TC4S66F_00 TOSHIBA | Alldatasheet

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TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC TC4S66F, TC4S66FU BILATERAL SWITCH TCAS66F/FU contains one circuit of bidirectional switches. TC4S66F When control input, CONT is set to “H” level, the impedance between input and output of the switch becomes low and when it is set to “L” level, the switch becomes high. This can be applied for switching of q analog signals and digital signals. \\

FEATURES

‘ TCAS66FU @ ON-resistance (RON) @ OFF-resistance (ROFF) Roer (Typ.) > 10°. Weight SSOP5-P-0.95 : 0.016 (Typ.) SSOP5-P-0.65A : 0.006 g (Typ.) MAXIMUM RATINGS TRUTH TABLE IMPEDANCE CHARACTERISTIC SYMBOL RATING UNIT CONTROL | BETWEEN DC Supply Voltage Vss — 0.5~Vss + 20 IN/QUT-OUT/IN « pply 9 DD Ss Ss a ee) Control Input Voltage Vo in [Vss - 0.5~Vpp + 0.5 Switch 1/0 Voltage Vivo [Vss - 0.5~Vpp + 0.5 Power Dissipation | Pp | — 200s] mw * : See static electrical Potential difference across characteristics. -" t 1/0 during ON Wo Control Input Current lcm [210 ma | ing Te Operating Temperature -40~85 Range Storage Temperature -65~150 Lead Temperature (109 980910EBA2 @ TOSHIBA is continually working to improve the quality and the reliability of its products. Nevertheless, semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerability to physical stress. It is the responsibilty ‘of the buyer, when utilizing TOSHIBA products, to observe standards of safety, and to avoid situations in which a malfunction or failure of a TOSHIBA product could cause loss of human life, bodily injury or damage to property. In developing your designs, please ensure that TOSHIBA products are used within specified Operating ranges as set forth in the most recent products specifications. Also, please keep in mind the precautions and conditions set forth in the TOSHIBA. Semiconductor Reliability Handbook § The products described in this document are subject to the foreign exchange and foreign trade laws The information contained herein is presented only as a guide for the applications ‘of our products. No responsibility is assumed by TOSHIBA CORPORATION for any infringements of intellectual property or other rights of the third parties which may result from its use. No license is granted by implication or otherwise under any intellectual property or other rights of TOSHIBA CORPORATION or others. @ The information contained herein is subject to change without notice, 2000-06-21 1/7

CIRCUIT DIAGRAM PIN ASSIGNMENT (TOP VIEW) MARKING VpD in/out Fy] IE] op Type Name a & OUT/IN BT} Ny AY? IN/OUT OUT/IN Vss BI] [2] cont =e=e=) comark Vss RECOMMENDED OPERATING CONDITIONS (Vss = 0 V) DC Supply Voltage | Yo [oo ~~ fT 8 TV Input/Output Voltage |Wn/Voyr| = | 0 | — | vpp | v_ J STATIC ELECTRICAL CHARACTERISTICS (In case not specifically appointed, Vss = 0 V) cHaracteristic |S’! test conpition [Vpp ore oc 85°C unit BOL (BP Fanaa [re [wax MA Control Input High 5 | 35 35] 275 35 vols put High Jy | Iis| = 10 2A 10 | 7.0 7.0) 5.50 7.0 oltage 15 | 11.0 11.0] 8.25 11.0 V 5 225] 1.5 15 cone! Input Low hy Tic] = 100A 10 45| 3.0 3.0 onrage 15 6.75| 4.0 4.9) 5 800 290} 950 1200 s s On-State Resistance mS eae? 10 210 120] 250 300] © t= 15 140 85| 160 200] VIN = 18V + toe + Input/Output iove| Your = OV 18 +100 +0.1]+100 +1000] Leakage Current VIN = OV 18 +100 +0.1/+100 +1000 Vout = 18V Quiescent Device 5 0.25 0.001) 0.25 75 Current Vin = Vp. Vss 10 05 0.001] 0.5 15] WA urre 15 1.0 0.002] 1.0 30| input Vasey |e =] ot —] 0} 0 —] 10 2000-06-21 2/7

DYNAMIC ELECTRICAL CHARACTERISTICS (Ta = 25°C) TEST CHARACTERISTIC SYMBOL CONDITION [Ves Nop am Min. | tye. | max. | UNIT Propagation Delay t 5 40 Time en C_ = 50 pF 10 20 (IN-OUT) PHL 15 15 Propagation Delay _ 5 55 120 Time to JRL = TKO 10 25 | 40 | ns (CONTROL-OUT) pzH Leone 15 20 | 30 Propagation Delay _ 5 45 80 Time fez JRL = KO 10 30 | 70 (CONTROL-OUT) pH? bene 15 25 | 60 Max. Control Input fwax |RL=1kQ 1 0 Repetition Rate (c) CL = 50 pF 15 R —3dB Cut Off fwax [RL = 1kQ 30 Frequency (I-O) CL =50pF (*1) Total Harmonic RL = 10kQ 5 Distortion | - | =1kHz (#2) 0.08 % requengy | - | RL = tke 3) Los | 5 | — | sm] — | we | Frequency RIN = 1kQ. 5 200 Crosstalk Rout = 10kQ 10 400 mv (CONTROL-OUT) | - | C= 15pF 15 600 , Control Input [=~ 5] 75 | Input Capacitance CIN Switch 1/0 L— |0] — | : Feedthrough cq P Capacitance IN-OUT . Vos . . *1: The frequency at 20f0g19 Vis = —34dB shall be fax (I/O) using sine wave of £2.5Vp-p for Vis. *2.: Vig shall be sine wave of +2.5V. : Vos +3: The frequency at 20f0g19 Vis = 50dB shall be the feed through using of 2.5 Vp-p. 2000-06-21 3/7

  1. tpLH tpHL 2. toZL, tpZH tpLz tpHz 1/0-O/1 CONTROL-O/1 Vpp y yop ren en v0 on swi hk 1/0 on b PJ P<] 6s 4 ° o—oRPS_ o~” sw. res H © ‘ R= 1k ci ' CL = 50 pF ct ! —T tia-9---! C. = 50 pF ty = 20ns te = 20ns ty = 20ns te = 20ns y Voo 90% 90% pp 90% 90% CONTROL INPUT 50% 50%

170 INPUT | # 50% 50% 10% 10%

10% 10% Vss Vss —— tpun tHe on {sy = Vp 90% ‘OH OUT. \\sw2 = Vss 50% Vou Vou 0/1 OUTPUT 50% 50% tpzn tpuz Vou Vou on S{swy = vss 50% our. \\s2 = Vop 10% —— Vou 3. Ri tpzL tpiz ‘ON Voo i2 pl vot na lon (in-Vour) yy Ve Ron = 10x —N— OUT Ko) IN ° (ouT TON = 10 x E(k) ct i RL = 10k Vss ty = 20ns ty = 20ns 4. fMax (Cc) y Yop 90% 90% ep y CONTROL IN 50% 50% procOe=-y 10% 10% on vi o—ks-6 re) ss voir PSY 4 o ' RL=1kO f c = Lip! CL = 50pF L v0 Yop. our. Ae A 2 2000-06-21 4/7

  1. CROSSTALK (CONTROL INPUT) enone ya 20m Yop J 30% VDD CONTROL IN } ' vot na ton 10% Vss o-Bel © Vout H RL = 10kQ mareng {ogee cL = 15F Your 6. TOTAL HARMONIC DISTORTION, fax (I/ 0-0/1), FEEDTHROUGH (SWITCH OFF) Yop wan nnn nnn pen nnn nas 25V po--O---> /\\ /\\ vol lon 1/0 IN. ov ofS ° Ly \\ ct t ‘SEE TEST CONDITIONS ----- -25V bag I a Vss 2000-06-21 5/7

SSOP5-P-0.95, Unit : mm 2.8795 16°04 ae tel 15 . S| S| o +1 Aa} o- :

2 EH iL |4

foo} Weight : 0.016 g (Typ.) 2000-06-21 6/7

SSOP5-P-0.65A Unit : mm 2.1+0.1 1.25+0.1 ———— rt) al ° 1-3 45 =e 3 eP +i R 2-H nN Oo] 2 S NA] or 3-8 (TI iB 4 oO ite) - fT + : o [~)} oO S oO Weight : 0.006 g (Typ.) 2000-06-21 7/7