Skip to main content
Analog Devices MAX197BCAI+ — DC-DC Power Modules

MAX197BCAI+ Data Acquisition System, 12-Bit 100k Samples/s

MPNMAX197BCAI+
End of Life

Maxim Integrated MAX197BCAI+, Data Acquisition System (DAS), 12 b, 100k samples/s, 8-channel, Parallel, 4.75V ~ 5.25V, 0°C ~ 70°C, 28-SSOP.

$35.4Ref. price · indicative, final on quote
Packaging28-SSOP (0.209", 5.30mm Width)
RoHSROHS3 Compliant
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

MAX197BCAI+ specifications
ParameterValue
TypeData Acquisition System (DAS)
MountingSurface Mount
Supply voltage4.75V ~ 5.25V
Voltage supply sourceSingle Supply
Data interfaceParallel
Operating temperature0°C ~ 70°C
PackageTube
Case28-SSOP (0.209\", 5.30mm Width)
Resolution12 b
Channels8
Sampling rate (Per second)100k

Product details

100k samples/s — what that buys you

At 12-bit resolution, 100k samples/s is a solid middle-ground speed. It handles audio-frequency vibration monitoring, power-supply ripple capture, or multi-channel thermocouple scanning without overrunning a modest microcontroller's parallel port. The parallel interface (rather than SPI or I2C) means deterministic read timing — no clock-skew worries when the host is an FPGA or a legacy 8-bit bus.

Frequently asked questions

Is MAX197BCAI+ active or obsolete?

Determines long-term availability for production and replacement planning.

What is the price of MAX197BCAI+ when buying 1000 units?

Key factor for cost estimation and budget approval in sourcing.

Where can I buy MAX197BCAI+ with fast delivery?

Critical for urgent production or repair needs requiring immediate availability.

What is the exact pinout of MAX197BCAI+?

Needed for PCB layout and compatibility validation during design.

What is the maximum sampling rate of MAX197BCAI+?

Determines if the part meets the speed requirements of the application.

Does MAX197BCAI+ require an external reference voltage?

Affects BOM complexity and design decisions for voltage reference circuitry.