Triac quadrant are defined and the gate trigger test circuit T2+ Q2(T2+G-) R L R L Q1(T2+G+) V D V D V R G V R G G- R L G+ V D V R G Q3(T2-G-) T2-2 / 6 Feb,213 -Rev.3.2
3 FIG.2: Maximum on-state power dissipation 15 FIG.3: Typical RMS on-state current VS llowable case Temperature R.M.S On-State Current () Full Cycle Tc( C),Case Temperature Full Cycle Power Dissipation(W) FIG.4: Maximum transient thermal impedance R.M.S On-state Current() FIG.5: Rated surge on-state current ( Non-Repetitive) Number Of Cycles 1 f=5hz f=6hz tp(ms),conduction Time FIG.6: Gate trigger current VS Junction temperature 15 Tj=25 C Max I TSM (),Surge On-State Current Tj( C),Junction Temperature R th(j-c) ( C/W),Transient Thermal Impedance I GT (Tj)/I GT (25 C) x 1(%) 3 / 6 Feb,213 -Rev.3.2
4 FIG.7:Holding current and Latching current VS Junction temperature FIG.8: Gate trigger voltage VS Junction temperature Tj( C),Junction Temperature I H,I L (Tj)/I H,I L (25 C) x 1(%) Tj( C),Junction Temperature V GT (Tj)/V GT (25 C) x 1(%) FIG.9: On-state characteristics(max) V TM (V),On-State Voltage (1)Tj=25 C Max (2)Tj=125 C Max (1) 1 (2) I TM (),On-State Current 4 / 6 Feb,213 -Rev.3.2
5 PCKGE MECHNICL DT TO-22F Package Dimension R1.6 Max D 1 Symbol Dimensions In Millimeters Dimensions In Inches Min Max Min Max F E B B b L L1 b1 2 b C D e b C E e 2.54 TYP.1 TYP F 3.3 REF.13 REF L L Making Diagram DV XXXX DS12C6FB XXXH XX DV:Logo DS12C6FB:Part number X:Internal control code H:Halogen Free DVNCED Internal control code Current:12=12 Quadrant:C=3Q Voltage:6=6V 8=8V Sensitivity and type: T=5m S=1m Blank=35m B=5m Package explain:f=to-22f Ordering information Part number Package Marking Packing Quantity DS12C6F# TO-22F DS12C6F# Tube 5pcs DS12C8F# TO-22F DS12C8F# Tube 5pcs Note:# = Gate Trigger Current Sensitivity and type 5 / 6 Feb,213 -Rev.3.2
6 Notice 1. ll information included in this document such as product data, diagrams, charts, programs, algorithms, and application circuit examples, is current as of the date this document is issued. Such information, however, is subject to change without any prior notice. Before purchasing or using any DV products listed in this document, please confirm the latest product information with a DV sales office. lso, please pay regular and careful attention to additional and different information to be disclosed by DV such as that disclosed through our website. ( ) 2. DV has used reasonable care in compiling the information included in this document, but DV assumes no liability whatsoever for any damages incurred as a result of errors or omissions in the information included in this document. 3. You should use the products described herein within the range specified by DV, especially with respectvto the maximum rating, operating supply voltage range, movement power voltage range, heat radiation characteristics, installation and other product characteristics. DV shall have no liability for malfunctions or damages arising out of the use of DV products beyond such specified ranges. 4. When using or otherwise relying on the information in this document, you should evaluate the information in light of the total system before deciding about the applicability of such information to the intended application.dv makes no representations, warranties or guaranties regarding the suitability of its products for any particular application and specifically disclaims any liability arising out of the application and use of the information in this document or DV products. 5. lthough DV endeavors to improve the quality and reliability of its products, IC products have specific characteristics such as the occurrence of failure at a certain rate and malfunctions under certain use conditions. Please be sure to implement safety measures to guard against the possibility of physical injury, and injury or damage caused by fire in the event of the failure of a DV product, such as safety design for hardware and software including but not limited to redundancy, fire control and malfunction prevention, appropriate treatment for aging degradation or any other applicable measures. mong others, since the evaluation of microcomputer software alone is very difficult, please evaluate the safety of the final products or system manufactured by you. 6. This document is provided for reference purposes only so that DV customers may select the appropriate DV products for their use. DV neither makes warranties or representations with respect to the accuracy or completeness of the information contained in this document nor grants any license to any intellectual property rights or any other rights of DV or any third party with respect to the information in this document. 7. DV shall have no liability for damages or infringement of any intellectual property or other rights arising out of the use of any information in this document, including, but not limited to, product data, diagrams, charts,programs, algorithms, and application circuit examples. 8. This document may not be reproduced or duplicated, in any form, in whole or in part, without prior written approval from DV. 6 / 6 Feb,213 -Rev.3.2
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