| поискавой системы для электроныых деталей |
|
ADA4945-1ACPZ-R2 датащи(PDF) 35 Page - Analog Devices |
|
|
|||||||||||||||||||||||||||||
ADA4945-1ACPZ-R2 датащи(HTML) 35 Page - Analog Devices |
|
35 / 44 page ![]() Data Sheet ADA4945-1 Rev. 0 | Page 35 of 44 THEORY OF OPERATION GO CC RF RG GCM GDIFF GO RG –OUT +OUT RF +DIN –DIN +IN –IN VOCM CC OUTPUT CLAMP +VCLAMP –VCLAMP Figure 99. ADA4945-1 Architectural Block Diagram The ADA4945-1 is a high speed, low power differential amplifier fabricated on Analog Devices advanced dielectrically isolated SiGe bipolar process. The device provides two closely balanced differential outputs in response to either differential or single-ended input signals. An external feedback network that is similar to a voltage feedback operational amplifier sets the differential gain. The output common-mode voltage is independent of the input common-mode voltage and is set by an external voltage at the VOCM terminal. The PNP input stage allows input common-mode voltages between the negative supply and 1.3 V less than the positive supply. A rail-to-rail output stage supplies a wide output voltage range. The DISABLE pin can reduce the supply current (IS) of the amplifier to 50 µA. FULLY DIFFERENTIAL AND COMMON-MODE SIGNAL PATHS Figure 99 shows a simplified diagram of the ADA4945-1 architecture. The differential feedback loop consists of the differential transconductance (GDIFF) working through the GO output buffers and the RF/RG feedback networks. The common- mode feedback loop is set up with a voltage divider across the two differential outputs to create an output voltage midpoint (VOUT(CM) ) and a common-mode transconductance (GCM). The differential feedback loop forces the voltages at +IN and −IN to equal each other. This voltage equalization sets the following relationships: F OUT G IN R V R D − − = + F OUT G IN R V R D + − = − Subtracting the previous equations gives the relationship that shows RF and RG setting the differential gain. (V+OUT − V−OUT) = (+DIN – (−DIN)) × G F R R The common-mode feedback loop drives the output common- mode voltage that is sampled at the midpoint of the output voltage divider to equal the voltage at VOCM. This voltage equalization results in the following relationships: V+OUT = VOCM + 2 dm OUT, V V−OUT = VOCM − 2 dm OUT, V Note that the summing junction input voltages of the differential amplifier (+IN and −IN in Figure 99) are set by both the output voltages and the input voltages. + + + + = − + G F G OUT G F F IN IN R R R V R R R D V + + + − = + − G F G OUT G F F IN IN R R R V R R R D V |
|
ссылки URL |
| Вашему бизинису помогли Аллдатащит? [ DONATE ] |
Что такое Аллдатащит | реклама | контакт | Конфиденциальность | Ссылка на техническое описание | обмен ссыками | поиск по производителю All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |