DIE Analog Computational 23

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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

AD606JCHIPS

Analog Devices

LOG OR ANTILOG AMPLIFIER

COMMERCIAL

16

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

50 kHz

NO LEAD

5 V

UNCASED CHIP

70 Cel

0 Cel

UPPER

X-XUUC-N16

5.5 V

Not Qualified

4.5 V

NOT SPECIFIED

NOT SPECIFIED

AD640TCHIP

Analog Devices

LOG OR ANTILOG AMPLIFIER

MILITARY

20

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

145 kHz

NO LEAD

-7.5 V

-5 V

5 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N20

7.5 V

Not Qualified

4.5 V

-4.5 V

-2 V

30

220

.3 V

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

AD640TCHIPS

Analog Devices

LOG OR ANTILOG AMPLIFIER

MILITARY

20

DIE

RECTANGULAR

YES

UNSPECIFIED

1

145 kHz

NO LEAD

-7.5 V

-5 V

5 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

R-XUUC-N20

7.5 V

Not Qualified

4.5 V

-4.5 V

-2 V

NOT SPECIFIED

NOT SPECIFIED

.3 V

AD532JCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

20

DIE

UNSPECIFIED

YES

UNSPECIFIED

6 mA

1

1 kHz

NO LEAD

-18 V

-15 V

15 V

UNCASED CHIP

70 Cel

0 Cel

UPPER

X-XUUC-N20

18 V

Not Qualified

10 V

-10 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD8310ACHIPS

Analog Devices

LOG OR ANTILOG AMPLIFIER

INDUSTRIAL

9

DIE

RECTANGULAR

YES

UNSPECIFIED

1

BIPOLAR

440 kHz

NO LEAD

5 V

UNCASED CHIP

85 Cel

-40 Cel

UPPER

R-XUUC-N9

5.5 V

.745 mm

2.7 V

-2.2 V

NOT SPECIFIED

NOT SPECIFIED

2.2 V

1.39 mm

AD532KCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

10

DIE

RECTANGULAR

YES

UNSPECIFIED

6 mA

1

1 kHz

NO LEAD

-18 V

-15 V

15 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N10

18 V

Not Qualified

10 V

-10 V

-10 V

e0

10 V

AD532JCHIPS

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

10

DIE

RECTANGULAR

YES

UNSPECIFIED

6 mA

1

BIPOLAR

1 kHz

NO LEAD

-18 V

-15 V

15 V

+-15

UNCASED CHIP

DIE OR CHIP

Analog Computational Functions

70 Cel

0 Cel

UPPER

R-XUUC-N10

18 V

Not Qualified

10 V

-10 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD539JCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

16

DIE

RECTANGULAR

YES

UNSPECIFIED

22.2 mA

2

60 kHz

NO LEAD

-15 V

-5 V

5 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N16

15 V

Not Qualified

4.5 V

-4.5 V

-2 V

e0

2 V

AD534-000C

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

10

DIE

RECTANGULAR

YES

UNSPECIFIED

1

NO LEAD

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

R-XUUC-N10

AD8306ACHIPS

Analog Devices

LOG OR ANTILOG AMPLIFIER

INDUSTRIAL

16

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

BIPOLAR

395 kHz

NO LEAD

5 V

UNCASED CHIP

85 Cel

-40 Cel

UPPER

X-XUUC-N16

6.5 V

Not Qualified

2.7 V

NOT SPECIFIED

NOT SPECIFIED

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

AD8317ACHIPS

Analog Devices

LOG OR ANTILOG AMPLIFIER

INDUSTRIAL

8

DIE

RECTANGULAR

YES

UNSPECIFIED

1

BIPOLAR

10000 kHz

NO LEAD

5 V

UNCASED CHIP

85 Cel

-40 Cel

UPPER

R-XUUC-N8

1

5.5 V

Not Qualified

3 V

30

260

AD534TCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

10

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

1 kHz

NO LEAD

-22 V

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N10

22 V

Not Qualified

8 V

-8 V

-10 V

30

220

10 V

AD534KCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

10

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

1 kHz

NO LEAD

-18 V

-15 V

15 V

UNCASED CHIP

70 Cel

0 Cel

UPPER

X-XUUC-N10

18 V

Not Qualified

8 V

-8 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD639A-CHIPS

Analog Devices

ANALOG TRIGONOMETRIC FUNCTIONS

OTHER

16

DIE

UNSPECIFIED

YES

UNSPECIFIED

11 mA

1

BIPOLAR

1.5 kHz

NO LEAD

-18 V

-15 V

15 V

+-15

UNCASED CHIP

DIE OR CHIP

Analog Waveform Generation Functions

85 Cel

-25 Cel

UPPER

X-XUUC-N16

18 V

Not Qualified

5.5 V

-5.5 V

AD734SCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

14

DIE

UNSPECIFIED

YES

UNSPECIFIED

12 mA

1

40 kHz

NO LEAD

-16.5 V

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N14

16.5 V

Not Qualified

8 V

-8 V

-12.5 V

12.5 V

AD834SCHIPS

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

8

DIE

SQUARE

YES

UNSPECIFIED

35 mA

1

BIPOLAR

500 kHz

NO LEAD

-9 V

-5 V

5 V

+-5

UNCASED CHIP

DIE OR CHIP

Analog Computational Functions

125 Cel

-55 Cel

UPPER

S-XUUC-N8

9 V

Not Qualified

4 V

-4 V

-1 V

30

220

1 V

AD734SCHIPS

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

14

DIE

UNSPECIFIED

YES

UNSPECIFIED

12 mA

1

40 kHz

NO LEAD

-16.5 V

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N14

16.5 V

Not Qualified

8 V

-8 V

-12.5 V

NOT SPECIFIED

NOT SPECIFIED

12.5 V

AD534SCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

10

DIE

UNSPECIFIED

YES

UNSPECIFIED

1

1 kHz

NO LEAD

-22 V

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N10

22 V

Not Qualified

8 V

-8 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD534JCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

COMMERCIAL

10

DIE

RECTANGULAR

YES

UNSPECIFIED

6 mA

1

1 kHz

NO LEAD

-18 V

-15 V

15 V

UNCASED CHIP

70 Cel

0 Cel

TIN LEAD

UPPER

R-XUUC-N10

18 V

Not Qualified

8 V

-8 V

-10 V

e0

10 V

AD532SCHIP

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

10

DIE

UNSPECIFIED

YES

UNSPECIFIED

6 mA

1

1 kHz

NO LEAD

-22 V

-15 V

15 V

UNCASED CHIP

125 Cel

-55 Cel

UPPER

X-XUUC-N10

22 V

Not Qualified

10 V

-10 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

AD532SCHIPS

Analog Devices

ANALOG MULTIPLIER OR DIVIDER

MILITARY

10

DIE

RECTANGULAR

YES

UNSPECIFIED

6 mA

1

BIPOLAR

1 kHz

NO LEAD

-22 V

-15 V

15 V

+-15

UNCASED CHIP

DIE OR CHIP

Analog Computational Functions

125 Cel

-55 Cel

UPPER

R-XUUC-N10

22 V

Not Qualified

10 V

-10 V

-10 V

NOT SPECIFIED

NOT SPECIFIED

10 V

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.