欢迎访问ic37.com |
会员登录 免费注册
发布采购

TDA4858 参数 Datasheet PDF下载

TDA4858图片预览
型号: TDA4858
PDF下载: 下载PDF文件 查看货源
内容描述: 经济自动同步偏转控制器( EASDC ) [Economy Autosync Deflection Controller (EASDC)]
分类和应用: 消费电路商用集成电路偏转集成电路光电二极管监视器控制器
文件页数/大小: 44 页 / 263 K
品牌: NXP [ NXP ]
 浏览型号TDA4858的Datasheet PDF文件第7页浏览型号TDA4858的Datasheet PDF文件第8页浏览型号TDA4858的Datasheet PDF文件第9页浏览型号TDA4858的Datasheet PDF文件第10页浏览型号TDA4858的Datasheet PDF文件第12页浏览型号TDA4858的Datasheet PDF文件第13页浏览型号TDA4858的Datasheet PDF文件第14页浏览型号TDA4858的Datasheet PDF文件第15页  
Philips Semiconductors  
Product specification  
Economy Autosync Deflection Controller  
(EASDC)  
TDA4858  
If the protection mode is activated via the supply voltage at  
pin 9, all these actions will be performed in a well defined  
sequence (see Fig.14). For activation via X-ray protection  
or HPLL2 all actions will occur simultaneously.  
Supply voltage stabilizer, references and protection  
The EASDC provides an internal supply voltage stabilizer  
for excellent stabilization of all internal references.  
An internal gap reference especially designed for  
low-noise is the reference for the internal horizontal and  
vertical supply voltages. All internal reference currents and  
drive current for the vertical output stage are derived from  
this voltage via external resistors.  
The return to normal operation is performed in accordance  
with the start-up sequence in Fig.14a, if the reset was  
caused by the supply voltage at pin 9. The first action with  
increasing supply voltage is the activation of continuous  
blanking at CLBL. When the threshold for activation of  
HDRV is passed, an internal current begins to charge the  
external capacitor at HPLL2 and a PLL2 soft start  
sequence is performed (see Fig.15). In the beginning of  
this phase the horizontal driver stage generates very small  
output pulses. The width of these pulses increases with the  
voltage at HPLL2 until the final duty cycle is reached. Then  
the PLL2 voltage passes the threshold for activation of  
BDRV, VOUT1 and VOUT2.  
A special protection mode has been implemented in order  
to protect the deflection stages and the picture tube during  
start-up, shut-down and fault conditions. This protection  
mode can be activated as shown in Table 3.  
Table 3 Activation of protection mode  
ACTIVATION  
RESET  
Low supply voltage at pin 9  
increase supply voltage  
For activation of these pins not only the PLL2 voltage, but  
also the supply voltage must have passed the appropriate  
threshold. A last pair of thresholds has to be passed by  
PLL2 voltage and supply voltage before the continuous  
blanking is finally removed, and the operation of PLL2 and  
frequency-locked loop is enabled.  
X-ray protection XRAY (pin 2) remove supply voltage  
triggered  
HPLL2 (pin 31) pulled to  
ground  
release pin 31  
When protection mode is active, several pins of the ASDC  
are forced into a defined state:  
A return to the normal operation by releasing the voltage  
at HPLL2 will lead to a slightly different sequence. Here the  
activation of all functions is influenced only by the voltage  
at HPLL2 (see Fig.15).  
HDRV (horizontal driver output) is floating  
BDRV (B+ control driver output) is floating  
VOUT1 and VOUT2 (vertical outputs) are floating  
CLBL provides a continuous blanking signal  
The capacitor at HPLL2 is discharged.  
Application hint: Internal discharge of the capacitor at  
HPLL2 will only be performed, if the protection mode was  
activated via the supply voltage or X-ray protection.  
1997 Oct 27  
11  
 复制成功!