TSH94 STMicroelectronics, TSH94 Datasheet

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TSH94

Manufacturer Part Number
TSH94
Description
Video op-amp with standby
Manufacturer
STMicroelectronics
Datasheet

Specifications of TSH94

Two Separate Standby Functions
low consumption and high impedance outputs
Low Supply Current
4.5mA
High Speed
150MHz - 110V/µs
Low Offset Voltage
3mV
Differential Gain
0.03%
Differential Phase
0.07°
Gain Flatness
6MHz, 0.1dB max @ 10dB gain

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Features
Applications
Description
The TSH94 is a quad low-power high-frequency
operation amplifier, designed for high-quality
video signal processing. The device offers an
excellent speed consumption ratio with 4.5 mA
per amplifier for a 150 MHz bandwidth.
High slew rate and low noise also make it suitable
for high-quality audio applications.
The TSH94 offers two separate complementary
STANDBY functions: STANDBY 1 acting on the
n° 2 operator and STANDBY 2 acting on the n° 3
operator.
December 2009
Two separate standby functions: low
consumption and high impedance outputs
Low supply current: 4.5 mA
High speed: 150 MHz - 110 V/µs
Unity gain stability
Low offset voltage: 3 mV
Low noise 4.2 nV/√Hz
Low cost
Specified for 600 Ω and 150 Ω loads
High video performance:
– Differential gain: 0.03%
– Differential phase: 0.07°
– Gain flatness: 6 MHz, 0.1 dB max at 10 dB
High audio performance
Set-top-boxes
TV
DVD players
gain
High speed low power quad operational amplifier
Doc ID 4023 Rev 5
These functions reduce the consumption of the
corresponding operator and put the output in a
high impedance state.
(Plastic micropackage)
Pin connections
with standby position
(top view)
SO-16
D
TSH94
www.st.com
1/21
21

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TSH94 Summary of contents

Page 1

... TV ■ DVD players Description The TSH94 is a quad low-power high-frequency operation amplifier, designed for high-quality video signal processing. The device offers an excellent speed consumption ratio with 4.5 mA per amplifier for a 150 MHz bandwidth. High slew rate and low noise also make it suitable for high-quality audio applications ...

Page 2

... Schematic diagram 1 Schematic diagram Figure 1. Schematic diagram 2/21 V tdb t V tdb Doc ID 4023 Rev 5 TSH94 tdb tp t tdb V ...

Page 3

... TSH94 2 Absolute maximum ratings and operating conditions Table 1. Absolute maximum ratings Symbol V Supply voltage CC V Differential input voltage id V Input voltage i T Operating free-air temperature range oper T Storage temperature range stg CDM: charged device model ESD HBM: human body model MM: machine model 1 ...

Page 4

... V id Source Sink Source Sink = 15 pF 7.5 MHz L = 600 Ω + Ω kHz VCL = 600 Ω = ±2 Doc ID 4023 Rev 5 TSH94 + , T = 25° amb Min. Typ. Max. Unit 4 ...

Page 5

... TSH94 + - Table (unless otherwise specified) (continued) Symbol ΔG Differential gain f = 3.58 MHz, A Δϕ Differential phase f = 3.58 MHz, A Standby mode + - Table Symbol V Pin 8/9 threshold voltage for STANDBY mode STBY Total consumption Standby 1 & CC-STBY Standby 1 & ...

Page 6

... Electrical characteristics Figure 2. Standby position To put the device in standby, apply a logic level on the standby MOS input. Because ground is a virtual level for the device, the threshold voltage Table 4). 6/ Doc ID 4023 Rev 5 TSH94 + + (V - 1.6 V typ, see CC ...

Page 7

... TSH94 Figure 3. Closed-loop frequency response Figure 5. Open-loop frequency response and phase shift Figure 7. Audio bandwidth frequency response and phase shift (TSH94 vs standard 15 MHz audio op-amp) Figure 4. Gain flatness and phase shift versus frequency Figure 6. Static open-loop voltage gain Figure 8. Large signal follower response ...

Page 8

... Electrical characteristics Figure 9. Small signal follower response Figure 11. Crosstalk isolation versus frequency (SO-16 package) Figure 13. Standby switching 8/21 Figure 10. Crosstalk isolation versus frequency (SO-16 package) Figure 12. Input/output isolation in standby mode (SO-16 package) Figure 14. Signal multiplexing (see Doc ID 4023 Rev 5 TSH94 Figure 18) ...

Page 9

... TSH94 Figure 15. Common input impedance versus frequency Figure 17. Input offset voltage drift versus temperature Figure 16. Differential input impedance versus frequency Doc ID 4023 Rev 5 Electrical characteristics 9/21 ...

Page 10

... Application information 4 Application information Figure 18. Signal multiplexing Figure 19. Sample and hold 10/21 Doc ID 4023 Rev 5 TSH94 ...

Page 11

... TSH94 Figure 20. Video line transceiver with remote control 4.1 Printed circuit layout recommendations As for any high frequency device, a few rules must be observed when designing the PCB to get the best performance from this high-speed op-amp. Some recommendations are listed below, from the most important to the least important. ...

Page 12

... Macromodel information 5 Macromodel information 5.1 TSH94I without standby The macromodel information provided in this section applies to TSH94I (model without standby). ** Standard Linear Ics Macromodels, 1996. ** CONNECTIONS : * 1 INVERTING INPUT * 2 NON-INVERTING INPUT * 3 OUTPUT * 4 POSITIVE POWER SUPPLY * 5 NEGATIVE POWER SUPPLY .SUBCKT TSH94 (analog) ******************************************************** ...

Page 13

... TSH94 VINM 5 27 5.000000E+01 *********************** RZP1 5 80 1E+06 RZP2 4 80 1E+06 GZP 2.5E-05 RZP2H 83 4 10000 RZP1H 83 82 80000 RZP2B 84 5 10000 RZP1B 82 84 80000 LZPH 4 83 3.535e-02 LZPB 84 5 3.535e-02 EOUT VOUT ROUT COUT 3 5 30.000000E-12 DOP 19 25 MDTH 400E-12 VOP ...

Page 14

... Macromodel information 5.2 TSH94I with standby The macromodel information provided in this section applies to TSH94I (model with standby INVERTING INPUT * 2 NON-INVERTING INPUT * 3 OUTPUT * 4 POSITIVE POWER SUPPLY * 5 NEGATIVE POWER SUPPLY * 6 STANDBY .SUBCKT TSH94 (analog) ******************************************************** **************** switch ******************* .SUBCKT SWITCH20 10 IN OUT COM .MODEL DIDEAL D N=0.1 IS=1E-08 ...

Page 15

... TSH94 DINN 17 13 MDTH 400E-12 VIN 17 5 2.000000e+00 DINR 15 18 MDTH 400E-12 VIP 4 18 1.000000E+00 FCP 4 5 VOFP 3.500000E+00 FCN 5 4 VOFN 3.500000E+00 ISTB0 4 5 130UA FIBP 2 5 VOFP 1.000000E-02 FIBN 5 1 VOFN 1.000000E-02 * AMPLIFYING STAGE FIP 5 19 VOFP 2.530000E+02 FIN 5 19 VOFN 2.530000E+02 RG1 19 120 3 ...

Page 16

... Macromodel information VSTB 108 109 0 ISTB 109 0 1U RSTB 109 110 1 DSTB2 0 110 MDTH 400E-12 XINV COM INV .ENDS 16/21 Doc ID 4023 Rev 5 TSH94 ...

Page 17

... TSH94 6 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 trademark. Doc ID 4023 Rev 5 Package information ® ...

Page 18

... Does not include interlead flash or protrusions. Interlead flash or protrusions not to exceed 0.25 mm per side. 18/21 Dimensions Millimeters Min. Typ. Max. 1.75 0.10 0.25 1.25 0.31 0.51 0.17 0.25 9.80 9.90 10.00 5.80 6.00 6.20 3.80 3.90 4.00 1.27 0.25 0.50 0.40 1. 0.10 Doc ID 4023 Rev 5 TSH94 Inches Min. Typ. Max. 0.069 0.004 0.010 0.049 0.012 0.020 0.007 0.010 0.386 0.390 0.394 0.228 0.236 0.244 0.150 0.154 0.157 0.050 0.010 0.020 0.016 0.050 0.004 ...

Page 19

... TSH94 7 Ordering information Table 8. Order codes Part number TSH94ID TSH94IDT Temperature Package range -40° +125° C SO-16 Doc ID 4023 Rev 5 Ordering information Packing Marking Tube or H94I Tape & reel 19/21 ...

Page 20

... Format update. Corrected unit in feature list on cover page from 110V/ms to 110V/µs. 3 Added ESD parameters in Updated footnote in Table 8: Order 4 Removed TSH94IYD-IYDT 5 Changed marking from TSH94I to H94I in Doc ID 4023 Rev 5 Changes updated and moved to Section 7: Ordering Table 1: Absolute maximum codes. fromTable 8: Order codes. ...

Page 21

... TSH94 Information in this document is provided solely in connection with ST products. STMicroelectronics NV and its subsidiaries (“ST”) reserve the right to make changes, corrections, modifications or improvements, to this document, and the products and services described herein at any time, without notice. All ST products are sold pursuant to ST’s terms and conditions of sale. ...

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