No. | Partie # | Fabricant | Description | Fiche Technique |
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Texas Instruments |
High-Speed Amplifiers • Ultra-low 1.2nV/√Hz voltage noise • High speed: – 2GHz gain-bandwidth product – 470V/μs slew rate – 30ns settling time (0.1%) • Stable at gains ≥10V/V • Output drive, IO = 200mA (typical) • Very low distortion: – THD = –68dBc (f = 1MHz, RL = 150Ω) |
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Texas Instruments |
Digital-to-Analog Converter a SLEEP mode, which reduces the standby power to approximately 25 mW, thereby optimizing the power consumption for system needs. The THS5651A is manufactured in Texas Instruments advanced high-speed mixed-signal CMOS process. A current-source-array a |
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Texas Instruments |
12-BIT 40 MSPS IF SAMPLING COMMUNICATIONS ANALOG-TO-DIGITAL CONVERTER D 40-MSPS Sample Rate D 12-Bit Resolution D No Missing Codes D On-Chip Sample and Hold D 77-dB Spurious Free Dynamic Range at fIN = 15.5 MHz D 5-V Analog and Digital Supply D 3-V and 5-V CMOS Compatible Digital Output D 10.4 Bit ENOB at fIN = 31 MHz |
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Texas Instruments |
40-MSPS CMOS ANALOG-TO-DIGITAL CONVERTER D Analog Supply 3 V D Digital Supply 3 V D Configurable Input Functions: − Single Ended − Differential D Differential Nonlinearity: ± 0.45 LSB D Signal-to-Noise: 60 dB Typ f(IN) at 4.8 MHz D Spurious Free Dynamic Range: 72 dB D Adjustable Internal Vo |
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Texas Instruments |
Fully-Differential I/O Amplifiers • High performance – Bandwidth: 170 MHz (VCC = ±15 V, G = 1 V/V) – Slew rate: 51 V/µs – Gain bandwidth product: 215 MHz – Distortion: –102 dBc THD at 2 VPP, 250 kHz • Voltage noise – 1/f voltage noise corner: 350 Hz – 1.25 nV/√Hz input-referred noise |
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Texas Instruments |
WIDEBAND FIXED-GAIN AMPLIFIER • Fixed Closed-Loop Gain Amplifier – 10 V/V (20 dB) • Wide Bandwidth: 1.8 GHz • High Slew Rate: 5500 V/µs • Low Total Input Referred Noise: 2.5 nV/√Hz • Low Distortion – HD2: –65 dBc at 70 MHz – HD3: –76 dBc at 70 MHz – IMD3: –85 dBc at 100 MHz – OIP |
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Texas Instruments |
SIMULTANEOUS SAMPLING ANALOG-TO-DIGITAL CONVERTERS D Simultaneous Sampling of 2 Single-Ended Signals or 1 Differential Signal D Signal-to-Noise Ratio: 68 dB at fI = 2 MHz D Differential Nonlinearity Error: ±1 LSB D Integral Nonlinearity Error: ±1.5 LSB D Auto-Scan Mode for 2 Inputs D 3-V or 5-V Digit |
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Texas Instruments |
40-MSPS ANALOG-TO-DIGITAL CONVERTER D Analog Supply 3 V D Digital Supply 3 V D Configurable Input Functions: – Single-Ended – Single-Ended With Analog Clamp – Single-Ended With Programmable Digital Clamp – Differential D Built-In Programmable Gain Amplifier (PGA) D Differential Nonline |
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Texas Instruments |
30-MSPS CMOS ANALOG-TO-DIGITAL CONVERTER differential. The THS1030 provides a wide selection of voltage references to match the user’s design requirements. For more design flexibility, the internal reference can be bypassed to use an external reference to suit the dc accuracy and temperat |
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Texas Instruments |
SIMULTANEOUS SAMPLING ANALOG-TO-DIGITAL CONVERTER D Simultaneous Sampling of 4 Single-Ended Signals or 2 Differential Signals or Combination of Both D Signal-to-Noise and Distortion Ratio: 59 dB at fI = 2 MHz D Differential Nonlinearity Error: ±1 LSB D Integral Nonlinearity Error: ±1 LSB D Auto-Scan |
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Texas Instruments |
70-MHz High-Speed Amplifiers D High Speed: − 70 MHz Bandwidth (G = 1, −3 dB) − 240 V/µs Slew Rate − 60-ns Settling Time (0.1%) D High Output Drive, IO = 100 mA (typ) D Excellent Video Performance: − 0.1 dB Bandwidth of 30 MHz (G = 1) − 0.01% Differential Gain − 0.01° Differentia |
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Texas Instruments |
Differential to Single-Ended DAC Output Amplifier • Input stage: internal gain of 2 V/V – Buffered differential inputs – Single-ended low impedance output – Full-power bandwidth: 350 MHz (2 VPP) • Output stage: gain externally configurable – Full-power bandwidth: 270 MHz (5 VPP) – Slew rate: 3000 V/ |
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Texas Instruments |
CURRENT-FEEDBACK OPERATIONAL AMPLIFIERS • Low Distortion – 66 dBc HD2 at 10 MHz, RL = 100 Ω – 76 dBc HD3 at 10 MHz, RL = 100 Ω • Low Noise – 13 pA/√Hz Noninverting Current Noise – 13 pA/√Hz Inverting Current Noise – 2 nV/√Hz Voltage Noise • High Slew Rate: 5700 V/µs (G = 5, VO = 20 VPP) • |
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Texas Instruments |
3-Channel Low Power SDTV Video Amplifier • 3 SDTV Video Amplifiers for CVBS, S-Video, Y'P'BP'R 480i/576i, or G'B'R' Video Systems • I2C™ Control of All Functions on Each Channel • Integrated Low-Pass Filters – 5th Order, 8-MHz Butterworth • 0.5-dB Attenuation at 5.5 MHz • 48-dB Attenuation |
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Texas Instruments |
100MHz Low-Noise High-Speed Amplifiers • Ultra-low 1.2nV/√ Hz voltage noise • High Speed: – 100MHz bandwidth [G = 2 ( –1), –3dB] – 100V/μs slew rate • Very low distortion – THD = –81dBc (f = 1MHz, RL = 150Ω) – THD = –96dBc (f = 1MHz, RL = 1kΩ) • Low 0.3mV (typical) input offset voltage • 2 |
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Texas Instruments |
Fully-Differential Amplifier •1 Ultra Low Power: – Voltage: 2.5 V to 5.5 V – Current: 250 µA – Power-Down Mode: 0.5 µA (typical) • Fully-Differential Architecture • Bandwidth: 36 MHz • Slew Rate: 200 V/µs • THD: –120 dBc at 1 kHz (1 VRMS, RL= 2 kΩ) • Input Voltage Noise: 10 nV/√ |
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Texas Instruments |
Voltage-Feedback Operational Amplifier •1 Very Low Quiescent Current: 750 μA (at 5 V) • Rail-to-Rail Input and Output: – Common-Mode Input Voltage Extends 400 mV Beyond the Rails – Output Swings Within 150 mV From the Rails • Wide –3-dB Bandwidth at 5 V: – 90 MHz at Gain = +1, 40 MHz at G |
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Texas Instruments |
30-MSPS CMOS ANALOG-TO-DIGITAL CONVERTER . The THS1031 has been designed to give circuit developers more flexibility. The analog input to the THS1031 can be either single-ended or differential. This device has a built-in clamp amplifier whose clamp input level can be selected from an extern |
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Texas Instruments |
Fully-Differential Amplifier •1 Ultra Low Power: – Voltage: 2.5 V to 5.5 V – Current: 250 µA – Power-Down Mode: 0.5 µA (typ) • Fully-Differential Architecture • Bandwidth: 36 MHz • Slew Rate: 200 V/µs • THD: –120 dBc at 1 kHz (1 VRMS, RL= 2 kΩ) • Input Voltage Noise: 10 nV/√Hz ( |
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Texas Instruments |
Fully Differential Amplifier •1 Fully Differential Architecture • Bandwidth: 145 MHz (AV = 1 V/V) • Slew Rate: 490 V/μs • HD2: –133 dBc at 10 kHz (1 VRMS, RL = 1 kΩ) • HD3: –141 dBc at 10 kHz (1 VRMS, RL = 1 kΩ) • Input Voltage Noise: 4.6 nV/√Hz (f = 100 kHz) • THD+N: –112dBc (0 |
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