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V62/22603-01XE中文资料德州仪器数据手册PDF规格书

厂商型号 |
V62/22603-01XE |
功能描述 | OPA3S2859-EP Enhanced Product, Dual-Channel, 900-MHz, 2.2-nV/√Hz, Programmable Gain Transimpedance Amplifier |
丝印标识 | |
封装外壳 | WQFN |
文件大小 |
2.3642 Mbytes |
页面数量 |
34 页 |
生产厂商 | Texas Instruments |
企业简称 |
TI1【德州仪器】 |
中文名称 | 美国德州仪器公司官网 |
原厂标识 | ![]() |
数据手册 | |
更新时间 | 2025-6-27 15:38:00 |
人工找货 | V62/22603-01XE价格和库存,欢迎联系客服免费人工找货 |
V62/22603-01XE规格书详情
1 Features
• Gain bandwidth product: 900 MHz
• Internal switches for programmable gain
• High impedance FET inputs
• Input voltage noise: 2.2 nV/√Hz
• Slew rate: 350 V/μs
• Supply voltage range: 3.3 V to 5.25 V
• Quiescent current: 22 mA/channel
• Power down mode IQ: 75 μA
• Temperature range: -55 °C to 125 °C
• Supports defense, aerospace, and medical
applications
– Controlled baseline
– One assembly and test site
– One fabrication site
– Extended product life cycle
– Extended product-change notification
– Product traceability
2 Applications
• Switchable transimpedance amplifier
• Smart munitions
• Laser distance measurement
• Optical time domain reflectometry (OTDR)
• Silicon photomultiplier (SiPM) buffer
• Photomultiplier tube post amplifier
• High speed programmable gain amplifier
3 Description
The OPA3S2859-EP is a wideband, low-noise
programmable gain amplifier with CMOS inputs
for wideband transimpedance and voltage amplifier
applications. When the device is configured as a
transimpedence amplifier (TIA), the 0.9-GHz gain
bandwidth product (GBWP) enables high closedloop
bandwidths in low-capacitance photodiode (PD)
applications.
The three internal switched feedback paths along
with an optional parallel non-switched feedback path
allows for up to four selectable gain configurations.
The internal switches minimize parasitic contributions
to increase performance compared to systems that
use discrete external switches. Each switch is
optimized for feedback resistor values ranging from
100 kΩ for wide dynamic range
applications. The selected switch path is controlled for
both channels using a 2-wire parallel interface. For
each channel selected, the gain path can also be held
constant by exerting the latch pin, which subsequently
disables switch control for the selected channel and
prevents the channel from changing gain.