K. Kasinski, R. Kleczek, P. Otfinowski, R. Szczygiel, P. Grybos
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引用次数: 22
Abstract
We report on the design of a 128-channel ASIC named STS-XYTER (Silicon Tracking System - X - Y - Time -Energy Read-out) dedicated for signal detection from doublesided silicon microstrip sensors with high capacitance (CDET ≈ 30 pF). The STS-XYTER contains: 128 charge processing channels, a calibration unit, a biasing circuitry based on built-in band-gap reference source and a full digital back-end, which provides synchronization, control and sparsified fast data readout through four, 250 MHz DDR LVDS links based on the CBMnet protocol. The single readout channel uses two parallel signal processing paths (fast and slow) to handle an average rate of input pulses equals 150 kHz and provide an information about both interaction time and deposited charge with good noise performance and low power consumption (6.2 mW/channel) at the same time. The fast path, which is dedicated for determining the input charge arrival time, is built of: a fast shaper, a discriminator, a pulse stretcher and a time stamp latch. The slow path, which is optimized for a particle energy measurement, consists of a slow shaper, a 5-bit flash ADC and a digital peak detector.
我们报道了一种128通道专用专用集成电路STS-XYTER (Silicon Tracking System -X - Y - Time - energy Read-out)的设计,用于高电容(CDET≈30 pF)双面硅微带传感器的信号检测。STS-XYTER包含:128个电荷处理通道,一个校准单元,一个基于内置带隙参考源的偏置电路和一个全数字后端,通过基于cbnet协议的四个250 MHz DDR LVDS链路提供同步,控制和精简的快速数据读出。单读出通道采用两条并行信号处理路径(快速和慢速)来处理平均速率为150khz的输入脉冲,同时提供有关相互作用时间和沉积电荷的信息,同时具有良好的噪声性能和低功耗(6.2 mW/通道)。用于确定输入电荷到达时间的快速路径由:快速整形器、鉴别器、脉冲拉伸器和时间戳锁存器组成。慢路径是为粒子能量测量而优化的,由一个慢路径整形器、一个5位闪存ADC和一个数字峰值检测器组成。