TSV629X STMICROELECTRONICS | Alldatasheet

Document overview

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Technical content

Datasheet sections

  • 1 Package pin connections
  • 2 Absolute maximum ratings and operating conditions
  • 3 Electrical characteristics
  • 4 Application information
  • 4.1 Operating voltages
  • 4.2 Rail-to-rail input
  • 4.3 Rail-to-rail output
  • 4.4 Optimization of DC and AC parameters
  • 4.5 Shutdown function (TSV6293, TSV6295)
  • 4.6 Driving resistive and capacitive loads
  • 4.7 PCB layouts
  • 4.8 Macromodel
  • 5 Package information
  • 5.1 SOT23-8 package information
  • 5.2 SO-8 package information
  • 5.3 MiniSO-8 package information
  • 5.4 MiniSO-10 package information
  • 5.5 TSSOP14 package information
  • 5.6 TSSOP16 package information
  • 6 Ordering information
  • 7 Revision history

Features

■ Rail-to-rail input and output ■ Low power consumption: 29 µA typ, 36 µA max ■ Low supply voltage: 1.5 – 5.5 V ■ High gain bandwidth product: 1.3 MHz typ ■ Stable when used in gain configuration ■ Low power shutdown mode: 5 nA typ ■ Good accuracy: 800 µV max (A version) ■ Low input bias current: 1 pA typ ■ Micropackages: MiniSO-8, SOT23-8, MiniSO-10, TSSOP14, TSSOP16 ■ EMI hardened operational amplifiers ■ High tolerance to ESD: 4 kV HBM ■ Extended temperature range: -40 to +125° C

Applications

■ Battery-powered applications ■ Portable devices ■ Signal conditioning ■ Active filtering ■ Medical instrumentation

Description

The TSV6292, TSV6293, TSV6294 and TSV6295 dual and quad operational amplifiers offer a high bandwidth of 1.3 MHz while consuming only 29 µA. They must be used in a gain configuration (equal or above +4 or -3). The TSV629x series features low voltage, low power operation and rail-to-rail input and output. The devices also offer an ultra-low input bias current and low input offset voltage. The TSV6293 (dual) and TSV6295 (quad) have two shutdown pins for reduced power consumption. These features make the TSV629x family ideal for sensor interfaces, battery supplied and portable applications, as well as active filtering. Table 1. Device summary

1 Package pin connections

Figure 1. Pin connections for each package (top view)

2 Absolute maximum ratings and operating conditions

Table 2. Absolute maximum ratings (AMR)

  1. All voltage values, except differential voltages are with respect to network ground terminal.
  2. Differential voltages are the non-inverting input termi nal with respect to the inverting input terminal.
  3. V CC-Vin must not exceed 6 V, Vin must not exceed 6V.
  4. Input current must be limited by a resistor in series with the inputs.
  5. Short-circuits can c ause excessive heating and destructive dissipation.
  6. Human body model: 100 pF discharged through a 1.5 k Ω resistor between two pins of the device, done for

all couples of pin combinations with other pins floating.

  1. Machine model: a 200 pF capacitor is charged to the specified voltage, then discharged directly between

combinations with other pins floating.

  1. Charged device model: all pins plus package ar e charged together to the specified voltage and then

discharged directly to ground. Table 3. Operating conditions

3 Electrical characteristics

Table 4. Electrical characteristics at V CC+ = +1.8 V with VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C,

Table 5. Shutdown characteristics V CC = 1.8 V (TSV6293, TSV6295)

Table 6. V CC+ = +3.3 V, VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C, RL connected to VCC/2

Table 7. V CC+ = +5 V, VCC- = 0 V, Vicm = VCC/2, Tamb = 25° C, RL connected to VCC/2

Table 8. Shutdown characteristics at V CC = 5 V (TSV6293, TSV6295)

4 Application information

4.1 Operating voltages

range and several characterization curves show the TSV629x characteristics at 1.5 V.

4.2 Rail-to-rail input

The TSV629x are built with two complementary PMOS and NMOS input differential pairs. The devices are guaranteed without phase reversal.

4.3 Rail-to-rail output

Figure 19. Input offset voltage vs input Figure 20. Input offset voltage vs input

4.4 Optimization of DC and AC parameters

vd benefit from this narrow dispersion.

4.5 Shutdown function (TSV6293, TSV6295)

±200 mV (Figure 21 and Figure 22 show the test configurations). Figure 21. Test configuration for turn-on time Figure 22. Test configuration for turn-off time Figure 23. Turn-on time, V CC =5V , Figure 24. Turn-off time, V CC =5V ,

4.6 Driving resistive and capacitive loads

  • IGainI ≥ 3 in an inverting configuration (CL = 20 pF , RL = 100 kΩ) or IgainI ≥ 10 (CL = 100 pF , RL = 100 kΩ)
  • Gain ≥ +4 in a non-inverting configuration (CL = 20 pF , RL = 100kΩ) or gain ≥ +11 (CL = 100 pF , RL= 100 kΩ) As these operational amplifiers are not unity gain stable, the TSV62x (29 µA, 420 kHz) or TSV63x (60 µA, 880 kHz) – which are unity gain stable – might be a solution for your application.

4.7 PCB layouts

4.8 Macromodel

right operational amplifier, but it does not replace on-board measurements. Table 9. Related products

5 Package information

In order 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.

5.1 SOT23-8 package information

Figure 25. SOT23-8 package mechanical drawing Table 10. SOT23-8 package mechanical data

5.2 SO-8 package information

Figure 26. SO-8 package mechanical drawing Table 11. SO-8 package mechanical data

5.3 MiniSO-8 package information

Figure 27. MiniSO-8 package mechanical drawing Table 12. MiniSO-8 package mechanical data

5.4 MiniSO-10 package information

Figure 28. MiniSO-10 package mechanical drawing Table 13. MiniSO-10 package mechanical data

5.5 TSSOP14 package information

Figure 29. TSSOP14 package mechanical drawing Table 14. TSSOP14 package mechanical data

5.6 TSSOP16 package information

Figure 30. TSSOP16 package mechanical drawing Table 15. TSSOP16 package mechanical data

6 Ordering information

Table 16. Order codes

7 Revision history

Table 17. Document revision history 14-Jan-2010 1 Initial release.