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SENSOREVAL Texas Instruments Eval Board Software For Hardware Monitors And Digital Temperature Sensors visit Texas Instruments
SENSORSHIELD-EVK-001 ROHM Semiconductor SHIELD BOARD MULTI-SENSOR visit Digikey
SENSORSHLD1-EVK-101 ROHM Semiconductor SHIELD BOARD MULTI-SENSOR visit Digikey
SENSORSTARTERKIT Vishay Semiconductors STARTER KIT FOR SENSORS VCNL4020 visit Digikey
SENSOR-PUCK Silicon Laboratories Inc EVAL BOARD OPTICAL RH TEMP BLE visit Digikey
IR-1900-PHOTO-SENSOR TE's AMP PHOTO SENSOR visit Digikey

ka band sensor

Catalog Datasheet MFG & Type PDF Document Tags
Abstract: . Sensor signal is generated by a magnetic field H = 100 kA/m. For example: rare earth magnet 11.2 x 5.5 x , 120 Sensors, Thermistors, Varistors Sensor Hybrid Modules (co n t.) Sensing Distance , : steel (1.0715). Sensor Hybrid Modules (co nt.) Angle Range (deg) Package Outline Type Sensor modules 1 angle measureme nt or KM110BH/2130 fig. 87 30 0.5 to 4.5; linear 5 -4 0 , ka 2.2 2.7 (note 1) 3.3 (note 1) 4.7 (note 1) 6.8 (note 1) 10 (note 1) 12 15 B25/85value -
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KM110BH/14 KM110BH/31 KM110BH/2190 B25/85
Abstract: VOLTAGE SWITCH PROPORTIONAL BAND TEMPERATURE CONTROLLER SEMICONDUCTOR TECHNICAL DATA Sensor , . It provides the following features: â'¢ Proportional Temperature Control over an Adjustable Band , Synchroâ'" nization (NTC) Temp. Sensor Load UAA1016B R3 RL 180 k Design Notes: 1. Let R4 , = 220 "¦ , Vmains = 220 Vac/50 Hz, (Figures 4 and 5) tp1 tp2 58 160 60 220 120 320 , (power is delivered by bursts 2 to the load) a proportional temperature band control. In fact Motorola
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nt 101 thermostat motorola application notes uaa1016b thermostat NT 101 three phase ntc triac heater control motorola UAA1016B UAA1016B/D
Abstract: sensor head" or in reverse the head is mobile and the band is rigid. The following variants of magnetic , ZMX40M DUAL MAGNETIC FIELD SENSOR DESCRIPTION This device is a special tangential field difference sensor with two AMR (Anisotropic Magneto-Resistive) bridges for field movement measurements or field comparative measurements. The ZMX40M contains two extremely sensitive magnetic sensor chips , magnet must be mid-way between the two chips. Therefore this double sensor can be used to measure Zetex Semiconductors
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din 17410 magnetic transistor wheatstone bridge with temp. sensor magnetic head 2mm DIN17410 8309 D-81673
Abstract: features: â'¢ Proportional Temperature Control Over an Adjustable Band â'¢ Adjustable Burst Frequency (to , Components Count UAA1016B ZERO VOLTAGE SWITCH PROPORTIONAL BAND TEMPERATURE CONTROLLER SEMICONDUCTOR , UAA1016B TA = -20°to+100°C Plastic DIP Temp Se\ A R1 Vref (NTC) W Temp X Sensor Representative Block , 60 90 120 mA Output Pulse Width Rp'm 8 = 220 £2 , Vmains = 220 Vac/50 Hz, (Figures 3 and 4) , the load) a proportional temperature band control. In fact, most of the heating regulation systems -
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UAA1016 thermostat proportional triac Precision triac control thermostat bt162 thermostat proportional triac precision 1016b UM1016B
Abstract: adder and slope generator. 3. Two 1 "¦ resistors close to the RF sensor diode D2 in the block diagram , controller for GSM and PCN systems PCF5075 BLOCK DIAGRAM 2166 MHz sensor RF input handbook, full pagewidth D1 D2 1 BAS70-07 VSR VD1 L1 C3 50 pF 1 "¦ I BIAS VS2 7 VS1 6 1.25 V band gap 5 100 ÂuF VINT(p) BVS1 1 3 80 ÂuA OP2 19 8.4 "¦ HPA R3 DAC8 KICKA =100 mV 2.4 1 ADDER 1 8.4 "¦ HPA OP4 -
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SSOP20 MBE722 BGY203 MBE721 MBE720
Abstract: regulation action over a ±1°C band around the set point. For energy savings there is a programmable temperature reduction function, and for security a sensor failsafe inhibits output pulses when the sensor , Temperature over a 1°C Band Programmable Temperature Reduction 8 Preset Temperature (i.e. Defrost) 1 Sensor Failsafe D SUFFIX PLASTIC PACKAGE CASE 751 (SOâ'"8) Adjustable Hysteresis Low External Component Count PIN CONNECTIONS Vref 1 8 Sync Hys. Adj. 2 7 VCC Sensor 3 Motorola
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uaa2016 application notes UAA2016/D UAA2016 MAC212A8
Abstract: . II = Permissible extension if Hy < 0.05 kA/m. In applications with Hx < 3 kA/m, the sensor has to be , , the sensor has to be reset by an auxiliary field of Hx = 3 kA/m before use. Fig.4 Fig.5 Safe , ­1.2 ­50 0.3 0.5 Hy (kA/m) ­30 ­10 0 10 50 30 Hy (A/m) (1) Sensor reset with Hx = 3 kA/m. (2) Sensor reset with Hx = -3 kA/m. Hx = 0.5 kA/m; Tamb = 25 °C; Voffset = 0; S = VO , sensor Product specification Supersedes data of 1996 Nov 14 File under Discrete Semiconductors, SC17 Philips Semiconductors
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kmz10a1 KMZ10 MLC716 SC17 SOT195 M3D329 KMZ10A1 MGL420 SCA59
Abstract: Ecology (ACE) mission planning ACE will carry a planning. Ka- and W band radar. In addition to the new , State Power Amplifiers for Ka through W Bands (26 to 110 GHz) 26 QuinStar has created a full range of , band Noise Source W-band Excess Noise Ratio (ENR) Data for New W-band Noise Source band 18.0 , QuinStar Hardware for X-band Radar System band S QuinStarâ'™s Systems and Equipment Department has , . X band NASA W-band Cloud Radar Mission QuinStar has recently supplied a pulsed 30 Watt Solid QuinStar Technology
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sspa transmitter x band 2014T
Abstract: 0 - 1 MHz Notes 1. In applications with Hx < 3 kA/m the sensor has to be reset before , 2 3 4 5 Hx (kA/m) In applications with Hx < 3 kA/m, the sensor has to be reset, after , ) Permissible extension if Hy < 1 kA/m. In applications with Hx 3 kA/m, the sensor has to be reset by an , DISCRETE SEMICONDUCTORS DATA SHEET book, halfpage M3D329 KMZ10B Magnetic field sensor , Mar 31 Philips Semiconductors Product specification Magnetic field sensor KMZ10B Philips Semiconductors
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MGD806 MGD802 MGD803 SCA58
Abstract: sensor has to be reset before first operation by application of an auxiliary field Hx = 3 kA/m. 2 , field sensor KMZ10C , , , , , , , MLC122 20 Hd (kA/m , y (kA/m) Hx = 3 kA/m; Tamb = 25 °C; Voffset = 0. Fig.6 Sensor output characteristics. 1998 Mar 24 2 3 4 5 H x (kA/m) In applications with Hx 3 kA/m, the sensor has to be reset by an auxiliary field of Hx = 3 kA/m before using. In applications with Hx < 3 kA/m, the sensor Philips Semiconductors
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KMZ10C Application Note msa92 MBA737 SCA57
Abstract: field sensor , , , , , , , KMZ10A MLC119 12 Hd (kA/m , 1 2 3 4 5 H x (kA/m) In applications with Hx < 3 kA/m, the sensor has to be reset , = Permissible extension if Hy < 0.15 A/m. In applications with Hx 3 kA/m, the sensor has to be , kA/m; Tamb = 25 °C; Voffset = 0. Fig.6 Sensor output characteristics. 1998 Mar 24 5 , sensor Product specification Supersedes data of 1996 Nov 08 File under Discrete Semiconductors, SC17 Philips Semiconductors
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KMZ10A application note
Abstract: includes a power sensor driver so that no directional coupler is required in the power control loop. â'¢ 34.5 dB PA gain, temperature compensated â'¢ PA gain control range >55 dB â'¢ Integrated power sensor , its drains. â'¢ Low output noise floor of PA < â'133 dBm/Hz in GSM RX band â'¢ Wide operating , VGG 35 RFI 38 17 27 20 DETO/VDD5 SENSOR DRIVER (1) MGB761 (1) Ground , sensor output and supply voltage 5 ground VDD3 20 GND 21 to 26 VDD2 27 second stage -
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CGY2010G PCA5075 SA1620 LQFP48 MGB764
Abstract: Unit Features ß Universal Sensor Inputs: Thermocouple, 3-Wire RTD or DC Linear (mA, mV or V) ß , Thermocouple Types: J, K, T, R, S, B, L and N Sensor Break Protection: Break detected within 2 seconds , Depicting Ramp and Soak Programming Sensor Break Protection for RTD and dc mV: Break detected within 2 , Minimum Span: 1 display LSD Sensor Break Protection: Applicable to 4-20 mA, 1-5 V, and 2-10 V ranges , : Inherent dc Pulse Drive Capability: SSRD> 4.2 Vdc into 1 "¦ minimum Isolation: Not isolated from Omega Engineering
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CN1462 NEMA-4/IP65 RS-485 EN61010-1 BD1600-R BD1600-DC
Abstract: . Their low offset voltage, low supply current, and MOS inputs make them ideal for sensor interface and , Applications â  â  â  â  â  â  High impedance sensor interface Battery powered instrumentation , 2 "¦ VO = 0.3V to 3.0V 100 96 123 RL = 10 "¦ VO = 0.2V to 3.1V 100 96 dB , (Notes 3, 9) 52 80 120 28 50 70 RL = 2 "¦ to V+/2 65 100 120 RL = 10 "¦ to V+/2 IO RL = 2 "¦ to V+/2 RL = 10 "¦ to V+/2 Output Swing Low, (measured from Vâ National Semiconductor
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LMV841/LMV842/LMV844 LMV841 LMV842 LMV844
Abstract: Sensor KP 202-R/RK KP 203-R/RK Preliminary Features â'¢ â'¢ â'¢ â'¢ â'¢ High , fabrication lines â'¢ SMD housing â'¢ Built in silicon temperature sensor Type Marking KP 202 , connected 2 V s- 3 4 ^OUT + Not connected 5 Temperature Sensor 6 Vs + and Temperature Sensor 7 Vout Not connected 8 | â  Data Book fl33SbG5 0134511 313 â  218 i , (0) = RB A temperature sensor chip RJt that is built in the housing, can be used to compensate the -
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kp 72 202-R 203-R 203-RK 202-RK 013M5I0 EHA07369
Abstract: final value, ± 3 % of measured value available at sensor) air see failure diagram ± 1% of , Meter FM1 Block diagram Connection diagram 1 2 3 Power supply DC/DC 1 2 3 4 Sensor interface Turbine type sensor 6 5 7 8 9 10 1 XSK XV 2 3 1 XTF 2 3 4 XSF User interface 1 Micro controller system Sensor interface Calorimetric , /O - controlling monitoring parameter memory Sensor interfaces: calorimetric monitoring head E-T-A
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transistor a708 0Z112Z000138
Abstract: FEATURES FUNCTIONAL BLOCK DIAGRAM VDD High precision 180° angle sensor Maximum angular , -lead SOIC package ADA4571 TEMPERATURE SENSOR GC BRIDGE DRIVER + EMI FILTER AMR BRIDGE , Sheet Integrated AMR Angle Sensor and Signal Conditioner ADA4571 Figure 1. GENERAL DESCRIPTION The ADA4571 is an anisotropic magnetoresistive (AMR) sensor with integrated signal conditioning , the surrounding magnetic field. The ADA4571 consists of two die within one package, an AMR sensor Analog Devices
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ADA4571WHRZ-R7 ADA4571BRZ ADA4571BRZ-RL ADA4571BRZ-R7 ADA4571WHRZ D12514-0-10/14
Abstract: SENSOR PRODUCTS DIVISION The GMR Switch Advantage GMR SwitchTM = Larger Design Margin When , less error than any other magnetic sensor on the market today. In addition, there is minimal shift in , sensor. 160 140 120 HALL 100 GMR Switch Tolerances GMR Switch 80 60 40 AMR 20 Total Available Design Margin Magnetic Tolerances Sensor Tolerances + Magnet , Point Error Band (%) 4.5 to 30 VDC -40 to +125 °C The GMR Switch features a smaller error band than NVE
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AD004 AD005 led cross reference hall sensor 9v 3 pin ADXXXXX ad 5.9 magnetic sensor 21 L 4 pin hall sensor
Abstract: -Pin VSSOP. Typical Application V R1 + NO RF RELATED DISTURBANCES PRESSURE SENSOR + - , Sensor Application 1 2 Please be aware that an important notice concerning availability, standard , "¦ to V+/2. C, Boldface limits apply at the temperature extremes. Symbol Parameter , , all limits are guaranteed for TA = 25° V + = 3.3V, Vâ' = 0V, VCM = V+/2, and RL =10 "¦ to V+/2. C , Common-Mode Voltage Range CMRR ≥ 65 dB â'0.1 AVOL Large Signal Voltage Gain (7) RL = 2 Texas Instruments
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LMV861 LMV862 LMV861/LMV862 ISO/TS16949
Abstract: , centigrade temperature sensors is shown in Figure 22. The core of the temperature sensor is a band gap core , AD589 1.23V R3 â'" R4 SENSOR TCVOUT R1 ("¦) R2 ("¦) R3 ("¦) R4 ("¦) TMP35 TMP37 , . Table 5. Circuit Element Values for Loop Transmitter Sensor TMP35 TMP36 TMP37 R1 97.6 "¦ 97.6 ,   Basic Temperature Sensor Connections. 10  Applications , Output within ±1°C, 100 "¦|100 pF load2 1000 2000 50 250 2.7 Unloaded Unloaded Does Analog Devices
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TMP37GT9Z TMP35/TMP36/TMP37 TMP35/ TMP36/TMP37 LM35/LM45 TMP36/ ADW75001Z-0REEL7
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