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TSOP1840

TSOP1840

  • 厂商:

    VISHAY

  • 封装:

  • 描述:

    TSOP1840 - Photo Modules for PCM Remote Control Systems - Vishay Siliconix

  • 详情介绍
  • 数据手册
  • 价格&库存
TSOP1840 数据手册
TSOP18.. Vishay Telefunken Photo Modules for PCM Remote Control Systems Available types for different carrier frequencies Type TSOP1830 TSOP1836 TSOP1838 TSOP1856 fo 30 kHz 36 kHz 38 kHz 56 kHz Type TSOP1833 TSOP1837 TSOP1840 fo 33 kHz 36.7 kHz 40 kHz Description The TSOP18.. – series are miniaturized receivers for infrared remote control systems. PIN diode and preamplifier are assembled on lead frame, the epoxy package is designed as IR filter. The demodulated output signal can directly be decoded by a microprocessor. The main benefit is the reliable function even in disturbed ambient and the protection against uncontrolled output pulses. 14 500 Features D D D D D Photo detector and preamplifier in one package Internal filter for PCM frequency TTL and CMOS compatibility Output active low Improved shielding against electrical field disturbance Special Features D Small size package D Enhanced immunity against all kinds of disturbance light D No occurrence of disturbance pulses at D Short settling time after power on (10 k + VS 3 TSOP18.. TSAL62.. 4.7 F *) m optional 1 W mC 2 GND 15905 *) recommended to suppress power supply disturbances www.vishay.com 2 (7) Document Number 82047 Rev. 13, 13-Sep-00 TSOP18.. Vishay Telefunken Suitable Data Format The circuit of the TSOP18.. is designed in that way that unexpected output pulses due to noise or disturbance signals are avoided. A bandpassfilter, an integrator stage and an automatic gain control are used to suppress such disturbances. The distinguishing mark between data signal ( not suppressed) and disturbance signal (supressed) are carrier frequency, burst length and Signal Gap Time (see diagram below). The data signal should fullfill the following condition: • Carrier frequency should be close to center frequency of the bandpass (e.g. 38kHz). • Burst length should be 6 cycles/burst or longer. • After each burst a gap time of at least 9 cycles is neccessary. • The data format should not make a continuous signal transmission. There must be a Signal Gap Time (longer than 15ms) at least each 90ms (see Figure A). Some examples for suitable data format are: NEC Code (repetitive pulse), NEC Code (repetitive data), Toshiba Micom Format, Sharp Code, RC5 Code, RECS–80 Code, R–2000 Code. When a disturbance signal is applied to the TSOP18.. it can still receive the data signal. However the sensitivity is reduced to that level that no unexpected pulses will occure. Some examples for such disturbance signals which are suppressed by the TSOP18.. are: • DC light (e.g. from tungsten bulb or sunlight), • Continuous signal at 38kHz or at any other frequency, • Signals from fluorescent lamps (see Figure B). • Continuous IR signal (e.g. 1ms burst, 2ms pause) Signal Gap Time 0 10 20 30 40 50 time [ms] 60 70 80 90 100 Figure A: Data Signal (Output of IR Receiver) with a Signal Gap Time of 20ms Signal Gap Time 0 2 4 6 8 10 time [ms] 12 14 16 18 20 Figure B: Disturbance Signal from Fluorescent Lamp with Signal Gap Time of 7ms Document Number 82047 Rev. 13, 13-Sep-00 www.vishay.com 3 (7) TSOP18.. Vishay Telefunken Typical Characteristics (Tamb = 25_C unless otherwise specified) 1.0 0.8 E e min – Threshold Irradiance (mW/m2 ) /eE – Rel. Responsitivity 100.0 f = fo 10.0 10 kHz 1 kHz 1.0 0.6 0.4 0.2 0.0 0.7 0.8 0.9 1.0 1.1 1.2 1.3 Df ( 3 dB ) = f0 / 7 f / f0 – Relative Frequency f = f0 "5% eE in m 100 Hz 0.1 0.1 1.0 10.0 100.0 1000.0 94 9102 96 12215 DVs RMS – AC Voltage on DC Supply Voltage (mV) Figure 1. Frequency Dependence of Responsivity 4.5 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 0.01 0.10 1.00 10.00 100.00 Ambient, l = 950 nm Correlation with ambient light sources ( Disturbance effect ) : 1 0W/m2 1.4 klx ( Stand.illum.A, T = 2855 K ) 8.2 klx ( Daylight, T = 5900 K ) Figure 4. Sensitivity vs. Supply Voltage Disturbances 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 4.5 4.6 4.7 4.8 4.9 5.0 5.1 5.2 5.3 5.4 5.5 VS – Supply Voltage ( V ) Sensitivity in dark ambient E e min – Threshold Irradiance (mW/m2 ) ^ ^ 96 12214 E – DC Irradiance (W/m2) 14312 Figure 2. Sensitivity in Bright Ambient Ee Ee min – Threshold Irradiance ( mW/m2 ) 2.0 f ( E ) = f0 1.6 1.2 0.8 0.4 0.0 0.0 94 8147 E e min – Threshold Irradiance (mW/m2 ) Figure 5. Sensitivity vs. Supply Voltage Optical Test Signal 600 ms TD* 600 ms t Trep=100 ms * Trep–TD > 15 ms is recommended for optimal function VO VOH 0.4 0.8 1.2 1.6 2.0 VOL Ton Toff t Output Signal, ( see Fig.7 ) 9612218 E – Field Strength of Disturbance ( kV / m ) Figure 3. Sensitivity vs. Electric Field Disturbances Figure 6. Output Function www.vishay.com 4 (7) Document Number 82047 Rev. 13, 13-Sep-00 TSOP18.. Vishay Telefunken 0.80 T on ,T – Output Pulse Length (ms) off 0.75 0.70 0.65 0.60 0.55 0.50 0.45 0.4 0.1 16163 Toff Ton optical test signal, fig.6 1.0 10.0 100.0 1000.0 10000.0 100000.0 14317 1.7 1.6 Supply current in dark ambient 1.5 1.4 1.3 1.2 1.1 1.0 0.9 0.8 0.7 0.6 0.5 4.5 4.6 4.7 4.8 4.9 5.0 5.1 5.2 5.3 5.4 5.5 VS – Supply Voltage ( V ) Ee – Irradiance (mW/m2) Figure 7. 2.0 1.8 I s – Supply Current ( mA ) 1.6 1.4 1.2 1.0 0.8 0.6 0.4 0.2 0 –30 –15 14315 I s – Supply Current ( mA ) Vs = 5 V S ( l ) rel – Relative Spectral Sensitivity Figure 10. Supply Current vs. Supply Voltage 1.2 1.0 0.8 0.6 0.4 0.2 0 750 94 8408 0 15 30 45 60 75 90 850 950 1050 1150 Tamb – Ambient Temperature ( °C ) l – Wavelength ( nm ) Figure 8. Supply Current vs. Ambient Temperature 1.0 0.9 0.8 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 –30 –15 0 15 30 45 60 75 90 Sensitivity in dark ambient Figure 11. Relative Spectral Sensitivity vs. Wavelength 0° 10° 20° 30° E e min – Threshold Irradiance (mW/m2 ) 40° 1.0 0.9 0.8 0.7 50° 60° 70° 80° 0.6 96 12223p2 96 12221 Tamb – Ambient Temperature ( °C ) 0.6 0.4 0.2 0 0.2 0.4 drel – Relative Transmission Distance Figure 9. Sensitivity vs. Ambient Temperature Figure 12. Directivity Document Number 82047 Rev. 13, 13-Sep-00 www.vishay.com 5 (7) TSOP18.. Vishay Telefunken Dimensions in mm 9612211 www.vishay.com 6 (7) Document Number 82047 Rev. 13, 13-Sep-00 TSOP18.. Vishay Telefunken Ozone Depleting Substances Policy Statement It is the policy of Vishay Semiconductor GmbH to 1. Meet all present and future national and international statutory requirements. 2. Regularly and continuously improve the performance of our products, processes, distribution and operating systems with respect to their impact on the health and safety of our employees and the public, as well as their impact on the environment. It is particular concern to control or eliminate releases of those substances into the atmosphere which are known as ozone depleting substances ( ODSs ). The Montreal Protocol ( 1987 ) and its London Amendments ( 1990 ) intend to severely restrict the use of ODSs and forbid their use within the next ten years. Various national and international initiatives are pressing for an earlier ban on these substances. Vishay Semiconductor GmbH has been able to use its policy of continuous improvements to eliminate the use of ODSs listed in the following documents. 1. Annex A, B and list of transitional substances of the Montreal Protocol and the London Amendments respectively 2 . Class I and II ozone depleting substances in the Clean Air Act Amendments of 1990 by the Environmental Protection Agency ( EPA ) in the USA 3. Council Decision 88/540/EEC and 91/690/EEC Annex A, B and C ( transitional substances ) respectively. Vishay Semiconductor GmbH can certify that our semiconductors are not manufactured with ozone depleting substances and do not contain such substances. We reserve the right to make changes to improve technical design and may do so without further notice. Parameters can vary in different applications. All operating parameters must be validated for each customer application by the customer. Should the buyer use Vishay-Telefunken products for any unintended or unauthorized application, the buyer shall indemnify Vishay-Telefunken against all claims, costs, damages, and expenses, arising out of, directly or indirectly, any claim of personal damage, injury or death associated with such unintended or unauthorized use. Vishay Semiconductor GmbH, P.O.B. 3535, D-74025 Heilbronn, Germany Telephone: 49 ( 0 ) 7131 67 2831, Fax number: 49 ( 0 ) 7131 67 2423 Document Number 82047 Rev. 13, 13-Sep-00 www.vishay.com 7 (7)
TSOP1840
1. 物料型号: - TSOP1830(30 kHz) - TSOP1833(33 kHz) - TSOP1836(36 kHz) - TSOP1837(36.7 kHz) - TSOP1838(38 kHz) - TSOP1840(40 kHz) - TSOP1856(56 kHz)

2. 器件简介: TSOP18系列是用于红外遥控系统的微型接收器。PIN二极管和前置放大器安装在引脚框架上,环氧树脂封装设计为红外滤光器。解调后的输出信号可以直接被微处理器解码。

3. 引脚分配: - Pin 1: 输出电压(Output Voltage) - Pin 3: 供电电压(Supply Voltage)

4. 参数特性: - 供电电压(Vs):-0.3至6.0V - 供电电流(Is):5mA - 输出电压(Vo):-0.3至6.0V - 输出电流(lo):5mA - 结温(T):100°C - 存储温度范围(Tstg):-25至+85°C - 工作温度范围(Tamb):-25至+85°C - 功耗(Ptot):50mW(在Tamb ≥ 85°C时) - 焊接温度(Tsd):260°C(10秒内,距离外壳1mm)

5. 功能详解: - 集成光探测器和前置放大器 - 内部滤波器用于PCM频率 - TTL和CMOS兼容性 - 输出低电平有效 - 提高对电场干扰的屏蔽 - 适用于≥6周期/脉冲的脉冲长度

6. 应用信息: TSOP18系列设计用于避免由于噪声或干扰信号导致的意外输出脉冲。使用带通滤波器、积分器阶段和自动增益控制来抑制此类干扰。数据信号应满足特定条件,如载波频率接近带通中心频率(例如38kHz)、脉冲长度应为6周期/脉冲或更长等。

7. 封装信息: 封装尺寸以毫米为单位,具体尺寸图示参考文档中的“Dimensions in mm”部分。
TSOP1840 价格&库存

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