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ADC14L040CIVY/NOPB Texas Instruments 14-Bit, 40-MSPS Analog-to-Digital Converter (ADC) 32-LQFP -40 to 85 visit Texas Instruments Buy
ADC14L040CIVY Texas Instruments 1-CH 14-BIT PROPRIETARY METHOD ADC, PARALLEL ACCESS, PQFP32, LQFP-32 visit Texas Instruments
ADC14L040EVAL Texas Instruments 14-Bit, 40 MSPS, 235 mW AD Converter visit Texas Instruments

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ADC14L040 Datasheet

Part Manufacturer Description PDF Type
ADC14L040CIVY National Semiconductor 14-Bit, 40 MSPS, 235 mW A/D Converter Original
ADC14L040CIVY/NOPB National Semiconductor ADC14L040 14-Bit, 40 MSPS, 235 mW A/D Converter; Package: LQFP; No of Pins: 32; Qty per Container: 250/Tray Original
ADC14L040CIVY/NOPB Texas Instruments Data Acquisition - Analog to Digital Converters (ADC), Integrated Circuits (ICs), IC ADC 14BIT 40MSPS 32-LQFP Original
ADC14L040CIVY/NOPB Texas Instruments ADC14L040 - 14-Bit, 40 MSPS, 235 mW A/D Converter 32-LQFP -40 to 85 Original
ADC14L040EVAL National Semiconductor 14-Bit, 40 MSPS, 235 mW A/D Converter Original

ADC14L040

Catalog Datasheet MFG & Type PDF Document Tags

ADC14L040

Abstract: AN-905 ADC14L040 ds201465 ADC14L040 40MSPS 14 CMOS A/D ADC14L040 / 150MHz 3.3V ADC14L040 11.9 40MSPS 235mW 15mW 20050826 Robert Corkery ADC14L040 14 40MSPS235mW A/D 14 40MSPS235mW A/D ADC14L040 3.3V / 2.4V 3.6V VREF 2 2 ADC14L040
National Semiconductor
Original
LMH6702 LMH6628 AN-905 LM4051CIM3-ADJ LMH6622 LMH6655 150MH 40MSPS235 DS201465-02-JP 74ACQ541
Abstract: driver supply pin for the ADC14L040's output drivers. This pin should be connected to a voltage source of , to 1.2V. Lower reference voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. , relationship of the ADC14L040. Table 1. Input to Output Relationship ­ Differential Input VIN+ VCM - VREF/2 , amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC input from the amplifier output , ±0.5V at each of the differential input pins of the ADC14L040. Table 3. Resistor Values for Circuit of Texas Instruments
Original
SNAS311A ISO/TS16949
Abstract: +85°C) ADC14L040CIVY ADC14L040EVAL Package 32 Pin LQFP Evaluation Board Block Diagram 20146502 , supply. Positive driver supply pin for the ADC14L040's output drivers. This pin should be connected to a , decrease the signal-to-noise ratio (SNR) of the ADC14L040. Increasing the reference voltage (and the input , full-range output. Table 1 and Table 2 indicate the input to output relationship of the ADC14L040. TABLE 1 , LMH6655 are good amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC input from National Semiconductor
Original
Abstract: for the ADC14L040's output drivers. This pin should be connected to a voltage source of +2.4V to VD , voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. Increasing the reference voltage , full-range output. Table 1 and Table 2 indicate the input to output relationship of the ADC14L040. Table 1 , LMH6655 are good amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC input from , signals in a range of 1.0V ±0.5V at each of the differential input pins of the ADC14L040. Table 3 Texas Instruments
Original
SNAS311B
Abstract: ADC14L040's output drivers. This pin should be connected to a voltage source of +2.4V to VD and be bypassed to , voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. Increasing the reference voltage , full-range output. Table 1 and Table 2 indicate the input to output relationship of the ADC14L040. Table 1 , taken. The LMH6702 LMH6628, LMH6622 and the LMH6655 are good amplifiers for driving the ADC14L040. To , differential input pins of the ADC14L040. Table 3. Resistor Values for Circuit of Figure 37 SIGNAL RANGE 0 - Texas Instruments
Original

74ACQ541

Abstract: ADC14L040 ADC14L040 ds201465 ADC14L040 40MSPS 14 CMOS A/D ADC14L040 / 150MHz 3.3V ADC14L040 11.9 40MSPS 235mW 15mW 20050826 Robert Corkery ADC14L040 14 40MSPS235mW A/D 14 40MSPS235mW A/D ADC14L040 3.3V / 2.4V 3.6V VREF 2 2 ADC14L040
National Semiconductor
Original
VBE32A CSP-9-111C2 CSP-9-111S2
Abstract: for the ADC14L040's output drivers. This pin should be connected to a voltage source of +2.4V to VD , voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. Increasing the reference voltage , full-range output. Table 1 and Table 2 indicate the input to output relationship of the ADC14L040. Table 1 , LMH6655 are good amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC input from , signals in a range of 1.0V ±0.5V at each of the differential input pins of the ADC14L040. Table 3 Texas Instruments
Original

ADC14L040

Abstract: ADC14L040CIVY ADC14L040 Ordering Information Industrial (-40°C TA +85°C) Package ADC14L040CIVY 32 Pin LQFP ADC14L040EVAL Evaluation Board Block Diagram 20146502 www.national.com 2 ADC14L040 Pin , www.national.com The ground return for the digital supply. Positive driver supply pin for the ADC14L040's , 0.8V to 1.2V. Lower reference voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. , the LMH6655 are good amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC
National Semiconductor
Original

ADC14L040CIVY

Abstract: ADC14L040EVAL ADC14L040 Ordering Information Industrial (-40°C TA +85°C) Package ADC14L040CIVY 32 Pin LQFP ADC14L040EVAL Evaluation Board Block Diagram 20146502 www.national.com 2 ADC14L040 Pin , www.national.com The ground return for the digital supply. Positive driver supply pin for the ADC14L040's , 0.8V to 1.2V. Lower reference voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. , the LMH6655 are good amplifiers for driving the ADC14L040. To help isolate the pulses at the ADC
National Semiconductor
Original
transistor loa sot

BAT54 wv4

Abstract: C106D2 , 14-Bit, 20 Msps, 3.3V, 150 mW A/D Converter ADC14L040, 14-Bit, 40 Msps, 3.3V, 235 mW A/D Converter , . 5 5.0 Installing the ADC14L040 Evaluation Board , evaluation and design-in of National Semiconductor's ADC14L020 or ADC14L040 14-bit Analog-to-Digital , manual to the ADC14L040 is meant to also include the ADC14L020 unless otherwise specified. The , board to evaluate the ADC14L040 performance. In the Computer mode evaluation is simplified by
National Semiconductor
Original
BAT54 wv4 C106D2 BAT54FSCT DB3 C105 RP1-220 P11304CT
Abstract: ) Package ADC14L040CIVY 32 Pin LQFP ADC14L040EVAL Evaluation Board Block Diagram 20146502 , digital supply. Positive driver supply pin for the ADC14L040â'™s output drivers. This pin should be , . Lower reference voltages will decrease the signal-to-noise ratio (SNR) of the ADC14L040. Increasing , LMH6655 are good amplifiers for driving the ADC14L040. 1.3.1 Single-Ended Operation Performance with a , indicate the input to output relationship of the ADC14L040. VIN+ VINâ' Binary Output 2â'™s National Semiconductor
Original

ADC08L60

Abstract: ad775 ADC12L080 ADC14L040 8 8 8 8 8 8 8 8 . 8 . 8 8 . 8 8 . 10 10 10 . 10 . 10 10 10 12 , - 40 , ADC14L040 ( 20 40 ). 12- , ADC14L040 0,2 0,8
Promelec
Original
ADC1175 ADC08L60 ad775 ADC08060 ADC08100 ADC08200 ADC08D500 SNR/10 10THD/10 ADC10040/65/80 ADC12L08 ADC12010/20/40

S001

Abstract: VCO190 3.3 150 92 90 12.0 74 LQFP-32 ADC14L040 14 40 3.3 236 90 87 , 155 3.3 974 85.3 -80.3 11.5 71.4 ADC14L040 14 40 3.3 236 90 87
National Semiconductor
Original
VCO190 S001 LMX2312 ADC081000 ADC081500 ADC082500 ADC083000

ADC08D1000

Abstract: TQFP-64 -32 ADC14L040 14 40 3.3 236 90 87 11.9 73 LQFP , ADC14L040 (MSPS) (V) (mW) (SFDR) (dB) (THD) (dB) (ENOB) () (SNR) (dB
National Semiconductor
Original
TSSOP-28 ADC10065 ADC10080 ADC10DL065 TQFP-64 ADC12DL040 ADC08D1000 18w 94 sot23 LMX251

12GSPS

Abstract: VARI-L VCO PLL ADC14L040 ADC 10 10 10 12 12 12 14 14 (MSPS) 65 80 65 40 65 65 20 40 (V , ADC12DL065 ADC12QS065 ADC14L040 8 8 10 12 12 12 12 14 (MSPS) 1000 1500 65 80 40 65
National Semiconductor
Original
12GSPS VARI-L VCO PLL SIGNAL PATH designer varil vco VARI-L VCO LMX231x LLP-60 LMH6550 LMH6551 LMH6703 LMH6502 LMH6503

VARI-L VCO PLL

Abstract: VARIL PLL 90 12.0 74 LQFP-32 ADC14L040 14- 40 3.3 236 90 87 11.9 73 LQFP , 71.4 LLP-48 ADC14L040 14- 40 3.3 236 90 87 11.9 73 LQFP-32 NE W
National Semiconductor
Original
ADC12DL080 VARIL PLL 8 bit ttl ADC PLL 2400 MHZ VARI-L VCO PLL 5 ghz GHz ADC tQFP64 lvds receiver CLK180

LM6211

Abstract: CLC5903 Product Highlights www.national.com/see/wirelessguide 4 ADC14L040 ADC14155 ADC081000 ADC081500
National Semiconductor
Original
CLC5903 LM6211 BTS 400 S007 BTS internal SCAN25100 ADC08D1500 ADC14C105 LMP7701/2/4 LMP7711/12

ADC12DL040

Abstract: ADC12DL065 /pf/DC/ADC14L020.html www.national.com/pf/DC/ADC14L040.html © National Semiconductor Corporation , signals over balanced transmission lines like CAT-5 data cables. The ADC14L020 and the ADC14L040 are , achieves 12.0 effective bits and consumes 150 mW at 20 MSPS. The ADC14L040 achieves 11.9 effective bits
National Semiconductor
Original
ADC12DL066 GSM signal processing block ANALOGE Vol. IV, Issue 3 LMH6550/51 ADC14L020/40

lidar

Abstract: LIDAR adc ADC12DL040 ADC12DL065 ADC12DL080 ADC12QS065 ADC14L020 ADC14L040 8 8 8 8 8 8 10 10 10
National Semiconductor
Original
DS90LV011A DS90LT012A DS90LV027A DS90LV028A DS90LV004 DS90LV804 lidar LIDAR adc LIDAR radar LM 555 National DS92LV1021A DS90CP22

LIDAR radar

Abstract: . LIDAR ADC12DL040 ADC12DL065 ADC12DL080 ADC12QS065 ADC14L020 ADC14L040 (MSPS) 200 1000 1500 500 1000
National Semiconductor
Original
DS92LV1212A HD318 FR-04 10 GSPS ADC avnet vus11 DS90C241/124 ADC08D

MARK PET SOT23-5

Abstract: scanner block diagram ADC14L020 ADC14L040 Resolution 10 bit 10 bit 10-bit dual 12-bit dual 12-bit dual 12-bit quad 14 , ADC08D1000 ADC08D1500 ADC10DL065 ADC12L080 ADC12DL040 ADC12DL065 ADC12QS065 ADC14L040 Resolution 8
National Semiconductor
Original
MARK PET SOT23-5 scanner block diagram LMV7219 varil vco190 Synthesizers PLL for USB LMX2347
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