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LTC3732CUHF#PBF

厂商:
Linear
类别:
数字电源管理
包装:
-
封装:
QFN
无铅情况/ROHS:
无铅
描述:
3-Phase, 5-Bit VID, 600kHz, Synch...

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  • 参数
  • 描述
  • 文档
参数 数值
Number of Outputs 1
Max Phases (#) 3
Vin Min (V) 4
Vin Max (V) 36
Output Current (A) 60
VRM VRM 9.0, VRM 9.1
Features VID, PolyPhase, External Synchronization, PLL, Power Good, Soft Start, Burst Mode
Packages SSOP-36
Frequency (kHz) 600
Frequency Sync Range 250kHz - 600kHz
Frequency Adjust Range
Monolithic (yes/no) no
Synchronous (yes/no) yes
Topology Buck
Isupply (mA) 2.2
Ishutdown (uA) 25
Vout Max (V) 7
Vout Min (V) 1.1
Architecture -
Polyphase (yes/no) yes
Tracking (yes/no) no
Extended Temp C
Comments 3-phase operation
Featured no
Date Added 1984-01-01
Price 1k * $4.35 (LTC3732CG)
New no

封装管脚图

产品描述
The SGM8625 is low noise, low voltage, and low power operational amplifier, it can be designed into a wide range of applications. The SGM8625 have a high gain-bandwidth product of 3MHz, a slew rate of 1.7V/μs, and a quiescent current of 250μA at 5V.
 
The SGM8625 is designed to provide optimal performance in low voltage and low noise systems. It provides rail-to-rail output swing into heavy loads. The input common-mode voltage range includes ground, and the maximum input offset voltage is 3mV for SGM8625. It is specified over the extended industrial temperature range ( -40 °C to + 125 °C ). The operating range is from 2.5V to 5.5V.
 
The SGM8625 is available in Green SOT-23-5 package.
产品特性
Low Cost
Rail-to-Rail Input and O utput
0.7mV Typical Vos
High Gain-Bandwidth Product: 3MHz
High Slew Rate: 1.7V/ μs
Settling Time to 0.1% with 2V Step: 2.1 μ s
Overload Recovery Time: 1 μ s
Low Noise : 12 nV/
Operates on 2.5V to 5.5V Supplies
Input Voltage Range = -0.1V to +5.6V with Vs = 5.5V
Low Power
250μ A/Amplifier Typical Supply Current
Small Packaging: SGM8625 Available in SOT-23-5

请选择文档类型:
数据表 (英文)
文档名称 文档类型 软件 描述
LTC3732CUHF#PBFPDF下载 点击下载 点击下载 LTC3727A-1 - High Efficiency, 2-Phase Synchronous Step-Down Switching Regulators
设计要点 (英文)
文档名称 文档类型 软件 描述
LTC3732CUHF#PBFPDF下载 点击下载 点击下载 Design Solutions 10 - Active Voltage Positioning Reduces Output Capacitors