Chithunzi cha ROHM TLR4377YFV-Ctage Follower 

Chithunzi cha ROHM

ROHM Solution Simulator

Kulondola Kwamagalimoto Kwapamwamba & Kuyika / Kutulutsa Sitima Yapamtunda Kupita ku Sitima ya CMOS Ikugwira Ntchito Ampmagetsi (Quad Op-Amps)
TLR4377YFV-C – Voltage Follower – DC Sweep simulation
This circuit simulates DC sweep response with Op-Amp as a voltage follower. You can observe the output voltage pamene voltage is changed. You can customize the parameters of the components shown in blue, such as VSOURCE, or peripheral components, and simulate the voltage follower with the desired operating condition.
Mutha kutsanzira dera muzolemba zosindikizidwa: Zogwira ntchito amplifier, Comparator (Tutorial). [JP] [EN] [CN] [KR]

Machenjezo Azambiri

Chenjezo 1: The values from the simulation results are not guaranteed. Please use these results as a guide for your design.
Chenjezo 2: These model characteristics are specifically at Ta=25°C. Thus, the simulation result with temperature variances may significantly differ from the result with the one done at actual application board (actual measurement).
Chenjezo 3: Please refer to the Application note of Op-Amps kuti mudziwe zambiri zaukadaulo.
Chenjezo 4: The characteristics may change depending on the actual board design and ROHM strongly recommend to double check those characteristics with actual board where the chips will be mounted on.

Simulation Schematic

Momwe mungatsanzirire

The simulation settings, such as parameter sweep or convergence options, are configurable from the ‘Simulation Settings’ shown in Figure 2, and Table 1 shows the default setup of the simulation.

Pankhani ya convergence yoyeserera, mutha kusintha zosankha zapamwamba kuti muthetse. Kutentha kumayikidwa ku 27 ° C m'mawu okhazikika mu 'Zosankha Pamanja'. Mutha kusintha.

Table 1. Zosintha zofananira zokhazikika

magawo Pofikira Zindikirani
Mtundu Wofanizira DC Osasintha Mtundu Woyeserera
Parameter Sweep VSOURCE VOLTAGE_LEVEL from 0 V to 5 V by 0.1 V
Zosintha zamakono Zoyenera -
Convergence Assist -
Zosankha pamanja . temp27 -

Kayeseleledwe Zogwirizana

Table 2. Mndandanda wa magawo oyeserera

Dzina lachitsanzo Type magawo Mtengo Wosintha Mitundu yosiyanasiyana Zogwirizana
Mphindi Max
VSOURCE Voltage Gwero Voltagmulingo e 5 0 5.5 V
AC kukula 0.0 yogwira V
AC gawo 0.0 yogwira °
VDD Voltage Source Kwa Op-Amp Voltagmulingo e 5 2.5(Chidziwitso1) 5.5(Chidziwitso1) V
AC kukula 0.0 yogwira V
AC gawo 0.0 yogwira °

(Note 1) Set it to the guaranteed operating range of the Op-Amps.

Op-Amp lachitsanzo

Gulu 3 likuwonetsa ntchito ya pini yachitsanzo yomwe yakhazikitsidwa. Dziwani kuti Op-Amp model ndiye mtundu wamakhalidwe pamalowedwe ake / zotulutsa, ndipo palibe mabwalo oteteza kapena ntchito zomwe sizikugwirizana ndi cholingacho zomwe sizimakhazikitsidwa.

Table 3. Op-Amp zikhomo zachitsanzo zomwe zimagwiritsidwa ntchito poyerekezera

Pin Dzina Kufotokozera
+MWA Kulowetsa kosasintha
-MU Inverting zolowetsa
VDD Mphamvu zabwino
vesi Negative magetsi / Ground
OUT linanena bungwe

 

Zigawo za Peripheral

Bili Yazinthu

Table 4 shows the list of components used in the simulation schematic. Each of the capacitors has the parameters of equivalent circuit shown below. The default values of equivalent components are set to zero except for the ESR of C.
You can modify the values of each component.
Table 4. Mndandanda wa ma capacitors omwe amagwiritsidwa ntchito mumayendedwe ofananitsa

Type Dzina lachitsanzo Mtengo Wosintha Mitundu yosiyanasiyana Zogwirizana
Mphindi Max
Kukaniza R1_1 0 0 10
RL1 10k 1k 1M, NC Ω
Wogwira ntchito Zamgululi 0.1 0.1 22 pF
CL1 10 mfulu, NC pF
Capacitor Equivalent Circuits

(a) Property edito


(b) Equivalent circuit

Figure 3. Capacitor property editor and equivalent circuit

Mtengo wosasinthika wa ESR ndi 0.01 Ω.
(Zindikirani 2) These parameters can take any positive value or zero in simulation but it does not guarantee the operation
of the IC in any condition. Refer to the datasheet to determine adequate value of parameters.

Zotchulidwa Zamtundu
Op-Amp

TLR4377YFV-C: Kulondola Kwamagalimoto Kwapamwamba & Kuyika / Kutulutsa Sitima Yapamtunda kupita ku Sitima ya CMOS Imagwira Ntchito AmpLifier (Quad Op-Amp). [JP] [EN] [CN] [KR] [TW] [DE]
TLR2377YFVM-C: Kulondola Kwambiri Kwamagalimoto & Kulowetsa/Kutulutsa Sitima Yapamtunda kupita ku Sitima ya CMOS Imagwira Ntchito AmpLifier (Dual Op-Amp). [JP] [EN] [CN] [KR] [TW] [DE]
TLR377YG-C: Kulondola Kwamagalimoto Kwapamwamba & Kuyika / Kutulutsa Sinjanji Kupita Ku Sitima Yapamtunda CMOS Imagwira Ntchito Amplifier. [JP] [EN] [CN] [KR] [TW] [DE]
LMR1802G-LB: Phokoso Lochepa, Kuyika Kwapang'onopang'ono Voltagndi CMOS Ntchito Amplifier. [JP] [EN] [CN] [KR] [TW] [DE]
Zolemba Zaukadaulo ndi Zida zitha kupezeka mu Zida Zopangira Pazogulitsa web page.

zolemba

  1. Zomwe zili pano zitha kusintha popanda kuzindikira.
  2. Musanagwiritse ntchito Zogulitsa zathu, chonde funsani woyimilira ogulitsa ndikutsimikizira zatsopano:
  3. Ngakhale ROHM ikugwira ntchito mosalekeza kuti ikhale yodalirika komanso yabwino, ma semiconductors amatha kusweka ndi kulephera chifukwa cha zinthu zosiyanasiyana.
    Therefore, in order to prevent personal injury or fire arising from failure, please take safety measures such as complying with the derating characteristics, implementing redundant and fire prevention designs, and utilizing backups and fail-safe procedures. ROHM shall have no responsibility for any damages arising out of the use of our Products beyond the rating specified by ROHM.
  4. Exampma circuits ogwiritsira ntchito, ma circuit constants ndi zina zilizonse zomwe zili pano zimaperekedwa kuti ziwonetsere kagwiritsidwe ntchito kazogulitsazo. Zozungulira zozungulira ziyenera kuganiziridwa popanga mabwalo opangira misa.
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  6. Zogulitsa zomwe zafotokozedwa m'chikalatachi sizinapangidwe kuti zizitha kupirira ma radiation.
  7. Kuti mugwiritse ntchito Zogulitsa zathu pazinthu zomwe zimafuna kudalirika kwakukulu (monga momwe zilili pansipa), chonde funsani ndikufunsana ndi woimira ROHM : zida zoyendera (monga magalimoto, zombo, masitima apamtunda), zida zoyankhulirana, magetsi apamsewu, kupewa moto/upandu. , zida zotetezera, machitidwe azachipatala, ma seva, ma cell a dzuwa, ndi njira zotumizira mphamvu.
  8. Musagwiritse ntchito Zogulitsa zathu pazinthu zomwe zimafuna kudalirika kwambiri, monga zida zam'mlengalenga, makina owongolera mphamvu zanyukiliya, ndi zobwereza zapansi pamadzi.
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  10. ROHM has used reasonable care to ensure the accuracy of the information contained in this document. However, ROHM does not warrants that such information is error-free, and ROHMshall have no responsibility for any damages arising from any inaccuracy or misprint of such information.
  11. Please use the Products in accordance with any applicable environmental laws and regulations, such as the RoHS Directive. For more details, including RoHS compatibility, please contact a  ROHM sales office. ROHM shall have no responsibility for any damages or losses resultingnon-compliance with any applicable laws or regulations.
  12. Mukamapereka Zogulitsa zathu ndi matekinoloje omwe ali m'chikalatachi kumayiko ena, muyenera kutsatira ndondomeko ndi mfundo zomwe zili m'malamulo ndi malamulo otumiza kunja, kuphatikizapo popanda malire US Export Administration Regulations ndi Foreign Exchange and Foreign Trade Act.
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Zolemba / Zothandizira

Chithunzi cha ROHM TLR4377YFV-Ctage Follower [pdf] Wogwiritsa Ntchito
TLR4377YFV-C Voltage Follower, TLR4377YFV-C, Voltage Follower, Follower
Chithunzi cha ROHM TLR4377YFV-Ctage Follower [pdf] Wogwiritsa Ntchito
TLR4377YFV-C Voltage Follower, TLR4377YFV-C, Voltage Follower, Follower
Chithunzi cha ROHM TLR4377YFV-Ctage Follower [pdf] Wogwiritsa Ntchito
TLR4377YFV-C Voltage Follower, TLR4377YFV-C, Voltage Follower, Follower
Chithunzi cha ROHM TLR4377YFV-Ctage Follower [pdf] Wogwiritsa Ntchito
TLR4377YFV-C Voltage Follower, TLR4377YFV-C, Voltage Follower, Follower

Zothandizira

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