XR88C681
Overview
Information | Dual UART CMOS with Two Fully Independent Full Duplex Asynchronous Communications Channels |
---|---|
Data Bus Interface | Intel |
# of Channels | 2 |
Max Data Rate 5V (Mbps) | 1 |
Max Data Rate 3.3V (Mbps) | na |
Max Data Rate 2.5V (Mbps) | na |
Max Data Rate 1.8V (Mbps) | na |
Tx FIFO (Bytes) | 1 |
Rx FIFO (Bytes) | 3 |
Auto Flow Control | ✔ |
Auto RS-485 Half-Duplex Control | |
Multidrop (9-bit) Mode | ✔ |
Fractional Baud Rate Generator | |
Power Down Mode | ✔ |
Supply Voltage Range VCC (V) | 4.5 to 5.5 |
Auto RTS/CTS | ✔ |
Package | PLCC-44 |
FIFO Level Counters | |
Selectable/ Programable Trigger Levels | |
IrDA Sup | |
5V Tolerant Inputs | |
Max UART/GPIO Input Voltage (V) | VCC |
Max UART/GPIO Output Voltage (V) | VCC |
Temperature Range (°C) | -40 to 85 |
The MaxLinear Dual Universal Asynchronous Receiver and Transmitter (DUART) is a data communications device that provides two fully independent full duplex asynchronous communications channels in a single package. The XR88C681 is designed for use in microprocessor based systems and may be used in a polled or interrupt driven environment.
The XR88C681 device offers a single IC solution for the 8080/85, Z80, Z8000, 68xx, and 65xx microprocessor families.
The XR88C681 is fabricated using advanced two layer metal, with a high performance density EPI/CMOS 1.8µ process to provide high performance and low power consumption, and is available in 40-pin PDIP, 28-pin PDIP, and 44-pin PLCC packages.
- Two Full Duplex Independent Channels
- Asynchronous Receiver and Transmitter
- Quad-Buffered Receivers, Dual-Buffered Transmitters
- Programmable Stop Bits
- Internal Bit Rate Generators
- External Clock Capability
- Advanced CMOS Low Power Technology
- Available in 40-pin PDIP, 28-pin PDIP, and 44-pin PLCC Packages
- Pb-Free, RoHS Compliant Versions Offered
- Multimedia Systems
- Serial-to-Parallel and Parallel-to-Serial Converter
- DTE for Modem Communication Systems
Documentation & Design Tools
Type | Title | Version | Date | File Size |
---|---|---|---|---|
Data Sheets | XR88C681 CMOS Dual Channel UART (DUART) | 2.1.1 | June 2006 | 2.4 MB |
Application Notes | DAN-173, Upgrading from XR88C681 to XR88C92 and XR88C192 | 1.0.0 | January 2004 | 41.7 KB |
Application Notes | TAN-011, A Comparison between MaxLinear’s XR-88C681 and Motorola’s MC2681 DUART Devices | 1.0.0 | December 1996 | 64.2 KB |
Application Notes | TAN-013, A Comparison between MaxLinear’s XR-88C681 with Signetics’ SCC2692 DUART Devices | 1.0.0 | December 1996 | 49.6 KB |
Application Notes | TAN-014, A Comparison between MaxLinear’s XR-88C681 with Signetics’ SC26C92 DUART Devices | 1.0.0 | December 1996 | 75.3 KB |
User Guides & Manuals | Evaluation Board User's Manual | 2.1.0 | August 2003 | 13.4 KB |
Errata | XR88C681 Errata | R00 | August 2022 | 2.3 MB |
Software: Drivers | DOS | 1.0.0 | December 2009 | 1.1 MB |
Product Brochures | Interface Brochure | R02 | November 2024 | 3.6 MB |
Schematics & Design Files | ISA Eval Board Schematic | 2.1.0 | August 2007 | 105 KB |
Simulation Models
Package Type | Vcc | Temp | Mode | Version | File |
---|---|---|---|---|---|
PLCC | 5V | Commercial | Intel | 1 | |
PLCC | 5V | Commercial | Intel | 1 | |
CDIP | 5V | Commercial | Intel | 1 | |
CDIP | 5V | Commercial | Intel | 1 | |
PDIP | 5V | Commercial | Intel | 1 | |
PDIP | 5V | Commercial | Intel | 1 | |
PDIP | 5V | Commercial | Intel | 1 | |
PDIP | 5V | Commercial | Intel | 1 | |
PLCC | 5V | Industrial | Intel | 1 | |
PLCC | 5V | Industrial | Intel | 1 | |
CDIP | 5V | Industrial | Intel | 1 | |
CDIP | 5V | Industrial | Intel | 1 | |
PDIP | 5V | Industrial | Intel | 1 | |
PDIP | 5V | Industrial | Intel | 1 | |
PDIP | 5V | Industrial | Intel | 1 | |
PDIP | 5V | Industrial | Intel | 1 |
Quality & RoHS
Part Number | RoHS | Exempt | RoHS | Halogen Free | REACH | TSCA | MSL Rating / Peak Reflow | Package |
---|---|---|---|---|---|---|---|
XR88C681CJ-F | N | Y | Y | Y | Y | L1 / 260ᵒC | PLCC44 |
XR88C681J-F | N | Y | Y | Y | Y | L1 / 260ᵒC | PLCC44 |
XR88C681CJTR-F | N | Y | Y | Y | Y | L1 / 260ᵒC | PLCC44 |
Click on the links above to download the Certificate of Non-Use of Hazardous Substances.
Parts & Purchasing
Part Number | Pkg Code | Min Temp | Max Temp | Status | Suggested Replacement | PDN |
---|---|---|---|---|---|---|
XR88C681CJ-F | PLCC44 | 0 | 70 | OBS | ||
XR88C681CJTR-F | PLCC44 | 0 | 70 | OBS | ||
XR88C681CP/28-F | PDIP28 | 0 | 70 | OBS | XR88C681CJ-F | |
XR88C681CP/40 | PDIP40 | 0 | 70 | OBS | XR88C681CP/40-F | |
XR88C681CP/40-F | PDIP40 | 0 | 70 | OBS | XR88C681CJ-F | |
XR88C681J-F | PLCC44 | -40 | 85 | OBS | ||
XR88C681JTR-F | PLCC44 | -40 | 85 | OBS | XR88C681J-F | |
XR88C681JTRS186-F | PLCC44 | OBS | XR88C681JTR-F | |||
XR88C681P/28-F | PDIP28 | -40 | 85 | OBS | XR88C681J-F | |
XR88C681P/40 | PDIP40 | -40 | 85 | OBS | XR88C681P/40-F | |
XR88C681P/40-F | PDIP40 | -40 | 85 | OBS | XR88C681J-F |
Active - the part is released for sale, standard product.
EOL (End of Life) - the part is no longer being manufactured, there may or may not be inventory still in stock.
CF (Contact Factory) - the part is still active but customers should check with the factory for availability. Longer lead-times may apply.
PRE (Pre-introduction) - the part has not been introduced or the part number is an early version available for sample only.
OBS (Obsolete) - the part is no longer being manufactured and may not be ordered.
NRND (Not Recommended for New Designs) - the part is not recommended for new designs.
Packaging
Pkg Code | Details | Quantities | Dimensions |
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PDIP40 |
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PLCC44 |
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Notifications
FAQs & Support
Search our list of FAQs for answers to common technical questions.
For material content, environmental, quality and reliability questions review the Quality tab or visit our Quality page.
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Please check that all the following conditions are satisfied first.
- no interrupts pending (ISR bit-0 = 1)
- modem inputs are not toggling (MSR bits 0-3 = 0)
- RX input pin is idling HIGH • divisor (the value in DLL register) is non-zero
- TX and RX FIFOs are empty
Be sure sleep mode bit has been set to 1. If there are multiple UART channels, the sleep conditions must be true for all channels.
See more on Sleep Mode in AN204 UART Sleep Mode.
Yes. Note: some devices do have powersave mode. If UART goes into powersave mode, then the registers are not accessible.
See more on Sleep Mode in AN204 UART Sleep Mode.
Read LSR register to check whether the UART receives the data or not.
- If LSR value is 0x60, it means that either UART receiver FIFO doesn’t receive the data or the data in receiver FIFO has been read out before the read of LSR.
- If LSR value is 0x00, it means data is still in the THR (clock doesn’t oscillate to transmit data).
- If LSR value is 0xFF, it means either UART is in powersave mode or UART is powered off. For those devices with powersave mode, be sure that UARTS are not in powersave mode.
See more on Sleep Mode in AN204 UART Sleep Mode.
- Check whether the register set can be accessed.
- Check whether the crystal is oscillating fully.
- Check whether the data can be transmitted in internal loopback mode.
See more on Sleep Mode in AN204 UART Sleep Mode.