The TLC7733QDR is a micropower supply voltage supervisor designed for reset control in microcomputer and microprocessor systems. It operates within a supply voltage range of 2V to 6V and features a precision voltage sensor with a defined reset output when V_DD reaches 1V. The device includes automatic reset generation after a voltage drop and supports programmable delay time through an external capacitor, allowing for flexibility in system design. With a maximum supply current of 16 ¬µA, the TLC7733QDR is optimized for low power consumption, making it suitable for battery-operated applications. It is characterized for operation over a temperature range of -40¬8C to 125¬8C, which enhances its reliability in various environments. The device is packaged in an 8-SOIC format and is particularly applicable in medical imaging systems, where precise voltage monitoring is critical.
Single SVS For 3.3V Systems W/Programmable Time Delay 8-SOIC -40 to 125
3V Voltage Supervisor, 8-SOIC, -40 to 125°C, Push-Pull Product overview: TLC7733QDR from Texas Instruments is a Voltage Supervisor IC for reset control, voltage monitoring, brownout detection, power sequencing, and reliable embedded system startup. It is useful for engineers and buyers comparing datasheets, replacement parts, BOM lines, package options, lifecycle status, and procurement availability. Key searchable attributes include 3V, SOIC. Search-friendly keywords include voltage supervisor, reset IC, power monitoring, brownout detection, 3V, SOIC, Voltage Supervisor IC, Supervisors. This listing supports clearer product discovery for industrial, commercial, repair, automation, power, sensing, and embedded system projects. Product number 691-TLC7733QDR can be used for catalog matching and distributor lookup.
Supervisor Push-Pull, Totem Pole 1 Channel 8-SOIC
Supervisor Push-Pull, Totem Pole 1 Channel 8-SOIC
Supervisor Push-Pull, Totem Pole 1 Channel 8-SOIC
Manufacturer: Texas Instruments
Win Source Part Number: 139564-TLC7733QDR
Packaging: Reel - TR
Type: Simple Reset/Power-On Reset
Mounting: SMD (SMT)
Output: Push-Pull, Totem Pole
Reset: Active High/Active Low
Number of Voltages Monitored: 1
Reset Timeout: 1.1 ms Minimum
Voltage - Threshold: 2.93V
Categories: Integrated Circuits
Status: Active
Temperature Range - Operating: -40°C to 125°C (TA)
Case / Package: 8-SOIC
Popularity: Medium
Fake Threat In the Open Market: 33 pct.
Supply and Demand Status: Balance
Supervisory Circuits Sngl SVS f/3.3V Sys w/Prg Time Delay
IC SUPERVISOR 1 CHANNEL 8SOIC
Supervisor Push-Pull, Totem Pole 1 Channel 8-SOIC
IC SUPERVISOR 1 CHANNEL 8SOIC
| Texas Instruments | ERSAELECTRONICS PTE. LTD. | DigiKey | Win Source Electronics | VAST STOCK CO., LIMITED | Lingto Electronic Limited | Quarktwin Technology Ltd. | Shenzhen Shengyu Electronics Technology Limited | |
|---|---|---|---|---|---|---|---|---|
| Product Category | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips | Supervisory Circuits and Battery Monitor Chips |
| Product Number | TLC7733QDR | 691-TLC7733QDR | 296-46347-2-ND | 139564-TLC7733QDR | TLC7733QDR | TLC7733QDR | TLC7733QDR | TLC7733QDR |
| Product Name | TLC7733 Single SVS For 3.3V Systems W/Programmable Time Delay | 3V SOIC Voltage Supervisor IC | Supervisors | PMIC - PMIC - Supervisors - TLC7733QDR | Supervisory Circuits | PMIC - Supervisors | Supervisors | Integrated Circuits (ICs) - Power Management (PMIC) - Supervisors |
| Number of Supplies | 1 | 1 | 1; 1 | 1; 1 | ||||
| Output Options | Active-high,Active-low,Push-pull | Active Low; Active High; Push-Pull, Totem Pole | Inverting; Active Low; Active High | Push-Pull, Totem Pole | ||||
| Type | PDIP,SOIC,TSSOP | D | SOIC; "8-SOIC (0.154"", 3.90mm Width)" | SOIC; 8-SOIC | SOIC; 8-SOIC (0.154\", 3.90mm Width) | SOIC | ||
| IQ | 9 µA | 9 µA | ||||||
| Accuracy | 2.4 % |