Analog Devices Inc. AD7859ASZ-REEL

Mfr.Part #:

AD7859ASZ-REEL

Manufacturer:

Description:
IC ADC 12BIT 8CH LP 44-MQFP

RoHS Status:

RoHS

Datasheet:

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- +
Total Price: $16.73

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Specifications

Product Details

Product Comparison

Factory Lead Time
16 Weeks
Lifecycle Status
PRODUCTION (Last Updated: 3 weeks ago)
Contact Plating
Tin
Mounting Type

Mounting Type refers to the method by which an electronic component is attached to a printed circuit board (PCB) or other surface. Common mounting types include: * Through-hole: Component leads are inserted into holes in the PCB and soldered on the other side. * Surface-mount: Component is placed on the surface of the PCB and soldered in place. * Press-fit: Component is pressed into place on the PCB without soldering. * Socket: Component is inserted into a socket on the PCB, allowing for easy replacement. The mounting type is determined by factors such as the component's size, shape, and power requirements.

Surface Mount
Package / Case

Package / Case refers to the physical housing or enclosure that encapsulates an electronic component. It provides protection, facilitates handling, and enables electrical connections. The package type determines the component's size, shape, pin configuration, and mounting options. Common package types include DIP (dual in-line package), SOIC (small outline integrated circuit), and BGA (ball grid array). The package also influences the component's thermal and electrical performance.

44-QFP
Surface Mount
YES
Number of Pins

Number of Pins: Indicates the number of electrical connections available on the component. These pins are used to connect the component to other components or circuits on a printed circuit board (PCB). The number of pins determines the functionality and connectivity options of the component. It is important to ensure that the component has the correct number of pins for the intended application.

44
Operating Temperature

Operating Temperature is the range of temperatures at which an electronic component can function properly. It is typically specified in degrees Celsius (°C) and indicates the minimum and maximum temperatures at which the component can operate without experiencing damage or degradation. Operating Temperature is an important parameter to consider when designing electronic circuits, as it ensures that the components will function reliably in the intended operating environment.

-40°C~85°C
Packaging
Tape & Reel (TR)
JESD-609 Code
e3
Pbfree Code
no
Part Status

Part Status is an electronic component parameter that indicates the availability and production status of a component. It is typically used to inform customers about the availability of a component, whether it is in production, end-of-life, or obsolete. Part Status can also provide information about any restrictions or limitations on the component's use, such as whether it is only available for certain applications or if it has been discontinued.

Active
Moisture Sensitivity Level (MSL)

Moisture Sensitivity Level (MSL) is a measure of the susceptibility of a surface mount electronic component to moisture-induced damage during soldering. It is classified into six levels, from 1 (least sensitive) to 6 (most sensitive). MSL is determined by the materials used in the component's construction, including the solderability of its terminals and the presence of moisture-absorbing materials. Components with higher MSL ratings require more stringent handling and storage conditions to prevent moisture absorption and subsequent damage during soldering.

3 (168 Hours)
Number of Terminations
44
ECCN Code
EAR99
Subcategory
Analog to Digital Converters
Max Power Dissipation
30mW
Technology

Technology, in the context of electronic components, refers to the specific manufacturing process and materials used to create the component. It encompasses the semiconductor fabrication techniques, such as the type of transistor used (e.g., MOSFET, BJT), the gate oxide thickness, and the interconnect materials. Technology also includes the packaging type, such as surface mount or through-hole, and the leadframe or substrate material. The technology used impacts the component's performance characteristics, such as speed, power consumption, and reliability.

CMOS
Terminal Position
QUAD
Terminal Form
GULL WING
Peak Reflow Temperature (Cel)
260
Number of Functions
1
Supply Voltage

Supply Voltage is the voltage required to power an electronic component. It is typically measured in volts (V) and is specified in the component's datasheet. The supply voltage must be within the specified range for the component to function properly. If the supply voltage is too low, the component may not function at all. If the supply voltage is too high, the component may be damaged.

3.6V
Reflow Temperature-Max (s)
40
Base Part Number
AD7859
Pin Count
44
Qualification Status
Not Qualified
Operating Supply Voltage
5V
Polarity

Polarity refers to the direction of current flow through an electronic component. It is typically indicated by a plus (+) or minus (-) sign on the component's body. Components with polarity must be connected correctly in a circuit to function properly. For example, a diode will only allow current to flow in one direction, from the positive terminal to the negative terminal. If a diode is connected backwards, it will not conduct current.

Bipolar, Unipolar
Configuration
MUX-S/H-ADC
Number of Channels

Number of Channels refers to the number of independent signal paths within an electronic component. It indicates how many separate signals can be processed or transmitted simultaneously. For example, an audio amplifier with two channels can amplify two separate audio signals, while a multi-channel data converter can convert multiple analog signals into digital data. The number of channels is a crucial parameter for determining the component's functionality and application.

8
Max Supply Voltage
5.5V
Min Supply Voltage
3V
Power Dissipation

Power Dissipation is the maximum amount of power that an electronic component can safely dissipate without being damaged. It is typically measured in watts (W) and is determined by the component's physical size, material properties, and design. Exceeding the power dissipation rating can lead to overheating, reduced performance, and even component failure.

30mW
Number of Bits
12
Input Type

Input Type refers to the type of signal that an electronic component can accept as input.

Pseudo-Differential, Single Ended
Min Input Voltage
1.2V
Architecture

Architecture refers to the internal design and organization of an electronic component. It encompasses the arrangement of functional blocks, their interconnections, and the overall data flow within the component. The architecture determines the component's performance characteristics, such as speed, power consumption, and functionality. It also influences the component's size, cost, and reliability.

SAR
Number of Inputs

The number of inputs of an electronic component refers to the number of separate signals or data streams that the component can receive and process simultaneously. It indicates the maximum number of external connections that can be made to the component to provide input signals. This parameter is crucial for determining the functionality and connectivity of the component within a circuit or system.

4, 8
Max Input Voltage
5.5V
Converter Type

Converter Type refers to the type of conversion performed by an electronic component, such as an analog-to-digital converter (ADC) or a digital-to-analog converter (DAC). It specifies the input and output signal types that the converter can handle.

ADC, SUCCESSIVE APPROXIMATION
Supply Type
Analog, Digital
Reference Type

Reference type is a parameter that specifies the type of reference used in an electronic component. It can be either a voltage reference or a current reference. A voltage reference provides a stable voltage output, while a current reference provides a stable current output. The type of reference used depends on the application. For example, a voltage reference is used in a voltage regulator to provide a stable voltage output, while a current reference is used in a current source to provide a stable current output.

External, Internal
Data Interface

Data Interface refers to the physical and logical means by which an electronic component communicates with other components or systems. It defines the protocols, pinouts, and signal characteristics used for data exchange. The Data Interface parameter specifies the type of interface supported by the component, such as SPI, I2C, UART, or Ethernet. It ensures compatibility and proper communication between different devices within a system.

Parallel
Resolution
1.5 B
Sampling Rate

Sampling rate refers to the number of times per second that an analog signal is measured and converted into a digital signal. It is expressed in Hertz (Hz) and determines the maximum frequency that can be accurately represented in the digital signal. A higher sampling rate results in a more accurate representation of the analog signal, but also increases the amount of data that needs to be processed. The sampling rate must be at least twice the highest frequency component of the analog signal to avoid aliasing, where high-frequency components are incorrectly represented as lower-frequency components.

200 ksps
Voltage - Supply, Analog
3V~5.5V
Voltage - Supply, Digital
3V~5.5V
Number of Analog In Channels
8
Sampling Rate (Per Second)
200k
Power Consumption
25mW
Integral Nonlinearity (INL)
1 LSB
Sample and Hold / Track and Hold
TRACK
Number of A/D Converters
1
Input Capacitance

Input Capacitance is a parameter that measures the capacitance between the input terminal of an electronic component and the ground or reference terminal. It represents the ability of the component to store electrical charge when a voltage is applied to its input. A higher input capacitance indicates a greater ability to store charge, which can affect the component's response time and frequency characteristics. Input capacitance is a crucial parameter in designing electronic circuits, as it can impact signal integrity, noise immunity, and overall circuit performance.

20pF
Number of Converters

Number of Converters refers to the quantity of analog-to-digital converters (ADCs) or digital-to-analog converters (DACs) present in an electronic component. ADCs convert analog signals into digital form, while DACs perform the reverse operation. The number of converters determines the component's ability to handle multiple analog or digital signals simultaneously. A higher number of converters allows for increased data acquisition or signal generation capabilities.

2
Ratio - S/H:ADC

Ratio - S/H:ADC is an electronic component parameter that specifies the ratio of the output voltage of a sample-and-hold (S/H) circuit to the input voltage of the analog-to-digital converter (ADC). It is expressed as a percentage and indicates the accuracy of the ADC's conversion process. A higher ratio indicates better accuracy, as it means that the ADC is able to convert the analog input signal into a digital representation with less error.

1:1
Signal to Noise Ratio (SNR)
71 dB
Differential Nonlinearity
1 LSB
Conversion Time-Max
4.5μs
RoHS Status
ROHS3 Compliant
Lead Free
Contains Lead
Description
The AD7859/AD7859L are high-speed, low-power, 8-channel, 12-bit ADCs that operate from a single 3 V or 5 V power supply. The AD7859 is optimized for speed, while the AD7859L is optimized for low power. The ADCs contain self-calibration and system calibration options to ensure accurate operation over time and temperature. They also have several power-down options for low-power applications.
The AD7859 is capable of a 200 kHz throughput rate, while the AD7859L is capable of a 100 kHz throughput rate. The input track-and-hold acquires a signal in 500 ns and features a pseudo-differential sampling scheme. The AD7859 and AD7859L input voltage range is 0 to VDD (unipolar) and -VE/2 to VREP/2 about VR/2 (bipolar) with both straight binary and 2's complement output coding, respectively. The input signal range is to the supply, and the parts are capable of converting full-power signals to 100 kHz.
CMOS construction ensures low power dissipation of typically 5.4 mW for normal operation and 3.6 µW in power-down mode. The parts are available in 44-pin, plastic quad flatpack package (PQFP) and plastic lead chip carrier (PLCC).

Features
Specified for VDD of 3 V to 5.5 V
AD7859: 200 kSPS; AD7859L: 100 kSPS
System and self-calibration
Low power
Normal operation:
AD7859: 15 mW (VDD = 3 V)
AD7859L: 5.5 mW (VDD = 3 V)
Using automatic power-down after conversion:
AD7859: 25 pW
AD7859L: 650 µW
Flexible parallel interface:
16-bit parallel/8-bit parallel
44-pin PQFP and PLCC packages

Applications
Battery-powered systems (personal digital assistants, medical instruments, mobile communications)
Pen computers
Instrumentation and control systems
High-speed modems
  • Image
    Part Number
    Manufacturer
    Factory Lead Time
    Lifecycle Status
    Contact Plating
    Mounting Type
    Package / Case
    Surface Mount
    Number of Pins
    Operating Temperature
    Packaging
    JESD-609 Code
    Pbfree Code
    Part Status
    Moisture Sensitivity Level (MSL)
    Number of Terminations
    ECCN Code
    Subcategory
    Max Power Dissipation
    Technology
    Terminal Position
    Terminal Form
    Peak Reflow Temperature (Cel)
    Number of Functions
    Supply Voltage
    Reflow Temperature-Max (s)
    Base Part Number
    Pin Count
    Qualification Status
    Operating Supply Voltage
    Polarity
    Configuration
    Number of Channels
    Max Supply Voltage
    Min Supply Voltage
    Power Dissipation
    Number of Bits
    Input Type
    Min Input Voltage
    Architecture
    Number of Inputs
    Max Input Voltage
    Converter Type
    Supply Type
    Reference Type
    Data Interface
    Resolution
    Sampling Rate
    Voltage - Supply, Analog
    Voltage - Supply, Digital
    Number of Analog In Channels
    Sampling Rate (Per Second)
    Power Consumption
    Integral Nonlinearity (INL)
    Sample and Hold / Track and Hold
    Number of A/D Converters
    Input Capacitance
    Number of Converters
    Ratio - S/H:ADC
    Signal to Noise Ratio (SNR)
    Differential Nonlinearity
    Conversion Time-Max
    RoHS Status
    Lead Free
    Mount
    Terminal Finish
    Terminal Pitch
    Interface
    Operating Supply Current
    Output Bit Code
    Output Format
    Number of Analog Inputs
    Height Seated (Max)
    Nominal Supply Current
    Height
    Length
    Width
    REACH SVHC
    View Compare
  • AD7859ASZ-REEL
    AD7859ASZ-REEL
    16 Weeks
    PRODUCTION (Last Updated: 3 weeks ago)
    Tin
    Surface Mount
    44-QFP
    YES
    44
    -40°C~85°C
    Tape & Reel (TR)
    e3
    no
    Active
    3 (168 Hours)
    44
    EAR99
    Analog to Digital Converters
    30mW
    CMOS
    QUAD
    GULL WING
    260
    1
    3.6V
    40
    AD7859
    44
    Not Qualified
    5V
    Bipolar, Unipolar
    MUX-S/H-ADC
    8
    5.5V
    3V
    30mW
    12
    Pseudo-Differential, Single Ended
    1.2V
    SAR
    4, 8
    5.5V
    ADC, SUCCESSIVE APPROXIMATION
    Analog, Digital
    External, Internal
    Parallel
    1.5 B
    200 ksps
    3V~5.5V
    3V~5.5V
    8
    200k
    25mW
    1 LSB
    TRACK
    1
    20pF
    2
    1:1
    71 dB
    1 LSB
    4.5μs
    ROHS3 Compliant
    Contains Lead
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
    -
  • AD7091R-4BCPZ-RL7
    8 Weeks
    PRODUCTION (Last Updated: 4 weeks ago)
    -
    Surface Mount
    20-WFQFN Exposed Pad, CSP
    -
    20
    -40°C~125°C
    Tape & Reel (TR)
    e3
    no
    Active
    3 (168 Hours)
    20
    -
    -
    -
    -
    QUAD
    NO LEAD
    260
    1
    3V
    30
    AD7091
    20
    -
    -
    Unipolar
    S/H-ADC
    -
    5.25V
    2.7V
    3.4mW
    12
    Single Ended
    1V
    SAR
    1
    5.25V
    ADC, SUCCESSIVE APPROXIMATION
    -
    Supply
    SPI, DSP
    1.5 B
    1 Msps
    2.09V~5.25V
    2.09V~5.25V
    4
    1M
    -
    1.25 LSB
    TRACK
    -
    -
    -
    1:1
    70 dB
    0.3 LSB
    0.6μs
    ROHS3 Compliant
    Contains Lead
    Surface Mount
    Tin (Sn)
    0.5mm
    SPI
    500μA
    BINARY
    SERIAL
    4
    0.8mm
    -
    -
    -
    -
    -
  • AD7091R-8BRUZ
    8 Weeks
    PRODUCTION (Last Updated: 1 month ago)
    -
    Surface Mount
    24-TSSOP (0.173, 4.40mm Width)
    -
    24
    -40°C~125°C
    Tube
    e3
    no
    Active
    1 (Unlimited)
    24
    EAR99
    -
    3.4mW
    -
    DUAL
    GULL WING
    260
    1
    3V
    30
    AD7091
    24
    -
    -
    Unipolar
    S/H-ADC
    -
    5.25V
    2.7V
    1mW
    12
    Single Ended
    1V
    SAR
    1
    5.25V
    ADC, SUCCESSIVE APPROXIMATION
    Single
    Supply
    SPI, DSP
    1.5 B
    1 Msps
    2.09V~5.25V
    2.09V~5.25V
    8
    1M
    -
    1.25 LSB
    TRACK
    -
    7pF
    -
    1:1
    70 dB
    0.3 LSB
    0.6μs
    ROHS3 Compliant
    Contains Lead
    Surface Mount
    Matte Tin (Sn)
    0.65mm
    SPI
    500μA
    BINARY
    SERIAL
    8
    -
    349μA
    1.05mm
    7.9mm
    4.5mm
    No SVHC

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