No. | parte # | Fabricante | Descripción | Hoja de Datos |
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Philips |
Programmable analog compandor NOTE: 1. D package released in large SO (SOL) package only. • Independent control of attack and recovery time • Improved low frequency gain control ripple • Complementary gain compression and expansion with external op amp SR00694 Figure 1. Pin C |
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Philips |
Transimpedance amplifier • Extremely low noise: 2.5pA/√Hz • Single 5V supply • Large bandwidth: 140MHz • Differential outputs • Low input/output impedances • 14kΩ differential transresistance • ESD hardened APPLICATIONS • Fiber-optic receivers, analog and digital • Current-t |
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Philips |
Postamplifier with link status indicator an auto-zeroed first stage with noise shaping, a symmetrical limiting second stage, and a matched rise/fall time TTL output buffer. The system is user-configurable to provide adjustable input threshold and hysteresis. The threshold capability allows |
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Philips |
System reset for lithium battery backup • Supply switching at 4.2 VDC threshold (falling supply) • RESET output • Both CS and CS outputs available for SRAM control • During battery back-up operation: – Low supply current (0.3 µA typical) – Low input/output voltage drop (0.3 V typical at 1 |
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Philips |
Low Dropout Linear Regulator • Very low dropout voltage: Vo3: 0.30 V typ. APPLICATIONS Vo1: 0.25 V typ.; Vo2: 0.28 V typ.; • Low noise: 60 µVrms typ. (f = 10 Hz to 10 kHz; IO = 30 mA) • High precision output voltage: ±3% • Output current capacity: • Low consumption current: I |
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Philips |
Low power compandor • Operating voltage range: 1.8V to 7V • Low power consumption (1.4mA @ 3.6V) Figure 1. Pin Configuration APPLICATIONS • Over 80dB of dynamic range • Wide input/output swing capability (rail-to-rail) • Low external component count • ESD hardened |
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Philips |
Differential air core meter driver DATAOUT DATAIN VCC OE • 10-Bit resolution (0.35 degrees) • Exceptional accuracy (0.25 degrees, typical) • High-torque capability • Active differential drivers eliminate back-EMF issues • No RFI/EMI generation issues • Simple serial interface • Simp |
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Philips |
Transimpedance amplifier 180MHz NC IIN NC VCC1 VCC2 • Extremely low noise: 1.8pA ń ǸHz • Single 5V supply • Large bandwidth: 180MHz • Differential outputs • Low input/output impedances • High power supply rejection ratio • 28kΩ differential transresistance APPLICATIONS TOP VIEW |
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Philips |
Internally-compensated dual low noise operational amplifier • Small-signal bandwidth: 10MHz • Output drive capability: 600Ω, 10VRMS • Input noise voltage: 5nVń ǸHz (typical) • DC voltage gain: 50000 • AC voltage gain: 2200 at 10kHz • Power bandwidth: 140kHz • Slew rate: 9V/µs • Large supply voltage range: ±3 |
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Philips |
Low Dropout Linear Regulator include power and thermal shutdown, output current limitation, power OK status, thermal warning, and external logic-controlled on-off via the PWRON pin. FEATURES • CapFREE: No output capacitor needed, stable for all capacitive loads, regardless of |
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Philips |
Differential air core meter driver DATAOUT DATAIN VCC OE • 10-Bit resolution (0.35 degrees) • Exceptional accuracy (0.25 degrees, typical) • High-torque capability • Active differential drivers eliminate back-EMF issues • No RFI/EMI generation issues • Simple serial interface • Simp |
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Philips |
Wide-band high-frequency amplifier • 600MHz bandwidth • 20dB insertion gain • 4.8dB (6dB) noise figure ZO=75Ω (ZO=50Ω) • No external components required • Input and output impedances matched to 50/75Ω systems • 2000V ESD protection APPLICATIONS • 75Ω cable TV decoder boxes • Antenna |
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Philips |
Wideband variable gain amplifier • 700MHz bandwidth • High impedance differential input • 50Ω differential output • Single 5V power supply • 0 - 1V gain control pin • >60dB gain control range at 200MHz • 26dB maximum gain differential • Exceptional VCONTROL / VGAIN linearity • 7dB |
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Philips |
Matched dual high-performance low-voltage operational amplifier rails • Wide common-mode input voltage range: 250 mV beyond both • Output swing within 50 mV of both rails • Functionality to 1.8 V typical • Low current consumption: 700 µA per amplifier • ±15 mA output current capability • Unity gain bandwidth: 2. |
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Philips |
Dual high-performance operational amplifier D Package1 + INPUT 1 V+INPUT 2 -INPUT 2 1 2 3 4 2 1 8 7 6 5 -INPUT 1 OUTPUT 1 V+ OUTPUT 2 TOP VIEW NOTE: 1. The D package pinout is not functionally identical to the N pinout. • Low input bias < ±20nA • Low input offset current < ±20nA • Low input |
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Philips |
LVDT signal conditioner GND 7 N.C. 8 N.C. 9 • Low distortion • Single supply 5V to 20V, or dual supply ±2.5V to ±10V • Oscillator frequency 1kHz to 20kHz • Capable of ratiometric operation • Low power consumption (182mV typ) APPLICATIONS D1 Package AMP OUT 1 +IN 2 –IN 3 |
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Philips |
Internally-compensated dual low noise operational amplifier • Small-signal bandwidth: 10MHz • Output drive capability: 600Ω, 10VRMS • Input noise voltage: 5nVń ǸHz (typical) • DC voltage gain: 50000 • AC voltage gain: 2200 at 10kHz • Power bandwidth: 140kHz • Slew rate: 9V/µs • Large supply voltage range: ±3 |
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Philips |
Dual and single low noise op amp NON –INV INPUT A 2 BALANCE A 3 V – 4 BALANCE B 5 NON –INV B 6 INV B 7 • Small-signal bandwidth: 10MHz • Output drive capability: 600Ω, 10VRMS at VS=±18V • Input noise voltage: 4nVń ǸHz • DC voltage gain: 100000 • AC voltage gain: 6000 at 10kHz • Power |
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Philips |
CMOS system reset • 12 VDC maximum operating voltage • CMOS N-channel Open Drain output • Offered in reset thresholds of • Available in SOT23-5 surface mount package SIMPLIFIED SYSTEM DIAGRAM VDD 2 VDD APPLICATIONS 2.0, 2.7, 2.8, 2.9, 3.0, 3.1, 4.2, 4.3, 4.4, 4.5, |
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Philips |
CMOS system reset • 12 VDC maximum operating voltage • CMOS N-channel Open Drain output • Offered in reset thresholds of • Available in SOT23-5 surface mount package SIMPLIFIED SYSTEM DIAGRAM VDD 2 VDD APPLICATIONS 2.0, 2.7, 2.8, 2.9, 3.0, 3.1, 4.2, 4.3, 4.4, 4.5, |
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