Overview
The MAX1026BCEE+ is a high-performance 10-bit analog-to-digital converter (ADC) produced by Analog Devices Inc./Maxim Integrated. This device is part of the MAX1026/MAX1028/MAX1030 family and is known for its reliability and advanced features. The MAX1026BCEE+ operates with a maximum sampling rate of 300ksps and is available in a 16-pin QSOP package. It is designed to meet the needs of various applications requiring precise analog-to-digital conversion.
Key Specifications
Parameter | Value | Parameter | Value |
---|---|---|---|
Manufacturer | Analog Devices Inc./Maxim Integrated | Product Status | Obsolete |
Number of Bits | 10 | Sampling Rate (Per Second) | 300k |
Number of Inputs | 4, 8 | Input Type | Differential, Single Ended |
Data Interface | SPI | Configuration | S/H-ADC |
Ratio - S/H:ADC | 1:1 | Number of A/D Converters | 1 |
Architecture | SAR | Reference Type | External, Internal |
Voltage - Supply, Analog | 5V | Voltage - Supply, Digital | 5V |
Features | Temperature Sensor | Operating Temperature | 0°C ~ 70°C |
Package / Case | 16-QSOP (0.154", 3.90mm Width) | Mounting Type | Surface Mount |
Key Features
- Internal Temperature Sensor: With an accuracy of ±0.7°C, this feature allows for temperature monitoring within the system.
- 16-Entry First-In/First-Out (FIFO): Enhances data handling and reduces the need for frequent data transfers.
- Analog Multiplexer with True Differential Track/Hold: Supports both single-ended and differential inputs in unipolar or bipolar mode.
- Scan Mode, Internal Averaging, and Internal Clock: These features provide flexibility in data acquisition and processing.
- Low-Power Single +5V Operation: Consumes 2.3mA at 300ksps, making it energy-efficient.
- Internal 4.096V Reference or External Differential Reference: Offers flexibility in reference voltage selection.
- 10MHz 3-Wire SPI/QSPI/MICROWIRE-Compatible Interface: Supports high-speed serial communication.
Applications
- System Supervision: Ideal for monitoring system health and performance.
- Data-Acquisition Systems: Suitable for various data acquisition needs due to its high accuracy and multiple input channels.
- Industrial Control Systems: Used in industrial automation for precise measurement and control.
- Patient Monitoring: Can be used in medical devices for patient monitoring due to its precision and reliability.
- Data Logging and Instrumentation: Useful in logging data and providing accurate measurements in various instrumentation applications.
Q & A
- Q: What is the maximum sampling rate of the MAX1026BCEE+?
A: The maximum sampling rate of the MAX1026BCEE+ is 300ksps using an external clock.
- Q: What types of input channels does the MAX1026BCEE+ support?
A: The MAX1026BCEE+ supports both single-ended and differential input channels in unipolar or bipolar mode.
- Q: What is the operating temperature range of the MAX1026BCEE+?
A: The operating temperature range of the MAX1026BCEE+ is 0°C to 70°C.
- Q: Does the MAX1026BCEE+ have an internal temperature sensor?
A: Yes, the MAX1026BCEE+ includes an internal temperature sensor with an accuracy of ±0.7°C.
- Q: What is the power supply requirement for the MAX1026BCEE+?
A: The MAX1026BCEE+ operates from a single +5V supply for both analog and digital sections.
- Q: What is the package type of the MAX1026BCEE+?
A: The MAX1026BCEE+ is available in a 16-pin QSOP package).
- Q: Does the MAX1026BCEE+ support SPI communication?
A: Yes, the MAX1026BCEE+ has a 10MHz 3-Wire SPI/QSPI/MICROWIRE-compatible interface).
- Q: What is the warranty period for the MAX1026BCEE+?
A: The warranty period varies by supplier, but typically includes a 1-year warranty or similar guarantees).
- Q: How can I ensure the authenticity of the MAX1026BCEE+?
A: Ensure you purchase from authorized distributors or suppliers who rigorously test and verify the credentials of the manufacturers and their agents).
- Q: What are some common applications of the MAX1026BCEE+?
A: Common applications include system supervision, data-acquisition systems, industrial control systems, patient monitoring, and data logging).