参数资料
型号: TSL1402R
厂商: AMS-TAOS USA Inc
文件页数: 3/17页
文件大小: 797K
描述: IC LINEAR SENSOR ARRAY 256X1
标准包装: 25
系列: *
其它名称: TSL1402-R
TSL1402R
256 ?1 LINEAR SENSOR ARRAY WITH HOLD
TAOS041G  NOVEMBER 2011
2
r
r
Copyright E 2011, TAOS Inc.
The LUMENOLOGY r Company
www.taosinc.com
Terminal Functions
TERMINAL
NAME
NO.
DESCRIPTION
AO1
4
Analog output of section 1.
AO2
8
Analog output of section 2.
CLK
3
Clock. Clk controls charge transfer, pixel output, and reset.
GND
5,12
Ground (substrate). All voltages are referenced to GND.
NC
7, 9,
11, 14
No internal connection.
SI1
2
Serial input (section 1). SI1 defines the start of the data-out sequence for section 1.
SI2
10
Serial input (section 2). SI2 defines the start of the data-out sequence for section 2.
SO1
13
Serial output (section 1). SO1 provides a signal to drive the SI2 input (in serial connection).
SO2
6
Serial output (section 2). SO2 provides a signal to drive the SI input of another device for
cascading or as an end-of-data indication.
V
DD
1
Supply voltage. Supply voltage for both analog and digital circuitry.
Detailed Description
Device operation (assumes serial connection)
The sensor consists of 256 photodiodes, called pixels, arranged in a linear array. Light energy impinging on a
pixel generates photocurrent, which is then integrated by the active integration circuitry associated with that
pixel.
During the integration period, a sampling capacitor connects to the output of the integrator through an analog
switch. The amount of charge accumulated at each pixel is directly proportional to the light intensity on that pixel
and the integration time.
The output and reset of the integrators is controlled by a 256-bit shift register and reset logic. An output cycle
is initiated by clocking in a logic 1 on SI1. An internal signal, called Hold, is generated from the rising edge of
SI1 and simultaneously transmitted to sections 1 and 2. This causes all 256 sampling capacitors to be
disconnected from their respective integrators and starts an integrator reset period. As the SI pulse is clocked
through the shift register, the charge stored on the sampling capacitors is sequentially connected to a
charge-coupled output amplifier that generates a voltage on analog output AO. Simultaneously, during the first
18 clock cycles, all pixel integrators are reset, and the next integration cycle begins on the 19
th
 clock. On the
128
th
 clock rising edge, the SI pulse is clocked out on the SO1 pin (section 1) and becomes the SI pulse for
section 2 (SI2). The rising edge of the 129
th
 clock cycle terminates the SO1 pulse, and returns the analog output
AO1 of section 1 to high-impedance state. Analog output AO2 now becomes the active output. As in section
2, SO2 is clocked out on the 256
th
 clock pulse. Note that a 257
th
 clock pulse is needed to terminate the SO2
pulse and return AO2 to the high-impedance state. If a minimum integration time is desired, the next SI pulse
may be presented after a minimum delay of t
qt
 (pixel charge transfer time) after the 257
th
 clock pulse.
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