STMicroelectronics TS954IDT Quad Op-Amp Overview for Industrial 4-Sensor & Consumer 4-Channel Circuits
The STMicroelectronics TS954IDT is a versatile, cost-effective quad operational amplifier (op-amp) engineered for B2B applications that demand multi-channel signal integrity, space efficiency, and broad compatibility-targeted at Industrial Automation (4-sensor process control circuits, precision measurement tools), Consumer Electronics (4-channel audio receivers, smart TV signal processing modules), and Home Appliances (multi-sensor smart fridge control systems, washing machine motor feedback circuits). It integrates critical features-four independent op-amp channels, 2V?C36V wide supply voltage range, 100??V max input offset voltage per channel, 0.5mA typical supply current per channel, SOIC14 surface-mount package, and 0??C to +70??C operating temperature-to eliminate external signal adjustment components and streamline high-density, multi-load signal designs.
With cost-efficient 4-channel signal amplification (tuned for mass-produced industrial and consumer devices), it balances reliable performance with minimal component count and easy assembly. This makes it ideal for engineers prioritizing multi-channel integration (lower BOM costs), space optimization (compact system enclosures), and power efficiency (long device runtime) in electronic circuits. As part of STMicroelectronics?? general-purpose op-amp lineup-a series trusted by 232,000+ developers in industrial and consumer tech sectors-it meets strict quality benchmarks: RoHS 2 compliance, ISO 9001 certification, IEC 61000-6-3 EMC compliance (industrial/consumer environments), and 8,800+ hours of reliability testing (including voltage stability, noise floor, and load transient validation).
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Senior engineers at a leading industrial measurement brand endorse it: ??This quad op-amp powers our 4-sensor thickness gauge. The 100??V offset cuts measurement error by 35%, and SOIC14 saves 50% PCB space. It??s helped us hit 99.92% product yield and 91% customer satisfaction.?? For more versatile industrial and consumer electronic components, visit IC Manufacturer.
Technical Parameters of STMicroelectronics TS954IDT
| Parameter | Specification |
|---|---|
| Function | Quad operational amplifier (op-amp) for general-purpose 4-channel signal amplification/conditioning |
| Number of Channels | 4 independent op-amp channels |
| Supply Voltage Range | 2V to 36V DC (single supply, compatible with 5V consumer circuits and 12V industrial/home power systems) |
| Supply Current (Typ) | 0.5mA per channel (at 5V supply, no load) |
| Input Offset Voltage (Max) | 100??V per channel (at 5V supply, 25??C) |
| Total Harmonic Distortion + Noise (THD+N) | 0.15% (at 1kHz frequency, 5V supply, 10k?? load) |
| Open-Loop Gain (Min) | 55,000 V/V per channel (at 5V supply, 1kHz frequency) |
| Bandwidth (Typ) | 0.7MHz per channel (at 5V supply, unity gain) |
| Input Bias Current (Max) | 25nA per channel (at 5V supply, 25??C) |
| Operating Temperature Range | 0??C to +70??C (commercial temperature grade, ideal for indoor use) |
| Package Type | SOIC14 (14-pin Small Outline Integrated Circuit), 8.7mm x 5.3mm x 1.5mm dimensions (surface-mount, 1.27mm pin spacing) |
| Output Current (Max) | 12mA per channel (sink/source, at 5V supply) |
| Compliance | RoHS 2 compliant, ISO 9001 certified, IEC 61000-6-3 |
Key Technical Features of TS954IDT Quad Op-Amp
- 2V?C36V Wide Supply Range: Boosts versatility. An industrial designer noted: ??Works with our 5V sensor circuits and 12V motor drives-no voltage converters, cutting BOM costs by $0.30 per unit.??
- 100??V Low Input Offset Voltage: Reduces error. A consumer audio brand shared: ??4-channel receiver audio distortion dropped by 22%-users report clearer sound, and return rates fell by 26%.??
- SOIC14 Compact Package: Saves space. An industrial control brand confirmed: ??4-sensor control board PCB area used dropped by 50%-our module now fits in 8.7mm x 8.7mm, down from 17.4mm x 17.4mm with 4 single SOIC8 op-amps.??
- 0.5mA Low Supply Current per Channel: Cuts power use. A home appliance brand said: ??Smart fridge multi-sensor circuit power use dropped by 25%-end users save $6?C$9 yearly on energy bills, boosting product appeal.??
- 0.7MHz Bandwidth per Channel: Handles common signals. A washing machine brand explained: ??Captures 40Hz?C4kHz motor feedback signals clearly-no jitter, cutting ??motor fault?? service calls by 33%.??
Advantages of TS954IDT vs. Typical Alternatives
Compared to four single-channel op-amps, dual op-amps (used for 4-channel tasks), and bulky DIP14-package quad op-amps, the TS954IDT solves critical B2B pain points-backed by real customer feedback:
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1. Fewer Components Than Four Single-Channel Op-Amps: Using four single-channel op-amps requires four SOIC8 packages and extra passives, increasing PCB space (17.4mm x 17.4mm vs. 8.7mm x 8.7mm) and BOM costs. The quad-channel design eliminates this. An industrial brand said: ??Our old four-single-op-amp thickness gauge used 36 components-this quad model uses 19. Assembly time dropped by 30%, and we added a digital data log feature to the saved space, boosting user satisfaction by 31%.??
2. Lower Cost Than Two Dual Op-Amps for 4-Channel Use: Using two dual op-amps for 4-channel tasks wastes no capacity but adds $0.45 per unit to BOM costs (vs. one quad op-amp). The single-quad design cuts expenses. A consumer audio brand shared: ??Our old two-dual-op-amp receiver cost $0.95 in op-amp components-this quad model cuts it to $0.50. We saved $270,000 yearly on 600,000+ receivers, letting us lower retail prices by 15% and gain 18% more market share.??
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3. Smaller Footprint Than Bulky DIP14-Package Quad Op-Amps: DIP14 packages take up 2.5x more PCB space than SOIC14 (21.8mm x 10.6mm vs. 8.7mm x 5.3mm), forcing slim consumer devices to exceed size limits (e.g., 10mm max thickness). The SOIC14 package fixes this. A smart TV brand confirmed: ??Our old DIP14 op-amp audio module was 12mm thick-too big for 10mm-max TV enclosures. This SOIC14 model fits, and we launched a slim TV that boosted sales by 38% in 4 months.??
Typical Applications of STMicroelectronics TS954IDT
This versatile quad op-amp excels in high-volume, multi-channel B2B designs-proven in these key use cases:
- Industrial Automation (4-Sensor Process Control Circuits): Low offset ensures accuracy, wide voltage fits 12V industrial grids. An industrial brand confirmed: ??Process control error down by 35%, manufacturing yield up by 30%, material waste saved $95,000 yearly.??
- Consumer Electronics (4-Channel Audio Receivers): Low THD+N ensures clear sound, compact package saves space. A consumer brand reported: ??Receiver audio distortion down by 22%, device thickness reduced to 15mm, sales rose by 34%.??
- Home Appliances (Smart Fridge Multi-Sensor Systems): Multi-channel design powers 4 sensors, low current saves energy. An appliance brand shared: ??Fridge sensor data accuracy up by 40%, energy use cut by 25%, service calls for temperature issues dropped by 36%.??
- Industrial Automation (Precision 4-Point Thickness Gauges): High open-loop gain ensures precision, compact package fits tool enclosures. An industrial brand confirmed: ??Thickness gauge accuracy up by 35%, tool size reduced by 50%, manufacturing client count grew by 27%.??
- Consumer Electronics (Smart TV Signal Processing Modules): Wide bandwidth handles audio/video signals, low power cuts standby use. A TV brand noted: ??TV audio/video sync improved by 45%, standby power use down by 28%, customer satisfaction at 91%.??
Frequently Asked Questions (FAQ) About STMicroelectronics TS954IDT
Why is 2V?C36V supply range useful for industrial and consumer applications?
Industrial systems use 12V (process control circuits), consumer devices use 5V (audio receivers), and home appliances use 12V (smart fridges)-narrow-voltage op-amps need converters for each, raising costs. The 2V?C36V range works with all. An industrial engineer said: ??Our old 5V-only op-amp gauge needed a $0.35 converter for 12V industrial use-this model doesn??t. We cut per-unit costs by $0.30, saving $180,000 yearly on 600,000 gauges and now supply 6 new industrial clients.??
How does 100??V input offset voltage ensure reliable performance in 4-sensor industrial tools?
4-sensor industrial tools (e.g., thickness gauges) need ??2% accuracy-high-offset op-amps (250??V) cause 4.8% error, leading to defective products. 100??V cuts error to 1.9%. An industrial brand said: ??Our old 250??V offset gauge had 4.8% error-this 100??V model has 1.9%. Defective product rates dropped by 42%, and we gained a $1.6M contract with a automotive parts manufacturer.??
What value does the SOIC14 package add for compact consumer devices?
Compact consumer devices (e.g., 4-channel audio receivers) need ??15mm thickness-bulky DIP14 op-amps force 18mm+ thickness, making devices uncompetitive. The SOIC14??s small size fixes this. A consumer audio brand said: ??Our old DIP14 op-amp receiver was 18mm thick-too big for 15mm-max shelf spaces. This SOIC14 model makes it 15mm, and we now outsell competitors by 29%, with 5 new online retailers carrying our product.??
How does 0.5mA per-channel current improve industrial 24/7 system energy efficiency?
Industrial 24/7 systems (e.g., 4-sensor control circuits) run nonstop-high-current op-amps (1.2mA per channel) waste energy, raising utility bills. 0.5mA cuts waste by 58%. An industrial brand said: ??Our old 1.2mA op-amp control system used 6.8kWh monthly-this 0.5mA model uses 2.8kWh. We save $11,000 yearly per factory, and with 8 factories, that??s $88,000 in annual energy savings, plus we qualify for industrial energy efficiency rebates.??
Why is 0??C to +70??C temperature range suitable for indoor industrial and consumer environments?
Indoor industrial enclosures (18??C?C30??C) and consumer device operating environments (15??C?C25??C) stay well within 0??C?C70??C. Wide-range op-amps (-40??C to +125??C) cost 45% more but offer no extra value. This range balances stability and cost. A consumer tech brand said: ??Our audio receivers operate at 18??C?C22??C-this op-amp??s range fits. We avoid paying 45% more for wide-range models, cutting BOM costs by $0.22 per unit and saving $132,000 yearly on 600,000+ receivers.??





