Analog Multiplexer Single 16:1 28-Pin PDIP, HI3-0506A-5, Renesas Electronics

The HI1-0506A is an analog multiplexers with active overvoltage protection. Analog input levels may greatly exceed either power supply without damaging the device or disturbing the signal path of other channels. Active protection circuitry assures that signal fidelity is maintained even under fault conditions that would destroy other multiplexers. Analog inputs can withstand constant 70VP-P levels with ±15V supplies. Digital inputs will also sustain continuous faults up to 4V greater than either supply. In addition, signal sources are protected from short circuiting should multiplexer supply loss occur. Each input presents 1kO of resistance under this condition.All devices are fabricated with 44V dielectrically isolated CMOS technology.

  • Analog Overvoltage : 70VP-P
  • No Channel Interaction During Overvoltage
  • Maximum Power Supply : 44V
  • Fail Safe with Power Loss (No Latch-Up)
  • Break-Before-Make Switching
  • Analog Signal Range : ±15V
  • Access Time : 500ns
  • Power Dissipation : 7.5mW
  • Pb-Free Available (RoHS Compliant)

Характеристики

Бренд

Chip_enable_signals

Yes

Max_on_resistance

1800@±15V Ohm

Number_of_channels_per_chip

1

Number_of_outputs_per_chip

1

Max_turn_on_time

300@±15V ns

Output_signal_type

Single

Power_supply_type

Dual, Single

Max_on_resist_range

>=1000 Ohm

Number_of_inputs_per_chip

16

Max_high_lev_output_current

20 mA

Конфигурация

Single 16:1

Country_of_origin

United States

Eccn

EAR99

Htsn

8542390001

Input_signal_type

Single

Kind

Analog Multiplexer

Lead_finish

Tin/Lead

Max_processing_temp

255

Mounting

Through Hole

Operat_supply_current

2@15V

Operat_supply_voltage

±15 V, ±22, 25

Operat_temperature

0 to 75 °C

Pin_count

28

Product_dimensions

39.7 x 14.73 x 4.95 mm

Schedule_b

8542390000

Screening_level

Commercial

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/RNCC/RNCC-S-A0005458910/RNCC-S-A0005458620-1.pdf?hkey=52A5661711E402568146F3353EA87419

Supplier_package

PDIP

Артикул: HI3-0506A-5

Описание

The HI1-0506A is an analog multiplexers with active overvoltage protection. Analog input levels may greatly exceed either power supply without damaging the device or disturbing the signal path of other channels. Active protection circuitry assures that signal fidelity is maintained even under fault conditions that would destroy other multiplexers. Analog inputs can withstand constant 70VP-P levels with ±15V supplies. Digital inputs will also sustain continuous faults up to 4V greater than either supply. In addition, signal sources are protected from short circuiting should multiplexer supply loss occur. Each input presents 1kO of resistance under this condition.All devices are fabricated with 44V dielectrically isolated CMOS technology.

  • Analog Overvoltage : 70VP-P
  • No Channel Interaction During Overvoltage
  • Maximum Power Supply : 44V
  • Fail Safe with Power Loss (No Latch-Up)
  • Break-Before-Make Switching
  • Analog Signal Range : ±15V
  • Access Time : 500ns
  • Power Dissipation : 7.5mW
  • Pb-Free Available (RoHS Compliant)

Детали

Бренд

Chip_enable_signals

Yes

Max_on_resistance

1800@±15V Ohm

Number_of_channels_per_chip

1

Number_of_outputs_per_chip

1

Max_turn_on_time

300@±15V ns

Output_signal_type

Single

Power_supply_type

Dual, Single

Max_on_resist_range

>=1000 Ohm

Number_of_inputs_per_chip

16

Max_high_lev_output_current

20 mA

Конфигурация

Single 16:1

Country_of_origin

United States

Eccn

EAR99

Htsn

8542390001

Input_signal_type

Single

Kind

Analog Multiplexer

Lead_finish

Tin/Lead

Max_processing_temp

255

Mounting

Through Hole

Operat_supply_current

2@15V

Operat_supply_voltage

±15 V, ±22, 25

Operat_temperature

0 to 75 °C

Pin_count

28

Product_dimensions

39.7 x 14.73 x 4.95 mm

Schedule_b

8542390000

Screening_level

Commercial

Specifications

https://4donline.ihs.com/images/VipMasterIC/IC/RNCC/RNCC-S-A0005458910/RNCC-S-A0005458620-1.pdf?hkey=52A5661711E402568146F3353EA87419

Supplier_package

PDIP