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ADM1051JR-REEL7 PDF预览

ADM1051JR-REEL7

更新时间: 2024-02-04 10:47:54
品牌 Logo 应用领域
罗彻斯特 - ROCHESTER 开关光电二极管
页数 文件大小 规格书
11页 860K
描述
DUAL SWITCHING CONTROLLER, PDSO8, SOIC-8

ADM1051JR-REEL7 技术参数

是否无铅:含铅生命周期:Active
零件包装代码:SOIC包装说明:SOP,
针数:8Reach Compliance Code:unknown
风险等级:5.19Is Samacsys:N
模拟集成电路 - 其他类型:DUAL SWITCHING CONTROLLER最大输入电压:12.72 V
最小输入电压:11.28 V标称输入电压:12 V
JESD-30 代码:R-PDSO-G8JESD-609代码:e0
长度:4.9 mm湿度敏感等级:1
功能数量:1端子数量:8
最高工作温度:70 °C最低工作温度:
封装主体材料:PLASTIC/EPOXY封装代码:SOP
封装形状:RECTANGULAR封装形式:SMALL OUTLINE
峰值回流温度(摄氏度):240认证状态:COMMERCIAL
座面最大高度:2.59 mm表面贴装:YES
切换器配置:SINGLE温度等级:COMMERCIAL
端子面层:TIN LEAD端子形式:GULL WING
端子节距:1.27 mm端子位置:DUAL
处于峰值回流温度下的最长时间:30宽度:3.9 mm
Base Number Matches:1

ADM1051JR-REEL7 数据手册

 浏览型号ADM1051JR-REEL7的Datasheet PDF文件第4页浏览型号ADM1051JR-REEL7的Datasheet PDF文件第5页浏览型号ADM1051JR-REEL7的Datasheet PDF文件第6页浏览型号ADM1051JR-REEL7的Datasheet PDF文件第8页浏览型号ADM1051JR-REEL7的Datasheet PDF文件第9页浏览型号ADM1051JR-REEL7的Datasheet PDF文件第10页 
ADM1051/ADM1051A  
VCH2 V's 5VSB ILOAD
؍
500m  
VCH2 V's 5VSB ILOAD
؍
1  
1.855  
1.805  
1.755  
1.705  
1.655  
1.605  
1.855  
1.805  
1.755  
1.705  
1.655  
1.605  
70؇C  
70؇C  
0؇C  
0؇C  
25؇C  
25؇C  
1.555  
1.505  
1.555  
1.505  
1.455  
1.405  
1.355  
1.305  
1.455  
1.405  
1.355  
1.305  
3.7  
3.9  
4.1  
4.3  
4.5  
5VSB V  
4.7  
4.9  
5.1  
5.3  
3.7  
3.9  
4.1  
4.3  
4.5  
5VSB V  
4.7  
4.9  
5.1  
5.3  
TPC 13. ADM1051A Channel 2 Output Voltage vs. 5 VSB  
Voltage. Test Circuit as Figure 7, ILOAD = 500 mA  
TPC 14. ADM1051A Channel 2 Output Voltage vs. 5 VSB  
Voltage. Test Circuit as Figure 7, ILOAD = 1 A  
GENERAL DESCRIPTION  
CIRCUIT DESCRIPTION  
The ADM1051/ADM1051A are dual, precision, voltage regulator  
controllers intended for power rail generation and active bus ter-  
mination in AGP and ICH applications on personal computer  
motherboards. They contain a precision 1.2 V bandgap ref-  
erence and two almost identical channels consisting of control  
amplifiers driving external power devices. The main difference  
between the two channels is the regulated output voltage, defined  
by the resistor ratios on the voltage sense inputs of each channel.  
Channel 1 has an output of nominally 1.515 V, but can be  
switched to a 3.3 V output, while Channel 2 has a nominal  
output of 1.818 V. Channel 1 is also optimized for driving  
MOSFETs with lower on-resistance and higher gate capaci-  
tance, as explained later.  
CONTROL AMPLIFIERS  
The reference voltage is amplified and buffered by the control  
amplifiers and external MOSFETs, the output voltage of each  
channel being determined by the feedback resistor network  
between the sense input and the inverting input of the control  
amplifier.  
The two control amplifiers in the ADM1051/ADM1051A are  
almost identical, apart, from the ratios of the feedback resistor  
networks on the sense inputs. A power-on reset circuit disables  
the amplifier output until VCC has risen above the reset thresh-  
old (not Channel 2 of ADM1051A).  
Each amplifier output drives the gate of an N-channel power  
MOSFET, whose drain is connected to the unregulated supply  
input and whose source is the regulated output voltage, which is  
also fed back to the appropriate sense input of the ADM1051/  
ADM1051A. The control amplifiers have high current-drive  
capability so they can quickly charge and discharge the gate  
capacitance of the external MOSFET, thus giving good transient  
response to changes in load or input voltage. In particular,  
Channel 1 is optimized to drive MOSFETs with very low on  
resistance and correspondingly higher gate capacitance such as  
the PHD55N03LT from Philips. This is to minimize voltage  
drop across the MOSFET when Channel 1 is used in 3.3 V  
mode, as explained later.  
Each channel has a shutdown input to turn off amplifier output  
and protection circuitry for the external power device. The  
shutdown input of Channel 1 has additional functionality as  
described later.  
The ADM1051A has some minor differences from the ADM1051  
to support power-supply sequencing and voltage requirements  
of some I/O control hub chipsets, which dictate that the 1.818 V  
rail must never be more than 2 V below the 3.3 V rail.  
The ADM1051/ADM1051A operates from a 12 V VCC supply.  
The outputs are disabled until VCC climbs above the Power-On  
Reset threshold (6 V–9 V). POR does not apply to Channel 2 of  
the ADM1051A. This output will begin to rise as soon as there  
is sufficient gate drive to turn on the external MOSFET.  
SHUTDOWN INPUTS AND TYPEDET COMPATIBILITY  
Each channel has a separate shutdown input, which may be  
controlled by a logic signal, and allows the output of the regula-  
tor to be turned on or off. If the shutdown input is held high or  
not connected, the regulator operates normally. If the shutdown  
input is held low, the enable input of the control amplifier is turned  
off and the amplifier output goes low, turning off the regulator.  
The outputs from the ADM1051/ADM1051A are used to drive  
external N-channel MOSFETs, operating as source-followers.  
This has the advantage that N-channel devices are cheaper than  
P-channel devices of similar performance, and the circuit is easier  
to stabilize than one using P-channel devices in a common-  
source configuration.  
The SHDN1 input on Channel 1 has additional functionality that  
can be controlled by the TYPEDET signal on PC motherboards.  
The external power devices are protected by a “Hiccup Mode”  
circuit that operates if the circuit goes out of regulation due to  
an output short-circuit. In this case the power device is pulsed  
on/off with a 1:40 duty-cycle to limit the power dissipation until  
the fault condition is removed. Again, to prevent Channel 2  
falling more than 2 V below Channel 1, Hiccup Mode does not  
operate on Channel 2 of the ADM1051A.  
The AGP bus on a PC motherboard can have two different modes  
of operation, requiring different regulated voltages of 3.3 V or  
1.5 V. These two modes are signaled by the TYPEDET signal on  
the PC motherboard, as follows:  
TYPEDET = 0 V – Regulated Voltage 1.5 V (4× AGP Graphics)  
TYPEDET Floating – Regulated Voltage 3.3 V (2× AGP Graphics)  
–6–  
REV. 0  

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