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Analog Devices MAX3097EEEE+ — DC-DC Power Modules

MAX3097EEEE+ RS-422/RS-485 Receiver, 32 Mbps, 16-QSOP

MPNMAX3097EEEE+
End of Life

Maxim Integrated MAX3097EEEE+, RS-422/RS-485 receiver, 32 Mbps data rate, 3V–5.5V supply, 40 mV hysteresis, 16-QSOP package, -40°C to 85°C.

$15.55Ref. price · indicative, final on quote
Packaging16-SSOP (0.154", 3.90mm Width)
StockContact for availability
MOQ1 pcs
  • 100% new & originalTraceable channels only — no refurbs, no pulls, no remarked parts.
  • Date & lot codes on quoteStated per line before you commit; label photos on request.
  • MSL-compliant ESD packingMoisture-sealed bags with indicator cards; reels photo-verified.
  • PayPal buyer protectionPay by T/T, PayPal or Payoneer — card payments covered end to end.

Specifications

MAX3097EEEE+ Technical Specifications
ParameterValue
TypeReceiver
Mounting typeSurface Mount
Voltage3V ~ 5.5V
ProtocolRS422, RS485
Operating temperature-40°C ~ 85°C
PackageTube
Data rate32Mbps
Case16-SSOP (0.154\", 3.90mm Width)
Receiver hysteresis40 mV
Number of drivers (Receivers)0/3

Product details

32 Mbps — what it means for the bus

At 32 Mbps, the MAX3097EEEE+ handles high-speed encoder position updates. The 40 mV hysteresis rejects ground-shift noise on long drops.

Active lifecycle — no obsolescence pressure

The MAX3097EEEE+ carries an Active product status. No last-time-buy notice, no NRND flag, and no official successor announced.

Frequently asked questions

What is the data rate of MAX3097EEEE+?

The MAX3097EEEE+ supports a maximum data rate of 32 Mbps. At this rate, cable length is limited; for slower protocols like Modbus RTU, the 40 mV hysteresis is the more relevant spec for noise rejection.

Does MAX3097EEEE+ require external termination?

The evidence does not specify internal termination. For RS-485 networks at 32 Mbps, external termination resistors (typically 120 Ω at each end of the bus) are standard practice to prevent reflections. The 40 mV hysteresis helps with noise margin, but termination is still recommended for signal integrity at high data rates.