AD734BNZ Analog Devices, 4-quadrant Voltage Divider and Multiplier, 10 MHz, 14-Pin PDIP

RS 庫存號: 427-127品牌: Analog Devices製造商零件號: AD734BNZ
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技術文件

規格

Number of Quadrants

4

Output Type

Single Ended

Number of Elements per Chip

1

Maximum Operating Frequency

10 MHz

Maximum Dual Supply Voltage

±16.5V

Minimum Dual Supply Voltage

±8V

Mounting Type

Through Hole

Package Type

PDIP

Pin Count

14

Minimum Operating Temperature

-40 °C

Height

3.43mm

Dimensions

16.89 x 7.24 x 3.43mm

Maximum Operating Temperature

+85 °C

Length

16.89mm

Width

7.24mm

產品詳情

Analogue Multipliers, Analog Devices

A range of analogue multipliers and dividers from Analog Devices suitable for a variety of signal processing applications. Both two and four quadrant types are available, in through-hole and SMT page options. Typical applications for these devices include differential ratio and percentage computations, algebraic and trigonometric function synthesis, accurate voltage controlled oscillators and filters, modulators and demodulators, gain control and rms-to-dc conversion.

P.O.A.

AD734BNZ Analog Devices, 4-quadrant Voltage Divider and Multiplier, 10 MHz, 14-Pin PDIP
選擇包裝類型

P.O.A.

AD734BNZ Analog Devices, 4-quadrant Voltage Divider and Multiplier, 10 MHz, 14-Pin PDIP

暫時無法取得庫存資訊。

選擇包裝類型

暫時無法取得庫存資訊。

技術文件

規格

Number of Quadrants

4

Output Type

Single Ended

Number of Elements per Chip

1

Maximum Operating Frequency

10 MHz

Maximum Dual Supply Voltage

±16.5V

Minimum Dual Supply Voltage

±8V

Mounting Type

Through Hole

Package Type

PDIP

Pin Count

14

Minimum Operating Temperature

-40 °C

Height

3.43mm

Dimensions

16.89 x 7.24 x 3.43mm

Maximum Operating Temperature

+85 °C

Length

16.89mm

Width

7.24mm

產品詳情

Analogue Multipliers, Analog Devices

A range of analogue multipliers and dividers from Analog Devices suitable for a variety of signal processing applications. Both two and four quadrant types are available, in through-hole and SMT page options. Typical applications for these devices include differential ratio and percentage computations, algebraic and trigonometric function synthesis, accurate voltage controlled oscillators and filters, modulators and demodulators, gain control and rms-to-dc conversion.