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THSHIBA TC7S66F TC7S66FU Manual(2)

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1. 6 2001 05 31 TOSHIBA TC7S66F FU RESTRICTIONS ON PRODUCT USE TOSHIBA is continually working to improve the quality and reliability of its products Nevertheless semiconductor devices in general can malfunction or fail due to their inherent electrical sensitivity and vulnerabilitv to physical stress It is the responsibility of the buyer when utilizing TOSHIBA products to comply with the standards of safety in making a safe design for the entire system and to avoid situations in which a malfunction or failure of such TOSHIBA products 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 TOSHIBA products specifications Also please keep in mind the precautions and conditions set forth in the Handling Guide for Semiconductor Devices or TOSHIBA Semiconductor Reliability Handbook etc 000707EBA The TOSHIBA products listed in this document are intended for usage in general electronics applications computer personal equipment office equipment measuring equipment industrial robotics domestic appliances etc These TOSHIBA products are neither intended nor warranted for usage in equipment that requires extraordinarily high quality and or reliability or a malfunction or failure of which may cause loss of human life or bodily injury Unintended Usage Unintended Usage includ
2. OMMENDED OPERATING CONDITIONS CHARACTERISTIC SYMBOL RATING UNIT Supply Voltage VE 7n v cone nos vaRage Wn Ie IA ove v Operating Temperature Topr ass 0 1000 Vcc 2 0V 0 500 Vcc 4 5V 0 400 Vcc 6 0V 0 250 Vec 10 0V Input Rise and Fall Time tr tf DC ELECTRICAL CHARACTERISTICS Ta 25 C a 40 85 PARAMETER SYMBOL TEST CONDITION Ta 25C l eramen sveo TEST CONDON yon Prim EL ni ats High level Control v Input Voltage IHC Low Level Control v Input Voltage ILC VIN VIHC VI Q Vcc to GND V Q lt 1mA ON Resistance VIN VIHC VI O VCC or GND V Q lt 1mA Input Output Vos Vcc or GND Leakage Current Vig GND or VCC 1000 nA SWITCH OFF Vin VILC 2 2001 05 31 TOSHIBA TC7S66F FU DC ELECTRICAL CHARACTERISTICS Ta 25 C Tas Sc UNIT PARAMETER ISVMBOL TEST CONDITION Ta 25C UNIT PARAMETER SYMBOL TEST CONDMON hun ee nach un msc Switch Input Leakage Current Vos Vcc or GND l SW ON Output VIN VIHC 12 0 100 1000 OPEN nA Control Input RER REMI A 10 0 Quiscent Device V n Vrr or GND 40 0 A Current a a 7 80 0 AC ELECTRICAL CHARACTERISTICS C 50pF Input ty t 6ns Ta 25 C _ Ta 40 85 C PARAMETER SYMBOL TEST CONDITION _ Ta 25 C_ UNIT Phase difference 20 75 100 between input and output 9 8 40 11 10 9 30 30 30 30 Output Enable Time Output Disable Time Maximum Control a y Input Frequency L
3. TOSHIBA TC7S66F FU TOSHIBA CMOS DIGITAL INTEGRATED CIRCUIT SILICON MONOLITHIC TC7S66F TC7S66FU BILATERAL SWITCH The TC7S66 is a high Speed C MOS BILATERAL SWITCH fabricated with silicon gate C MOS technology It consists of a high speed switch capable of controlling either digital or analog signals while maintaining the CMOS low power dissipation Control input C is provided to control the switch The switch turns ON while the C linput is high and the switch turns OFF while low Input is equipped with protection circuits against static discharge or transient excess voltage FEATURES SSOP5 P 0 95 TC7S66FU e High Speed 111 d 7ns Typ at we 5V e Low Power Dissipation Icc 14A Max at Ta 25 C e High Noise Immunity VNIH VNIL 28 Vcc Min e Low ON Resistance RON 1000 Typ at Vcc 9V Low T H D eta Seawater ede de THD 0 05 Typ SSOP5 P 0 65A at Vcc 5V Weight SSOP5 P 0 95 0 016g Typ e Pin and Function Compatible with TC4S66F SSOP5 P 0 65A 0 006g Typ MAXIMUM RATINGS MARKING Type Name CHARACTERISTIC SYMBOL RATING UNIT control input Voltage Vin 05 v c 05 _V_ swith 170 Voge Vo 05 Vcc 05 _V_ Eeo e ah DC Vec Ground Current f icc Power Dissipation Po Lead Temperature os m 1 2001 05 31 TOSHIBA TC7S66F FU LOGIC DIAGRAM PIN ASSIGNMENT TOP VIEW TRUTH TABLE c x1 OUT IN GND 3 a CONT REC
4. de E VouT 1 2 Vcc Control Input Capacitance Switch Terminal c Capacitance 1 0 Feedthrough c Power Dissipation N 1 1 Note 1 Cpp is defined as the value of internal equivalent Capacitance which is calculated from the operating current consumption without load Average operating current can be obtained by the equation Icclopr Cpp Vcc fiN Icc 10 15 12 11 150 30 18 18 170 35 30 27 3 2001 05 31 TOSHIBA TC7S66F FU ANALOG SWITCH CHARACTERISTICS GND 0V Ta 25 C PARAMETER SYMBOL TEST CONDITION UNIT fin TkH Vin 4Vpp VCC 4 5V Total Harmonic lg kaw VB RA WE an 0 05 Distortion T H D L IN SUPP CC a 0 04 CL 50pF Maxi p ti Adjust fiy voltage to obtain OdBm at Vos RA ropagasion Increase fin frequency until dB Meter reads 4 5 200 MHz 3dB RL 500 C 10pF 9 0 200 SWITCH ON ROA fin 1MHz Sine Wave Vin is ceintered at Vcc 2 Adjust input for Feedthrough OdBm 4 5 60 SWITCH ON RL 6000 Ci 50pF 9 0 60 fin 1MHz Sine Wave Crosstalk RER RL 6000 CL 50pF CONTROL SWITCH IN 1MHz PULSE tp tf 6ns 9 0 100 Note These characteristics are determined by design of devices 4 2001 05 31 TOSHIBA TC7S66F FU PACKAGE DIMENSIONS SSOP5 P 0 95 Unit mm 0 0 1 Weight 0 016g Typ 5 2001 05 31 TOSHIBA TC7S66F FU PACKAGE DIMENSIONS SSOP5 P 0 65A Unit mm 2 1 0 1 1 2520 1 2 040 2 1 3 0 1 k o gl J a o Weight 0 006g Typ
5. e atomic energy control instruments airplane or spaceship instruments transportation instruments traffic signal instruments combustion control instruments medical instruments all types of safety devices etc Unintended Usage of TOSHIBA products listed in this document shall be made at the customer s own risk 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 7 2001 05 31

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