DG534A, DG534ADN-E3622, DG535 Selling Leads, Datasheet
MFG:Vishay Package Cooled:DIP-20 D/C:2010+
DG534A, DG534ADN-E3622, DG535 Datasheet download
Part Number: DG534A
MFG: Vishay
Package Cooled: DIP-20
D/C: 2010+
MFG:Vishay Package Cooled:DIP-20 D/C:2010+
DG534A, DG534ADN-E3622, DG535 Datasheet download
MFG: Vishay
Package Cooled: DIP-20
D/C: 2010+
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Datasheet: DG534A
File Size: 153186 KB
Manufacturer: VISAY [Vishay Siliconix]
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PDF/DataSheet Download
Datasheet: DG5043
File Size: 39340 KB
Manufacturer: VISAY [Vishay Siliconix]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: DG535
File Size: 101335 KB
Manufacturer: VISAY [Vishay Siliconix]
Download : Click here to Download
The DG534A is a digitally selectable 4-channel or dual 2-channel multiplexer. The DG538A is an 8-channel or dual 4-channel multiplexer. On-chip TTL-compatible address decoding logic and latches with data readback are included to simplify the interface to a microprocessor data bus. The low on-resistance and low capacitance of the these devices make them ideal for wideband data multiplexing and video and audio signal routing in channel selectors and crosspoint arrays. An optional negative supply pin allows the handling of bipolar signals without dc biasing.
The DG534A/DG538A are built on a D/CMOS process that combines n-channel DMOS switching FETs with low-power
CMOS control logic, drivers and latches. The low-capacitance DMOS FETs are connected in a "T" configuration to achieve extremely high levels of off isolation. Crosstalk is reduced to 97 dB at 5 MHz by including a ground line between adjacent signal paths. An epitaxial layer prevents latch-up.
The DG535/536 are 16-channel multiplexers designed for routing one of 16 wideband analog or digital input signals to a single output. They feature low input and output capacitance, low on-resistance, and n-channel DMOS "T" switches, resulting in wide bandwidth, low crosstalk and high "off" isolation. In the on state, the switches pass signals in either direction,allowing them to be used as multiplexers or as demultiplexers.
On-chip address latches and decode logic simplify microprocessor interface. Chip Select and Enable inputs simplify addressing in large matrices. Single-supply operation and a low 75-W power consumption vastly reduces power supply requirements.