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IC-LSHBCHIP

IC-LSHBCHIP

  • 厂商:

    ICHAUS

  • 封装:

  • 描述:

    IC-LSHBCHIP - INCREMENTAL PHOTOSENSOR ARRAY - IC-Haus GmbH

  • 详情介绍
  • 数据手册
  • 价格&库存
IC-LSHBCHIP 数据手册
iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 1/8 APPLICATIONS o Incremental rotary encoders o Linear scales FEATURES o Monolithic array of independent photosensors with excellent matching o Compact photosensor size of 800 µm x 330 µm enabling smaller encoder systems o Moderate track pitch for reasonable alignment tolerances o Ultra low dark currents for operation to high temperature o Low noise amplifiers with high transimpedance of typ. 4 MΩ o Short-circuit-proof, low impedance voltage outputs for enhanced EMI tolerance o Space saving 15-pin optoBGA package (RoHS compatible) o Low power consumption from single 4.5 V to 5.5 V supply o Operational temperature range of -40 to 125 °C o Available options - reticle assembly, code discs - customized COB modules PACKAGES 15-pin optoBGA 6.2 mm x 5.2 mm Chip 2.88 mm x 2.04 mm BLOCK DIAGRAM VCC DPZ DPSIN PZ + + PSIN DPSIN DPCOS DNSIN + NSIN + DNZ DNCOS DNSIN DPCOS + PCOS NZ + DPZ DNCOS REFERENCE VOLTAGE + NCOS DNZ GND iC-LSHB Copyright © 2009 iC-Haus http://www.ichaus.com iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 2/8 DESCRIPTION iC-LSHB is an optical sensor IC with 6 integrated photodiodes whose signal currents are converted into output voltages by low-noise transimpedance amplifiers. The IC is well suited for the operation of interpolation circuits for linear or rotary incremental encoders with an index signal. iC-LSHB thus has a shamrock-style sensor layout of four photodiodes, each with an active area of 800 µm x 330 µm. Both a positive and negative sine signal and a positive and negative cosine signal are generated from a single shared code track. The signal amplifier layout ensures excellent paired channel matching, reducing signal differences to an absolute minimum. Two separate photodiodes, with active areas of 1720 µm x 150 µm apiece, are employed for the differential scanning of the index track and to generate the zero signal. The spectral sensitivity ranges from visible to near infrared light, with the maximum sensitivity close to a wavelength of 680 nm. Due to a high transimpedance gain of typically 4 MΩ, signal voltages of several hundred millivolts are obtained at low illumination levels. An output signal amplitude of 1 V is typical in low light conditions, for instance when iC-LSHB is illuminated at only 0.2 mW/cm2 by a 740 nm LED. A threefold intensity is sufficient when using iC-LSHB for encoder applications with typical disc and mask codes. Therefore, a relatively low LED current is enough to operate the sensor, proving beneficial to the life expectancy of the LED at high operating temperatures. iC-LSHB is suitable for on-chip or LED-end mounting of the grating (reticle), so that the period count, signal waveform, phase shift and index marker code can be selected with flexibility. PACKAGES PAD LAYOUT (2.88 mm x 2.04 mm) PAD FUNCTIONS No. Name Function 1 2 3 4 5 6 7 8 VCC PZ NZ GND NCOS PCOS NSIN PSIN +4.5..5.5 V Supply Voltage Zero Signal (Index) Reference Voltage Output Ground Cosine Cosine + Sine Sine + Notes: All outputs supply analog voltages. Dimension G4 is the reference radius of the chip center. iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 3/8 PIN CONFIGURATION oBGA LSH2C (6.2 mm x 5.2 mm) PIN FUNCTIONS No. Name Function A2 A3 A4 B1 B2 B3 B4 C1 C2 C3 C4 D1 D2 D3 D4 NCOS PCOS NZ GND NSIN PSIN VCC PZ Cosine Cosine + Reference Voltage Output Ground Sine Sine + +4.5..5.5 V Supply Voltage Zero Signal (Index) iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 4/8 ABSOLUTE MAXIMUM RATINGS These ratings do not imply operating conditions; functional operation is not guaranteed. Beyond these ratings device damage may occur. Item No. Symbol Parameter Voltage at VCC Current in VCC Pin Voltage, all signal outputs Pin Current, all signal outputs ESD Susceptibility, all pins Junction Temperature Chip Storage Temperature HBM, 100 pF discharged through 1.5 kΩ -40 -40 Conditions Min. -0.3 -20 -0.3 -20 Max. 6 20 VCC + 0.3 20 2 150 150 V mA V mA kV °C °C Unit G001 VCC G002 I(VCC) G003 V() G004 I() G005 Vd() G006 Tj G007 Ts THERMAL DATA Item No. T01 T02 T03 Symbol Ta Ts Tpk Parameter Conditions Min. Operating Ambient Temperature Range package oBGA LSH2C Storage Temperature Range Soldering Peak Temperature package oBGA LSH2C package oBGA LSH2C tpk < 20 s, convection reflow tpk < 20 s, vapor phase soldering TOL (time on label) 8 h; Please refer to customer information file No. 7 for details. 245 230 °C °C -40 -40 Typ. Max. 125 125 °C °C Unit All voltages are referenced to ground unless otherwise stated. All currents flowing into the device pins are positive; all currents flowing out of the device pins are negative. iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 5/8 ELECTRICAL CHARACTERISTICS Operating conditions: VCC = 4.5..5.5 V, Tj = -40..125 °C, unless otherwise stated Item No. 001 002 003 004 101 102 103 104 105 106 107 Symbol Parameter Conditions Min. VCC I(VCC) Vc()hi Vc()lo λ ar λ pk Aph() Aph() S(λ r) S(λ )max E()mx Permissible Supply Voltage Supply Current in VCC Clamp-Voltage hi at all pins Clamp-Voltage lo at all pins Spectral Application Range Peak Sensitivity Wavelength Radiant Sensitive Area of DPSIN, 0.8 mm x 0.33 mm DPCOS, DNSIN, DNCOS Radiant Sensitive Area of DPZ, DNZ Spectral Sensitivity Maximum Spectral Sensitivity Irradiance For Maximum Signal Level Permissible Photocurrent Operating Range Photo Sensitivity λ LED = 740 nm (light-to-voltage conversion ratio) Equivalent Transimpedance Gain Z = Vout() / Iph() Temperature Coefficient of Transimpedance Gain Transimpedance Gain Matching Of Paired Amplifiers P.. channel vs. corresponding N.. channel no illumination, any output vs. any output no illumination, P.. output vs. corresponding N.. output illuminated to 500 mV signal level above dark level, 500 kHz band width illumination to E()mxr, linear gain no illumination, load 20 kΩ vs. +2 V Vout()acmx = Vout()mx - Vout()d load current to ground load current to IC f = 1 kHz I(VREF) = 0...+1.6 mA I(VREF) = 0...+1.6 mA load current to ground load current to IC 2.45 600 1.48 100 250 70 600 -10 200 2 420 4.5 -0.2 -35 -2.5 120 180 0.5 1.72 mm x 0.15 mm λ LED = 740 nm λ r = λ pk λ LED = 740 nm, Vout() not yet saturated 0.15 no output load, photocurrents within linear operating range (no override) I() = 4 mA I() = -4 mA Se(λ ar) = 0.25 x S(λ )max -1.2 400 680 0.264 0.258 0.5 0.55 0.5 0.8 4.5 6.5 Typ. Max. 5.5 12 11 -0.3 950 V mA V V nm nm mm2 mm2 A/W A/W mW/ cm2 nA V/µW MΩ %/°C 0.2 35 2.5 280 % mV mV kHz mV Unit Total Device Photosensors Photocurrent Amplifiers 201 202 203 204 209 210 211 212 213 Iph() η ()r Z() TCz ∆Z()pn 0 0.8 2.69 1.2 4.0 -0.12 280 2.0 5.46 ∆Vout()pn Signal Matching ∆Vout()pn Signal Matching fc()hi VNoise() Cut-off Frequency (-3 dB) RMS Output Noise Signal Outputs PSIN, NSIN, PCOS, NCOS, PZ 301 302 303 304 305 306 401 402 403 404 Vout()mx Vout()d Isc()hi Isc()lo Ri() VREF dVout() Isc()hi Isc()lo Permissible Maximum Output Voltage Dark Signal Level Short-circuit Current hi Short-circuit Current lo Internal Output Resistance Reference Voltage Load Balancing Short-circuit Current hi Short-circuit Current lo 2.72 770 1.96 420 480 110 770 3.02 1000 2.35 800 700 180 1000 +10 800 10 V mV V µA µA Ω mV mV µA mA Vout()acmx Maximum Signal Level Reference Voltage NZ iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 6/8 APPLICATION HINTS Figure 1: Example of incremental encoder with RS422 output Figure 2: Example of sine encoder with 1 Vpp output iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 7/8 iC-Haus expressly reserves the right to change its products and/or specifications. An Infoletter gives details as to any amendments and additions made to the relevant current specifications on our internet website www.ichaus.de/infoletter; this letter is generated automatically and shall be sent to registered users by email. Copying – even as an excerpt – is only permitted with iC-Haus approval in writing and precise reference to source. iC-Haus does not warrant the accuracy, completeness or timeliness of the specification on this site and does not assume liability for any errors or omissions in the materials. The data specified is intended solely for the purpose of product description. No representations or warranties, either express or implied, of merchantability, fitness for a particular purpose or of any other nature are made hereunder with respect to information/specification or the products to which information refers and no guarantee with respect to compliance to the intended use is given. In particular, this also applies to the stated possible applications or areas of applications of the product. iC-Haus conveys no patent, copyright, mask work right or other trade mark right to this product. iC-Haus assumes no liability for any patent and/or other trade mark rights of a third party resulting from processing or handling of the product and/or any other use of the product. As a general rule our developments, IPs, principle circuitry and range of Integrated Circuits are suitable and specifically designed for appropriate use in technical applications, such as in devices, systems and any kind of technical equipment, in so far as they do not infringe existing patent rights. In principle the range of use is limitless in a technical sense and refers to the products listed in the inventory of goods compiled for the 2008 and following export trade statistics issued annually by the Bureau of Statistics in Wiesbaden, for example, or to any product in the product catalogue published for the 2007 and following exhibitions in Hanover (Hannover-Messe). We understand suitable application of our published designs to be state-of-the-art technology which can no longer be classed as inventive under the stipulations of patent law. Our explicit application notes are to be treated only as mere examples of the many possible and extremely advantageous uses our products can be put to. iC-LSHB INCREMENTAL PHOTOSENSOR ARRAY y inar im prel Rev B1, Page 8/8 ORDERING INFORMATION Type iC-LSHB Package Options reticle 42-1024 reticle 42-4096 Order Designation iC-LSHB chip iC-LSHB OBGA LSH2C iC-LSHB OBGA LSH2C-2R iC-LSHB OBGA LSH2C-4R optoBGA 6.2 mm x 5.2 mm optoBGA 6.2 mm x 5.2 mm optoBGA 6.2 mm x 5.2 mm Code Disc 1024 PPR, OD/ID ∅42/18 mm, glass Code Disc 4096 PPR, OD/ID ∅42/18 mm, glass LSHB2S 42-1024 LSHB4S 42-4096 For technical support, information about prices and terms of delivery please contact: iC-Haus GmbH Am Kuemmerling 18 D-55294 Bodenheim GERMANY Tel.: +49 (61 35) 92 92-0 Fax: +49 (61 35) 92 92-192 Web: http://www.ichaus.com E-Mail: sales@ichaus.com Appointed local distributors: http://www.ichaus.com/sales_partners
IC-LSHBCHIP
1. 物料型号: - 型号为iC-LSHB,是一种增量式光电传感器阵列。

2. 器件简介: - iC-LSHB是一个集成了6个光电二极管的光学传感器IC,其信号电流由低噪声的跨阻放大器转换成输出电压。该IC适用于线性或旋转增量式编码器的插值电路操作,并具有索引信号。iC-LSHB具有三叶草样式的传感器布局,包含四个光电二极管,每个都有800微米x 330微米的活跃区域。通过单个共享的码迹生成正弦和余弦信号。信号放大器布局确保了极佳的配对通道匹配,将信号差异降至最低。

3. 引脚分配: - 15-pin optoBGA封装的引脚功能如下: - 1 VCC:+4.5..5.5V供电电压 - 2 PZ零信号(索引) - 3 NZ参考电压输出 - 4 4 GND地 - 5 NCOS余弦- - 6 PCOS余弦+ - 7 NSIN正弦- - 8 PSIN正弦+

4. 参数特性: - 供电电压:+4.5..5.5V - 工作温度范围:-40至125°C - 引脚电压:所有信号输出引脚电压范围为-0.3至VCC + 0.3V - ESD敏感度:所有引脚HBM 2kV - 封装类型:15-pin optoBGA

5. 功能详解: - iC-LSHB适用于增量式编码器,具有插值电路,可以生成正弦和余弦信号。它还具有两个独立的光电二极管,用于差分扫描索引迹线并生成零信号。光谱灵敏度范围从可见光到近红外光,最大灵敏度接近680纳米波长。

6. 应用信息: - 适用于增量式旋转编码器和线性刻度 - 紧凑型光电传感器尺寸为800微米x 330微米,可实现更小的编码器系统 - 低功耗,单4.5V至5.5V供电 - 可定制的COB模块和光栅(掩模)安装选项

7. 封装信息: - 15-pin optoBGA封装尺寸为2.88毫米x 2.04毫米和6.2毫米x 5.2毫米。
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