
The FM0C78 Series 5.0 Vdc Clock Oscillators deliver stable and precise frequency control in an industry-standard 8-pin DIP half-size package. With a wide operating range of 60 MHz to 160 MHz, low jitter, and both TTL and HCMOS compatibility, these oscillators are ideal for high-frequency digital systems. Offering options for 3.3 V operation, tri-state outputs, and low phase noise performance, they provide a reliable, cost-effective solution for embedded and timing-critical applications. Comes in the GW - Gull Wing Option.
Frequency Management International FMOC7825ET-XXX.XXXXXXM-GW technical specifications.
| Frequency Range | 60.0 to 160.0 MHz (100 MHz max @ +3.3 Vdd) |
| Overall Frequency Tolerance | ±20 ppm to ±100 ppm (inclusive of operating temp, supply voltage, and load) |
| Operating Temperature Range | 0 to +70 |
| Storage Temperature | -55 to +125 |
| Supply Voltage (Vdd) | +5.0 Vdc (±0.5 Vdc) or +3.3 Vdc (±0.3 Vdc) |
| Supply Current (Icc) | 30 mA max @ 60.0 to 99.9 MHz; 50 mA max @ 100.0 to 149.9 MHz; 60 mA max @ 150.0 to 160.0 MHz |
| Symmetry (Duty Cycle) | 40/60% Std., 45/55% Available |
| Output '0' Level (VOL) | 0.4 Vdc max (TTL); 0.5 Vdc max (HCMOS) |
| Output '1' Level (VOH) | 2.4 Vdc min (TTL); 4.5 Vdc min (HCMOS), 3.0 Vdc min @ +3.3 Vdd |
| Rise and Fall Time | 10 ns max, < 5 ns typical |
| Start Time | 10 ms max, < 5 ms typical |
| Output Load | 10 TTL / 15 pF HCMOS |
| Jitter (typical) | < 25 pico seconds, one sigma |
| Phase Noise (typical) | 10 Hz -75 dBc/Hz; 100 Hz -105 dBc/Hz; 1 kHz -100 dBc/Hz; 10 kHz -90 dBc/Hz; 100 kHz -95 dBc/Hz; 1 MHz -120 dBc/Hz |
| Pin 1 Options | No Connect (Std); Tri-State; VIH: 2.2 V Open Enables Output, VIL: 0.8 V Disables Output |
| Output Disable/Enable Time | 100 ns max |
| Aging @ 25°C | ±5 ppm max first year |
| Package Type | 8 Pin DIP, Half Size |
| Dimensions | 0.510 in x 0.300 in (12.95 mm x 7.62 mm) |
Download the complete datasheet for Frequency Management International FMOC7825ET-XXX.XXXXXXM-GW to view detailed technical specifications.
This datasheet cannot be embedded due to technical restrictions.