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LTC1414IGN#PBF

厂商:
Linear
类别:
A/D 数据转换器
包装:
Tube
封装:
28-SSOP
无铅情况/ROHS:
无铅
描述:
14-Bit, 2.2 Msps,Sampling A/D Con...

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  • 参数
  • 描述
参数 数值
Bits (bits) 14
New no
ADCs (#) 1
Bipolar Input (yes/no) yes
Input Span ±2.5V
Channels (#) 1
Input Drive Differential, Single-Ended
Offset LSB (LSB) 20
DNL (LSB) 1.75
I/O Parallel
Supply Voltage Range ±5V
Internal Reference (yes/no) yes
INL LSB (LSB) 2
Simultaneous (yes/no) no
Shutdown (yes/no) no
Featured no
Extended Temp C, I
Full-Scale Error LSB (LSB) 60
Latency (#) 1
Speed (Msps) 2.2
SINAD (dB) 78
Crosstalk (dB)
SFDR (dB) 84
THD dB (dB) -83
安装类型 Surface Mount
电源电压 Dual ±
工作温度 -40°C ~ 85°C
每秒采样率 2.2M
数据接口 Parallel
位数 14
转换器数目 1
最大耗散功率 230mW
Packages SSOP-28
Power (mW) 175
Comments 14-Bit, 2.2 Msps,Sampling A/D Converter
Date Added 1984-01-01
Price 1k * $16.00 (LTC1414CGN)
Features

特点
Faster Switching with Increased Efficiency
Uses Small Inductors: 4.7μH
All Surface Mount Components
Low Minimum Supply Voltage: 2.7V
Quiescent Current: 4mA Typ
Current Limited Power Switch: 3A
Regulates Positive or Negative Outputs
Shutdown Supply Current: 12μA Typ
Easy External Synchronization

典型应用

典型应用

描述
描述 The LT?1371 is a monolithic high frequency current mode switching regulator. It can be operated in all standard switching configurations including boost, buck, flyback, forward, inverting and “Cuk”. A 3A high efficiency switch is included on the die, along with all oscillator, control and protection circuitry. The LT1371 typically consumes only 4mA quiescent current and has higher efficiency than previous parts. High frequency switching allows for very small inductors to be used. New design techniques increase flexibility and maintain ease of use. Switching is easily synchronized to an external logic level source. A logic low on the Shutdown pin reduces supply current to 12μA. Unique error amplifier circuitry can regulate positive or negative output voltage while maintaining simple frequency compensation techniques. Nonlinear error amplifier transconductance reduces output overshoot on start-up or overload recovery. Oscillator frequency shifting protects external components during overload conditions.

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