S112S01 Series S116S01 Series
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1 S11S1 Series/S11S1 Series S11S1 Series S11S1 Series SIP Type SSR for Medium Power Control Features 1. Compact, high radiation resin mold package. RMS ON-state current S11S1 Series: 1Arms at TC <= 7 C ( With heat sink) S11S1 Series: 1Arms at TC <= C ( With heat sink) 3. Built-in zero-cross circuit (S11S / S1S / S11S / S1S ). High repetitive peak S11S1/ S11S / S11S1 / S11S VDRM : V S1S1 / S1S / S1S1 / S1S VDRM : V 5. Isolation voltage between input and output (Viso : Vrms ). Recognized by UL, file No. E975 S11S1 / S11S S11S1 / S11S 7. Approved by CSA, No. 375 S11S1 / S11S S11S1 / S11S Applications 1. Copiers, laser beam printers. Automatic vending machines 3. FA equipment Outline Dimensions (Unit : mm ) A (Model No.) B S11S1 1A15VAC S11S S11S1 1A15VAC S11S S1S1 1A5VAC S1S S1S1 1A5VAC S1S ± ±.3 -. ±.. MAX. Internal connection diagram S11S1/S11S1 S1S1/S1S1 1 3 B 1 Output (Triac T) Output (Triac T1) 3 Input ( + ) Input ( - ) * The metal parts marked* are common to terminal 1. Do not allow external connection. ( ) : Typical dimensions 1.5 ±. 1. ±.3 φ 3. ±. * A ±. (3.) (5.) (7.) (.5). ±.1 (1.) Zero-cross circuit 3. ±.. MAX. 5. ± MIN ±. S11S/S11S S1S/S1S 1 Output (Triac T) Output (Triac T1) 3 Input ( + ) Input ( - ) Model line-ups For phase control No built-in zero-cross circuit Built-in zero-cross circuit For V lines S11S1 S11S1 S11S S11S For V lines S1S1 S1S1 S1S S1S In the absence of confirmation by device specification sheets, SHARP takes no responsibility for any defects that occur in equipment using any of SHARP's devices, shown in catalogs, data books, etc. Contact SHARP in order to obtain the latest version of the device specification sheets before using any SHARP's device.
2 Absolute Maximum Ratings Input Output S11S1 Series/S11S1 Series (Ta = 5 C) Parameter Symbol Rating Unit Forward current IF 5 ma Reverse voltage VR V * RMS ON-state S11S1 Series 1 A rms IT current *1 Peak one cycle surge current Repetitive peak Non-repetitive peak S11S1 Series S11S1 Series S11S1 Series S11S1 / S11S S11S1 / S11S S1S1 / S1S S1S1 / S1S S11S1 / S11S S11S1 / S11S S1S1 / S1S S1S1 / S1S I surge VDRM VDSM 1 A 1 A V V V V Critical rate of rise of ON-state current di/dt 5 A/µ s Operating frequency f 5 to 5 Hz * Isolation voltage Viso V rms Operating temperature Topr - 5 to + C Storage temperature Tstg - 3 to + 15 C *3 Soldering temperature Tsol C *5 1 A rms *1 AC Hz sine wave, T j = 5 C start * AC Hz for 1 minute, to % RH. Apply voltages between input and output by the dielectric withstand voltage tester with zero-cross circuit. ( Input and output shall be shorted respectively). ( Note ) When the isolation voltage is necessary at using external heat sink, please use the insulation sheet. *3 For seconds * T C<=7 C *5 T C<= C Electrical Characteristics Input Output Transfer characteristics Turn-off time Thermal resistance S11S1 series (Between junction and case) S11S1 series Thermal resistance ( Between junction and ambience ) * S11S1 Series: di T/dt = - A/ms S11S1 Series: di T/dt = - A/ms R th(j -a) (Ta = 5 C) Parameter Symbol Conditions MIN. TYP. MAX. Unit Forward voltage V F IF = ma V Reverse current IR V R= 3V A Repetitive peak OFF-state current I DRM V D =VDRM A ON-state voltage Resistance load S11S1 Series IF= ma, IT = 1Arms V rms V T Resistance load S11S1 Series IF= ma, IT = 1Arms V rms Holding current IH ma Critical rate of rise of dv/dt V D = /3 V DRM V/µ s Critical rate of rise of commutating ( dv/dt ) C T j = 15 C, VD = V, * V/µ s Zero-cross voltage S11S / S1S S11S / S1S V OX IF = ma V S11S1 / S1S1 Minimum trigger S11S1 / S1S1 V D = 1V, R L= 3Ω - - ma S11S / S1S I FT current S11S / S1S VD= V, R L= 3Ω - - ma Isolation resistance R ISO DC5V, RH = to % - - Ω Turn-on time S11S1 / S1S1 S11S1 / S1S ms S11S / S1S t on AC 5Hz S11S / S1S - - ms t off AC 5Hz - - ms R th(j -c) C/W C/W C/W
3 S11S1 Series/S11S1 Series Fig. 1 RMS ON-state Current vs. Ambient Fig. RMS ON-state Current vs. Ambient Temperature ( S11S1Series) Temperature ( S11S1Series) RMS On-state current IT ( Arms ) RMS ON-state current IT ( Arms ) 1 (5) () (3) () (1) (1) With infinite heat sink () With heat sink ( x x mm Al plate) (3) With heat sink ( x x mm Al plate) () With heat sink ( x x mm Al plate) (5) Without heat sink Fig. 3 RMS ON-state Current vs. Case Temperature S11S1Series S11S1Series RMS On-state current I T ( Arms ) Forward current I F ( ma ) (5) () (3) () (1) With infinite heat sink () With heat sink ( x x mm Al plate) (3) With heat sink ( x x mm Al plate) () With heat sink ( x x mm Al plate) (5) Without heat sink ( Note) With the Al heat sink set up vertically,tighten the device at the center of the Al heat sink with a torque of.n m and apply thermal conductive silicone grease on the heat sink mounting plate. Forcible cooling shall not be carried out. 5 3 (1) Fig. Forward Current vs Case temperature T c ( C)
4 S11S1 Series/S11S1 Series Fig. 5 Forward Current vs. Forward Voltage Fig. Surge Current vs. Power-on Cycle Forward current IF ( ma ) 5 5 T a = C 75 C 5 C 5 C C - 5 C Surge current I surge (A) S11S1Series f= H z T j = 5 C Start S11S1Series Maximum ON-state power dissipation (W) Forward voltage V F (V) Fig. 7 Maximum ON-state Power Dissipation vs. RMS ON-state Current (S11S1Series ) RMS ON-state current I T ( Arms ) Fig. 9 Minimum Trigger Current vs. Minimum trigger current I FT (ma ) S11S1/S1S1 S11S1/S1S1 T a = 5 C V D = 1V S11S1, S1S1 ( S11S1,S1S1 ) V D = V S11S,S1S ( S11S,S1S ) R L =3Ω S11S/S1S S11S/S1S Repetitive peak OFF-state current IDRM (A) Maximum ON-state power dissipation (W) Power-on cycle (Times) Fig. Maximum ON-state Power Dissipation vs. RMS ON-state Current (S11S1Series) T a = 5 C RMS ON-state current I T ( Arms ) Fig. Repetitive Peak OFF-state Current vs. ( S11S1/ S11S/S11S1/ S11S) S11S S11S S11S1 S11S1 V D = V
5 S11S1 Sreies/S11S1 Series Fig.11 Repetitive Peak OFF-state Current vs. ( S1S1/ S1S/ S1S1/S1S ) - V D = V -5 Repetitive peak OFF-state current IDRM (A) S1S S1S S1S1 S1S Please refer to the chapter Precautions for Use.
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