Features: • Compliant with IrDA 1.0 Physical Layer Specs• Interfaces with IrDA 1.0 Compliant IR Transceivers• Used in Conjunction with Standard 16550 UART• Transmits/Receives either 1.63 s or 3/16 Pulse Mode• Internal or External Clock Modes• Programmable Baud R...
HSDL-7001-2500: Features: • Compliant with IrDA 1.0 Physical Layer Specs• Interfaces with IrDA 1.0 Compliant IR Transceivers• Used in Conjunction with Standard 16550 UART• Transmits/Receives...
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Features: `Fully Compliant to IrDA Physical Layer Speciication 1.4 from 9.6 kbit/s to 115.2 kbit/...
Parameter |
Symbol |
Min. |
Max. |
Units |
Storage Temperature |
TS |
-65 |
+150 |
|
Operating Temperature |
TA |
-40 |
+85 |
|
Output Current |
IO |
-100 |
100 |
mA |
Power Dissipation[1] |
PMAX |
0.46 |
W | |
Input/Output Voltage[2] |
VI/VO |
-0.5 |
VCC + 0.5 |
V |
Power Supply Voltage |
VCC |
-0.5 |
7.0 |
V |
Electrostatic Protection |
VESD |
4000 |
V |
The HSDL-7001-2500 modulates and demodulates electrical pulses from Hewlett-Packard's HSDL-1001 Infrared transceiver module and other IrDA-compliant transceivers. The HSDL-7001 can be used with a microcontroller/ microprocessor that has a serial communication interface (UART). Prior to communication, the processor selects the transmission baud rate. Serial data is then transmitted or received at the prescribed data rate.
The HSDL-7001-2500 consists of two state machines the SIR (Serial InfraRed) Encode and SIR Decode blocks. It also contains a sequential block Clock Divide which synthesizes the required internal signal.
The HSDL-7001-2500 can be placed into the Internal Clock Mode or External Clock Mode. An external crystal is needed for the Internal Clock Mode. In applications where the external 16XCLK signal is provided, a crystal is not needed.
There are two data transmission modes of HSDL-7001-2500. Data can be transmitted and received in either a standard 3/16 modulation mode or a 1.63 ms pulse mode.