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AD9059BRS
+BOMIC ADC 8BIT FLASH 28SSOP
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ManufacturerAnalog Devices Inc.
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Mfr. Part #AD9059BRS
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Datasheet AD9059BRS DataSheet
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Package SSOP-28
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In Stock4931
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Specifications
| Attribute | Value |
| Package | Tube,Tube |
| ProductStatus | Obsolete |
| NumberofBits | 8 |
| SamplingRate(PerSecond) | 60M |
| NumberofInputs | 2 |
| InputType | Single Ended |
| DataInterface | Parallel |
| Configuration | S/H-ADC |
| Ratio-S/H:ADC | 1:1 |
| NumberofA/DConverters | 2 |
| Architecture | Flash |
| ReferenceType | Internal |
| Voltage-SupplyAnalog | 5V |
| Voltage-SupplyDigital | 3V ~ 5V |
| Features | Simultaneous Sampling |
| OperatingTemperature | -40°C ~ 85°C |
| Package/Case | 28-SSOP (0.209, 5.30mm Width) |
| SupplierDevicePackage | 28-SSOP |
Overview
Description
The AD9059BRS features a sample-and-hold amplifier, a reference, and a dual 8-bit ADC on a single monolithic chip. It offers a high speed-to-power ratio, providing efficient conversion without significant power draw. The differential nonlinearity (DNL) and integral nonlinearity (INL) are kept within tight limits to ensure accuracy.
The ADC typically requires a +5V power supply and offers a parallel digital output, which simplifies interfacing with microcontrollers or digital signal processors (DSPs). The compactness and efficiency make it suitable for use in portable or space-constrained systems. Overall, the AD9059BRS is ideal for designers seeking a reliable and efficient solution for high-speed data conversion tasks.
Equivalent
1. Texas Instruments ADS822: An 8-bit, 65 MSPS ADC.
2. Maxim Integrated MAX11801: An 8-bit, 60 MSPS ADC.
3. Analog Devices AD9280: An 8-bit, 32 MSPS ADC, though slightly slower.
4. Texas Instruments TLV320ADC3101: Offers similar functionalities with additional features.
Always verify specific application requirements as specifications may vary slightly between models.
Features
1. Sampling Rate: It supports a high sampling rate of up to 60 MSPS, making it suitable for a range of applications requiring fast data conversion.
2. Resolution: Offers an 8-bit resolution, which is adequate for many digital signal processing applications.
3. Low Power Consumption: Designed to operate efficiently, minimizing power usage which is crucial for portable and battery-operated devices.
4. Input Bandwidth: The device provides a wide analog input bandwidth, ensuring it can handle fast and complex signal conversions.
5. Differential Inputs: Supports differential input configurations to improve noise immunity and signal integrity.
6. Ease of Use: Packaged in a small, surface-mount form factor, the AD9059BRS is easy to integrate into existing systems.
These features make the AD9059BRS suitable for applications like communications, imaging, and data acquisition systems where high-speed and reliable data conversion is necessary.
Pinout
Key functions and features of the AD9059BRS include:
- Dual ADC channels, allowing for simultaneous sampling of two signals.
- A typical sampling rate of up to 60 MSPS (Mega Samples Per Second).
- Data output in 8-bit parallel form for each channel.
- Single +5 V power supply operation.
- Built-in reference voltage source for precision.
- Low power consumption, which is beneficial for battery-powered or heat-sensitive applications.
- Suitable for applications in communications, instrumentation, and consumer electronics.
These specifications make the AD9059BRS suitable for applications requiring fast and accurate digital representations of analog signals.
Manufacturer
Application
1. Digital Communication Systems: Used in signal conversion for both wired and wireless communication.
2. Instrumentation: Suitable for oscilloscopes and spectrum analyzers due to its high-speed performance.
3. Medical Imaging: Employed in MRI and CT scanners for converting analog signals into digital data.
4. Radar and Electronic Warfare: Essential for processing high-frequency signals in military applications.
5. Test and Measurement Equipment: Used for precision data acquisition systems.
These applications benefit from the AD9059BRS's capability to handle high-speed signal processing efficiently.