High Quality Timer Ic Circuit - DG408DYZ-T Multiplexer Switch ICs MUX 8:1 16N IND – Shinzo
High Quality Timer Ic Circuit - DG408DYZ-T Multiplexer Switch ICs MUX 8:1 16N IND – Shinzo Detail:
♠ Product Description
Product Attribute | Attribute Value |
Manufacturer: | Renesas Electronics |
Product Category: | Multiplexer Switch ICs |
Series: | DG408 |
Product: | Multiplexers |
Mounting Style: | SMD/SMT |
Package / Case: | SOIC-Narrow-16 |
Number of Channels: | 1 Channel |
Configuration: | 1 x 8:1 |
Supply Voltage – Min: | 5 V |
Supply Voltage – Max: | 34 V |
Minimum Dual Supply Voltage: | +/- 5 V |
Maximum Dual Supply Voltage: | +/- 20 V |
On Resistance – Max: | 100 Ohms |
On Time – Max: | 180 ns |
Off Time – Max: | 120 ns |
Minimum Operating Temperature: | - 40 C |
Maximum Operating Temperature: | + 85 C |
Packaging: | Reel |
Packaging: | Cut Tape |
Packaging: | MouseReel |
Brand: | Renesas / Intersil |
Height: | 0 mm |
Length: | 9.9 mm |
Moisture Sensitive: | Yes |
Operating Supply Voltage: | 9 V, 12 V, 15 V, 18 V, 24 V, 28 V |
Product Type: | Multiplexer Switch ICs |
Propagation Delay Time: | 250 ns |
Factory Pack Quantity: | 2500 |
Subcategory: | Switch ICs |
Supply Current – Max: | 0.5 mA |
Supply Type: | Single Supply, Dual Supply |
Width: | 3.9 mm |
Unit Weight: | 0.004938 oz |
♠ Single 8-Channel/Differential 4-Channel, CMOS Analog Multiplexers
The DG408 Single 8-Channel, and DG409 Differential 4-Channel monolithic CMOS analog multiplexers are drop-in replacements for the popular DG508A and DG509A series devices. They each include an array of eight analog switches, a TTL/CMOS compatible digital decode circuit for channel selection, a voltage reference for logic thresholds and an ENABLE input for device selection when several multiplexers are present.
The DG408 and DG409 feature lower signal ON resistance (<100Ω) and faster switch transition time (tTRANS < 250ns) compared to the DG508A or DG509A. Charge injection has been reduced, simplifying sample and hold applications. The improvements in the DG408 series are made possible by using a high-voltage silicon-gate process. An epitaxial layer prevents the latch-up associated with older CMOS technologies. Power supplies may be single-ended from +5V to +34V, or split from ±5V to ±20V.
The analog switches are bilateral, equally matched for AC or bidirectional signals. The ON resistance variation with analog signals is quite low over a ±5V analog input range.
Product detail pictures:
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