SERIES IRK.136,.142,.162
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- Bartholomew Logan
- 5 years ago
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1 Bulletin I277 rev. C 3/2 THYRISTOR/DIODE and THYRISTOR/THYRISTOR SERIES IRK.36,.42,.62 NEW INT-A-pak Power Modules Features High Voltage Electrically Isolated by DBC Ceramic ( Al 2 O 3 ) 35 V RMS Isolating Voltage Industrial Standard Package High Surge Capability Glass Passivated Chips Modules uses High Voltage Power thyristor/diodes in three Basic Configurations Simple Mounting UL E78996 approved 35 A 4 A A Applications DC Motor Control and Drives Battery Charges Welders Power Converters Lighting Control Heat and Temperature Control Major Ratings and Characteristics CASE STYLE NEW INT-A-PAK Parameters IRK.36.. IRK.42.. IRK.62.. Units I T(AV) 35 4 T C C I T(RMS) A I 5Hz Hz A I 2 5Hz KA 2 Hz KA 2 s I 2 t KA 2 s V RRM 4 to V T range - 4 to 25 C
2 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Electrical Specifications Voltage Ratings Type number Voltage V RRM /V DRM, Maximum repetitive V RSM /V DSM, Maximum non-repetitive I RRM / I DRM Code peak reverse voltage peak reverse 25 C V V m A IRK IRK IRK Forward Conduction Parameter IRK.36 IRK.42 IRK.62 Units Conditions I T(AV) Max. average on-state current 35 4 A conduction, half sine Case temperature C I T(RMS) Max. RMS on-state current A as AC switch I TSM Maximum peak, one-cycle A t = ms No voltage on-state, non-repetitive t = 8.3ms reapplied surge current t = ms % V RRM t = 8.3ms reapplied Sine half wave, I 2 t Maximum I 2 t for fusing KA 2 s t = ms No voltage Initial T = T t = 8.3ms reapplied t = ms % V RRM t = 8.3ms reapplied I 2 t Maximum I 2 t for fusing KA 2 s t =. to ms, no voltage reapplied V T (TO) Low level value of threshold V (6.7% x π x I T(AV) < I < π x I T(AV) T voltage V T (TO)2 High level value of threshold.5.98 (I > π x I T T voltage r t Low level value on-state mω (6.7% x π x I T (AV) < I < π x I T T slope resistance r t2 High level value on-state (I > π x I T T slope resistance V TM Maximum forward voltage drop V I TM = π x I T(AV), T = 25 C, conduction I H Maximum holding current 2 ma Anode supply = 6V initial I T = 3A, T = 25 C I L Maximum latching current 4 ma Anode supply = 6V resistive load = Ω Gate pulse: V, µs, T = 25 C Switching t gd Typical delay time T = 25 o C Gate Current=A dig/dt=a/µs t gr Typical rise time 2 µs T = 25 o C Vd=,67% V DRM t q Typical turn-off time 5-2 I TM = 3 A; -di/dt = 5 A/µs; T = T max V r = 5 V; dv/dt = 2 V/µs; Gate V, Ω 2
3 Blocking Triggering Thermal and Mechanical Specifications IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 I RRM Maximum peak reverse and 5 ma T = 25 o C I DRM off-state leakage current V INS RMS isolation voltage 35 V 5Hz, circuit to base, all terminals shorted, t = s dv/dt critical rate of rise of off-state voltage V/µs T = T, exponential to 67% rated V DRM Parameter IRK.36 IRK.42 IRK.62 Units Conditions P GM Max. peak gate power 2 W tp 5ms, T = T P G(AV) Max. average gate power 3 W f=5hz, T = T I GM Max. peak gate current 3 A tp 5ms, T = T -V GT Max. peak negative V gate voltage V GT Max. required DC gate 4 V T = - 4 C Anode supply = 6V, resistive voltage to trigger 2.5 T = 25 C load; Ra = Ω.7 T = T I GT Max. required DC gate 27 T = - 4 C Anode supply = 6V, resistive current to trigger 5 ma T = 25 C load; Ra = Ω 8 T = T V GD Max. gate voltage.3 T = T, rated V DRM applied that will not trigger I GD Max. gate current ma that will not trigger di/ dt Max. rate of rise of 3 T = T, I TM = 4Arated V DRM applied turned-on current Parameter IRK.36 IRK.42 IRK.62 Units Conditions T Max. junction operating -4 to 25 C temperature range T stg Max. storage temperature -4 to 5 C range R thc Max. thermal resistance, K/W DC operation, per junction junction to case R thcs Max. thermal resistance,.5 K/W Mounting surface smooth, flat and greased case to heatsink Per module T Mounting IAP to heatsink 4 to 6 Nm A mounting compound is recommended and torque ± % busbar to IAP 4 to 6 the torque should be rechecked after a period of 3 hours to allow for the spread of the wt Approximate weight 2 (7.) g(oz) compound. Lubricated threads. Case Style New Int-A-Pak R Conduction (per unction) (The following table shows the increment of thermal resistance R thc when devices operate at different conduction angles than DC) Sinusoidal T Rectangular T Devices Units o o o o 3 o o o o o 3 o IRK IRK K/W IRK
4 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Ordering Information Table Device Code IRK T 62 / Module Type 2 - Circuit Configuration 3 - Current Rating: I T(AV) 4 - Voltage Code: Code x = V RRM Outline Table Dimensions are in millimeters and [inches] IRKT IRKH IRKL NOTE: To order the Optional Hardware see Bulletin I27 4
5 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Allowable Case Temperature ( C) 3 IRK.36.. Series R thc (DC) =.8 K/W Maximum Allowable Case Temperature ( C) 3 3 IRK.36.. Series R thc (DC) =.8 K/W Conduction Period 8 DC Average Forward Current (A) Fig. - Current Ratings Characteristics Fig. 2 - Current Ratings Characteristics Maximum Average On-state Power Loss (W) RMS Limit IRK.36.. Series 5 T = 25 C 3 5 Maximum Average On-state Power Loss (W) DC 3 RMS Limit Conduction Period IRK.36.. Series 5 T = 25 C Fig. 3 - On-State Power Loss Characteristics Fig. 4 - On-State Power Loss Characteristics Peak Half Sine W ave On -state Current (A) At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T = 25 Hz.83 5 Hz. s 4 IRK.36.. Series Number Of Equal Amplitude Half Cycle Current Pulses (N) Peak Half Sine Wave On-state Current (A) Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Control Of Conduction May Not Be Maintained. Initial T = 25 C No Voltage Reapplied Rated V Reapplied RRM 5 IRK.36.. Series.. Pulse Train Duration (s) Fig.5 - Maximum Non-Repetitive Surge Current Fig. 6 - Maximum Non-Repetitive Surge Current 5
6 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Total On-state Power Loss (W) IRK.36.. Series Per Module T = 25 C.2 K/W.6 K /W.25 K/W.4 K/W.6 K /W K/W.8 K /W Total RMS Output Current (A).4 K /W R =. K/W - D elta R thsa Fig.7 - On State Power Loss Characteristics Maximum Total Power Loss (W) (Sine) (Rect).8 K /W.2 K/W.2 K/W.35 K/W.4 K/W R =. K/W - D elta R 3 2 x IRK.36.. Series 2 Single Phase Bridge Connected T = 25 C Total Output Current (A).6 K /W thsa Fig.8 - On State Power Loss Characteristics 5 Maximum Total Power Loss (W) 3 (Rect) 3 x IRK.36.. Series Three Phase Bridge Connected T = 25 C.8 K /W. K /W.6 K /W.25 K /W.4 K /W K/W R =.4 K /W - Delta R Total Output Current (A) th SA Fig.9- On State Power Loss Characteristics 6
7 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Allowable Case Temperature ( C) 3 IRK.42.. Series R thc (DC) =.8 K/W Maximum Allowable Case Temperature ( C) IRK.42.. Series R thc (DC) =.8 K/W Conduction Period DC Average Forward Current (A) Fig. - Current Ratings Characteristics Fig. - Current Ratings Characteristics Maximum Average On-state Power Loss (W) RMS Limit 5 IRK.42.. Series T = 25 C 3 5 Maximum Average On-state Power Loss (W) DC 3 RMS Limit Conduction Period IRK.42.. Series 5 T = 25 C Fig. 2 - On-State Power Loss Characteristics Fig. 3 - On-State Power Loss Characteristics Peak Half Sine W ave On -state C urrent (A) At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T = 25 Hz.83 5 Hz. s 2 IRK.42.. Series 5 Peak Half Sine W ave On-state Current (A) Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Control O f Conduction May Not Be Maintained. Initial T = 25 C No Voltage Reapplied Rated V RRMReapplied 2 IRK.42.. Series 5.. Number Of Equal Amplitude Half Cycle Current Pulses (N) Pulse Train Duration (s) Fig.4 - Maximum Non-Repetitive Surge Current Fig. 5 - Maximum Non-Repetitive Surge Current 7
8 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Total On-state Power Loss (W ) IRK.42.. Series Per Module T = 25 C.25 K/W.4 K /W.6 K/W K /W.2 K /W.6 K /W.8 K/W R =. K/W - D e lta R Total RMS Output Current (A).4 K /W thsa Fig.6 - On State Power Loss Characteristics Maximum Total Power Loss (W) 8 4 (Sine) (Rect).8 K/W.2 K /W.6 K /W.25 K /W R =. K /W - D elta R 2 x IRK.42.. Series 2 Single Phase Bridge Connected T = 25 C Total Output Current (A).6 K/W.4 K/W thsa Fig.7 - On State Power Loss Characteristics Maximum Total Power Loss (W) 8 4 (Rect) 3 x IRK.42.. Series Three Phase Bridge Connected T = 25 C.4 K /W.6 K /W.8 K/W. K /W.6 K/W.2 K/W R =.2 K/W - Delta R Total Output Current (A) t hsa Fig.8- On State Power Loss Characteristics 8
9 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Allowable Case Temperature ( C) 3 IRK.62.. Series R thc (DC) =.6 K/W Maximum Allowable Case Temperature ( C) 3 IRK.62.. Series R thc (DC ) =.6 K/W Conduction Period DC Average Forward Current (A) Fig. 9 - Current Ratings Characteristics Fig. 2 - Current Ratings Characteristics Maximum Average On-state Power Loss (W) IRK.62.. Series T = 25 C 3 RMS Limit Maximum Average On-state Power Loss (W) DC 3 RMS Limit Conduction Period IRK.62.. Series 5 T = 25 C Peak Half Sine Wave On-state Current (A) Fig. 2 - On-State Power Loss Characteristics At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T = 25 Hz.83 5 Hz. s 2 IRK.62.. Series 5 Num ber O f Equa l Am plitud e Half Cycle Current Pulses (N) Peak Half Sine Wave On-state Current (A) Fig On-State Power Loss Characteristics Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Control O f Conduction May Not Be Maintained. In itial T = 25 C No Voltage Reapplied Rated V RRMReapplied 2 IRK.62.. Series 5.. Pulse Train Duration (s) Fig.23 - Maximum Non-Repetitive Surge Current Fig Maximum Non-Repetitive Surge Current 9
10 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Maximum Total On-state Power Loss (W) IRK.62.. Series Per Module T = 25 C.6 K /W.8 K/W. K /W.6 K/W.2 K/W.4 K/W R =.2 K/W - Delta R Total RMS Output Current (A) thsa Fig.25 - On State Power Loss Characteristics Maximum Total Power Loss (W) (Sine) (Rect).8 K/W.2 K /W.2 K /W.3 K /W R =.4 K/W - De lta R x IRK.62.. Series Single Phase Bridge Connected T = 25 C Total Output Current (A).4 K/W.6 K /W K/W thsa Fig.26 - On State Power Loss Characteristics Maximum Total Power Loss (W) (Rect) 3 x IRK.62.. Series Three Phase Bridge Connected T = 25 C.8 K/W.2 K/W.2 K /W.3 K/W.6 K /W.4 K /W R =.2 K/W - De lta R Total Output Current (A) t h SA Fig.27- On State Power Loss Characteristics
11 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Instantaneous On-state Current (A) T = 25 C T = 25 C IRK.36.. Series Instantaneous On-state Voltage (V) Instantaneous On-state Current (A) T = 25 C T = 25 C IRK.42.. Series Instantaneous On-state Voltage (V) Fig.28 - On State Voltage Drop Characteristics Fig.29 - On State Voltage Drop Characteristics Instantaneous On-state Current (A) Transient Thermal Impedance Z thc T = 25 C T = 25 C IRK.62.. Series Instantaneous On-state Voltage (V). Fig.3 - On State Voltage Drop Characteristics Steady State Value (DC Operation) IRK.42.. Series... Square Wave Pulse Duration (s) Fig.32 - Thermal Impedance ZthC Characteristics Transient Thermal Impedance Z thc Transient Thermal Impedance Z thc Steady State Value (DC Operation).. IRK.36.. Series.... Square Wave Pulse Duration (s) Fig.3 - Thermal Impedance ZthC Characteristics Steady State Value (DC Operation). IRK.62.. Series... Square Wave Pulse Duration (s) Fig.33 - Thermal Impedance ZthC Characteristics
12 IRK.36,.42,.62 Series Bulletin I277 rev. C 3/2 Instantaneous Gate Voltage (V) Rectangular gate pulse a)recommended load line for rated di/dt: 2 V, 2 ohms tr =.5 s, tp >= 6 s b)recomm ended loa d line for <= 3% rated di/dt: 5 V, 4 ohms tr = s, tp >= 6 s T = 25 C (b) T = 25 C (a) T = -4 C VGD IG D IRK Series Frequency Limited by PG(AV).... Instantaneous Gate Current (A) Fig Gate Characteristics () PGM = 2 W, tp = 3 s (2) PGM = W, tp = ms (3) PGM = 3 W, tp = 2 ms (4) PGM = 2 W, tp = 5 ms (4) (3) (2) () Data and specifications subject to change without notice. This product has been designed and qualified for Multiple Level. Qualification Standards can be found on IR's Web site. IR WORLD HEADQUARTERS: 233 Kansas St., El Segundo, California 245, USA Tel: (3) TAC Fax: (3) Visit us at for sales contact information. 3/2 2
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