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X1G004481007412
Oscillator, 4.096 MHz, SMD, 7mm x 5mm, CMOS, 3.3 V, SG7050CAN Series
⚠️ Reference pricing provided. In case of supply shortages, we will connect you with our trusted procurement partners to ensure your project's continuity.
- Manufacturer: EPSON
- Product type: Standard Oscillators
- Frequency Nom: 4.096MHz
- Product Range: SG7050CAN
- Oscillator Case: SMD, 7mm x 5mm
- Supply Voltage Nom: 3.3V
- Operating Temperature Max: 85°C
- Operating Temperature Min: -40°C
- Oscillator Output Compatibility: CMOS
| Delivery and price | |
|---|---|
| Units per pack | 1250 |
| Price | 0.85 € |
| Current stock | 10+ |
| Lead time | 30 days |
## Clock OSC ## SG7050CAN ## Product name SG7050CAN 4.096000 MHz TJGA Product Number / Ordering code X1G0044810074xx ## X1G0044810074xx Please refer to the 8.Packing information about xx (last 2 digits) ## Output waveform CMOS Pb free / Complies with EU RoHS directive Reference weight Typ. 147 mg |**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~|**2.Specifications(characteristics)**<br>~~a~~| |---|---|---|---|---|---|---| |Parameter<br>~~po~~<br>~~po~~|Symbol|Min.|Typ.|Max.|Unit|Conditions /Remarks| |Output frequency<br>~~po~~<br>~~po~~<br>~~po~~|f0||4.0960||MHz|| |Supplyvoltage<br>~~po~~<br>~~po~~<br>~~po~~|Vcc|1.6|-|3.63|V|-| |Operatingtemperature<br>~~po~~<br>~~po~~<br>~~po~~|T_use|-40|-|+85|ºC|-| |Frequencytolerance<br>~~po~~<br>~~po~~<br>~~po~~|f_tol|-50|-|50|x10-6|T_use| |Current consumption<br>~~po~~<br>~~po~~<br>~~po~~|Icc|-|-|3|mA|No load condition| |Stand-bycurrent<br>~~po~~<br>~~po~~<br>~~po~~|I_std|-|-|2.7|µA|ST = GND| |Disable current<br>~~po~~<br>~~po~~<br>~~po~~|I_dis|-|-|-|mA|-| |Symmetry<br>~~po~~<br>~~po~~|SYM|45|-|55|%|50% Vcc Level L_CMOS=<15pF| |Output voltage<br>~~po~~<br>~~EE~~<br>~~po~~|VOH<br>~~EE~~|Vcc-0.4<br>~~EE~~|-|-<br>~~ee~~|~~ee~~|-| ||VOL<br>~~EE~~<br>~~a~~|-<br>~~EE~~|-|0.4<br>~~ee~~|~~ee~~|-| |Output load condition<br>~~po~~|L_CMOS<br>~~a~~|-|-|15|pF|CMOS Load| |Input voltage<br>~~po~~<br>~~a ~~<br>~~oo~~|VIH<br>~~a~~<br>~~re~~<br>~~oo~~|0.8Vcc<br>~~re~~|-<br>~~re~~|-<br>~~re~~|~~re~~|ST terminal<br>ST terminal<br>~~re~~| ||VIL<br> ~~re~~<br>~~oo~~|-<br>~~re~~|-<br>~~re~~|0.2Vcc<br>~~re~~|~~re~~|| |Rise time<br>~~oo~~|tr<br>~~oo~~|-|-|4|ns|Vcc1.6V : 0.2Vcc to 0.8Vcc Level,<br>L_CMOS=15pF| |Fall time<br>~~oo~~<br>~~po~~|tf<br>~~oo~~<br>~~pO~~|-<br>~~pO~~|-<br>~~pO~~|4<br>~~pO~~|ns<br>~~pO~~|Vcc1.6V : 0.2Vcc to 0.8Vcc Level,<br>L_CMOS=15pF<br>~~pO~~| |Start-uptime<br>~~po~~|t_str<br>~~pO~~|-<br>~~pO~~|-<br>~~pO~~|3<br>~~pO~~|ms<br>~~pO~~|t = 0 at 0.9Vcc<br>~~pO~~| |Jitter<br>~~po ~~<br>~~po~~|tDJ<br> ~~pO~~|-<br>~~pO~~|0<br>~~pO~~|-<br>~~pO~~|ps<br>~~pO~~|Deterministic Jitter Vcc=3.3V<br>~~pO~~| ||tRJ<br>~~a~~|-<br>|2.4<br>|-<br>|ps<br>|Random Jitter Vcc=3.3V<br>| ||tRMS<br>~~pO~~|-<br>~~pO~~|2.3<br>~~pO~~|-<br>~~pO~~|ps<br>~~pO~~|δ(RMS of total distribution) Vcc=3.3V<br>~~pO~~| ||tp-p<br>~~a~~|-|20|-|ps|Peak to Peak Vcc=3.3V| ||tacc|-<br>~~a ee~~|2.5<br>~~ee~~|-<br>~~ee~~|ps<br>~~ee~~|Accumulated Jitter(δ) n=2 to 50000<br>cycles, Vcc=3.3V<br>~~ee~~| |Phasejitter<br>~~po~~|tPJ|-<br>~~a ee~~|-<br>~~ee~~|-<br>~~ee~~|ps<br>~~ee~~|-<br>~~ee~~| |Phase noise<br>~~po~~|L(f)|-<br>~~a ee~~|-<br>~~ee~~|-<br>~~ee~~|dBc/Hz<br>~~ee~~|-<br>~~ee~~| |||-<br>~~a~~|-<br>~~se~~|-<br>~~se~~|dBc/Hz<br>~~se~~|-<br>~~se~~| |||-<br>~~a~~|-<br>~~se~~|-<br>~~se~~|dBc/Hz|-| |||-<br>~~a~~|-<br>~~se~~|-<br>~~se~~|dBc/Hz<br>~~se~~|-<br>~~se~~| |||-<br>~~a~~|-<br>~~se~~|-<br>~~se~~|dBc/Hz|-| |||-<br>~~a~~<br>~~a~~|-<br>~~se~~<br>~~es~~|-<br>~~se~~<br>~~es~~|dBc/Hz<br>~~se~~|-<br>~~se~~| |||-<br>~~a~~|-<br>~~es~~|-<br>~~es~~|dBc/Hz|-| |Frequency aging|f_age|-3<br>-<br>~~a~~|-<br>-<br>~~es~~|3<br>-<br>~~es~~|x10-6|@+25ºC first year<br>-| 1 Page ## **3.Timing chart** **==> picture [143 x 195] intentionally omitted <==** **----- Start of picture text -----**<br> tr tf<br>:<br>VCC<br>80 %VCC<br>50 %VCC<br>20 %VCC<br>GND<br>tw<br>t<br><<<br>**----- End of picture text -----**<br> ## **4.Test circuit** ## 1) Waveform observation swich **==> picture [255 x 105] intentionally omitted <==** **----- Start of picture text -----**<br> e VCC ST or ~<br>OE<br>by-pass<br>capacitor<br>supply Test Point<br>GND OUT<br>L_CMOS<br>e s Ah<br>**----- End of picture text -----**<br> ## 2) Current consumption **==> picture [271 x 111] intentionally omitted <==** **----- Start of picture text -----**<br> swich<br>VCC ST<br>or<br>A OE<br>by-pass<br>capacitor<br>supply<br>GND OUT Test<br>Point<br>**----- End of picture text -----**<br> *Current consumption under the disable function should be = GND. 3) Condition - (1) Oscilloscope - Band width should be minimum 5 times higher (wider) than measurement frequency. - Probe earth should be placed closely from test point and lead length should be as short as possible - Recommendable to use miniature socket. (Don’t use earth lead.) - (2) L_CMOS also includes probe capacitance. - (3) By-pass capacitor (0.01 µF to 0.1 µF) is placed closely between VCC and GND. - (4) Use the current meter whose internal impedance value is small. - (5) Power supply - Start up time (0 %VCC to 90 %VCC) of power source should be more than 150 µs. - Impedance of power supply should be as lowest as possible. 2 Page **==> picture [224 x 196] intentionally omitted <==** **----- Start of picture text -----**<br> 5.External dimensions (Unit: mm)<br>7.0±0.2<br>—> #4 #3<br>E 25.000<br>|<br>CAN395K<br>(<br>#1 #2<br>(HA<br>1.4<br>+++ pin map[rh [conection<br>C0.5 | 2 [| Geo |<br>80 [unclon] [| «+ EF oniy[| auciinblewe |<br>|~—_____+|<br>5.08<br>Note.<br>OE pin = "H" or "open" : Specified frequency output.<br>OE pin = "L" : Output is high impedance.<br>ST pin = "H" or "open" : Specified frequency output.<br>ST pin = "L" : Output is high impedance、oscillation stops.<br>0.2<br>±<br>5.0<br>0.2<br>±<br>1.3<br>1.1<br>**----- End of picture text -----**<br> **==> picture [218 x 101] intentionally omitted <==** **----- Start of picture text -----**<br> 6.Footprint(Recommended) (Unit: mm)<br>1.8<br>#4 #3<br>ee. |bg} A<br>C (ex. 0.01 µF)<br>C<br>= =a5<br>LLL<br>Resist<br>#1 #2<br>Ea 5.08 4<br>2.0<br>4.2<br>**----- End of picture text -----**<br> ## **7.Reflow profile** ## Reflow condition (Follow of JEDEC STD-020D.01) **==> picture [311 x 189] intentionally omitted <==** **----- Start of picture text -----**<br> Temperature [C ]<br>300<br>TP ; +260C<br>+255C<br>tp ; 20 s to 40 s<br>250 Avg. Ramp-up<br>TL ; +217C 3 C / s Max. tL<br>200 Ts max ; +200C (60+217s toC 150over s) 6Ramp-down C / s Max.<br>Ts min ; +150 C ts<br>150 60 s to 180 s<br>( +150C to +200C )<br>100<br>50<br>Time +25 C to Peak<br>0 60 120 180 240 300 360 420 480 540 600 660 720 780<br>Time [ s ]<br>**----- End of picture text -----**<br> ## **8.Packing information** |[ 1 ]Product number last 2 digits code(xx) description|[ 1 ]Product number last 2 digits code(xx) description|[ 1 ]Product number last 2 digits code(xx) description|[ 1 ]Product number last 2 digits code(xx) description||The recommended code is "00"| |---|---|---|---|---|---| ||||X1G0044810074xx||| ||||Code<br>Condition|Code|Condition| ||||01<br>AnyQ'tyvinyl bag(Tape cut)|13|500pcs / Reel| ||||11<br>AnyQ'ty/ Reel|00|1000pcs / Reel| ||||12<br>250pcs / Reel||| 3 Page **==> picture [444 x 245] intentionally omitted <==** **----- Start of picture text -----**<br> [ 2 ] Taping specification<br>Subject to EIA-481 & IEC-60286<br>(1) Tape dimensions<br>Material of the Carrier Tape : PS<br>Material of the Top Tape : PET+PE Unit: mm<br>A B<br>ew<br>Q O O (o) O e) Oo Oo Carrier tape<br>IN<br>FLEEotte ttetl. |<br>TL Top tape<br>C F<br>Symbol A B C D E F<br>Value φ1.5 4 8 9.25 16 2.3<br>D<br>E<br>**----- End of picture text -----**<br> (2) Reel dimensions Center material : PS Material of the Reel : PS 4 Page ## **9.Notice** - This material is subject to change without notice. - Any part of this material may not be reproduced or duplicated in any form or any means without the written permission of Seiko Epson. · The information about applied data,circuitry, software, usage, etc. written in this material is intended for reference only. - Seiko Epson does not assume any liability for the occurrence of customer damage or infringing on any patent or copyright of a third party. This material does not authorize the licensing for any patent or intellectual copyrights. - When exporting the products or technology described in this material, you should comply with the applicable export control laws and regulations and follow the procedures required by such laws and regulations. - You are requested not to use the products (and any technical information furnished, if any) for the development and/or manufacture of weapon of mass destruction or for other military purposes. You are also requested that you would not make the products available to any third party who may use the products for such prohibited purposes. · These products are intended for general use in electronic equipment. When using them in specific applications that require extremely high reliability, such as the applications stated below, you must obtain permission from Seiko Epson in advance. - / Space equipment (artificial satellites, rockets, etc.) - / Transportation vehicles and related (automobiles, aircraft, trains, vessels, etc.) - / Medical instruments to sustain life - / Submarine transmitters - / Power stations and related - / Fire work equipment and security equipment / Traffic control equipment - / And others requiring equivalent reliability. ## **10.Contact us** http://www5.epsondevice.com/en/contact/ 5 Page
Updated at February 9, 2023
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