Technics MT5634SMI-34 user manual

User manual for the device Technics MT5634SMI-34

Device: Technics MT5634SMI-34
Category: Modem
Manufacturer: Technics
Size: 0.94 MB
Added : 10/12/2013
Number of pages: 98
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Abstracts of contents
Summary of the content on the page No. 1

Embedded Data/Fax Global Modem
MT5634SMI-34
MT5634SMI-92
Serial Build
Parallel Build
Medical Device Build
Industrial Temperature Build
Developer’s Guide

Summary of the content on the page No. 2

SocketModem Developer’s Guide Serial: MT5634SMI-34, MT5634SMI-92 Parallel: MT5634SMI-P-92 Medical Device: MT5634SMI-HV-92, MT5634SMI-P-HV-92 Industrial Temperature: MT5634SMI-ITP-92, MT5634SMI-P-ITP-92 PN S000263B, Version B Copyright This publication may not be reproduced, in whole or in part, without prior expressed written permission from Multi-Tech Systems, Inc. All rights reserved. Copyright © 2003, by Multi-Tech Systems, Inc. Multi-Tech Systems, Inc. makes no representations or warranties

Summary of the content on the page No. 3

Table of Contents Chapter 1 – Product Description and Specifications ..............................................................................6 Introduction ................................................................................................................................................6 Product Description....................................................................................................................................6 Features Matrix .......................

Summary of the content on the page No. 4

Sample Rate Selection and Suggested Compression Method...........................................................62 Answer Phone, Play Greeting Message, and Record Message Example..........................................63 DTE/DCE Interface Rates........................................................................................................................65 Related Manuals...................................................................................................................

Summary of the content on the page No. 5

EMC, Safety, and R&TTE Directive Compliance.....................................................................................88 New Zealand Telecom Warning Notice ...................................................................................................89 South African Notice ................................................................................................................................89 Appendix C – Country Configuration and Result Codes ............................

Summary of the content on the page No. 6

Chapter 1 – Product Description and Specifications Chapter 1 – Product Description and Specifications Introduction Multi-Tech’s SocketModem creates communication-ready devices by integrating data/fax/voice functionality into a single product design. The SocketModem is a space-efficient (1" × 2.5"), embedded modem that provides V.92/56K communication. The complete, ready-to-integrate modem dramatically reduces development time and costs for system designers. The SocketModem complies with global T

Summary of the content on the page No. 7

Chapter 1 – Product Description and Specifications Features Matrix Model Build Option MT5634SMI MT5634SMI-92 X X X X X X X X X MT5634SMI-P-92 X X X X X X X X X MT5634SMI-HV-92 X X X X X X X X MT5634SMI-P-HV-92 X X X X X X X X MT5634SMI-IT-92 X X X X X X X X X MT5634SMI-P-IT-92 X X X X X X X X X MT5634SMI-34 X X X Note: SMI-92 indicates a serial build. SMI-P-92 indicates a parallel V.92 build. SMI-HV-92 indicates a serial V.92 high voltage medical device build. SMI-P-HV-92 indicates a par

Summary of the content on the page No. 8

Chapter 1 – Product Description and Specifications Technical Specifications and Features The SocketModem meets the following specifications: Client-to-Server Data Rates Supports V.92 and V.90 data rates Client-to-Client Data Rates 33,600; 31,200; 28,800; 26,400; 24,000; 21,600; 19,200; 16,800; 14,400; 12,000; 9600; 7200; 4800; 2400; 1200; 0-300 bps Fax Data Rates 33,600; 31,200; 28,800; 26,400; 24,000; 21,600; 19,200; 16,800; 14,400; 12,000; 9600; 7200; 4800; 2400; 1200; 0-300 bps Data Format Se

Summary of the content on the page No. 9

Chapter 1 – Product Description and Specifications Power Consumption Standard Typical: 245 mA (1.25 W @ 5V DC) Standby or Sleep Mode: 148mA Maximum: 420 mA (2.1 W @ 5.25V DC) MT5634SMI-IT-92 (Industrial Temperature {3.3V} Build Option) Typical: 180 mA (0.59 W @ 3.3V DC) Standby or Sleep Mode: 88mA Maximum: 290 mA (1.04 W @ 3.6V DC) Standard Operating Voltage 5V DC +/- 5% Absolute Maximum Supply Voltage: 6V DC MT5634SMI-IT-92 (Industrial Temperature {3.3V} Build Option) 3.3V DC, 180mA Absolute Ma

Summary of the content on the page No. 10

Chapter 2 – Mechanical Specifications Chapter 2 – Mechanical Specifications Physical Dimensions – All Models Figure 2–1. Maximum Component Height CAUTION: If any component(s) is placed under the SocketModem or if any component(s) should extend to the point where part of it is under the SocketModem, the component(s) must NOT exceed .060 inches in height. SocketModem Global MT5634SMI Developer’s Guide 10

Summary of the content on the page No. 11

Chapter 2 – Mechanical Specifications Pin Configurations The MT5634SMI SocketModem uses a 20-pin interface to provide an on-board DAA with tip and ring connections, audio circuit for call-progress monitoring, LED driver for call status annunciation, and serial interface. Figure 2–2. Serial SocketModems Pins Pin Descriptions for Serial SocketModem Devices Pin # Signal Name I/O Type Description 26 DGND Digital Ground 33 –RTS I Request to Send. RTS s

Summary of the content on the page No. 12

Chapter 2 – Mechanical Specifications indicates to the DTE that it should not transfer data across the interface on TXD. 39 –DCD O Data Carrier Detect. –DCD output is ON (low) when a carrier is detected on the telephone line or OFF (high) when carrier is not detected. 40 –DTR I Data Terminal Ready (Active Low). The –DTR input is turned ON (low) by the DTE when the DTE is ready to transmit or receive data. –DTR ON prepares the modem to be connected to the telephone line, and, once connected, main

Summary of the content on the page No. 13

Chapter 2 – Mechanical Specifications The MT5634SMI-P (Parallel) SocketModem uses a 22-pin interface to provide an on-board DAA with tip and ring connections, audio circuit for call-progress monitoring, and parallel interface. Figure 2–3. Parallel SocketModem Pins Pin Descriptions for a Parallel SocketModem Device Signal Pin # I/O Description Name 1 Tip I/O Tip Signal from Telco 2 Ring I/O Ring Signal from Telco 24 –RESET I Modem Reset (with weak pull-up). The ac

Summary of the content on the page No. 14

Chapter 3 – Electrical Characteristics Chapter 3 – Electrical Characteristics Introduction Electrical characteristics for the 5V Serial SocketModem, 3.3V Serial SocketModem, 5V Parallel SocketModem, and the 3.3V Parallel SocketModem are presented in this chapter. I/O Electrical Characteristics 5V Serial – Standard (SMI) and Medical Device (SMI-HV) Build Options 5 Vdc Characteristics (TA = 0 °C to 50 °C; VDD = 5 V ± 0.25 V) VDDMAX = 5.25 V Digital Inputs Input High Input Low –DTR (40), –TXD (

Summary of the content on the page No. 15

Chapter 3 – Electrical Characteristics 3.3V Parallel – Standard (SMI) and Industrial Temperature (SMI-ITP) Build Options Electrical characteristics for Parallel MT5634SMI SocketModem devices are presented below. 3.3 Vdc Characteristics (TA = –40 °C to 85 °C; VDD = 3.3 V ± 0.3 V) VDDMAX = 3.6 V Digital Inputs Input High Input Low –DS (40) Min 2.52 V Max 0.9 V Digital Inputs (hysteresis input buffer) Input High Input Low A0 (31), A1 (25), A2 (34), –WR (32), –RD (33) Min 2.52 V Max 0.9 V Digital I

Summary of the content on the page No. 16

Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description SocketModem Parallel Interface Internal Registers The SocketModem parallel interface is a mimic of a 16C550A UART. It is similar to the MIMIC interface used in the Zilog Z80189. The SocketModem mimic (MMM) takes advantage of this standard interface while replacing the serial to parallel data transfer with a less complicated parallel to parallel data tran

Summary of the content on the page No. 17

Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description FIFO Operation The 16-byte transmit and receive data FIFOs are enabled by the FIFO Control Register (FCR) bit-0. You can set the receive trigger level via FCR bits 6/7. The receiver FIFO section includes a time-out function to ensure data is delivered to the external host. An interrupt is generated whenever the Receive Holding Register (RHR) has not been read following the loading of a character or the receive trigger level

Summary of the content on the page No. 18

Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description Time Out Interrupts The interrupts are enabled by IER bits 0-3. Care must be taken when handling these interrupts. Following a reset the transmitter interrupt is enabled, the SocketModem will issue an interrupt to indicate that transmit holding register is empty. This interrupt must be serviced prior to continuing operations. The LSR register provides the current singular highest priority interrupt only. A condition can exis

Summary of the content on the page No. 19

Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description RBR Receive Buffer (RX FIFO) All eight bits are used for receive channel data (host read/data in; host write/data out). The three error bits per byte are copied into bits 2, 3, and 4 of the LSR during each host I/O read; therefore, they are available for monitoring on a per-byte basis. THR Transmit Holding Register (TX FIFO) All eight bits are used for transmit channel data (host write/data out; host read/data in). IER Inter

Summary of the content on the page No. 20

Chapter 4 – SocketModem Parallel Interface – A Programmer’s Description FCR FIFO Control Bits 6–7: Used to determine RX FIFO trigger levels. Bit 5: Used to detect a change in the FCR. Bit 4: TX FIFO overrun bit. Bit 3: DMA mode select. If bit 3 is a 0, the 16450 mode is enabled which does only single-byte transfers. When bit 3 is a 1, it enables a multiple byte (FIFO mode) data transfer. Bit 2: TX FIFO reset. This will cause TX FIFO pointer logic to be reset (any data in TX FIFO will be lost). T


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