




• High frequency capability for applications requiring fast pulses
• Pulse width modulation for flexible waveform generation
• Triggered burst mode for specific pulse sequencing
• Compact design for both benchtop and rack mount applications Applications • Used for stress testing designs requiring defined jitter and delay
• Ideal for clock frequency simulation with glitch-free parameter changes
• Suitable for creating data sequencing patterns for serial data testing
• Efficient for asynchronous pulse signal conditioning
• Helps in Op Amp slew rate and asymmetrical characterisation Can it be used for clock frequency simulation applications? Yes, it is ideal for simulating clock frequencies with glitch-free changes in pulse parameters. Will it assist in stress testing designs? Yes, it is designed for stress testing designs with defined jitter and delay requirements. Is it suitable for data sequencing patterns? Yes, it can efficiently generate data sequencing patterns for serial data testing applications. Can it be used for signal conditioning? Yes, it is suitable for asynchronous pulse signal conditioning purposes. Is it helpful in Op Amp slew rate measurements? Yes, it facilitates Op Amp slew rate and asymmetrical characterisation tasks.

TGP3151 Pulse Generator, 1 mHz min, 25 (Double Pulse) MHz, 50 (Pulse) MHz max, With RS Calibration
Checking for live stock
Maximum Frequency:
25 (Double Pulse) MHz, 50 (Pulse) MHz
Minimum Frequency:
1 mHz
Maximum Pulse Width:
499.99999999 (Double Pulse) s, 999.99999999 (Pulse) s
Minimum Pulse Width:
10ns
Modes:
Burst, Double Pulse, Function/Arbitrary, Modulation, Noise, Pattern/PBRS, Pulse, Square, Sweep, Triggered
Maximum Pulse Delay:
999.99999996 (Double Pulse) s, 999.99999998 (Pulse) s
Minimum Pulse Delay:
0ns
Calibrated:
RSCAL
Adjustable Output Amplitude:
Yes
Jitter:
<30%
Rise - Fall Time:
5 ns → 399.999999989 s (Double Pulse), 5 ns → 799.999999989 s (Pulse)
Input Impedance:
10 kΩ