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Part Manufacturer Description Datasheet BUY
CS181022-CQZ Cirrus Logic 32-bit Microprocessor IC; Package/Case:144-LQFP; Leaded Process Compatible:No; MIPS:120; Peak Reflow Compatible (260 C):No visit Digikey Buy
CS181002-CQZ Cirrus Logic 32-bit Microprocessor IC; Package/Case:144-LQFP; Leaded Process Compatible:No; MIPS:120; Peak Reflow Compatible (260 C):No visit Digikey Buy
CS181012-CQZ Cirrus Logic 32-bit Microprocessor IC; Package/Case:144-LQFP; Leaded Process Compatible:No; MIPS:120; Peak Reflow Compatible (260 C):No RoHS Compliant: Yes visit Digikey Buy
CS495002-CQZ Cirrus Logic Audio DSP IC; Series:CS49500; DSP Type:Floating Point; Package/Case:128-LQFP; Leaded Process Compatible:No; MIPS:240; Operating Temp. Max:70 C; Operating Temp. Min:0 C; Peak Reflow Compatible (260 C):No; Supply Voltage Max:2.5V RoHS Compliant: Yes BUY
CS495202-DQZ Cirrus Logic Audio DSP IC; Series:CS49500; DSP Type:Floating Point; Package/Case:144-LQFP; Leaded Process Compatible:Yes; MIPS:200; Operating Temp. Max:85 C; Operating Temp. Min:-40 C RoHS Compliant: Yes BUY
CS495202-CQZ Cirrus Logic Audio DSP IC; Series:CS49500; DSP Type:Floating Point; Package/Case:128-LQFP; Leaded Process Compatible:No; MIPS:240; Operating Temp. Max:70 C; Operating Temp. Min:0 C; Peak Reflow Compatible (260 C):No; Supply Voltage Max:2.5V RoHS Compliant: Yes BUY

mip 836

Catalog Datasheet MFG & Type PDF Document Tags

mip 836

Abstract: DS1678 recorded before the mission is stopped, and the values in the MIP and ME bits do not change to zeros until , MIP CM LOBAT ROF 0 ALMF Status Byte 1 Byte 2 Byte 3 Byte 32 Higher , mission starts when the first event occurs by activating INT. When INT is activated, the MIP bit in the , one. The second way to start a mission is write a one to the MIP bit of the Status Register over the I2C interface. When MIP is written to one, the ME bit in the Control Register is automatically set to
Maxim Integrated Products
Original

mip 836

Abstract: mip 836 ic recorded before the mission is stopped, and the values in the MIP and ME bits do not change to zeros until , MIP CM LOBAT ROF 0 ALMF Status Byte 1 Byte 2 Byte 3 Byte 32 Higher , mission starts when the first event occurs by activating INT. When INT is activated, the MIP bit in the , one. The second way to start a mission is write a one to the MIP bit of the Status Register over the I2C interface. When MIP is written to one, the ME bit in the Control Register is automatically set to
Maxim Integrated Products
Original
Abstract: the MIP and ME bits do not change to zeros until the mission is complete. During an event-log , TR0 EOSC Control MIP CM LOBAT ROF 0 ALMF Status Byte 1 Byte 2 Byte 3 , . When INT is activated, the MIP bit in the Status Register is set to one, the current time/date is , MIP bit of the Status Register over the I2C interface. When MIP is written to one, the ME bit in the Control Register is automatically set to one. When the MIP bit is written to one, the mission is started Maxim Integrated Products
Original

mip 836

Abstract: mip 0245 recorded before the mission is stopped, and the values in the MIP and ME bits do not change to zeros until , MIP CM LOBAT ROF 0 ALMF Status Byte 1 Byte 2 Byte 3 Byte 32 Higher , mission starts when the first event occurs by activating INT. When INT is activated, the MIP bit in the , one. The second way to start a mission is write a one to the MIP bit of the Status Register over the I2C interface. When MIP is written to one, the ME bit in the Control Register is automatically set to
Maxim Integrated Products
Original

mip 836 ic

Abstract: mip 836 real time clock is low. When PDCR bit 1 goes high, these head amplifiers will be disabled and MIP/MIN (MOEG=low) or , amplifier input pins. MIP, MIN 1 MO SIGNAL INPUTS: Differential MO signal attenuator input pins. EIP, EIN , signals are AC coupled to RFP/RFN, MIP/MIN and EIP/EIN. Unless otherwise specified, outputs are measured , 0 MOEG = low 40 220 mVp-pd MOEG = high 100 1100 mVp-p Input range MIP/MIN, EIP/EIN PDCR D1 = 1 , PDCR D1 = 1 MIP/MIN or EIP/EIN = 1 Vp-pd -15 15 % Differential input impedance LOW_Z = high 12 18 24
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OCR Scan

mip 836

Abstract: mip 836 ic outputs. T h e se co n d is the programmable attenuator interface(MIP/MIN, EIP/EIN), which provides a dual , goes high, these head amplifiers are disabled and MIP/MIN (MOEG=low) or EIP/EIN (MOEG=high) input is , SSI 33P3701 8-48 Mbit/s Magneto Optical Read Channel with PPM/PWM Pulse Qualification 8-36 , Selection MIP/MIN are used as inputs, FNP/FNN are used as outputs. TMS1 0 0 1 1 TMSO 0 1 0 1 MODE Normal , SUPPLY PINS NAME VPA VPB V PC V PD ,V PD 2 VPG VNA VNB VNC VND, VND2 VNG INPUT PINS MIP, MIN EIP, EIN I I
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OCR Scan
mip 836 mip 836 ic mip 836 real time clock 33R3750
Abstract: goes high, these head amplifiers will be disabled and MIP/MIN (MOEG=low) or EIP/EIN (MOEG=high) input , ground pin INPUT PIN 1 RF AMPLIFIER INPUTS: Sum and differential amplifier input pins. MIP, MIN , detectors. ATTENUATOR & PREAMPLIFIER Input signals are AC coupled to RFP/RFN, MIP/MIN and EIP/EIN. Unless , mVp-pd UNIT 1100 mVp-p 1100 mVp-pd Input range MIP/MIN, EIP/EIN PDCR D1 = 1 MO , / Attenuator gain accuracy PDCR D1 = 1 MIP/MIN or EIP/EIN = 1 Vp-pd -15 15 % LOW_Z = high 12 -
OCR Scan
33P3700 0011AT1

Westinghouse dc motor type sk

Abstract: generators winding circuit diagrams , MIP Engine Diagnostics (pg 97) Generator Controls Why are these Controls necessary? This , a a a a a a a a a a a a * MIP mode a a a a a a Misfire analysis pmax
Littelfuse
Original
Westinghouse dc motor type sk generators winding circuit diagrams Lodtrak III M2000-200 SCR mps 34100 t7900 PGR-8800 PF130N

HT 1000-4 power amplifier

Abstract: mip 836 ic 8-32 8-34 8-36 8-33 8-40 8-42 8-43 8-45 8-46 8-48 ANALOG DEVICES ix New Product Applications
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HT 1000-4 power amplifier schematic weigh scale AD7730 circuit integrate TB 1226 CN wheelchair motor 24v SCHEMATIC ad7730 1000 watt RMS professional audio power amplifier schematic Circuit ADP3050-5 ADP3603/4/5 TMP35 E3305-10-3/98 ADSP2171 ADMC300

mip 0254

Abstract: mp 1046 . 3.1.3 Program Emulation Pipeline Registers: MPC and MIP . . MP:3-1 Contents ix MP:3-2 , . . . . . . . . . . . . . . . . . . 8.3.6 Other IEEE-754 Operations . . . . . . . . . . . . . . . .
Texas Instruments
Original
TMS320C80 SPRU109A mip 0254 mp 1046 mp 1038 EPC 1027 mp 1016

mip 0254

Abstract: mip 0244 . 3.1.3 Program Emulation Pipeline Registers: MPC and MIP . . MP:3-1 Contents ix MP:3-2 , . . . . . . . . . . . . . . . . . . 8.3.6 Other IEEE-754 Operations . . . . . . . . . . . . . . . .
Texas Instruments
Original
mip 0244 0383F bbzt LT 542 seven segment sl 0380 r

mip 0254

Abstract: Modified Booth Multipliers . 3.1.3 Program Emulation Pipeline Registers: MPC and MIP . . MP:3-1 Contents ix MP:3-2 , . . . . . . . . . . . . . . . . . . 8.3.6 Other IEEE-754 Operations . . . . . . . . . . . . . . . .
Texas Instruments
Original
Modified Booth Multipliers mp 1048 MP 1048 EM c80 Master Processor architecture parallel Multiplier Accumulator based on Radix-2 sc 1091

ADD44

Abstract: bbzt . 3.1.3 Program Emulation Pipeline Registers: MPC and MIP . . MP:3-1 Contents ix MP:3-2 , . . . . . . . . . . . . . . . . . . 8.3.6 Other IEEE-754 Operations . . . . . . . . . . . . . . . .
Texas Instruments
Original
ADD44 mp 1060

mip 836

Abstract: mip 836 .069 . 3.1.3 Program Emulation Pipeline Registers: MPC and MIP . . MP:3-1 Contents ix MP:3-2 , . . . . . . . . . . . . . . . . . . 8.3.6 Other IEEE-754 Operations . . . . . . . . . . . . . . . .
Texas Instruments
Original
mip 836 .069

TEA1601T

Abstract: ON4959 processor (MIP), digital signal processor (DSP) and an integrated analog (IA). The modem connects to the , (MIP). The MIP performs the host interface processing and modem formatting, con trol and reporting
Philips Semiconductors
Original
TEA1601T ON4959 12NC philips OQ0260HL TEA1601T/N5 ON4959 transistor 1N4448/AT 1N4448 1N5059 VY27340B2 VY27357A2 X3A-BFQ32

remote control helicopter circuit diagram

Abstract: rc helicopter circuit diagram '" MC1239L MOT 8.36 MC855P MOT 1.80 â'" MC1259L MOT 10.74 â'" MC856F MOT 3.30 â'" MC13Q6P MOT .91 â
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MF028AMFPT remote control helicopter circuit diagram rc helicopter circuit diagram Rockwell Collins mechanical Filters TAURUS KEPD 350 transorb 400v remote control helicopter circuit diagram 24 MIL-STD-704 MIL-STD-704A MIL-STD-704D MIL-STD-704E MIL-STD-704F MI-22

ic MIP 0254

Abstract: ATMEL 520 24C02 8-14 8-16 8-17 8-19 8-20 8-23 8-24 8-26 8-29 8-31 8-33 8-36 8-38 8-40 8-42 8-44 8-45 8-47 M odel , 8-14 8-24 8-36 8-38 8-40 8-42 8-45 8-47 6-5 5-25 5-21 5-13 5-14 5-15 5-16 5-57 5-54 11-29 11-36 15-3
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RC96AC ic MIP 0254 ATMEL 520 24C02 ic MIP 0254 204 u LM386 IC MIP 0255 schematic Midcom modem transformer 671-1538 RC144AC RC96AC/RC144AC EIA/TIA578 EIA/TIA592 42/MNPTM2-4
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