MC14052BFL2 ,Analog Multiplexers/Demultiplexersimplements an SP8T solid state switch, the MC14052B a DP4T, andthe MC14053B a Triple SPDT. All thre ..
MC14052BFR1 ,Analog Multiplexers/Demultiplexers3MC14051B, MC14052B, MC14053B(5.)ÎÎÎÎÎ
MC14052BFR1 ,Analog Multiplexers/DemultiplexersMaximum Ratings are exceeded. (See first page of this data sheet.)
MC14052BFR1 ,Analog Multiplexers/DemultiplexersMaximum Ratings are exceeded. (See first page of this data sheet.)
MC14052BFR2 ,Analog Multiplexers/DemultiplexersMaximum Ratings are those values beyond which damage to the devicedimensions section on page 12 of ..
MC14052BFR2 ,Analog Multiplexers/DemultiplexersELECTRICAL CHARACTERISTICSÎÎÎ – 55* C 25* CÎÎÎÎÎ 125* CÎÎ(3.)ÎÎ CharacteristicÎ SymbolÎÎÎÎ V Test C ..
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MC68882EI25A , HCMOS Enhanced Floating-Point Coprocessor
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MC14051BFL1-MC14051BFL2-MC14051BFR2-MC14052BDT-MC14052BFL1-MC14052BFL2-MC14052BFR1-MC14052BFR2-MC14053BFL1-MC14053BFL2-MC14053BFR1-MC14053BFR2
Analog Multiplexers/Demultiplexers
-The MC14051B, MC14052B, and MC14053B analog multiplexers
are digitally–controlled analog switches. The MC14051B effectively
implements an SP8T solid state switch, the MC14052B a DP4T, and
the MC14053B a Triple SPDT. All three devices feature low ON
impedance and very low OFF leakage current. Control of analog
signals up to the complete supply voltage range can be achieved. Triple Diode Protection on Control Inputs Switch Function is Break Before Make Supply Voltage Range = 3.0 Vdc to 18 Vdc Analog Voltage Range (VDD – VEE) = 3.0 to 18 V
Note: VEE must be VSS Linearized Transfer Characteristics Low–noise – 12 nV/√Cycle, f ≥ 1.0 kHz Typical Pin–for–Pin Replacement for CD4051, CD4052, and CD4053 For 4PDT Switch, See MC14551B For Lower RON, Use the HC4051, HC4052, or HC4053 High–Speed
CMOS Devices
MAXIMUM RATINGS (Note 1.) Maximum Ratings are those values beyond which damage to the device
may occur. Temperature Derating:
Plastic “P and D/DW” Packages: – 7.0 mW/ C From 65 C To 125C
This device contains protection circuitry to guard against damage due to high
static voltages or electric fields. However, precautions must be taken to avoid
applications of any voltage higher than maximum rated voltages to this
high–impedance circuit. For proper operation, Vin and Vout should be constrained
to the range VSS (Vin or Vout) VDD.