TSH110_07 STMICROELECTRONICS | Alldatasheet

Document overview

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Technical content

Features

  • Low noise: 3nV/√Hz
  • Low supply current: 3.2mA
  • 47mA output current
  • Bandwidth: 100MHz
  • 5V to 12V supply voltage
  • Slew rate: 450V/μs
  • Specified for 100Ω load
  • Very low distortion
  • Tiny SOT23-5, TSSOP and SO packages

Applications

  • High-end video drivers
  • Receiver for xDSL
  • A/D converter driver
  • High-end audio applications

Description

The single TSH110 and TSH111, the dual TSH112, the triple TSH113 and the quad TSH114 are current feedback operational amplifiers featuring a very high slew rate of 450V/µs and a large bandwidth of 100MHz, with only a 3.2mA quiescent supply current. The TSH111 and TSH113 feature a Standby function for each operator. This function is a power-down mode with a high output impedance. These devices operate from ±2.5V to ±6V dual supply voltage or from 5V to 12V single supply voltage. They are able to drive a 100Ω load with a swing of 9V minimum (for a 12V power supply). The harmonic and intermodulation distortions of these devices are very low, making this circuit a good choice for applications requiring wide bandwidth with multiple carriers. For board space and weight saving, the TSH110 comes in miniature SOT23-5 package. The TSH111 comes in SO-8 and TSSOP8 packages, the TSH112 comes in SO-8 and TSSOP8 packages, the TSH113 and TSH114 come in SO-14 and TSSOP14 packages. TSH110: SOT23-5 VCC - VCC + + - Non Inverting Input Inverting Input VCC - VCC +1 6Non Inverting Input1 Inverting Input1 Output2 Output1 Non Inverting Input2 Inverting Input2+ TSH112: SO-8/TSSOP8 VCC + VCC - 114 Non Inverting Input2 Inverting Input2 Output4 Output2 Non Inverting Input4 Inverting Input4 7 8 Output3 Non Inverting Input3 Inverting Input3 Output1 Non Inverting Input1 Inverting Input1 TSH114: SO-14/TSSOP14 VCC - VCC + NC NC STANDBY Non Inverting Input Inverting Input Output TSH111: SO-8/TSSOP8 VCC + VCC - 114 Non Inverting Input1 Inverting Input1 Output3 Output1 Non Inverting Input3 Inverting Input3 7 8 Output2 Non Inverting Input2 Inverting Input2 STANDBY1 STANDBY2 STANDBY3 TSH113: SO-14/TSSOP14 Output TSH110: SOT23-5 VCC - VCC + + - Non Inverting Input Inverting Input VCC - VCC +1 6Non Inverting Input1 Inverting Input1 Output2 Output1 Non Inverting Input2 Inverting Input2+ TSH112: SO-8/TSSOP8 VCC - VCC +1 6Non Inverting Input1 Inverting Input1 Output2 Output1 Non Inverting Input2 Inverting Input2+ TSH112: SO-8/TSSOP8 VCC + VCC - 114 Non Inverting Input2 Inverting Input2 Output4 Output2 Non Inverting Input4 Inverting Input4 7 8 Output3 Non Inverting Input3 Inverting Input3 Output1 Non Inverting Input1 Inverting Input1 TSH114: SO-14/TSSOP14 VCC + VCC - 114 Non Inverting Input2 Inverting Input2 Output4 Output2 Non Inverting Input4 Inverting Input4 7 8 Output3 Non Inverting Input3 Inverting Input3 Output1 Non Inverting Input1 Inverting Input1 TSH114: SO-14/TSSOP14 VCC - VCC + NC NC STANDBY Non Inverting Input Inverting Input Output TSH111: SO-8/TSSOP8 VCC - VCC + NC NC STANDBY Non Inverting Input Inverting Input Output TSH111: SO-8/TSSOP8 VCC + VCC - 114 Non Inverting Input1 Inverting Input1 Output3 Output1 Non Inverting Input3 Inverting Input3 7 8 Output2 Non Inverting Input2 Inverting Input2 STANDBY1 STANDBY2 STANDBY3 TSH113: SO-14/TSSOP14 VCC + VCC - 114 Non Inverting Input1 Inverting Input1 Output3 Output1 Non Inverting Input3 Inverting Input3 7 8 Output2 Non Inverting Input2 Inverting Input2 STANDBY1 STANDBY2 STANDBY3 TSH113: SO-14/TSSOP14 Output

1 Absolute maximum ratings and operating conditions

Table 1. Absolute maximum ratings (AMR

  1. All voltage values, except differential voltage, are with respect to network ground terminal.
  2. Differential voltages are the non-inverting input te rminal with respect to the inverting terminal.
  3. The magnitude of input and output voltages must never exceed V CC +0.3V
  4. Human body model: A 100pF capacitor is charged to the specified voltage, then discharged through a

while the other pins are floating.

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

connected pin combinations while the other pins are floating.

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

discharged directly to the ground through only one pin. This is done for all pins.

  1. Short-circuits can cause ex cessive heating and can result in destructive dissipation.

Table 2. Operating conditions

2 Electrical characteristics

Table 3. Dual supply voltage, V CC= ±2.5V, Rfb

  1. R fb is the feedback resistance between the output and the inverting input of the amplifier.

Table 4. Dual supply voltage, V CC=±6V, Rfb

  1. R fb is the feedback resistance between the output and the inverting input of the amplifier.

3 Standby mode

Table 5. T amb = 25°C (unless otherwise specified), VCC=±6V Table 6. TSH111 standby control pin status Table 7. TSH113 standby control pin status

4 Package information

In order to meet environmental requirements, STMicroelectronics offers these devices in ECOPACK® packages. These packages have a lead-free second level interconnect. The category of second level interconnect is marked on the package and on the inner box label, in compliance with JEDEC Standard JESD97. The maximum ratings related to soldering conditions are also marked on the inner box label. ECOPACK is an STMicroelectronics trademark. ECOPACK specifications are available at: www.st.com

4.1 SO-8 package mechanical data

Figure 1. SO-8 package mechanical data

4.2 TSSOP8 package mechanical data

Figure 2. TSSOP8 package mechanical data

4.3 SO-14 package mechanical data

Figure 3. SO-14 package mechanical data

4.4 TSSOP14 package mechanical data

Figure 4. TSSOP14 package mechanical data

4.5 SOT23-5 package mechanical data

Figure 5. SOT23-5 package (Inches)

5 Ordering information

6 Revision history

Table 8. Order codes

  1. Qualification and characteri zation according to AEC Q100 and Q003 or equivalent, advanced screening according to AEC

Q001 & Q 002 or equivalent are on-going. Table 9. Document revision history 4-Oct-2001 1 Initial release. 22-Oct-2007 2 Added TSH110ILT/TSH110IYLT order codes to Table 8: Order codes.