ICGOO在线商城 > 传感器,变送器 > 光学传感器 - 反射式 - 模拟输出 > OPB606A
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OPB606A产品简介:
ICGOO电子元器件商城为您提供OPB606A由OPTEK设计生产,在icgoo商城现货销售,并且可以通过原厂、代理商等渠道进行代购。 OPB606A价格参考。OPTEKOPB606A封装/规格:光学传感器 - 反射式 - 模拟输出, Reflective Optical Sensor 0.050" (1.27mm) PCB Mount。您可以下载OPB606A参考资料、Datasheet数据手册功能说明书,资料中有OPB606A 详细功能的应用电路图电压和使用方法及教程。
TT Electronics/Optek Technology 的 OPB606A 是一款光学传感器,属于反射式传感器且具有模拟输出。该型号广泛应用于需要检测物体存在、位置或运动的场景,具体应用场景如下: 1. 液位检测: OPB606A 可用于非侵入式液位监测。通过发射红外光并检测液体表面反射回来的光线强度,判断容器中的液位高度。适用于家用电器(如洗衣机、咖啡机)和工业设备。 2. 物体检测与计数: 在自动化生产线上,OPB606A 能够检测经过传感器前方的物体,并通过模拟输出信号的变化实现物体计数或定位。例如,包装行业中的物品排列检测。 3. 速度与距离测量: 通过安装在旋转部件附近,OPB606A 可以感知标记点的反射信号,从而计算转速或移动距离。这种功能常用于打印机、扫描仪等设备中。 4. 颜色识别(基础级别): 不同颜色对红外光的反射率不同,因此 OPB606A 可以区分浅色和深色表面,提供简单的颜色识别能力。这在分拣系统中有一定应用价值。 5. 纸张/标签检测: 在印刷和包装行业中,该传感器可用于检测纸张边缘、间隙或标签的位置,确保连续作业过程中材料正确对齐。 6. 接近开关: 当目标靠近时,反射光强度增加,OPB606A 可据此触发信号变化。这种特性适合用作触摸按钮或无接触式开关。 7. 安防监控: 在某些低功耗安全系统中,OPB606A 可作为入侵检测的一部分,当有人或物体进入设定范围时发出警报。 8. 机器人导航: 小型机器人可以利用 OPB606A 检测障碍物或地面标记,辅助完成路径规划和避障任务。 总之,OPB606A 凭借其高灵敏度、小型化设计以及可靠的性能,在消费电子、工业自动化、医疗设备及家用电器等多个领域都有广泛应用潜力。
参数 | 数值 |
产品目录 | |
描述 | SENSR OPTO TRANS 1.27MM REFL PCB光学开关(反射型,光电晶体管输出) Output Phototranstr Input Diode |
产品分类 | |
品牌 | TT Electronics/Optek Technology |
产品手册 | |
产品图片 | |
rohs | 符合RoHS无铅 / 符合限制有害物质指令(RoHS)规范要求 |
产品系列 | 光学开关(反射型,光电晶体管输出),Optek / TT Electronics OPB606A- |
数据手册 | |
产品型号 | OPB606A |
产品目录页面 | |
产品种类 | 光学开关(反射型,光电晶体管输出) |
其它名称 | 365-1088 |
包装 | 散装 |
反向电压 | 2 V |
响应时间 | - |
商标 | Optek / TT Electronics |
安装类型 | 通孔 |
安装风格 | Through Hole |
封装 | Bulk |
封装/外壳 | PCB 安装 |
工作温度 | -40°C ~ 85°C |
工厂包装数量 | 50 |
感应方式 | Reflective |
感应方法 | 反射 |
感应距离 | 0.050"(1.27mm) |
最大工作温度 | + 85 C |
最大集电极电流 | 25 mA |
最小工作温度 | - 40 C |
标准包装 | 50 |
正向电压 | 1.7 V |
正向电流 | 20 mA |
波长 | 935 nm |
电压-集射极击穿(最大值) | 30V |
电流-DC正向(If) | 50mA |
电流-集电极(Ic)(最大值) | 25mA |
输出类型 | 光电晶体管 |
输出设备 | Phototransistor |
集电极—发射极最大电压VCEO | 30 V |
Choice of phototransistor (OPB606) or photodarlington (OPB607) output Unfocused for sensing diffuse surface Low cost plastic housing Filtered (OPB606, OPB607) OPB606 consists of an infrared Light Emitting Diode (LED) and an NPN silicon phototransistor which are mounted “side-by- side” on parallel axes in a black opaque plastic housing. The OPB607 consists of an infrared Light Emitting Diode (LED) and an NPN silicon photodarlington which are mounted “side -by-side” on parallel axes in a black plastic housing. The emitting diode and phototransistor of both the OPB606 and OPB607 are encapsulated in a filtering epoxy that reduces ambient light noise. On both models, the phototransistors respond to radiation from the emitter only when a reflective object passes within the field of view. Custom electrical, wire and cabling and connectors are available. Contact your local representative or OPTEK for more information. Ordering Information Typical Reflection Part LED Peak Distance Inch Lead Length Non-contact reflective object sensor Number Wavelength Sensor (mm) Assembly line automation Machine automation OPB606A Machine safety OPB606B Transistor End of travel sensor OPB606C 0.050" 0.18” 935 nm Door sensor OPB607A (1.27mm) (Min) OPB607B Darlington Pin # LED Pin # Transistor OPB607C 4 Cathode 1 Collector 3 Anode 2 Emitter Measurement Surface OPB606 OPB607 4 1 4 1 3 2 3 2 [ MILLIMETERS] CONTAINS POLYSULFONE DIMENSIONS ARE IN: INCHES To avoid stress cracking, we suggest using ND Industries’ Vibra-Tite for thread-locking. RoHS Vibra-Tite evaporates fast without causing structural failure in OPTEK’s molded plastics.
Storage & Operating Temperature Range -40° C to +85° C Lead Soldering Temperature [1/16 inch (1.6 mm) from the case for 5 sec. with soldering iron](1) 260° C Input Diode Forward DC Current 50 mA Peak Forward Current (1 μs pulse width, 300 pps) 3 A Reverse DC Voltage 2 V Power Dissipation(2) 75 mW Output Phototransistor (OPB606) / Output Photodarlington (OPB607) Collector-Emitter Voltage OPB606A, OPB606B, OPB606C 30 V OPB607A, OPB607B, OPB607C 15 V Emitter-Collector Voltage 5 V Collector DC Current OPB606A, OPB606B, OPB606C 25 mA OPB607A, OPB607B, OPB607C 125 mA Power Dissipation(2) 75 mW Notes: (1) RMA flux is recommended. Duration can be extended to 10 seconds maximum when flow soldering. (2) Derate linearly 1.25 mW/°C above 25° C. OPB606 - Output vs Distance OPB606 - Output vs Distance (Retro) 2.00 600.00 Normalized at 90% Kodak and 0.1" 1.75 Normalized at 90% Kodak and 0.1" 500.00 Kodak 90% Kodak 90% 1.50 Kodak 19% 3M 3870 put 1.25 CAvoepriye rL Paabpeelr put 400.00 ut ut O O ed 1.00 ed 300.00 aliz aliz m m or 0.75 or N N 200.00 0.50 100.00 0.25 Kodak 90% 0.00 0.00 0.00 0.05 0.10 0.15 0.20 0.25 0.30 0.35 0.00 0.05 0.10 0.15 0.20 0.25 0.30 0.35 Distance (inches) Distance (inches)
Input Diode V Forward Voltage - - 1.7 V I = 20 mA F F I Reverse Current - - 100 μA V = 2 V R R Output Phototransistor Collector-Emitter Breakdown Voltage V OPB606 30 - - V (BR)CEO I = 100 µA OPB607 15 - - V C V Emitter-Collector Breakdown Voltage 5 - - V I = 100 µA (BR)ECO E Collector Dark Current I OPB606 - - 100 nA CEO V = 5 V, I = 0 OPB607 - - 250 nA CE F Combined Collector-Emitter Saturation Voltage I = 20 mA, I = 100 µA, d = F C V - - 0.4 0.053” (1.45 mm)(1)(2) CE(SAT) OPB606 V - - 1.1 I = 20 mA, I = 2 mA, d = OPB607 F C 0.053” (1.45 mm)(1)(2) On-State Collector Current OPB606A 500 - - μA OPB606B 350 - - μA I = 20 mA, V = 5 V, d = I OPB606C 200 - - μA F ce C(ON) 0.053” (1.45 mm)(1)(2) OPB607A 25 - - mA OPB607B 17 - - mA OPB607C 10 - - mA Off-State Collector Current I OPB606 - - 200 nA V = 5 V, I = 20 mA(3) C(OFF) CE F OPB607 - - 10 μA V = 5 V, I = 20 mA (3) CE F Notes: (1) “d” is the distance from the assembly measurement surface to the reflective surface. (2) Measured using Eastman Kodak neutral white test card with 90% diffuse reflectance as a reflecting surface. Reference: Eastman Kodak, Catalog # E 152 7795. (3) On OPB606, off-state collector current I is measured with no reflective surface in the optical path. On OPB607, Crosstalk (I ) is the collector C(OFF) cx current measured with the indicated current in the input diode and with no reflecting surface. (4) All parameters tested using pulse techniques. Test Distance
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