Analog Multiplexer Dual 8:1 28-Pin SOIC W, DG407EWI, Maxim Integrated

Maxim’s redesigned DG407 CMOS analog multiplexers now feature guaranteed matching between channels (8O, max) and flatness over the specified signal range (9O, max). These low on-resistance muxes (100O, max) conduct equally well in either direction and feature guaranteed low charge injection (15pC, max). In addition, these new muxes offer low input off-leakage current over temperature—less than 5nA at +85°C. The DG407 is a dual 8-channel multiplexer/demultiplexer. Both muxes operate with a +5V to +30V single supply and with ±4.5V to ±20V dual supplies. ESD protection is guaranteed to be greater than 2000V per Method 3015.7 of MIL-STD 883. These improved muxes are pin-compatible plug-in upgrades for the industry standard DG407.

  • Pin-Compatible Plug-In Upgrade for Industry Standard DG407
  • Guaranteed Matching Between Channels, 😯 (max)
  • Guaranteed On-Resistance Flatness, 9O (max)
  • Guaranteed Low Charge Injection, 15pC (max)
  • Low On-Resistance 100O (max)
  • Input Leakage, 5nA (max) at +85°C
  • Low Power Consumption, 1.25mW (max)
  • Rail-to-Rail Signal Handling
  • Digital Input Controls TTL/CMOS Compatible
  • ESD Protection >2000V per Method 3015.7

Характеристики

Бренд

Lead_finish

Tin/Lead

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/MAXM/MAXMS10298/MAXMS10298-1.pdf?hkey=52A5661711E402568146F3353EA87419

Schedule_b

8542390000

Product_dimensions

18.1 x 7.6 x 2.35 mm

Pin_count

28

Operat_temperature

-40 to 85 °C

Operat_supply_voltage

±12, ±15, ±18 V, ±20, ±4.5, ±5, ±9, 30, 5

Operat_supply_current

0.5@15V

Mounting

Surface Mount

Max_processing_temp

235, 300

Max_power_dissipation

1000 mW

Input_signal_type

Single

Chip_enable_signals

Yes

Htsn

8542390001

Eccn

EAR99

Конфигурация

Dual 8:1

Msl_level

1

Max_high_lev_output_current

30 mA

Output_signal_type

Single-Ended

Max_turn_on_time

600@12V ns

Number_of_outputs_per_chip

2

Number_of_channels_per_chip

2

Max_on_resistance

175@12V Ohm

Supplier_package

SOIC W

Артикул: DG407EWI

Описание

Maxim’s redesigned DG407 CMOS analog multiplexers now feature guaranteed matching between channels (8O, max) and flatness over the specified signal range (9O, max). These low on-resistance muxes (100O, max) conduct equally well in either direction and feature guaranteed low charge injection (15pC, max). In addition, these new muxes offer low input off-leakage current over temperature—less than 5nA at +85°C. The DG407 is a dual 8-channel multiplexer/demultiplexer. Both muxes operate with a +5V to +30V single supply and with ±4.5V to ±20V dual supplies. ESD protection is guaranteed to be greater than 2000V per Method 3015.7 of MIL-STD 883. These improved muxes are pin-compatible plug-in upgrades for the industry standard DG407.

  • Pin-Compatible Plug-In Upgrade for Industry Standard DG407
  • Guaranteed Matching Between Channels, 😯 (max)
  • Guaranteed On-Resistance Flatness, 9O (max)
  • Guaranteed Low Charge Injection, 15pC (max)
  • Low On-Resistance 100O (max)
  • Input Leakage, 5nA (max) at +85°C
  • Low Power Consumption, 1.25mW (max)
  • Rail-to-Rail Signal Handling
  • Digital Input Controls TTL/CMOS Compatible
  • ESD Protection >2000V per Method 3015.7

Детали

Бренд

Lead_finish

Tin/Lead

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/MAXM/MAXMS10298/MAXMS10298-1.pdf?hkey=52A5661711E402568146F3353EA87419

Schedule_b

8542390000

Product_dimensions

18.1 x 7.6 x 2.35 mm

Pin_count

28

Operat_temperature

-40 to 85 °C

Operat_supply_voltage

±12, ±15, ±18 V, ±20, ±4.5, ±5, ±9, 30, 5

Operat_supply_current

0.5@15V

Mounting

Surface Mount

Max_processing_temp

235, 300

Max_power_dissipation

1000 mW

Input_signal_type

Single

Chip_enable_signals

Yes

Htsn

8542390001

Eccn

EAR99

Конфигурация

Dual 8:1

Msl_level

1

Max_high_lev_output_current

30 mA

Output_signal_type

Single-Ended

Max_turn_on_time

600@12V ns

Number_of_outputs_per_chip

2

Number_of_channels_per_chip

2

Max_on_resistance

175@12V Ohm

Supplier_package

SOIC W