Single-Channel Photocouplers (results: 1167)
Product | Cart |
CTR
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Case
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Output type
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Insulation breakdown voltage
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Output voltage
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TLP170AM
Single Channel; CTR N/A; Vce 60V; Uiso 3,75kV; Photorelay; Substitute: TLP170AM(TPL,E(O; TLP170AM(V4TPL,E(O;
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N/A | MFP4 | MOSFET | 3750V | 60V | |||
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Item available on a request
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CYTLP181(GR-TP)
Single-Channel CTR 100-600% Vce 80V Uiso 3,75kV NPN Phototransistor Replacement for: TLP181(GB-TPL,F
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100-600% | SOP04 | NPN Phototransistor | 3750V | 80V | |||
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Item available on a request
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HPC357
Thyristor Optocoupler; Photo Transistor; SOP4 TLP181/TLP121; HCPL-181; SFH690XT; HMA121/HMA124 /HMA2701; PS2701-1 PS2761-1; PC357
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Item available on a request
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TLP185(GR,SE(T Toshiba
single channel CTR 100-300% Vce 80V Uiso 3,75kV NPN Phototransistor TLP185(GR,SE(T; TLP185(GR-TPL,SE(T; TLP185(GR-TPR,SE(T; TLP185(GR-TPR,E(O;
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100-300% | SO 6 | Phototransistor | 3750V | 80V | |||
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Item available on a request
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TLP2200
single ; 3-state; 5Mb; Uiso 2,5kV TLP2200F ; Repl.: HCPL-2200-000E, HCPL-2200-060E, HCPL-2200-060, HCPL-2200
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N/A | PDIP08 | Tri-State | 2500V | 20V | |||
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Item available on a request
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HPL6S157
Thyristor Optocoupler; SOP5
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Item available on a request
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TLP240A(TP1,F(O TOSHIBA
Photocouplers Photorelay
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Item available on a request
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HPC217
Thyristor Optocoupler; Photo Transistor; 1.27SOP4 TLP291/TLP281; ACPL-217; PS2801; PC3H7; IS281
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Item available on a request
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TLP3122(TP,F) TOSHIBA
Relay SSR 50mA 1.3V DC-IN 1A 60V 4-Pin SOP T/R
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Item available on a request
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TLP3127(TP,F(O TOSHIBA
PHOTORELAY, 1 FORM A, VOFF=40V
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Item available on a request
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TLP350H(F)
Optocoupler Logic-Out Totem-Pole DC-IN 1-CH 8-Pin PDIP
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Item available on a request
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TLP383(GB-TPL,E
MOSFET N-CH Optoisolators - Transistor, Photovoltaic Output
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Item available on a request
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TLP523
single ; CTRmin 5%; Vce 55V; Uiso 2,5kV
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5% | PDIP04 | Photodarlington | 2500V | 55V | |||
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Item available on a request
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TLP591B(C,F)
Optocoupler DC-IN 1-CH Photovoltaic DC-OUT 5-Pin PDIP
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N/A | PDIP05 | Photovoltaic | 2500V | 7V | |||
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Item available on a request
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TLP627
Single-Channel CTR 1000-4000% Vce 300V Uiso 5kV *Obsolete:TLP627(F,T) ; Replacement:TLP627(F);
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1000-4000% | PDIP04 | Photodarlington | 5000V | 300V | |||
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Item available on a request
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HPC952a
Transistor output optocoupler; DIP4/SMD4; TLP627; IS627
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Item available on a request
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TLP715(D4-TP,F)
Optocoupler Logic-Out Totem-Pole DC-IN 1-CH 6-Pin SDIP SMD
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Item available on a request
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TLP781F
single ; CTR 50-600%; Vce 80V; Uiso 5kV Replacement for TLP421, TLP521, TLP621, TLP521-2, TLP621-2, TLP521-4, TLP621-4
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50-600% | PDIP04 0,4" | NPN Phototransistor | 5000V | 80V | |||
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Item available on a request
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VO0601T
Optocoupler Logic-Out Open Drain DC-IN 1-CH 8-Pin SOIC
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Item available on a request
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VO0611T
Optocoupler; SMD; Ch: 1; OUT: logic; 6kV; 10Mbps; SO8; VO06xxT; 4.5V ~ 5.5V; -40°C ~ 100°C;
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SOIC08 | Open Drain | 6000V | |||||
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Item available on a request
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Item available on a request
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VOH260A-X001 VISHAY
Optocoupler; THT; Channels: 1; Open Drain; 5kV; 10Mbps; 15kV/us; 7V; -40°C~110°C;
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85% | DIP-8 | Open Drain | 5000V | 7V | |||
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Item available on a request
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VOH260A-X006 VISHAY
Optocoupler; THT; Channel: 1; Open Drain; 5kV; 10Mbps; 15kV/us; 7V; -40°C~110°C;
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85% | DIP08 | Open Drain | 5000V | 7V | |||
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Item available on a request
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VOH260A-X007T VISHAY
Optocoupler; SMD; Channels: 1; Out: gate; 5kV; 10Mbps; 50mA; 15kV/us; 4.5V~5.5V; -40°C~125°C;
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Rys.OOVOH260A-X007T | Open Drain | 5000V | 7V | ||||
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Item available on a request
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VOH260A-X016 VISHAY
Optocoupler; DIP; Channels: 1; Out: gate; 5kV; 10Mbps; 15kV/us; 4.5V~5.5V; -40°C~110°C;
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Rys.OOVOH260A-X016 | Open Drain | 5000V | 7V | ||||
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Item available on a request
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VOH260A-X017T VISHAY
Optocoupler; SMD; Channels: 1; Out: gate; 5kV; 10Mbps; 50mA; 25kV/us; 4.5V~5.5V; -40°C~110°C;
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Rys.OOVOH260A-X017T | Open Drain | 5000V | 7V | ||||
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Item available on a request
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VOIH060A-X001T VISHAY
Optocoupler; SMD; Channels: 1; Out: gate; 3,75kV; 10Mbps; 50mA; 15kV/us; 4.5V~5.5V; -40°C~110°C;
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Rys.OOVOIH060A-X001T | Open Drain | 3750V | 7V | ||||
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Item available on a request
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VOIH060AT VISHAY
Optocoupler; SMD; Channels: 1; Out: gate; 3,75kV; 10Mbps; 50mA; 15kV/us; 4.5V~5.5V; -40°C~110°C;
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Rys.OOVOIH060AT | Open Drain | 3750V | 7V | ||||
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Item available on a request
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VOM453T Vishay
Single-Channel, CTR 20-50%, 3.75kVrms replacement for TLP112A
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20-50% | SOP05 | Transistor | 3750V | 25V | |||
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Item available on a request
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VOMDA1271T VISHAY
Optocoupler; SMD; Channels: 1; Out: gate; 3,75kV; 50mA; 80mW; -40°C~125°C;
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Rys.OOVOMDA1271T | Photovoltaic | 3750V | |||||
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Item available on a request
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Single Optocouplers
Optocouplers are components that enable the transmission of signals between galvanically isolated circuits. This function makes their use crucial for the safe operation of many devices. Our range includes single optocouplers with various operating parameters, allowing you to choose components tailored to a wide range of applications.
What are single optocouplers?
Single optocouplers are a type of optocoupler, which are electronic components used to transmit signals between circuits while maintaining their galvanic isolation. This is achieved because the housing of these components contains a transmitter (usually an LED) and an isolated receiver (a photoresistor, photodiode, or phototransistor). When current flows through the LED, it begins to emit light. This signal is then detected by the photodetector, allowing current to flow in the circuit.
Optocouplers are used in many different devices, such as switching power supplies, measurement and communication devices, and control systems. To ensure the smooth operation of a system, selecting the appropriate type of these components is essential. Single optocouplers are ideal for many basic applications. However, in some cases, it may be necessary to use more complex components, such as dual optocouplers or quad optocouplers.
What is the CTR of an optocoupler?
An extremely important parameter of all single optocouplers and other types of these components is the CTR. What is this property, and how do you properly select it for your circuit needs? CTR (Current Transfer Ratio) defines the amplification of the optocoupler, i.e., the ratio of output current to input current. Properly matching this parameter is essential for these components to perform their function correctly in the circuit.
How to use an optocoupler?
If you want to use single optocouplers in your designed circuit, you must first determine the purpose of these components. This could be, for example, overvoltage protection, noise elimination, or circuit control. The next step will be to select an optocoupler with parameters that suit the specific need. Besides the aforementioned CTR, you should also pay attention to properties such as output voltage and isolation voltage. Afterward, you can order the appropriate components and integrate them into your system.