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236
mipi_test.py
236
mipi_test.py
@@ -3,7 +3,7 @@
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MIPI TEST APPLICATION - MIPI_TEST.PY
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- ENTRY POINT OF APPLICATION
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VERSION: 0.1
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VERSION: 0.2
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AUTHOR: D. RICE 25/03/2026
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© 2026 ARRIVE
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"""
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@@ -12,7 +12,6 @@ import time
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import sys
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import requests
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import threading
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import os
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# --- Configuration ---
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URL = "http://192.168.45.8:5000/display"
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@@ -23,138 +22,235 @@ test_running = False # Global flag to control the background thread
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# --- Instrument Connection ---
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try:
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psu = vxi11.Instrument("192.168.45.3")
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scope = vxi11.Instrument("192.168.45.4")
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# Increase timeout for large image data transfers
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scope.timeout = 5
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psu = vxi11.Instrument(PSU_IP)
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scope = vxi11.Instrument(SCOPE_IP)
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scope.timeout = 30 # seconds — needs to cover *RST and image saves
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psu.timeout = 5
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except Exception as e:
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print(f"ERROR: CANNOT CONNECT TO INSTRUMENTS: {e}")
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sys.exit(1)
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# ---------------------------------------------------------------------------
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def setup_scope():
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"""Initializes DSO80204B for 210MHz MIPI Signals"""
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print("Configuring Scope...")
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scope.write("*RST")
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time.sleep(1)
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"""Initialises DSO80204B for MIPI DSI signals (~210 MHz)."""
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print("CONFIGURING SCOPE...")
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# Setup Channels (1&2=Clock, 3&4=Data)
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for ch in range(1, 5):
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scope.write(f":CHANnel{ch}:DISPlay ON")
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scope.write(f":CHANnel{ch}:PROBe 19.2") # 910R/50R Divider
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scope.write(f":CHANnel{ch}:INPut DC50")
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scope.write(f":CHANnel{ch}:SCALe 0.1") # 100mV/div (200mV HS swing)
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scope.write(f":CHANnel{ch}:OFFSet 0.0")
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cmds = [
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# ── Reset & stop ──────────────────────────────────────────────────
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"*RST",
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":RUN",
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":STOP",
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# ── Channel 1 — Clock D+ ─────────────────────────────────────────
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":CHANnel1:DISPlay ON",
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":CHANnel1:INPut DC50",
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":CHANnel1:PROBe 19.2", # 910Ω + 50Ω divider = 19.2:1
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":CHANnel1:SCALe 0.1", # 100 mV/div
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":CHANnel1:OFFSet 0.0",
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":CHANnel1:LABel 'CLK+'",
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# ── Channel 2 — Clock D- ─────────────────────────────────────────
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":CHANnel2:DISPlay ON",
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":CHANnel2:INPut DC50",
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":CHANnel2:PROBe 19.2",
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":CHANnel2:SCALe 0.1",
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":CHANnel2:OFFSet 0.0",
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":CHANnel2:LABel 'CLK-'",
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# ── Channel 3 — Data Lane 0 D+ ───────────────────────────────────
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":CHANnel3:DISPlay ON",
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":CHANnel3:INPut DC50",
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":CHANnel3:PROBe 19.2",
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":CHANnel3:SCALe 0.1",
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":CHANnel3:OFFSet 0.0",
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":CHANnel3:LABel 'DAT0+'",
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# ── Channel 4 — Data Lane 0 D- ───────────────────────────────────
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":CHANnel4:DISPlay ON",
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":CHANnel4:INPut DC50",
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":CHANnel4:PROBe 19.2",
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":CHANnel4:SCALe 0.1",
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":CHANnel4:OFFSet 0.0",
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":CHANnel4:LABel 'DAT0-'",
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# ── Timebase — 5 ns/div shows ~10 cycles of 200 MHz clock ────────
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":TIMebase:SCALe 5E-9",
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":TIMebase:POSition 0",
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":TIMebase:REFerence CENTer",
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# ── Trigger — rising edge on Ch1 (Clock D+) ──────────────────────
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":TRIGger:MODE EDGE",
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":TRIGger:EDGE:SOURce CHANnel1",
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":TRIGger:EDGE:SLOPe POSitive",
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":TRIGger:EDGE:LEVel 0.05", # 50 mV post-attenuation
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":TRIGger:SWEep NORMal",
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# ── Acquisition ───────────────────────────────────────────────────
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":ACQuire:MODE RTIMe",
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":ACQuire:INTerpolate ON",
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":ACQuire:POINts 500000",
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# ── Display ───────────────────────────────────────────────────────
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":DISPlay:LAYout STACKED",
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":RUN",
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]
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for cmd in cmds:
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scope.write(cmd)
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time.sleep(0.05)
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print("CHANNEL SETUP COMPLETE.")
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setup_math_channels()
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def setup_math_channels():
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"""
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F1 = Ch1 - Ch2 (clock differential)
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F2 = Ch3 - Ch4 (lane 0 differential)
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DSO80204B firmware 05.30.0005 confirmed syntax:
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:FUNCtion<n>:DISPlay ON
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:FUNCtion<n>:SUBTract CHANnel<a>,CHANnel<b>
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"""
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print("SETTING UP MATH CHANNELS...")
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scope.write("*CLS")
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time.sleep(0.2)
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math_cmds = [
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# ── F1 = Ch1 - Ch2 (clock differential) ─────────────────────────
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":FUNCtion1:DISPlay ON",
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":FUNCtion1:SUBTract CHANnel1,CHANnel2",
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":FUNCtion1:RANGe 0.8", # 0.8V range = 100mV/div (range = 8 × scale)
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":FUNCtion1:OFFSet 0.0",
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# ── F2 = Ch3 - Ch4 (lane 0 differential) ─────────────────────────
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":FUNCtion2:DISPlay ON",
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":FUNCtion2:SUBTract CHANnel3,CHANnel4",
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":FUNCtion2:RANGe 0.8", # 0.8V range = 100mV/div
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":FUNCtion2:OFFSet 0.0",
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]
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for cmd in math_cmds:
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scope.write(cmd)
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time.sleep(0.2)
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try:
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time.sleep(1.0)
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opc = scope.ask("*OPC?")
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print(f" SCOPE SYNC OK (OPC={opc.strip()})")
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except Exception as e:
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print(f" WARNING: OPC SYNC FAILED ({e})")
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try:
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err = scope.ask(":SYSTem:ERRor?")
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if err.strip().startswith("0"):
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print(" MATH COMMANDS ACCEPTED — NO SCPI ERRORS.")
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print(" F1 = CLK DIFF (CH1-CH2), F2 = DAT DIFF (CH3-CH4)")
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else:
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print(f" SCPI ERROR: {err.strip()}")
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except Exception as e:
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print(f" COULD NOT READ ERROR QUEUE ({e})")
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# Timebase & Trigger
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scope.write(":TIMebase:SCALe 10e-6") # 10us/div
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scope.write(":TRIGger:EDGE:SOURce CHANnel3")
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scope.write(":TRIGger:EDGE:SLOPe FALLing") # Catch LP-11 to HS transition
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scope.write(":TRIGger:LEVel CHANnel3, 0.15") # 150mV
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scope.write(":TRIGger:SWEep SINGle")
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print("Scope Configured.")
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def save_screenshot(iteration):
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"""Save a PNG screenshot to C:\\TEMP on the scope's local disk."""
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try:
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scope.clear()
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# Use a very short, simple path. No subdirectories if possible.
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# Ensure C:\TEMP exists!
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filename = f"C:\\TEMP\\cap{iteration}.png"
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print(f"ATTEMPTING SIMPLEST XP SYNTAX: {filename}")
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# Try ONLY the filename and the format.
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# Many XP versions hate the SCR,COL extra parameters via SCPI.
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cmd = f':DISK:SAVE:IMAGe "{filename}",PNG'
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scope.write(cmd)
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# DO NOT use scope.ask() or any queries yet.
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# Just sleep and check the folder manually.
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time.sleep(5.0)
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print("COMMAND SENT. CHECK C:\\TEMP")
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filename = f"C:\\TEMP\\cap{iteration:04d}.png"
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print(f"SAVING SCREENSHOT: {filename}")
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scope.write(f':DISK:SAVE:IMAGe "{filename}",PNG')
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time.sleep(5.0) # wait for scope to write file — do not query during this
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print("SCREENSHOT SAVED.")
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except Exception as e:
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print(f"XP COMM ERROR: {e}")
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print(f"SCREENSHOT ERROR: {e}")
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def test_worker(on_time):
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""" Background loop:
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- Sets display ON for user-defined duration.
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- Sets display OFF for exactly 1 second.
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"""
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Background loop:
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- Arms scope in single trigger mode
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- Turns display ON for on_time seconds
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- Saves screenshot
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- Turns display OFF for 1 second
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- Repeats until test_running = False
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"""
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global test_running
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count = 1
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while test_running:
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# Arm scope
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scope.write(":SINGle")
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# Start display
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requests.put(URL, json={"state": "on"}, timeout=2)
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# Wait for the scope to trigger and fill memory
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# We wait slightly longer than the 'on_time' to ensure capture is done
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time.sleep(on_time + 0.5)
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# Pull the image
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time.sleep(on_time + 0.5) # +0.5s to ensure acquisition completes
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save_screenshot(count)
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count += 1
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# Set Display OFF
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requests.put(URL, json={"state": "off"}, timeout=2)
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# Fixed 1s OFF period
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time.sleep(1.0)
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def main_menu():
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global test_running
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"""Main Application Loop."""
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while True:
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print("\n===== MIPI TEST CONTROL =====")
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print("1. RUN IDN CHECK (PSU & SCOPE)")
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print("2. SETUP SCOPE (RUN FIRST)")
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print("3. CONFIGURE PSU (DEFAULT 24V/1.5A)")
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print("3. CONFIGURE PSU (DEFAULT 24V / 1.5A)")
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print("4. PSU OUTPUT ON/OFF (CH1)")
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print("5. START TEST & CAPTURE")
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print("6. STOP TEST")
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print("7. EXIT")
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choice = input("\nSELECT OPTION (1-7): ")
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choice = input("\nSELECT OPTION (1-7): ").strip()
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if choice == '1':
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print(f"PSU: {psu.ask('*IDN?')}")
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print(f"SCOPE: {scope.ask('*IDN?')}")
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print(f"PSU : {psu.ask('*IDN?').strip()}")
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print(f"SCOPE: {scope.ask('*IDN?').strip()}")
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elif choice == '2':
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setup_scope()
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elif choice == '3':
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psu.write('CH1:VOLT 24.0')
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psu.write('CH1:CURR 1.5')
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print("PSU CONFIGURED...")
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print("PSU CONFIGURED: 24V / 1.5A")
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elif choice == '4':
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state = input("TYPE 'ON' OR 'OFF': ").upper()
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state = input("TYPE 'ON' OR 'OFF': ").strip().upper()
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if state in ('ON', 'OFF'):
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psu.write(f'OUTP CH1,{state}')
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print(f"PSU OUTPUT {state}.")
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else:
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print("INVALID — TYPE 'ON' OR 'OFF'.")
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elif choice == '5':
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if not test_running:
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try:
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sec = float(input("ON DURATION (sec): "))
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sec = float(input("ON DURATION (seconds): "))
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test_running = True
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t = threading.Thread(target=test_worker, args=(sec,), daemon=True)
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t.start()
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print(f"TEST STARTED — ON TIME: {sec}s")
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except ValueError:
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print("INVALID TIME ENTERED.")
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else:
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print("TEST IS ALREADY RUNNING!")
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elif choice == '6':
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print("STOPPING TEST...")
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test_running = False
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elif choice == '7':
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test_running = False # Ensure thread stops
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test_running = False
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psu.close()
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scope.close()
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print("INSTRUMENTS CLOSED. BYE.")
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break
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else:
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print("INVALID ENTRY. PLEASE CHOOSE 1-6")
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print("INVALID ENTRY. PLEASE CHOOSE 1-7.")
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if __name__ == "__main__":
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# Optional: Run auto-config on startup
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main_menu()
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