18 Analog Computational 18

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Part RoHS Manufacturer Other IC type Temperature Grade No. of Terminals Package Code Package Shape Surface Mount Total Dose (V) Package Body Material Maximum Supply Current (Isup) No. of Functions 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 Minimum Operating Temperature Terminal Finish Terminal Position JESD-30 Code Moisture Sensitivity Level (MSL) Maximum Supply Voltage (Vsup) Maximum Seated Height Width (mm) Qualification Minimum Supply Voltage (Vsup) Additional Features Minimum Negative Supply Voltage (Vsup) Maximum Negative Input Voltage JESD-609 Code Maximum Time At Peak Reflow Temperature (s) Peak Reflow Temperature (C) Maximum Positive Input Voltage Length

AD538SD

Analog Devices

ANALOG MULTIPLE FUNCTIONS

MILITARY

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

125 Cel

-55 Cel

TIN LEAD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e0

10 V

22.865 mm

AD538BDZ

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

GOLD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e4

10 V

22.865 mm

AD538SD/883B

Analog Devices

ANALOG MULTIPLE FUNCTIONS

MILITARY

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

125 Cel

-55 Cel

TIN LEAD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e0

10 V

22.865 mm

MLT04GSZ-RL

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

SOP

RECTANGULAR

YES

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

GULL WING

-5.25 V

-5 V

5 V

+-5

SMALL OUTLINE

SOP18,.4

Analog Computational Functions

1.27 mm

85 Cel

-40 Cel

MATTE TIN

DUAL

R-PDSO-G18

5.25 V

2.65 mm

7.5 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e3

2.5 V

11.55 mm

MLT04GPZ

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

DIP

RECTANGULAR

NO

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

THROUGH-HOLE

-5.25 V

-5 V

5 V

+-5

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-40 Cel

MATTE TIN

DUAL

R-PDIP-T18

5.25 V

5.33 mm

7.62 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e3

2.5 V

22.48 mm

MLT04GP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

DIP

RECTANGULAR

NO

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

THROUGH-HOLE

-5.25 V

-5 V

5 V

+-5

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDIP-T18

5.25 V

5.33 mm

7.62 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e0

2.5 V

22.48 mm

MLT04GSZ-REEL

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

SOP

RECTANGULAR

YES

PLASTIC/EPOXY

20 mA

1

8 kHz

GULL WING

-5.25 V

-5 V

5 V

SMALL OUTLINE

1.27 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G18

5.25 V

2.65 mm

7.5 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e0

2.5 V

11.55 mm

MLT04GS-REEL

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

SOP

RECTANGULAR

YES

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

GULL WING

-5.25 V

-5 V

5 V

+-5

SMALL OUTLINE

SOP18,.4

Analog Computational Functions

1.27 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G18

5.25 V

2.65 mm

7.5 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e0

2.5 V

11.55 mm

MLT04GBC

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

DIE

UNSPECIFIED

YES

UNSPECIFIED

20 mA

1

BIPOLAR

8 kHz

NO LEAD

-5.25 V

-5 V

5 V

+-5

UNCASED CHIP

DIE OR CHIP

Analog Computational Functions

85 Cel

-40 Cel

TIN LEAD

UPPER

X-XUUC-N18

5.25 V

Not Qualified

4.75 V

-4.75 V

-2.5 V

e0

2.5 V

MLT04GS

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

SOP

RECTANGULAR

YES

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

GULL WING

-5.25 V

-5 V

5 V

+-5

SMALL OUTLINE

SOP18,.4

Analog Computational Functions

1.27 mm

85 Cel

-40 Cel

TIN LEAD

DUAL

R-PDSO-G18

3

5.25 V

2.65 mm

7.5 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e0

2.5 V

11.55 mm

MLT04GSZ

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

INDUSTRIAL

18

SOP

RECTANGULAR

YES

PLASTIC/EPOXY

20 mA

1

BIPOLAR

8 kHz

GULL WING

-5.25 V

-5 V

5 V

+-5

SMALL OUTLINE

SOP18,.4

Analog Computational Functions

1.27 mm

85 Cel

-40 Cel

MATTE TIN

DUAL

R-PDSO-G18

3

5.25 V

2.65 mm

7.5 mm

Not Qualified

4.75 V

-4.75 V

-2.5 V

e3

2.5 V

11.55 mm

AD538ADS

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

1

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

IN-LINE

2.54 mm

85 Cel

-25 Cel

TIN LEAD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

e0

22.865 mm

AD538ADZ

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

GOLD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e4

10 V

22.865 mm

AD538ACHIPS

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIE

UNSPECIFIED

YES

UNSPECIFIED

7 mA

1

BIPOLAR

.4 kHz

NO LEAD

-18 V

-15 V

15 V

+-15

UNCASED CHIP

DIE OR CHIP

Analog Computational Functions

85 Cel

-25 Cel

UPPER

X-XUUC-N18

18 V

Not Qualified

4.5 V

-4.5 V

0 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD538BD/+

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC

7 mA

BIPOLAR

THROUGH-HOLE

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

Tin/Lead (Sn/Pb)

DUAL

R-XDIP-T18

e0

AD538AD/+

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC

7 mA

BIPOLAR

THROUGH-HOLE

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

Tin/Lead (Sn/Pb)

DUAL

R-XDIP-T18

e0

AD538BD

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

TIN LEAD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e0

10 V

22.865 mm

AD538AD

Analog Devices

ANALOG MULTIPLE FUNCTIONS

OTHER

18

DIP

RECTANGULAR

NO

CERAMIC, METAL-SEALED COFIRED

7 mA

1

BIPOLAR

.4 kHz

THROUGH-HOLE

-18 V

-15 V

15 V

+-15

IN-LINE

DIP18,.3

Analog Computational Functions

2.54 mm

85 Cel

-25 Cel

TIN LEAD

DUAL

R-CDIP-T18

18 V

4.32 mm

7.62 mm

Not Qualified

4.5 V

-4.5 V

0 V

e0

10 V

22.865 mm

Analog Computational

Analog computation refers to the use of electronic circuits to perform mathematical operations using continuous signals, such as voltage or current, rather than discrete digital signals. Analog computers were widely used before the advent of digital computers, and some specialized applications still use analog computation today.

Analog computers use circuits such as operational amplifiers, resistors, capacitors, and inductors to perform mathematical operations. They can perform complex functions such as integration, differentiation, and solving differential equations, which can be difficult or impossible to implement on a digital computer.

Analog computation has advantages in some applications, such as in control systems, where continuous signals are often used to control physical processes. Analog circuits can also be more efficient and less expensive than their digital counterparts in certain applications.

However, analog computation has limitations compared to digital computation, including limitations in accuracy, repeatability, and scalability. Additionally, analog circuits can be sensitive to environmental factors such as temperature and noise, which can affect their performance.