Analog Multiplexer Single 8:1 16-Pin CDIP, MAX310MJE/883B, Maxim Integrated

Maxims MAX310 is CMOS monolithicanalog multiplexer/demultiplexers designed for usewith signal frequencies ranging from DC through video. The MAX311 is a 1-of-8 multiplexer while theMAX311 is for 2-ot-8 (-4 channel differential}applications. A key feature of the MAX311 is extremely high off isolation at high frequencies. The isolation ofeach off channel to the output is guaranteed to be-66dB at 5MHz. The input signal range is +1 2V to-15V with ±15V power supplies while power consumption is typically 1.1 mW. All control inputs are fully compatible with TTL andCMOS logic. Decoding is in standard BCD formatand an Enable input is also provided to simplify cascading of devices. The MAX311 willoperate with nearly any power supply combination which totals less than 36V (V+ – V-) including single supply operation at +12V, +15V, and +28V with V-connected to GND.

  • -76dB Typical Off Isolation at 5MHz
  • -63dB Typical “All Channel Off‘ Isolation at 5MHz
  • Phase Shift Match Between Channels, <1°at 5MHz
  • Break-Before-Make Switching
  • Wide Supply Range, ±4.5V to ±16.5V and Single Supply
  • Symmetrical. Bi-directional Operation
  • Latch-Up Proof Construction

Характеристики

Бренд

Max_power_dissipation

800 mW

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/MAXM/MAXMS11881/MAXMS11881-1.pdf?hkey=52A5661711E402568146F3353EA87419

Screening_level

Military

Schedule_b

8542390000

Product_dimensions

21.34 x 7.87 x 3.56 mm

Pin_count

16

Operat_temperature

-55 to 125 °C

Operat_supply_voltage

±12, ±15 V, ±16.5, ±4.5, ±5, ±9, 36, 9

Operat_supply_current

0.2@15V/-0.1@-15V mA

Mounting

Through Hole

Max_processing_temp

300

Lead_finish

Tin/Lead

Chip_enable_signals

Yes

Input_signal_type

Single

Htsn

8542390001

Eccn

EAR99

Конфигурация

Single 8:1

Msl_level

1

Output_signal_type

Single-Ended

Max_turn_on_time

1000@±15V ns

Number_of_outputs_per_chip

1

Number_of_channels_per_chip

1

Max_on_resistance

250@±15V Ohm

Supplier_package

CDIP

Артикул: MAX310MJE/883B

Описание

Maxims MAX310 is CMOS monolithicanalog multiplexer/demultiplexers designed for usewith signal frequencies ranging from DC through video. The MAX311 is a 1-of-8 multiplexer while theMAX311 is for 2-ot-8 (-4 channel differential}applications. A key feature of the MAX311 is extremely high off isolation at high frequencies. The isolation ofeach off channel to the output is guaranteed to be-66dB at 5MHz. The input signal range is +1 2V to-15V with ±15V power supplies while power consumption is typically 1.1 mW. All control inputs are fully compatible with TTL andCMOS logic. Decoding is in standard BCD formatand an Enable input is also provided to simplify cascading of devices. The MAX311 willoperate with nearly any power supply combination which totals less than 36V (V+ – V-) including single supply operation at +12V, +15V, and +28V with V-connected to GND.

  • -76dB Typical Off Isolation at 5MHz
  • -63dB Typical “All Channel Off‘ Isolation at 5MHz
  • Phase Shift Match Between Channels, <1°at 5MHz
  • Break-Before-Make Switching
  • Wide Supply Range, ±4.5V to ±16.5V and Single Supply
  • Symmetrical. Bi-directional Operation
  • Latch-Up Proof Construction

Детали

Бренд

Max_power_dissipation

800 mW

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/MAXM/MAXMS11881/MAXMS11881-1.pdf?hkey=52A5661711E402568146F3353EA87419

Screening_level

Military

Schedule_b

8542390000

Product_dimensions

21.34 x 7.87 x 3.56 mm

Pin_count

16

Operat_temperature

-55 to 125 °C

Operat_supply_voltage

±12, ±15 V, ±16.5, ±4.5, ±5, ±9, 36, 9

Operat_supply_current

0.2@15V/-0.1@-15V mA

Mounting

Through Hole

Max_processing_temp

300

Lead_finish

Tin/Lead

Chip_enable_signals

Yes

Input_signal_type

Single

Htsn

8542390001

Eccn

EAR99

Конфигурация

Single 8:1

Msl_level

1

Output_signal_type

Single-Ended

Max_turn_on_time

1000@±15V ns

Number_of_outputs_per_chip

1

Number_of_channels_per_chip

1

Max_on_resistance

250@±15V Ohm

Supplier_package

CDIP