參數(shù)資料
型號(hào): TP3067ADW
廠商: Texas Instruments, Inc.
元件分類: Codec
英文描述: MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
中文描述: 整體式串行接口的PCM編解碼器和過(guò)濾器
文件頁(yè)數(shù): 14/20頁(yè)
文件大?。?/td> 283K
代理商: TP3067ADW
TP3064A, TP3067A, TP13064A, TP13067A
MONOLITHIC SERIAL INTERFACE
COMBINED PCMCODEC AND FILTER
SCTS025C – SEPTEMBER 1992 –REVISED JULY 1996
14
POST OFFICE BOX 655303
DALLAS, TEXAS 75265
PRINCIPLES OF OPERATION
system reliability and design considerations
TP306xA, TP1306xA system reliability and design considerations are described in the following paragraphs.
latch-up
Latch-up is possible in all CMOS devices. It is caused by the firing of a parasitic SCR that is present due to the
inherent nature of CMOS. When a latch-up occurs, the device draws excessive amounts of current and will
continue to draw heavy current until power is removed. Latch-up can result in permanent damage to the device
if supply current to the device is not limited.
Even though the TP306xA and TP1306xA devices are heavily protected against latch-up, it is still possible to
cause latch-up under certain conditions in which excess current is forced into or out of one or more terminals.
Latch-up can occur when the positive supply voltage drops momentarily below ground, when the negative
supply voltage rises momentarily above ground, or possibly if a signal is applied to a terminal after power has
been applied but before the ground is connected. This can happen if the device is hot-inserted into a card with
the power applied, or if the device is mounted on a card that has an edge connector and the card is hot-inserted
into a system with the power on.
To help ensure that latch-up does not occur, it is considered good design practice to connect a reverse-biased
Schottky diode (with a forward voltage drop of less than or equal to 0.4 V – 1N5711 or equivalent) between the
power supply and GND (see Figure 3). If it is possible that a TP306xA- or TP1306xA-equipped card that has
an edge connector could be hot-inserted into a powered-up system, it is also important to ensure that the ground
edge connector traces are longer than the power and signal traces so that the card ground is always the first
to make contact.
device power-up sequence
Latch-up can also occur if a signal source is connected without the device being properly grounded. A signal
applied to one terminal could then find a ground through another signal terminal on the device. To ensure proper
operation of the device and as a safeguard against this sort of latch-up, it is recommended that the following
power-up sequence always be used:
1.
Ensure that no signals are applied to the device before the power-up sequence is complete.
2.
Connect GND.
3.
Apply V
BB
(most negative voltage).
Apply V
CC
(most positive voltage).
Force a power down condition in the device.
4.
5.
6.
Connect clocks.
7.
Release the power down condition.
8.
Apply FS synchronization pulses.
9.
Apply the signal inputs.
When powering down the device, this procedure should be followed in the reverse order.
相關(guān)PDF資料
PDF描述
TP13067ADW MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
TP3067AN MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
TP3064A MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
TP3064ADW MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
TP3064AN MONOLITHIC SERIAL INTERFACE COMBINED PCM CODEC AND FILTER
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