11 Multiplexers & Switches 5

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Part RoHS Manufacturer Other IC type Temperature Grade No. of Terminals Package Code Package Shape Surface Mount Total Dose (V) Maximum Switching Frequency Package Body Material Maximum Supply Current (Isup) No. of Functions No. of Channels Technology Screening Level Nominal Bandwidth Terminal Form Maximum Negative Supply Voltage (Vsup) Nominal Negative Supply Voltage (Vsup) Nominal Supply Voltage (Vsup) Power Supplies (V) Package Style (Meter) Package Equivalence Code Sub-Category Terminal Pitch Maximum Operating Temperature Control Mode Minimum Operating Temperature Terminal Finish Terminal Position JESD-30 Code Output (V) Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Maximum Signal Current Height Width (mm) Qualification Normal Position (V) Nominal Off-state Isolation Minimum Supply Voltage (Vsup) Additional Features Minimum Input Voltage Minimum Negative Supply Voltage (Vsup) JESD-609 Code Switching (V) Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Maximum Switch-on Time Maximum On-state Resistance (Ron) Nominal Threshold Voltage (V) Maximum Switch-off Time Maximum Positive Input Voltage Nominal On-state Resistance Match Length Adjustable Threshold Maximum Input Voltage

STG4259

STMicroelectronics

SPDT

INDUSTRIAL

11

VFBGA

RECTANGULAR

YES

PLASTIC/EPOXY

2

1

CMOS

BALL

1.8 V

GRID ARRAY, VERY THIN PROFILE, FINE PITCH

.5 mm

85 Cel

-40 Cel

BOTTOM

R-PBGA-B11

4.8 V

.715 mm

1.55 mm

Not Qualified

71 dB

1.65 V

2-CHANNEL MUX/DEMUX

123 ns

.65 ohm

15 ns

.005 ohm

2.068 mm

STG4259BJR

STMicroelectronics

SPDT

INDUSTRIAL

11

VFBGA

RECTANGULAR

YES

PLASTIC/EPOXY

2

1

CMOS

BALL

1.8 V

1.6/4

GRID ARRAY, VERY THIN PROFILE, FINE PITCH

FLIP CHIP

Multiplexer or Switches

.5 mm

85 Cel

-40 Cel

BOTTOM

R-PBGA-B11

SEPARATE OUTPUT

4.8 V

.715 mm

1.55 mm

Not Qualified

71 dB

1.65 V

2-CHANNEL MUX/DEMUX

BREAK-BEFORE-MAKE

NOT SPECIFIED

NOT SPECIFIED

123 ns

.65 ohm

15 ns

.005 ohm

2.068 mm

MXDG401C/D

Maxim Integrated

SPST

COMMERCIAL

11

DIE

RECTANGULAR

YES

UNSPECIFIED

2

1

NO LEAD

-20 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N11

20 V

Not Qualified

5 V

-5 V

e0

35 ohm

MAX4518C/D

Maxim Integrated

SINGLE-ENDED MULTIPLEXER

COMMERCIAL

11

DIE

RECTANGULAR

YES

UNSPECIFIED

1

4

CMOS

NO LEAD

-8 V

-5 V

5 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N11

1

8 V

Not Qualified

75 dB

2.7 V

-2.7 V

e0

150 ns

100 ohm

150 ns

4 ohm

MAX301C/D

Maxim Integrated

SPST

COMMERCIAL

11

DIE

RECTANGULAR

YES

UNSPECIFIED

2

1

CMOS

NO LEAD

-20 V

-15 V

15 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N

1

20 V

Not Qualified

72 dB

4.5 V

ALSO OPERATE WITH 10V TO 30V SINGLE SUPPLY

-4.5 V

e0

150 ns

35 ohm

100 ns

.5 ohm

Multiplexers & Switches

Multiplexers and switches are electronic components used in digital and analog circuits to route signals between different inputs and outputs. They allow a single input signal to be sent to multiple output channels or vice versa.

A multiplexer, also known as a "mux," is a digital component that selects one of several input signals and forwards it to a single output. Multiplexers are often used in data communication systems to transmit multiple signals over a single communication channel. They can also be used in digital circuits to route control signals and address lines.

A switch is an electronic component that connects or disconnects two or more circuits. Switches can be mechanical or electronic and are used to control the flow of current in a circuit. In digital circuits, switches are used to connect or disconnect components and can be used to create logic gates and other digital components.

Multiplexers and switches are important components in various electronic systems, including communication systems, data processing systems, and control systems. They can be used to route signals between different parts of a circuit and to switch between different modes of operation. Multiplexers and switches can also be used to improve the efficiency of a system by reducing the number of components needed to perform a particular function.