Features: Wide analog input voltage range: ±6VLow on resistance: 50 typ. (VCCVEE = 4.5V) 30 typ. (VCCVEE = 9V)Logic level translation to enable 5V logic with ±5V analog signals Low quiescent current: 80 A maximumMatched switch characteristicPin and function compatible with the 74HC4051/ 4052/405...
74VHC4052: Features: Wide analog input voltage range: ±6VLow on resistance: 50 typ. (VCCVEE = 4.5V) 30 typ. (VCCVEE = 9V)Logic level translation to enable 5V logic with ±5V analog signals Low quiescent curre...
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Wide analog input voltage range: ±6V
Low "on" resistance: 50 typ. (VCCVEE = 4.5V) 30 typ. (VCCVEE = 9V)
Logic level translation to enable 5V logic with ±5V analog signals Low quiescent current: 80 A maximum
Matched switch characteristic
Pin and function compatible with the 74HC4051/ 4052/4053
Product | Product status | Eco Status | Pricing* | Package type | Leads | Packing method | Package Drawing | Package Marking Convention** |
---|---|---|---|---|---|---|---|---|
74VHC4052M | Full Production | RoHS Compliant | $0.308 | SOIC | 16 | RAIL | Line 1: $Y (Fairchild logo) &Z (Asm. Plant Code) &2 (2-Digit Date Code) &K Line 2: 74VHC4052 | |
74VHC4052MTC | Full Production | RoHS Compliant | $0.36 | TSSOP | 16 | RAIL | Line 1: $Y (Fairchild logo) &Z (Asm. Plant Code) &2 (2-Digit Date Code) &K Line 2: V4052 | |
74VHC4052MTCX | Full Production | RoHS Compliant | $0.308 | TSSOP | 16 | TAPE REEL | Line 1: $Y (Fairchild logo) &Z (Asm. Plant Code) &2 (2-Digit Date Code) &K Line 2: V4052 | |
74VHC4052MX | Full Production | RoHS Compliant | $0.274 | SOIC | 16 | TAPE REEL | Line 1: $Y (Fairchild logo) &Z (Asm. Plant Code) &2 (2-Digit Date Code) &K Line 2: 74VHC4052 |
* Fairchild 1,000 piece Budgetary Pricing |
** A sample button will appear if the part is available through Fairchild's on-line samples program. If there is no sample button, please contact a Fairchild distributor to obtain samples |
Package marking information for product 74VHC4052 is available. Click here for more information . |
Supply Voltage (VCC) | -0.5 to +7.5V |
Supply Voltage (VEE) | +0.5 to -7.5V |
Control Input Voltage (VIN) | -1.5 to VCC+1.5V |
Switch I/O Voltage (VIO) | VEE-0.5 to VCC+0.5V |
Clamp Diode Current (IIK, IOK) | ±20 mA |
Output Current, per pin (IOUT) | ±25 mA |
VCC or GND Current, per pin (ICC) | ±50 mA |
Storage Temperature Range | |
(TSTG) | -65 to +150 |
Power Dissipation (PD) | |
(Note 3) | 600 mW |
S.O. Package only | 500 mW |
Lead Temperature (TL) | |
(Soldering 10 seconds) | 260 |
These multiplexers of the 74VHC4052 are digitally controlled analog switches implemented in advanced silicon-gate CMOS technology. These switches have low "on" resistance and low "off" leakages. They are bidirectional switches, thus any analog input may be used as an output and vice-versa. Also these switches contain linearization circuitry which lowers the "on" resistance and increases switch linearity. These devices allow control of up to ±6V (peak) analog signals with digital control signals of 0 to 6V. Three supply pins are provided for VCC, ground, and VEE. This enables the connection of 0-5V logic signals when VCC = 5V and an analog input range of ±5V when VEE = 5V. All three devices also have an inhibit control which when high will disable all switches to their off state. All analog inputs and outputs and digital inputs are protected from electrostatic damage by diodes to VCC and ground.
VHC4051: This 74VHC4052 connects together the outputs of 8 switches, thus achieving an 8 channel Multiplexer. The binary code placed on the A, B, and C select lines determines which one of the eight switches is "on", and connects one of the eight inputs to the common output.
VHC4052: This 74VHC4052 connects together the outputs of 4 switches in two sets, thus achieving a pair of 4-channel multiplexers. The binary code placed on the A, and B select lines determine which switch in each 4 channel section is "on", connecting one of the four inputs in each section to its common output. This enables the implementation of a 4-channel differential multiplexer.
VHC4053: This device contains 6 switches whose outputs are connected together in pairs, thus implementing a triple 2 channel multiplexer, or the equivalent of 3 single-pole-double throw configurations. Each of the A, B, or C select lines independently controls one pair of switches, selecting one of the two switches to be "on".