celduc r e l a i s Proud to serve you celduc MOSFET BASED DC SOLID STATE RELAY SCM VDC 200VDC 100ADC Page 1/5 GB
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1 Page 1/5 GB MOSFET BASED DC SOLID STATE RELAY SCM2! Latest MOSFET technology generation.! Ultra low on-state resistance.! New innovative isolated driver ensuring fast power transistor turn on and off therefore low power transient.! Ultra low output leakage current! Low control current consumption! Triggered control input to avoid linear control risks! Low conducted and radiated disturbances Control voltage Max. output peak voltage Nom. load current with heatsink VDC 2VDC ADC Load voltage Load current Control input voltage In & case / Out Insulation Connections Dimensions (WxHxD) Weight Depends on protection clamping voltage to A (with heatsink) VDC 4kV M3 round tabs M5 round tabs 44.5 x 58.2 x 27 (mm) g Fig. 1 HIGH SIDE WIRING DIAGRAM (Load connected to - ) Fig. 2 LOW SIDE WIRING DIAGRAM (Load connected to + ) sheet for selective the right sheet for selective the right Fig. 3 INTERNAL DIAGRAM Proud to serve you Data given at Tambient=4 C and subject to modification without previous notice
2 Page 2/5 GB CONTROL INPUT CHARACTERISTICS INPUT CIRCUIT Control voltage Uc VDC Current consumption Ic 25 42mADC for control voltage See fig. 5 Typical turn on voltage Ucontyp 4.3V Min. releasing voltage Ucoffmin 1VDC Typical releasing voltage Ucofftyp 3.5V Max. input voltage Ucmax 32VDC Max. reverse voltage -Ucmax 32VDC Max. reverse leakage current -Icmax µa Input impedance Re Current limitation See fig. 5 POWER OUTPUT CHARACTERISTICS POWER CIRCUIT Mains voltage Ue Depends on protection clamping voltage Non-repetitive peak voltage Uep 2V Overvoltage protection D1 Not integrated A voltage clamping mean must be connected across the terminals 1 & 2 (see fig 1 & 2) Reverse voltage (internal diode) -Ue 1,6V Max. repetitive avalanche current Max. single pulse avalanche energy Max. repetitive pulse avalanche energy Maximum nominal currents Non-repetitive peak overload current Iep Eep A 75mJ sheet for selective Pulse width limited by Eep Ie Resistive A Motor Please consult us See fig. 7 for limits Values with heatsink Iepeak L(load+line)=µH See fig. 8 Min. load current Iemin ma Max. leakage current Max. on-state resistance Typ. output capacitance Cout 1.5nF Junction/case thermal resistance per power element Built-in heatsink thermal resistance vertically mounted Rthjc.4K/W Total = 2 power elements Rthra Tra=6 C Heatsink thermal time constant Tthra Tra=6 C Control inputs/power ouputs insulation voltage Uimp Inputs/case insulation voltage Uimp 4kV Outputs/case insulation voltage Uimp 4kV Isolation resistance Rio 1GΩ Isolation capacitance Cio <8pF Maximum junction temperature Tjmax 175 C Storage ambient temperature Tstg -4->+ C Operating ambient temperature Tamb -4->+9 C See fig. 7 Max. case temperature Tc C 4kV
3 Page 3/5 GB TIME CHARACTERISTICS Fig. 4 TIME DIAGRAMS TIME CHARACT. Turn on time ton µs (1.2µs typical) Turn on delay tdon 6µs (5µs typical) Turn off time toff µs (1µs typical) Turn off delay tdoff µs (6µs typical) Max. On-Off frequency F(on-off) 7Hz CONNEC- TIONS Connections Power Control Screwdriver advised Philips NR2 Philips NR1 Min and max tightening torque 1.8 N.m.8 N.m Insulated crimp terminals (round tabs, eyelet type) M5 GENERAL INFORMATION M3 Display Green LED (indicates relay has switched ON) MISC. Housing Mounting Noise level UL94V 2 screws (M4x12mm) No audible noise See mounting sheet Weight g STANDARDS GENERAL Standards Protection level Protection against direct touch CE marking UL, culus and VDE approvals IEC IP None Yes Pending TYPE OF TEST STANDARD LEVEL EFFECT E.M.C. IMMUNITY E.S.D. (Electrostatic discharges) EN6-4-2 Pending? Radiated electromagnetic fields EN6-4-3 Pending? Fast transients bursts EN kV coupling by clamp on the input side and direct for power side No effect Electric chocks EN kV direct coupling on the input side (pending for power side)? Voltage drop EN E.M.C. EMISSION Radiated and conducted disturbances NFEN5511 Pending
4 Page 4/5 GB CHARACTERISTIC CURVES Fig. 5 INPUT CHARACTERISTIC Fig. 6 ON RESISTANCE VS TEMPERATURE Ic (madc) C Uc (VDC) RDSon 25 (mohms) Junction Temperature ( C) Fig. 7 POWER DISSIPATED AND LOAD CURRENT LIMIT VS TEMPERATURE Permanent current Please refere to the installation notice for Ie AC51 (ARMS) precautions about mounting the device on a heatsink K/W.9K/W.75K/W.55K/W.3K/W.2K/W.1K/W Power dissipated (W) K/W 4K/W 2.4K/W 2.2K/W 2.1K/W 1.95K/W 1.5K/W 1.3K/W Ambient temperature ( C) 8K/W = No Heatsink 4K/W = No reference 2.4K/W = WF K/W = WF K/W = WF K/W = WF2 1.95K/W = WF K/W = WF K/W = WF K/W = WF12 1.1K/W = WF131.9K/W = WF92.9K/W = WF115.7K/W = WF7.55K/W = WF5.3K/W = WF31.2K/W = WF2.1K/W = No reference 1.2K/W 2.2 Fig. 8 CURRENT OVERLOAD CHARACTERISTIC (ITSM PER POWER ELEMENT) Please consult us for calculation
5 Page 5/5 GB DIMENSIONS AND ACCESSORIES Fig DIMENSIONS Ø,5 Æ M TOLERANCES: Ø M3 Fig. ACCESSORIES PROTECTIVE COVER 1K47 Rue Ampère B.P SORBIERS - France Phone : 33 () Fax : 33 () relais@.com
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