TSL6901 STM | Alldatasheet

Document overview

  • Manufacturer or author: Provided By alldatasheet.com(free datasheet download site)
  • PDF pages: 21

Technical content

Datasheet sections

  • 1 Pin connections
  • 2 Absolute maximum ratings and operation conditions
  • 3 Electrical characteristics
  • 4 Package information
  • 4.1 SC70-5 (or SOT323-5) package information
  • 4.2 SOT23-5 package information
  • 4.3 DFN8 2 x 2 package information
  • 4.4 MiniSO8 package information
  • 4.5 SO8 package information
  • 4.6 QFN16 3x3 package information
  • 4.7 TSSOP-14 package information
  • 5 Ordering information

Features

  • Very high accuracy and stability: offset voltage 12 µV max.
  • Rail-to-rail input and output
  • Low supply voltage: 1.8 - 5.5 V
  • Low power consumption: 40 µA max. at 5 V
  • Gain bandwidth product: 375 kHz
  • High tolerance to ESD: 4 kV HBM
  • Extended temperature range: -40 to 125 °C
  • Micro-package: SC70-5, DFN8 2x2 and QFN16 3x3

Applications

  • Cost-sensitive applications
  • Battery-powered applications

Description

The TSL6901, TSL6902, and TSL6904 are high precision operational amplifiers which offer very low input offset voltages with virtually zero drift. TSL6901, TSL6902, and TSL6904 are pinouts compatible with industry standards. The TSL690x family offers rail-to-rail input and output, excellent speed/power consumption ratio, and 375 kHz gain bandwidth product, while consuming less than 40 µA at 5 V. The devices also feature an ultra-low input bias current. These features make the TSL690x family product ideal for sensor interfaces, battery- powered applications, and portable applications. TSL6901 TSL6902 TSL6904 SC70-5 SOT23-5 DFN8 2x2 MiniSO8 SO8 QFN16 3x3 TSSOP14 Maturity status link TSL6901, TSL6902, TSL6904

Related products

TSL600x For higher bandwidth (1 MHz) TSL620x For higher bandwidth (10 MHz) TSL640x For higher bandwidth (50 MHz) TSL680x For more power saving Very high accuracy (12 µV) zero drift micropower 5 V cost-effective operational amplifiers TSL6901, TSL6902, TSL6904 Datasheet DS14778 - Rev 1 - February 2025 For further information, contact your local STMicroelectronics sales office.

1 Pin connections

Figure 1. Pin connections (top view)

  1. The exposed pads of the DFN8 2x2 and QFN16 3x3 can be connected to VCC- or left floating.

Table 1. Pin description for SC70 and SOT23-5 Table 2. Pin description for DFN8, MiniSO8, and SO8

1 OUT1 Output channel

2 IN1- Inverting input channel

3 IN1+ Non-inverting input channel

4 VCC- Negative supply voltage

5 IN2+ Non-inverting input channel

6 IN2- Inverting input channel

7 OUT2 Output channel

8 VCC+ Positive supply voltage

Table 3. Pin description for TSSOP14 and QFN16

2 Absolute maximum ratings and operation conditions

Table 4. Absolute maximum ratings (AMR)

  1. All voltage values, except the differential voltage, are with respect to the network ground terminal.
  2. The differential voltage is the non-inverting input terminal with respect to the inverting input terminal.
  3. Vcc - Vin must not exceed 6 V, Vin must not exceed 6 V.
  4. Input current must be limited by a resistor in series with the inputs.
  5. Short-circuits can cause excessive heating and destructive dissipation.
  6. Human body model: 100 pF discharged through a 1.5 kΩ resistor between two pins of the device, done for all couples of pin

combinations with other pins floating.

  1. Machine model: a 200 pF cap is charged to the specified voltage, then discharged directly between two pins of the device

with no external series resistor (internal resistor < 5 Ω), done for all couples of pin combinations with other pins floating.

  1. Charged device model: all pins plus package are charged together to the specified voltage and then discharged directly to

Table 5. Operating conditions

3 Electrical characteristics

Table 6. Electrical characteristics at VCC = 2 V to 5 V, VICM = VOUT = VCC / 2, T = 25 °C and OUT connected to VCC / 2 through RL = 10 kΩ (unless otherwise specified). Production screening at VCC = 5 V, operation on the full supply range ensured by design and characterization.

  1. Input offset measurements are performed on x100 gain configuration. The amplifiers and the gain setting resistors are at the same
  2. Slew rate value is calculated as the average between positive and negative slew rates.

Electrical characteristics

4 Package information

To meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions, and product status are available at: www.st.com. ECOPACK is an ST trademark. TSL6901, TSL6902, TSL6904

Package information

4.1 SC70-5 (or SOT323-5) package information

Figure 2. SC70-5 (or SOT323-5) package outline Table 7. SC70-5 (or SOT323-5) package mechanical data

4.2 SOT23-5 package information

Figure 3. SOT23-5 package outline Table 8. SOT23-5 mechanical data

4.3 DFN8 2 x 2 package information

Figure 4. DFN8 2 x 2 package outline Table 9. DFN8 2 x 2 mechanical data

Figure 5. DFN8 2 x 2 recommended footprint DS14778 - Rev 1 page 10/21

4.4 MiniSO8 package information

Figure 6. MiniSO8 package outline Table 10. MiniSO8 mechanical data DS14778 - Rev 1 page 11/21

4.5 SO8 package information

Figure 7. SO8 package outline Table 11. SO8 package mechanical data DS14778 - Rev 1 page 12/21

4.6 QFN16 3x3 package information

Figure 8. QFN16 3x3 package outline Note: The exposed pad is not internally connected and can be set to ground or left floating. DS14778 - Rev 1 page 13/21

Table 12. QFN16 3x3 mechanical data Figure 9. QFN16 3x3 recommended footprint DS14778 - Rev 1 page 14/21

4.7 TSSOP-14 package information

Figure 10. TSSOP-14 package outline Table 13. TSSOP-14 mechanical data DS14778 - Rev 1 page 15/21

5 Ordering information

Table 14. Order codes

  1. Qualified and characterized according to AEC Q100 and Q003 or equivalent, advanced screening according to AEC Q001 &

Ordering information

DS14778 - Rev 1 page 16/21

Revision history

Table 15. Document revision history 20-Feb-2025 1 Initial release.

through RL = 10 kΩ (unless otherwise specified).

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