Industrial Silicon MEMS CMOS Oscillator MICROCHIP DSC1001CI5-026.0000 Featuring Superior Reliability
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Product Description
Product Overview
The DSC1001/3/4 is a silicon MEMS-based CMOS oscillator family offering excellent jitter and stability over a wide range of supply voltages and temperatures. Its crystal-less design provides superior reliability, making it ideal for rugged, industrial, and portable applications. Available in industry-standard packages, it serves as a pin-for-pin replacement for standard crystal oscillators.
Product Attributes
- Brand: Microchip Technology Inc.
- Certifications: Pb Free, RoHS, Reach SVHC Compliant, AEC-Q100 Reliability Qualified
- Material: Silicon MEMS
Technical Specifications
| Parameter | Symbol | Min | Typ | Max | Units | Conditions |
| Frequency Range | F0 | 1 | 150 | MHz | Single Frequency | |
| f | 10 | ppm | Frequency Tolerance (10, 20, 25, 50 ppm options) | |||
| f | 5 | ppm | Aging (1 year @ +25C) | |||
| F0 | 1 | 150 | MHz | Single Frequency | ||
| Operating Voltage | VDD | 1.7 | 3.6 | V | Recommended Operating Conditions | |
| VDD | 1.8 | 3.3 | V | Electrical Characteristics | ||
| Operating Temperature Range | TA | 40 | +105 | C | External Industrial | |
| TA | 40 | +85 | C | Industrial (Ordering Option L) | ||
| TA | 20 | +70 | C | Commercial (Ordering Option E) | ||
| Supply Current (Standby) | IDD | 15 | A | Max. (T = +25C) | ||
| IDD | 6.0 | 6.5 | mA | Operating (1 MHz, VDD=3.3V, CL=0 pF, RL=, T=+25C) | ||
| Output Startup Time | tSU | 1.0 | 1.3 | ms | T = +25C | |
| Output Disable Time | tDA | 20 | 100 | ns | ||
| Output Duty Cycle | SYM | 45 | 55 | % | ||
| Input Logic Level High | VIH | 0.75 x VDD | V | |||
| Input Logic Level Low | VIL | 0.25 x VDD | V | VDD = 1.8V | ||
| Output Current Drive | CL | 15 | pF | DSC1001 | ||
| CL | 25 | pF | DSC1003 | |||
| CL | 40 | pF | DSC1004 | |||
| ZL | R > 10 k, C 15 | Recommended Operating Conditions | ||||
| Output Logic Level High | VOH | 0.8 x VDD | V | 6 mA, DSC1004, CL = 40 pF (VDD=1.8V, TA=+85C) | ||
| VOH | 0.8 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=1.8V, TA=+85C) | |||
| VOH | 0.8 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=1.8V, TA=+85C) | |||
| VOH | 0.9 x VDD | V | 6 mA, DSC1004, CL = 40 pF (VDD=2.5V, TA=+85C) | |||
| VOH | 0.8 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=2.5V, TA=+85C) | |||
| VOH | 0.8 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=2.5V, TA=+85C) | |||
| VOH | 0.9 x VDD | V | 8 mA, DSC1004, CL = 40 pF (VDD=3.3V, TA=+85C) | |||
| VOH | 0.9 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=3.3V, TA=+85C) | |||
| VOH | 0.8 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=3.3V, TA=+85C) | |||
| Output Logic Level Low | VOL | 0.2 x VDD | V | 6 mA, DSC1004, CL = 40 pF (VDD=1.8V, TA=+85C) | ||
| VOL | 0.2 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=1.8V, TA=+85C) | |||
| VOL | 0.2 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=1.8V, TA=+85C) | |||
| VOL | 0.1 x VDD | V | 6 mA, DSC1004, CL = 40 pF (VDD=2.5V, TA=+85C) | |||
| VOL | 0.2 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=2.5V, TA=+85C) | |||
| VOL | 0.2 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=2.5V, TA=+85C) | |||
| VOL | 0.1 x VDD | V | 8 mA, DSC1004, CL = 40 pF (VDD=3.3V, TA=+85C) | |||
| VOL | 0.1 x VDD | V | 6 mA, DSC1003, CL = 25 pF (VDD=3.3V, TA=+85C) | |||
| VOL | 0.2 x VDD | V | 4 mA, DSC1001, CL = 15 pF (VDD=3.3V, TA=+85C) | |||
| Output Transition Rise Time | tR | 1.4 | 3.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% | |
| tR | 1.5 | 3.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% | ||
| tR | 1.8 | 3.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% | ||
| tR | 1.0 | 2.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tR | 1.1 | 2.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tR | 1.2 | 2.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tR | 1.0 | 2.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| tR | 1.1 | 2.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| tR | 1.2 | 2.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| Output Transition Fall Time | tF | 1.0 | 3.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% | |
| tF | 1.1 | 3.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% | ||
| tF | 1.2 | 3.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% | ||
| tF | 0.9 | 2.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tF | 1.0 | 2.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tF | 1.1 | 2.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% (VDD=2.5V) | ||
| tF | 0.9 | 2.0 | ns | DSC1001, CL = 15 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| tF | 1.0 | 2.0 | ns | DSC1003, CL = 25 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| tF | 1.1 | 2.0 | ns | DSC1004, C2 = 40 pF, T = +25C, 20% to 80% (VDD=3.3V) | ||
| Jitter | JCC | 60 | ps | Max. Cycle-to-Cycle, f = 100 MHz (Note 2) | ||
| JP | 10 | 15 | psRMS | Period Jitter, f = 100 MHz (Note 2) | ||
| Jitter (VDD=2.5V) | JCC | 50 | ps | Max. Cycle-to-Cycle, f = 100 MHz (Note 2) | ||
| Jitter (VDD=2.5V) | JP | 5 | 10 | psRMS | Period Jitter, f = 100 MHz (Note 2) | |
| Jitter (VDD=3.3V) | JCC | 50 | ps | Max. Cycle-to-Cycle, f = 100 MHz (Note 2) | ||
| Jitter (VDD=3.3V) | JP | 5 | 10 | psRMS | Period Jitter, f = 100 MHz (Note 2) | |
| Storage Temperature Range | TA | 55 | +150 | C | ||
| Soldering Temperature Range | TS | +260 | C | 40 sec. max |
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Company
Beijing Silk Road Enterprise Management Services Co., Ltd.
Location
16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person
Sellina