Analog Devices AD667JP

Microprocessor-Compatible 12-Bit D/A Converter | IC DAC 12BIT V-OUT 28PLCC
$ 15.82
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Datasheet8 pagine30 anni fa
Datasheet8 pagine30 anni fa

Analog Devices

Augswan

iiiC

RS (Formerly Allied Electronics)

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Parti alternative

Price @ 1000
$ 15.82
$ 32.386
$ 32.386
Stock
173,972
225,842
225,842
Authorized Distributors
1
6
6
Case/Package
P
P
P
Number of Pins
28
28
28
Number of Bits
12
12
12
Settling Time
2 µs
2 µs
2 µs
Interface
Parallel
Parallel
Parallel
Integral Nonlinearity (INL)
0.75 LSB
0.75 LSB
0.75 LSB
Polarity
Bipolar, Unipolar
Bipolar, Unipolar
Bipolar, Unipolar
Number of DAC Channels
1
1
1
Min Supply Voltage
11.4 V
11.4 V
11.4 V
Max Supply Voltage
16.5 V
16.5 V
16.5 V

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Descrizioni

Descrizioni di Analog Devices AD667JP fornite dai suoi distributori.

Microprocessor-Compatible 12-Bit D/A Converter | IC DAC 12BIT V-OUT 28PLCC
DAC 1-CH Current Steering 12-bit 28-Pin PLCC Tube
28-LCC (J-Lead) Voltage - Buffered R-2R S-PQCC-J28 digital to analog converter -12V 4mus 0C~70C
12-BIT D/A CONVERTER D/A Converter, 1 Func, Parallel, Word Input Loading, 3us Settling Time, PQCC28
IC,AD667JP, 12-BIT D/A CONVERT ER <NV
The AD667 is a complete voltage output 12-bit digital-to-analog converter including a high stability buried Zener voltage reference and double-buffered input latch on a single chip. The converter uses 12 precision high speed bipolar current steering switches and a laser trimmed thin-film resistor network to provide fast settling time and high accuracy. Microprocessor compatibility is achieved by the on-chip double-buffered latch. The design of the input latch allows direct interface to 4-, 8-, 12-, or 16-bit buses. The 12 bits of data from the first rank of latches can then be transferred to the second rank, avoiding generation of spurious analog output values. The latch responds to strobe pulses as short as 100 ns, allowing use with the fastest available microprocessors. The functional completeness and high performance in the AD667 results from a combination of advanced switch design, high speed bipolar manufacturing process, and the proven laser wafer-trimming (LWT) technology. The AD667 is trimmed at the wafer level and is specified to ±1/4 LSB maximum linearity error (K, B grades) at +25°C and ±1/2 LSB over the full operating temperature range. The subsurface (buried) Zener diode on the chip provides a low noise voltage reference which has long-term stability and temperature drift characteristics comparable to the best discrete reference diodes. The laser trimming process which provides the excellent linearity, is also used to trim the absolute value of the reference as well as its temperature coefficient. The AD667 is thus well suited for wide temperature range performance with ±1/2 LSB maximum linearity error and guaranteed monotonicity over the full temperature range. Typical full-scale gain TC is 5 ppm/°C. The AD667 is available in five performance grades. The AD667J and K are specified for use over the 0°C to +70°C temperature range and are available in a 28-pin molded plastic DIP (N) or PLCC (P) package. The AD667S grade is specified for the -55°C to +125°C range and is available in the ceramic DIP (D) or LCC (E) package. The AD667A and B are specified for use over the -25°C to +85°C temperature range and are available in a 28-pin hermetically sealed ceramic DIP (D) package.

Alias del produttore

Analog Devices ha diversi marchi in tutto il mondo che i distributori possono utilizzare come nomi alternativi. Analog Devices può anche essere conosciuto con i seguenti nomi:

  • Analog Devices Inc
  • ANALOG
  • ADI
  • ANALOG DEVICE
  • ANALOG DEV
  • AD
  • ANA
  • PMI
  • Analog Devices Inc/Maxim Integrated
  • ADV
  • ADA
  • ANALOG DEVIC
  • PMI/AD
  • ANALOG DEVI
  • AD/PMI
  • STOCK
  • Analog Devices / Linear Technology
  • ANALOG INTERGRATIONS CORP
  • AD - Analog Devices
  • PRECISION MONOLITIC INC
  • ADI (Analog Devices Inc)
  • ANADEV
  • Analog Devices / Hittite
  • ANALOG DEVICES (ADI)
  • ANLOGDEVIC
  • Analog Devices Inc.
  • Maxim Analog Devices
  • Analog Devices / Maxim Integrated

Alias del numero di parte

Questa parte può essere conosciuta con i seguenti numeri di parte alternativi:

  • AD 667JP