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BD80BC0T PDF预览

BD80BC0T

更新时间: 2024-01-04 20:29:29
品牌 Logo 应用领域
罗姆 - ROHM 局域网输出元件调节器
页数 文件大小 规格书
10页 436K
描述
Fixed Positive LDO Regulator, 8V, PSFM3, ROHS COMPLIANT, TO-220FP, 3 PIN

BD80BC0T 技术参数

生命周期:Active零件包装代码:TO-220FP
包装说明:,针数:3
Reach Compliance Code:compliantECCN代码:EAR99
HTS代码:8542.39.00.01风险等级:5.69
最大输入电压:16 V最小输入电压:2.5 V
JESD-30 代码:R-PSFM-T3功能数量:1
端子数量:3工作温度TJ-Max:125 °C
工作温度TJ-Min:最大输出电流 1:1 A
最大输出电压 1:8.16 V最小输出电压 1:7.92 V
标称输出电压 1:8 V封装主体材料:PLASTIC/EPOXY
封装形状:RECTANGULAR封装形式:FLANGE MOUNT
调节器类型:FIXED POSITIVE SINGLE OUTPUT LDO REGULATOR表面贴装:NO
端子形式:THROUGH-HOLE端子位置:SINGLE
Base Number Matches:1

BD80BC0T 数据手册

 浏览型号BD80BC0T的Datasheet PDF文件第4页浏览型号BD80BC0T的Datasheet PDF文件第5页浏览型号BD80BC0T的Datasheet PDF文件第6页浏览型号BD80BC0T的Datasheet PDF文件第8页浏览型号BD80BC0T的Datasheet PDF文件第9页浏览型号BD80BC0T的Datasheet PDF文件第10页 
Technical Note  
BA□□BC0 Series,BA□□BC0W Series,BA00BC0W Series  
Notes for use  
1. Absolute maximum ratings  
An excess in the absolute maximum ratings, such as supply voltage, temperature range of operating conditions, etc., can break  
down the devices, thus making impossible to identify breaking mode, such as a short circuit or an open circuit. If any over rated  
values will expect to exceed the absolute maximum ratings, consider adding circuit protection devices, such as fuses.  
2. GND voltage  
The potential of GND pin must be minimum potential in all operating conditions.  
3. Thermal design  
Use a thermal design that allows for a sufficient margin in light of the power dissipation (Pd) in actual operating conditions.  
4. Inter-pin shorts and mounting errors  
Use caution when positioning the IC for mounting on printed circuit boards.  
The IC may be damaged if there is any connection error or if pins are shorted together.  
5. Actions in strong electromagnetic field  
Use caution when using the IC in the presence of a strong electromagnetic field as doing so may cause the IC to malfunction.  
6. Testing on application boards  
When testing the IC on an application board, connecting a capacitor to a pin with low impedance subjects the IC to stress.  
Always discharge capacitors after each process or step. Always turn the IC's power supply off before connecting it to or  
removing it from a jig or fixture during the inspection process. Ground the IC during assembly steps as an antistatic  
measure. Use similar precaution when transporting or storing the IC.  
7. Regarding input pin of the IC  
This monolithic IC contains P+ isolation and P substrate layers between adjacent elements in order to keep them isolated.  
P-N junctions are formed at the intersection of these P layers with the N layers of other elements, creating a parasitic diode  
or transistor. For example, the relation between each potential is as follows:  
When GND > Pin A and GND > Pin B, the P-N junction operates as a parasitic diode.  
When GND > Pin B, the P-N junction operates as a parasitic transistor.  
Parasitic diodes can occur inevitable in the structure of the IC. The operation of parasitic diodes can result in mutual  
interference among circuits, operational faults, or physical damage. Accordingly, methods by which parasitic diodes  
operate, such as applying a voltage that is lower than the GND (P substrate) voltage to an input pin, should not be used.  
8. Ground Wiring Pattern  
When using both small signal and large current GND patterns, it is recommended to isolate the two ground patterns,  
placing a single ground point at the ground potential of application so that the pattern wiring resistance and voltage  
variations caused by large currents do not cause variations in the small signal ground voltage. Be careful not to change the  
GND wiring pattern of any external components, either.  
9. Thermal shutdown circuit  
The IC incorporates a built-in thermal shutdown circuit (TSD circuit). The thermal shutdown circuit (TSD circuit) is designed  
only to shut the IC off to prevent thermal runaway. It is not designed to protect the IC or guarantee its operation. Do not continue  
to use the IC after operating this circuit or use the IC in an environment where the operation of this circuit is assumed.  
10. Overcurrent Protection Circuit  
An overcurrent protection circuit is incorporated in order to prevention destruction due to short-time overload currents.  
Continued use of the protection circuits should be avoided. Please note that the current increases negatively impact the temperature.  
11. Damage to the internal circuit or element may occur when the polarity of the Vcc pin is opposite to that of the other pins in  
applications. (I.e. Vcc is shorted with the GND pin while an external capacitor is charged.) Use a maximum capacitance of  
1000μF for the output pins. Inserting a diode to prevent back-current flow in series with Vcc or bypass diodes between Vcc  
and each pin is recommended.  
Resistor  
Transistor (NPN)  
(PINB)  
B
Bypass Diode  
C
PIN B)  
P
IN  
A
C
E
E
B
Diode for preventing back current flow  
GND  
GND  
N
VCC  
P
P
P+  
P+  
P+  
P+  
Parasitic elements or  
transistors  
N
N
N
Output pin  
N
N
N
(PINA)  
P substrate  
Parasitic elements  
P substrate  
Parasitic elements  
GND  
GND  
Parasitic elements  
GND  
Fig.23 Bypass Diode  
Fig.24 Example of Simple Bipolar IC Architecture  
www.rohm.com  
© 2009 ROHM Co., Ltd. All rights reserved.  
2009.04 - Rev.A  
7/8  

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