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MICROPOWER DUAL CMOS VOLTAGE COMPARATORSMaker : STMicroelectronics
Shortcut : 4060AL 4060R 4066 4066 4066 4066 4066 4066 4066 4066 4066 4066 4066B 4066B 4067xxx 40680 4069UB 4069UB 4069UB 4069UB 4069UB 4069UB 4069UB 4069UB 4069UB 4069UB 406R8 |
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Product Information |
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HCF4066B QUAD BILATERAL SWITCH FOR TRANSMISSION OR MULTIPLEXING OF ANALOG OR DIGITAL SIGNALS s s s s s s s s s s s s s 15V DIGITAL OR ± 7.5V PEAK TO PEAK SWITCHING 125Ω TYPICAL ON RESISTANCE FOR 15V OPERATION SWITCH ON RESISTANCE MATCHED TO WITHIN 5Ω TYP. OVER 15V SIGNAL INPUT RANGE ON RESISTANCE FLAT OVER FULL PEAK TO PEAK SIGNAL RANGE HIGH ON/OFF OUTPUT VOLTAGE RATIO : 65dB TYP. at fIS = 10KHz, RL = 10KΩ HIGH DEGREE OF LINEARITY : < 0.5% DISTORTION TYP. at fIS = 1KHz, VIS = 5 Vpp, VDD - VSS > 10V, RL = 10KΩ EXTREMELY LOW OFF SWITCH LEAKAGE RESULTING IN VERY LOW OFFSET CURRENT AND HIGH EFFECTIVE OFF RESISTANCE : 10pA TYP. at VDD - VSS = 10V, Tamb = 25°C EXTREMELY HIGH CONTROL INPUT IMPEDANCE (control circuit isolated from signal circuit 1012Ω typ.) LOW CROSSTALK BETWEEN SWITCHES : 50dB Typ. at fIS = 0.9MHz, RL = 1KΩ MATCHED CONTROL - INPUT TO SIGNAL OUTPUT CAPACITANCE : REDUCES OUTPUT SIGNAL TRANSIENTS FREQUENCY RESPONSE SWITCH ON : 40MHz (Typ.) QUIESCENT CURRENT SPECIF. UP TO 20V 5V, 10V AND 15V PARAMETRIC RATINGS DIP SOP ORDER CODES PACKAGE DIP SOP s TUBE HCF4066BEY HCF4066BM1 T&R HCF4066M013TR s s INPUT LEAKAGE CURRENT II = 100nA (MAX) AT VDD = 18V TA = 25°C 100% TESTED FOR QUIESCENT CURRENT MEETS ALL REQUIREMENTS OF JEDEC JESD13B ” STANDARD SPECIFICATIONS FOR DESCRIPTION OF B SERIES CMOS DEVICES” DESCRIPTION The HCF4066B is a monolithic integrated circuit fabricated in Metal Oxide Semiconductor technology available in DIP and SOP packages. The HCF4066B is a QUAD BILATERAL SWITCH intended for the transmission or multiplexing of analog or digital signals. It is pin for pin compatible with HCF4016B, but exhibits a much lower ON resistance. In addition, PIN CONNECTION September 2001 1/9 HCF4066B the ON resistance is relatively constant over the full input signal range. The HCF4066B consists of four independent bilateral switches. A single control signal is required per switch. Both the p and n device in a given switch are biased ON or OFF simultaneously by the control signal. As shown in schematic diagram , the well of the n-channel device on each switch is either tied to the input when the switch is ON or to VSS when the switch is OFF. This configuration eliminates INPUT EQUIVALENT CIRCUIT the variation of the switch-transistor threshold voltage with input signal, and thus keeps the ON resistance low over the full operating signal range. The advantages over single channel switches include peak input signal voltage swings equal to the full supply voltage, and more constant ON impedance over the input signal range. For sample and hold applications, however, the HCF4016B is recommended. PIN DESCRIPTION PIN No 1, 4, 8, 11 2, 3, 9, 10 13, 5, 6, 12 7 14 SYMBOL A to D I/O A to D O/I CONTROL A to D VSS VDD NAME AND FUNCTION Independent Inputs/Outputs Independent Outputs/ Inputs Enable Inputs Negative Supply Voltage Positive Supply Voltage TRUTH TABLE CONTROL H L SWITCH FUNCTION ON OFF SCHEMATIC DIAGRAM (1 OF 4 IDENTICAL SWITCHES AND ITS ASSOCIATED CONTROL CIRCUITY) 2/9 HCF4066B ABSOLUTE MAXIMUM RATINGS Symbol V DD VI II PD Top Tstg Supply Voltage DC Input Voltage DC Input Current Power Dissipation per Package Power Dissipation per Output Transistor Operating Temperature Storage Temperature Parameter Value -0.5 to +22 -0.5 to VDD + 0.5 ± 10 200 100 -55 to +125 -65 to +150 Unit V V mA mW mW °C °C Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these conditions is not implied. All voltage values are referred to VSS pin voltage. RECOMMENDED OPERATING CONDITIONS Symbol V DD VI Top Supply Voltage Input Voltage Operating Temperature Parameter Value 3 to 20 0 to VDD -55 to 125 Unit V V °C ELECTRICAL CHARACTERISTICS (Tamb = 25°C,Typical temperature coefficient for all VDD value is 0.3 %/°C) Test Condition Symbol Parameter VI (V) 0/5 0/10 0/15 0/20 VC=V DD RL = 10KΩ Return to (VDD-VSS)/2 VIS = VSS to VDD VDD (V) 5 10 15 ... |
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