Teccor brand Thyristors High Energy Unidirectional SIDACs
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1 K2xx0yHU Series RoHS Description The new K2xx0yHU is a higher energy SIDC switch for gas ignition applications requiring higher current pulse current especially at low repetition rate. It is offered in a DO-5 leaded package and DO-24 surface mount package. Voltage activation of this solid state switch is accomplished with peak voltage level of 90 to 260Volts. The SIDC is a silicon bilateral voltage triggered Thyristor switch that switches on through a negative resistance region to a low on-state voltage. Conduction will continue until current is interrupted or lowered below minimum holding current of the device. Features Schematic Symbol C circuit oriented Triggering Voltage of 90 to 260V 280 Pulse current capability RoHS compliant Unidirectional K pplications Suitable for high voltage power supplies, natural gas igniters, and Xenon flash ignition. Electrical Specifications (T J = 25 C, unless otherwise specified Symbol Parameters Test Conditions Min Max Unit K2000yHU Breakover/Trigger Voltage K2200yHU K2400yHU V K2500yHU K2000yHU 80 V DRM Repetitive Peak Off-state Voltage K2200yHU 90 K2400yHU 20 V K2500yHU 220 I T(RMS On-state RMS Current 50/60Hz, T J < 25 C V TM Peak On-state Voltage I T =.5 V R I H Dynamic Holding Current L = 00Ω 50/60Hz Sine Wave 60 m R S ( V S Switching Resistance, R S = (I S I BO 50/60Hz Sine Wave 00 Ω I BO Breakover Current 50/60Hz Sine Wave 500 μ I TRM Peak Repetitive Pulse Current 60Hz 20 t (refer to figure 4 p = 0μs 5Hz 280 di/dt Critical Rate of Rise of On-State Current 220 /μs dv/dt Critical Rate of Rise of Off-State Voltage 500 V/μs T S Storage Temperature Range C T J Junction Temperature Range C R θjl Thermal Resistance, Junction to Lead DO-5 8 DO C/W R θj Thermal Resistance, Junction to mbient DO-5 75 C/W Note: xxx - voltage, y = package
2 Figure : V-I Characteristics Figure 2: On-state Current vs. On-state Voltage (Typical +I 9 -V I T I H I S I BO I DRM -I V T ( -V S R S = (I S -I BO +V V S V DRM Instantaneous On-state Current (i T mps Instantaneous On-state Voltage (v T Volts Figure 3: Power Dissipation vs. On-state Current (Typical Figure 4: Repetitive Peak On-state Current (I TRM vs. Pulse Width at Various Frequencies verage On-State Power Dissipation [P D(V ] - Watts CURRENT WVEFORM: Sinusoidal LOD: Resistive or Inductive CONDUCTION NGLE: See basic SIDC circuit in Figure RMS On-State Current [I T(RMS ] - mps Repetitive Peak On-State Current (I TRM - mps di/dt Limit Line khz 5 khz 5 Hz 60 Hz Pulse Base Width (t O - us I TM t O /f Figure 5: Surge Peak On-state Current vs. Number of Cycles Figure 6: Normalized Change vs. Junction Temperature Peak Surge (Non-repetitive On-state Current (I TSM mps 00 0 SUPPLY FREQUENCY: 60 Hz Sinusoidal LOD: Resistive RMS ON-STTE CURRENT: I T RMS Maximum Rated Value at Specified Junction Temperature Notes: Blocking capability may be lost during and immediately following surge current interval. 2 Overload may not be repeated until junction temperature has returned to steady-state rated value Surge Current Duration -- Full Cycles Change -- % 0% 8% 6% 4% 2% 0% -2% -4% -6% -8% Junction Temperature (T J -- C
3 Figure 7: Normalized DC Holding Current vs. Junction Temperature Figure 8: Maximum llowable Case Temperature vs. RMS On-State Current Ratio of I H / I H (T J = 25 C Maximum llowable Lead/Case Temperature (T C - C Kxxx0SHU Kxxx0GHU Junction Temperature (T J -- C 25 CURRENT WVEFORM: Sinusoidal - 60Hz LOD: Resistive or Inductive RMS On-State Current [I T(RMS ] - mps Figure 9: Maximum llowable mbient Temperature vs. RMS On-State Current Figure 0: Normalized Repetitive Peak Breakover Current (I BO vs. Junction Temperature 40 0 Maximum llowable mbient Temperature (T - C Kxxx0SHU CURRENT WVEFORM : Sinusoidal - 60Hz LOD: Re sistive or Inductive FREE IR RTING Kxxx0GHU Repetitive Peak Breakover Current (I BO Multiplier RMS On-State Current [I T(RMS ] - mps Junction Temperature (T J -- C Figure : General Gas Ignitor Circuit dditional Information Datasheet Resources Samples V ac 60 Hz High Voltage Output
4 Temperature Teccor brand Thyristors Soldering Parameters Reflow Condition Pb Free assembly T P t P - Temperature Min (T s(min 50 C Ramp-up Pre Heat - Temperature Max (T s(max 200 C - Time (min to max (t s secs verage ramp up rate (Liquidus Temp (T L to peak 5 C/second max T L T S(max T S(min Preheat t L Ramp-down T S(max to T L - Ramp-up Rate 5 C/second max t S - Temperature (T L (Liquidus 27 C Reflow - Temperature (t L seconds Peak Temperature (T P /-5 C 25 time to peak temperature Time Time within 5 C of actual peak Temperature (t p seconds Ramp-down Rate 5 C/second max Time 25 C to peak Temperature (T P 8 minutes Max. Do not exceed 280 C Physical Specifications Terminal Material Terminal Finish Body Material Design Considerations Copper lloy 00% Matte Tin-plated UL recognized epoxy meeting flammability classification 94V-0. Careful selection of the correct device for the application s operating parameters and environment will go a long way toward extending the operating life of the Thyristor. Overheating and surge currents are the main killers of SIDCs. Correct mounting, soldering, and forming of the leads also help protect against component damage. Reliability/Environmental Tests Test High Temperature Voltage Blocking Temperature Cycling Biased Temperature & Humidity High Temp Storage Low-Temp Storage Thermal Shock utoclave (Pressure Cooker Test Resistance to Solder Heat Specifications and Conditions MIL-STD-750: Method 040, Condition Rated V DRM (VC-peak, 25 C, 008 hours MIL-STD-750: Method C to 50 C, 5-minute dwell, 00 cycles EI/JEDEC: JESD22-0 (VDC, 85 C, 85%RH, 008 hours MIL-STD-750: Method C, 008 hours -40 C, 008 hours MIL-STD-750: Method C to 00 C, 5-minute dwell, 0-second transfer, 0 cycles EI/JEDEC: JESD C, 00%RH, 2atm, 68 hours MIL-STD-750: Method C, 0 seconds Solderability NSI/J-STD-002: Category 3 Repetitive Surge Life Testing MIL-STD-750: Method 2036, Condition E
5 Dimensions DO-5 Temperature Measuring Point D Dimension Inches Millimeters Max Max Min Max C B B C D Dimensions DO-24 B D Case Temperature Measurement Point Inches Millimeters Dimension Max Max Min Max C B C D E H F F G E (2.0 K G H K (2.8 inch (millimeter (2.0 Recommended Soldering Pad Outline Product Selector Part Number Switching Voltage Range Blocking Voltage Packages Minimum Maximum V DRM DO-5 DO-24 K2000yHU 90V 20V 80V K2000GHU K2000SHU K2200yHU 20V 230V 90V K2200GHU K2200SHU K2400yHU 230V 250V 20V K2400GHU K2400SHU K2500yHU 240V 260V 220V K2500GHU K2500SHU Note: y = package Packing Options Part Number Marking Weight Packaging Mode Base Quantity K2xx0GHU K2xx0GHU 0.38g Bulk 000 K2xx0GHURP K2xx0GHU 0.38g Reel Pack 5000 K2xx0SHURP KxxHU 0.0g Reel Pack 2500 Note: xx = voltage
6 Teccor brand Thyristors DO-5 Reel Pack (RP Specifications Meets all EI RS-296 Standards DO ( ( (80.0 TYP ( (6.4 Dimensions are in inches (and millimeters. Direction of Feed 0.97 (5.0 DO-24 Embossed Carrier Reel Pack (RP Specifications Meets all EI-48- Standards 0.57 ( ( ( ( DI (.5 Cover tape 0.52 (3.0 rbor Hole Dia (330.0 Dimensions are in inches (and millimeters. Cathode 0.49 (2.4 Direction of Feed Part Numbering System Part Marking System K G H U RP DO-5 DEVICE TYPE K: Sidac PCKGING OPTIONS [Blank]: Bulk RP: Tape and Reel Unidirectional K2200GHU DO-24 VOLTGE 200:90 to 20V 220:20 to 230V 240:230 to 250V 250:240 to 260V CURRENT FUNCTION 0: Standard HIGH-ENERGY SIDC PCKGE TYPE G: DO-5 S: DO-24 K22HU Date Code Marking Y:Year Code M: Month Code XXX: Lot Trace Code
7 Teccor brand Thyristors Part Numbering System Part Marking System K G H U RP DO-5 DEVICE TYPE K: Sidac PCKGING OPTIONS [Blank]: Bulk RP: Tape and Reel Unidirectional K2200GHU DO-24 VOLTGE 200:90 to 20V 220:20 to 230V 240:230 to 250V 250:240 to 260V CURRENT FUNCTION 0: Standard HIGH-ENERGY SIDC PCKGE TYPE G: DO-5 S: DO-24 K22HU Date Code Marking Y:Year Code M: Month Code XXX: Lot Trace Code
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